1. -
  2. APDL Editor V1.1
  3. Supports Ansys: 18, 18.1
  4. Target Application: Mechanical
  5. Allow for users to have an environment for writing APDL commands that is integrated with live, contextual help. Command argument recognition, command searching, and automatic help page display are all available to help streamline and debug the APDL code while it is being generated.
  6. -
  7. API 4F Wind Loading V1
  8. Supports Ansys: 18
  9. Target Application: Mechanical
  10. Apply wind loading on solid/shell/beam geometry per API 4F guideline [Contains source code]
  11. -
  12. API 4F Wind Loading V1
  13. Supports Ansys: 17
  14. Target Application: Mechanical
  15. Apply wind loading on solid/shell/beam geometry per API 4F guideline [Contains source code]
  16. -
  17. ASME Fatigue V201.4
  18. Supports Ansys: 2020 R1, 2020 R2, 2021 R1
  19. Target Application: Mechanical
  20. Fatigue calculation post-processing tool to Description the cycles to failure and accumulated damage according to section 5.5.3 in ASME VIII Div. 2
  21. -
  22. ASME Local Failure V201.4
  23. Supports Ansys: 2020 R1, 2020 R2, 2021 R1
  24. Target Application: Mechanical
  25. Local failure calculation post-processing tool to Description the local failure utilization ratio according to section 5.3.3 in ASME VIII, Div. 2, with the possibility to specify forming strain and/or a loading sequence.
  26. -
  27. ASME Material Generator V201.3
  28. Supports Ansys: 19, 19.1, 19.2, 2019 R1, 2019 R2, 2019 R3, 2020 R1
  29. Target Application: Workflow
  30. Stress Strain Curve according to Annex 3-D, ASME 2013 VIII Div.2 / KD-231.4 ASME 2015 VIII Div.3
  31. -
  32. ASME Material Generator V192.2
  33. Supports Ansys: 18, 18.1, 18.2, 19, 19.1, 19.2
  34. Target Application: Workflow
  35. Stress Strain Curve according to Annex 3-D, ASME 2013 VIII Div.2 / KD-231.4 ASME 2015 VIII Div.3
  36. -
  37. ASME Material Generator V1
  38. Supports Ansys: 18, 18.1
  39. Target Application: Workflow
  40. Stress Strain Curve according to Annex 3-D, ASME 2013 VIII Div.2 / KD-231.4 ASME 2015 VIII Div.3
  41. -
  42. ASME Material Generator V1
  43. Supports Ansys: 19
  44. Target Application: Workflow
  45. Stress Strain Curve according to Annex 3-D, ASME 2013 VIII Div.2 / KD-231.4 ASME 2015 VIII Div.3
  46. -
  47. Acoustics V192.1
  48. Supports Ansys: 19.2
  49. Target Application: Mechanical
  50. Expose 3D acoustics solver capabilities to perform acoustic, vibro-acoustic, contained fluid or immersed structure analyses
  51. -
  52. Acoustics V191.1
  53. Supports Ansys: 19.1
  54. Target Application: Mechanical
  55. Expose 3D acoustics solver capabilities to perform acoustic, vibro-acoustic, contained fluid or immersed structure analyses
  56. -
  57. Acoustics V7
  58. Supports Ansys: 17.1
  59. Target Application: Mechanical
  60. Expose 3D acoustics solver capabilities to perform acoustic, vibro-acoustic, contained fluid or immersed structure analyses
  61. -
  62. Acoustics V7
  63. Supports Ansys: 17.2
  64. Target Application: Mechanical
  65. Expose 3D acoustics solver capabilities to perform acoustic, vibro-acoustic, contained fluid or immersed structure analyses
  66. -
  67. Acoustics V4
  68. Supports Ansys: 17
  69. Target Application: Mechanical
  70. Expose 3D acoustics solver capabilities to perform acoustic, vibro-acoustic, contained fluid or immersed structure analyses
  71. -
  72. Acoustics V3
  73. Supports Ansys: 18.2
  74. Target Application: Mechanical
  75. Expose 3D acoustics solver capabilities to perform acoustic, vibro-acoustic, contained fluid or immersed structure analyses
  76. -
  77. Acoustics V2
  78. Supports Ansys: 18
  79. Target Application: Mechanical
  80. Expose 3D acoustics solver capabilities to perform acoustic, vibro-acoustic, contained fluid or immersed structure analyses
  81. -
  82. Acoustics V1
  83. Supports Ansys: 19
  84. Target Application: Mechanical
  85. Expose 3D acoustics solver capabilities to perform acoustic, vibro-acoustic, contained fluid or immersed structure analyses
  86. -
  87. Add Images V2
  88. Supports Ansys: 19
  89. Target Application: Mechanical
  90. Automatically add/remove images/figures to the outline tree. Also support the views that are created via the View Manager or use 3d mouse to orient the model before taking the image/figure
  91. -
  92. Add Images V1
  93. Supports Ansys: 18
  94. Target Application: Mechanical
  95. Automatically add/remove images/figures to the outline tree. During the creation still possible to orient the model before taking the image/figure. Only work in combination with a 3D mouse
  96. -
  97. Additive Print Transfer V2020.1
  98. Supports Ansys: 2019 R3
  99. Target Application: Mechanical
  100. Extension to improve the workflow of importing results from Additive Print into Workbench for post processing steps
  101. -
  102. Advanced Enclosure V8
  103. Supports Ansys: 17, 17.1, 17.2
  104. Target Application: DesignModeler
  105. Create fluid enclosure and decompose it to sweepable bodies [Contains source code]
  106. -
  107. Analysis Settings Importer V3
  108. Supports Ansys: 19
  109. Target Application: Mechanical
  110. Allow to use a .csv file to import analysis settings for time stepping [Contains source code]
  111. -
  112. Analysis Settings Importer V2
  113. Supports Ansys: 18
  114. Target Application: Mechanical
  115. Allow to use a .csv file to import analysis settings for setting step end times, toggle automatic time stepping and define substeps [Contains source code]
  116. -
  117. Analysis Settings Importer V1
  118. Supports Ansys: 17, 17.1, 17.2
  119. Target Application: Mechanical
  120. Allow to use a .csv file to import analysis settings for setting step end times, toggle automatic time stepping and define substeps [Contains source code]
  121. -
  122. Ansys Topology Optimization V1
  123. Supports Ansys: 17.2
  124. Target Application: Mechanical
  125. Expose Topology Optimization capabilities in Workbench Mechanical.Optimized model can be exported and edited in SpaceClaim for performing validation study and/or 3D printing
  126. -
  127. Ansys Topology Optimization V1
  128. Supports Ansys: 17
  129. Target Application: Mechanical
  130. Expose Topology Optimization capabilities in Workbench Mechanical.Optimized model can be exported and edited in SpaceClaim for performing validation study and/or 3D printing
  131. -
  132. Ansys Topology Optimization V1
  133. Supports Ansys: 17.1
  134. Target Application: Mechanical
  135. Expose Topology Optimization capabilities in Workbench Mechanical.Optimized model can be exported and edited in SpaceClaim for performing validation study and/or 3D printing
  136. -
  137. App Generator for AIM V1
  138. Supports Ansys: 19.1
  139. Target Application: AIM
  140. The app allows the user to create a guided simulation starting from an AIM project without writing any code
  141. -
  142. AutoProfile V1
  143. Supports Ansys: 17.2
  144. Target Application: Fluent
  145. Convert .csv file to Fluent profile setting to check time dependent condition graphically in this wizard and set it as Fluent profile
  146. -
  147. AutoSubmodel V1
  148. Supports Ansys: 18.2, 19, 19.1
  149. Target Application: Mechanical
  150. The Auto Submodel extension is the automation of the procedure in doing submodelling from the full model. No repetitive work needed for cutting full geometry, importing interface, resetting contacts, materials etc., as they are all automated.
  151. -
  152. Automatic Shape Optimization V3
  153. Supports Ansys: 19, 19.1, 19.2, 2019 R1
  154. Target Application: Fluent
  155. This app automates shape optimization process. You cannot only use multi-objective or multi-condition optimization but new method combining DesignXplorer and Adjoint Solver.
  156. -
  157. Automatic Shape Optimization V2
  158. Supports Ansys: 19
  159. Target Application: Fluent
  160. This app automates shape optimization process. As well as multi-objective or multi-conditional optimization, you can also use new method, Mixed Optimization Process, that combines DesignXplorer and Adjoint Solver.
  161. -
  162. Automatic Shape Optimization V1
  163. Supports Ansys: 17.2
  164. Target Application: Fluent
  165. This app automates shape optimization process. As well as multi-objective or multi-conditional optimization, you can also use new method, Mixed Optimization Process, that combines DesignXplorer and Adjoint Solver.
  166. -
  167. Battery Design Toolkit V2
  168. Supports Ansys: 19, 19.1
  169. Target Application: Systems
  170. Give the users the ability to install and use the ANSYS Battery Design Toolkit in Simplorer
  171. -
  172. Battery Design Toolkit V1.1
  173. Supports Ansys: 18, 18.1
  174. Target Application: Systems
  175. Give the users the ability to install and use the ANSYS Battery Design Toolkit in Simplorer
  176. -
  177. Beam End Release V1.4
  178. Supports Ansys: 18
  179. Target Application: Mechanical
  180. Expose the end release feature for beam elements and enable advanced graphic post-processing for beam results
  181. -
  182. Beam End Release V2
  183. Supports Ansys: 18.2, 19, 19.1, 19.2
  184. Target Application: Mechanical
  185. Expose the end release feature for beam elements and enable advanced graphic post-processing for beam results
  186. -
  187. Beam End Release V1.3
  188. Supports Ansys: 17, 17.1, 17.2
  189. Target Application: Mechanical
  190. Expose the end release feature for beam elements and enable advanced graphic post-processing for beam results
  191. -
  192. Beam End Release V2
  193. Supports Ansys: 18.2, 19, 19.1, 19.2
  194. Target Application: Mechanical
  195. Expose the end release feature for beam elements and enable advanced graphic post-processing for beam results
  196. -
  197. Beam End Release V1.4
  198. Supports Ansys: 18
  199. Target Application: Mechanical
  200. Expose the end release feature for beam elements and enable advanced graphic post-processing for beam results
  201. -
  202. Beam End Release V1.3
  203. Supports Ansys: 17, 17.1, 17.2
  204. Target Application: Mechanical
  205. Expose the end release feature for beam elements and enable advanced graphic post-processing for beam results
  206. -
  207. Beam to Link V4
  208. Supports Ansys: 2019 R1
  209. Target Application: Mechanical
  210. App to convert line bodies defined in Workbench to cables, trusses or compression only elements using link180 elements
  211. -
  212. Beam to Link V3
  213. Supports Ansys: 17
  214. Target Application: Mechanical
  215. Convert line bodies defined in Workbench to cables, trusses or compression only elements using link180 elements
  216. -
  217. Better Material V1
  218. Supports Ansys: 17.2
  219. Target Application: Mechanical
  220. Expose mechanical-based material types as parameters inside ANSYS Workbench. Instead of varying independent numeric material properties, analyze the entire material type and leverage DesignXplorer-powered optimization studies to help you choose the best material for your simulation.
  221. -
  222. Bodies or Instances Converter V2
  223. Supports Ansys: 19
  224. Target Application: SpaceClaim
  225. Simplify repetitive multi-body adjustments by easily defining group and layer instances of similar yet independent solid bodies (e.g., bolts, screws, washers, ...)
  226. -
  227. Bodies or Instances Converter V1.1
  228. Supports Ansys: 18
  229. Target Application: SpaceClaim
  230. Simplify repetitive multi-body adjustments by easily defining group and layer instances of similar yet independent solid bodies (e.g., bolts, screws, washers, ...)
  231. -
  232. Bodies or Instances Converter V1
  233. Supports Ansys: 17.1, 17.2
  234. Target Application: SpaceClaim
  235. Simplify repetitive multi-body adjustments by easily defining group and layer instances of similar yet independent solid bodies (e.g., bolts, screws, washers, ...)
  236. -
  237. Bolt Result V1
  238. Supports Ansys: 2020 R1, 2020 R2, 2021 R1, 2021 R2
  239. Target Application: Mechanical
  240. BoltResult scans all time steps and gives the maximum values of Axial Force, Shear at I & J, Torque, Moment at I & J in a time-dependent or time-independent analysis.
  241. -
  242. Bolt Toolkit V201.13
  243. Supports Ansys: 19.2, 2019 R1, 2019 R2, 2019 R3, 2020 R1
  244. Target Application: Mechanical
  245. Pre and Post processing tool to create groups of rivets, bolt pretension, simplified bolts and advanced bolts with thread contact section. Rivet and bolt results can be evaluated according to Eurocode 3 and VDI 2230.
  246. -
  247. Bolt Toolkit V192.12
  248. Supports Ansys: 19.2, 2019 R1, 2019 R2, 2019 R3
  249. Target Application: Mechanical
  250. Pre and Post processing tool to create groups of rivets, bolt pretension, simplified bolts and advanced bolts with thread contact section. Rivet and bolt results can be evaluated according to Eurocode 3 and VDI 2230.
  251. -
  252. Bolt Toolkit V192.11
  253. Supports Ansys: 19.2
  254. Target Application: Mechanical
  255. Pre and Post processing toolkit to create groups of rivets, bolt pretension, simplified bolts and advanced bolts with thread contact section. Bolt results can be evaluated according to Eurocode 3 and VDI 2230
  256. -
  257. Bolt Toolkit V191.1
  258. Supports Ansys: 19.1
  259. Target Application: Mechanical
  260. Pre and Post processing toolkit to create groups of rivets, bolt pretension, simplified bolts and advanced bolts with thread contact section. Bolt results can be evaluated according to Eurocode 3 and VDI 2230
  261. -
  262. Bolt Toolkit V182.1
  263. Supports Ansys: 18, 18.1, 18.2
  264. Target Application: Mechanical
  265. Pre and Post processing toolkit to create groups of rivets, bolt pretension, simplified bolts and advanced bolts with thread contact section. Bolt results can be evaluated according to Eurocode 3 and VDI 2230
  266. -
  267. CAD Cleanup Tool V3
  268. Supports Ansys: 17, 17.1, 17.2
  269. Target Application: DesignModeler
  270. Streamline the conversion of CAD data to ANSYS Icepak objects using ANSYS DesignModeler. Easy to use GUIs can help you remove unwanted bodies, get rid of holes, and simplify geometry for analysis
  271. -
  272. CAESES Geometry Engine V3
  273. Supports Ansys: 19, 19.1, 19.2, 2019 R1
  274. Target Application: Mechanical
  275. This app allows you to use CAESES geometry models for shape optimization with ANSYS tools. Meshing and simulation of CAESES models can be completely automated. CAESES focuses on parametric complex shapes. Typical applications: Ship hulls, turbochargers, pumps, turbines, wings, manifolds, volutes, rotor blades and impellers.
  276. -
  277. CAESES Geometry Engine V2
  278. Supports Ansys: 19, 19.1, 19.2
  279. Target Application: Workflow
  280. Use CAESES geometry models for shape optimization. Meshing and analysis of CAESES models can be automated. CAESES focuses on parametric complex shapes. Typical applications : Ship hulls, turbochargers, pumps, turbines, wings, manifolds, volutes, intake ports, rotor blades
  281. -
  282. CAESES Geometry Engine V1
  283. Supports Ansys: 19
  284. Target Application: Workflow
  285. Use CAESES geometry models for shape optimization. Meshing and analysis of CAESES models can be automated. CAESES focuses on parametric complex shapes. Typical applications : Ship hulls, turbochargers, pumps, turbines, wings, manifolds, volutes, intake ports, rotor blades
  286. -
  287. CFX2Fluent V2
  288. Supports Ansys: 19
  289. Target Application: Workflow
  290. Connect CFX Setup with Fluent Setup for extended, automatable CFD analysis within the ANSYS Workbench Project Schematic
  291. -
  292. CFX2Fluent V1
  293. Supports Ansys: 17
  294. Target Application: Workflow
  295. Connect CFX Setup with Fluent Setup for extended, automatable CFD analysis within the ANSYS Workbench Project Schematic
  296. -
  297. CFX2Fluent V1
  298. Supports Ansys: 18
  299. Target Application: Workflow
  300. Connect CFX Setup with Fluent Setup for extended, automatable CFD analysis within the ANSYS Workbench Project Schematic
  301. -
  302. CFturbo V2020.1
  303. Supports Ansys: 19, 19.1, 19.2, 2019 R1, 2019 R2, 2019 R3, 2020 R1, 2020 R2
  304. Target Application: Workflow
  305. This App enables the integration of the turbomachinery design software CFturbo into the ANSYS Workbench. In addition to a connection to TurboGrid and SpaceClaim, a bi-directional parameter update is possible. Fixed Named selections can be used to create robust workflows.
  306. -
  307. CFturbo V10.4
  308. Supports Ansys: 19, 19.1, 19.2, 2019 R1
  309. Target Application: Workflow
  310. This App enables the integration of the turbomachinery design software CFturbo into the ANSYS Workbench. In addition to a connection to TurboGrid and SpaceClaim, a bi-directional parameter update is possible.
  311. -
  312. CFturbo Add-on V1
  313. Supports Ansys: 19.2
  314. Target Application: Workflow
  315. Integrates CFturbo and TurboGrid to provide parametric study of pump impeller in Workbench.
  316. -
  317. CSV Description V212.1
  318. Supports Ansys: 2021 R2
  319. Target Application: Mechanical
  320. Post processing tool to create custom nodal or element contour Description from csv file including unit conversion and mid node interpolation.
  321. -
  322. CSV Description V211.9
  323. Supports Ansys: 19.2, 2019 R1, 2019 R2, 2019 R3, 2020 R1, 2020 R2, 2021 R1
  324. Target Application: Mechanical
  325. Post processing tool to create custom nodal or element contour Description from csv file including unit conversion and mid node interpolation
  326. -
  327. CSV Description V201.8
  328. Supports Ansys: 19.2, 2019 R1, 2019 R2, 2019 R3, 2020 R1
  329. Target Application: Mechanical
  330. Post processing tool to create custom nodal or element contour Description from csv file including unit conversion and mid node interpolation
  331. -
  332. CSV Description V192.7
  333. Supports Ansys: 19.2, 2019 R1, 2019 R2, 2019 R3
  334. Target Application: Mechanical
  335. Post processing tool to create custom nodal or element contour Description from csv file including unit conversion and mid node interpolation
  336. -
  337. CSV Description V191.6
  338. Supports Ansys: 19.1
  339. Target Application: Mechanical
  340. Post processing tool to create custom nodal or element contour Description from csv file including unit conversion and mid node interpolation.
  341. -
  342. CSV Description V180.5
  343. Supports Ansys: 18, 18.1
  344. Target Application: Mechanical
  345. Post-processing app to create custom contour Description from csv file including unit conversion
  346. -
  347. CSV Description V170.3
  348. Supports Ansys: 17, 17.1, 17.2
  349. Target Application: Mechanical
  350. Post-processing app to create custom contour Description from csv file including unit conversion
  351. -
  352. CYBERNET Extensions - Result output control - V1.7
  353. Supports Ansys: 2021 R1, 2021 R2
  354. Target Application: Mechanical
  355. A feature that allows you to limit the output of the result to a specific geometry or load step and reduce the size of the result file.
  356. -
  357. CYBERNET Toolbox V2022.1
  358. Supports Ansys: 2022 R1
  359. Target Application: Mechanical
  360. CYBERNET Toolbox is a customized tool that makes Ansys Workbench more convenient to use.
  361. -
  362. CadToPost V3
  363. Supports Ansys: 19, 19.1, 19.2
  364. Target Application: Workflow
  365. Allows Workbench users to easily import CAD into the CFDPost application
  366. -
  367. CadToPost V1
  368. Supports Ansys: 17.1, 17.2
  369. Target Application: Workflow
  370. Allow Workbench users to easily import CAD into the CFDPost application
  371. -
  372. CadToPost V1
  373. Supports Ansys: 17
  374. Target Application: Workflow
  375. Allow Workbench users to easily import CAD into the CFDPost application
  376. -
  377. CadToPost V1
  378. Supports Ansys: 18
  379. Target Application: Workflow
  380. Allow Workbench users to easily import CAD into the CFDPost application
  381. -
  382. Command Obj to ACT V2
  383. Supports Ansys: 19
  384. Target Application: Mechanical
  385. Easily convert your APDL command objects / snippets into working ACT extensions. Make it easy to create your own custom apps with your own specific APDL code [Contains source code]
  386. -
  387. Command Obj to ACT V1
  388. Supports Ansys: 18, 18.1, 18.2
  389. Target Application: Mechanical
  390. Easily convert your APDL command objects / snippets into working ACT extensions. Make it easy to create your own custom apps with your own specific APDL code [Contains source code]
  391. -
  392. Compressive Only Support V1
  393. Supports Ansys: 18.2
  394. Target Application: Mechanical
  395. Apply a contact compressive only support with possibility to change contact settings (keyopts and real constants)
  396. -
  397. Compressive Support Settings CSS V2
  398. Supports Ansys: 19, 2019 R3
  399. Target Application: Mechanical
  400. A powerful tool that provides an alternative to Ansys WB's built-in compressive support boundary condition. The functionality of Ansys Classic has been transferred to the WB environment so that the user can control all compressive support parameters in a user-friendly way. This is the second version of the extension where the user can choose between two different types of contact elements. The user can choose between CONTA174 and CONTA178 and a full spectrum of advanced settings such as: Contact algorithm, Detection method, Stiffness and many others. Thanks to this extension, advanved analyses using compressive support can be performed without the need to create additional macros, directly from Ansys WB menu. This tool has two contact support definitions: based on 174 element and based on 178 element. User has to decide which option is better in his/her model. Act app has much more options then compression only support in Ansys Workbench.
  401. -
  402. Convection V21.1
  403. Supports Ansys: 2021 R1
  404. Target Application: Mechanical
  405. Expose convection with pilot node capability in steady-state and transient thermal analyses.
  406. -
  407. Convection V2
  408. Supports Ansys: 17, 17.1
  409. Target Application: Mechanical
  410. Expose convection with pilot node capability in steady-state and transient thermal analyses
  411. -
  412. Convection V2
  413. Supports Ansys: 17.2
  414. Target Application: Mechanical
  415. Expose convection with pilot node capability in steady-state and transient thermal analyses
  416. -
  417. Convection V1
  418. Supports Ansys: 19
  419. Target Application: Mechanical
  420. Expose convection with pilot node capability in steady-state and transient thermal analyses
  421. -
  422. Convection V1
  423. Supports Ansys: 18
  424. Target Application: Mechanical
  425. Expose convection with pilot node capability in steady-state and transient thermal analyses
  426. -
  427. Convection Links V1
  428. Supports Ansys: 19
  429. Target Application: Mechanical
  430. Allow thermal exchange between nodal surfaces via convective links
  431. -
  432. Convert To Point Mass V1
  433. Supports Ansys: 18, 18.1, 18.2
  434. Target Application: Mechanical
  435. One click to convert solid components into point mass with automatic calculations and assignments of total mass, center of gravity location, and moment of inertia [Contains source code]
  436. -
  437. Coupled Diffusion V1
  438. Supports Ansys: 17, 17.1, 17.2
  439. Target Application: Mechanical
  440. Introduce coupled diffusion analysis (structural diffusion, thermal diffusion, and structural thermal diffusion) in both static and full transient analysis
  441. -
  442. Coupled Field Physics V1.2
  443. Supports Ansys: 18
  444. Target Application: Mechanical
  445. Expose piezoelectric, thermal-piezoelectric and thermal-structural solver capabilities
  446. -
  447. Coupled Field Physics V1
  448. Supports Ansys: 17, 17.1, 17.2
  449. Target Application: Mechanical
  450. Expose piezoelectric, thermal-piezoelectric and thermal-structural solver capabilities
  451. -
  452. Custom Update V3
  453. Supports Ansys: 19
  454. Target Application: Workflow
  455. Facilitate to automatically export various data during the Update process for a Component/System/Project and Design Point
  456. -
  457. Custom Update V2.5
  458. Supports Ansys: 18
  459. Target Application: Workflow
  460. Facilitate to automatically export various data during the Update process for a Component/System/Project and Design Point
  461. -
  462. Custom Update V2.4
  463. Supports Ansys: 17, 17.1, 17.2
  464. Target Application: Workflow
  465. Facilitate to automatically export various data during the Update process for a Component/System/Project and Design Point
  466. -
  467. DOE from Correlation V1
  468. Supports Ansys: 18, 18.1
  469. Target Application: DesignXplorer
  470. Use parameters correlation results to create the DOE for a Response Surface Optimization and automatically deactivate minor parameters with the ability to reuse Design Point values
  471. -
  472. DOE from Correlation V1
  473. Supports Ansys: 17, 17.1
  474. Target Application: DesignXplorer
  475. Use parameters correlation results to create the DOE for a Response Surface Optimization and automatically deactivate minor parameters with the ability to reuse Design Point values
  476. -
  477. Density Scaling V201.4
  478. Supports Ansys: 19.2, 2019 R1, 2019 R2, 2019 R3, 2020 R1, 2020 R2
  479. Target Application: Mechanical
  480. Scale the density of selected bodies at the environment level by a factor, average density or total mass
  481. -
  482. Density Scaling V201.3
  483. Supports Ansys: 19.2, 2019 R1, 2019 R2, 2019 R3, 2020 R1
  484. Target Application: Mechanical
  485. Scale the density of selected bodies at the environment level by a factor, average density or total mass
  486. -
  487. Density Scaling V1
  488. Supports Ansys: 18
  489. Target Application: Mechanical
  490. Scale the mass density of selected bodies at the environment level. Allow a local scaling of the densities of one or more bodies at the setup level, such that all other information may be shared between the two analyses
  491. -
  492. DesignModeler Utilities V3.41
  493. Supports Ansys: 18, 18.1, 18.2, 19, 19.1, 19.2
  494. Target Application: DesignModeler
  495. Exposes some useful utilities of DesignModeler
  496. -
  497. DesignModeler Utilities V3.4
  498. Supports Ansys: 17
  499. Target Application: DesignModeler
  500. Expose some useful utilities of DesignModeler
  501. -
  502. DesignXplorer Utilities V1.2
  503. Supports Ansys: 19, 19.1, 19.2, 2019 R1
  504. Target Application: DesignXplorer
  505. Additional Design of Experiments types: Full Factorial, LHS with Parameter Relationships (+ ability to match allowed values). Provide some useful utilities: Import Parameters and DOE, Correlation to DOE, RSO to Direct Optimization, Import Parameter Bounds, Export Parameter Bounds, Define Parameter Bounds by Percentage, Remove Failed DOE Points.
  506. -
  507. DesignXplorer Utilities V1.1
  508. Supports Ansys: 19, 19.1, 19.2
  509. Target Application: DesignXplorer
  510. Additional Design of Experiments types: Full Factorial, LHS with Parameter Relationships (+ ability to match allowed values). Provide some useful utilities: Import Parameters and DOE, Correlation to DOE, RSO to Direct Optimization, Import Parameter Bounds, Export Parameter Bounds, Define Parameter Bounds by Percentage, Remove Failed DOE Points.
  511. -
  512. DesignXplorer Utilities V1
  513. Supports Ansys: 18.2
  514. Target Application: DesignXplorer
  515. Additional Design of Experiments types: Full Factorial, LHS with Parameter Relationships (+ ability to match allowed values). Provide some useful utilities: Import Parameters and DOE, Correlation to DOE, RSO to Direct Optimization, Import Parameter Bounds, Export Parameter Bounds, Define Parameter Bounds by Percentage, Remove Failed DOE Points.
  516. -
  517. Direct Optimization from RSO V1
  518. Supports Ansys: 18, 18.1
  519. Target Application: DesignXplorer
  520. Create a new Direct Optimization system based on the Response Surface Optimization definition and results
  521. -
  522. Direct Optimization from RSO V1
  523. Supports Ansys: 17, 17.1
  524. Target Application: DesignXplorer
  525. Create a new Direct Optimization system based on the Response Surface Optimization definition and results
  526. -
  527. Dynamic Contact Angle V2
  528. Supports Ansys: 19
  529. Target Application: Fluent
  530. Automatic settings of dynamic contact angle for VOF simulations. Write out a UDF source file to calculate the dynamic contact angle and build the UDF library (users do not have to directly edit and compile the UDF source)
  531. -
  532. Dynamic Contact Angle V2
  533. Supports Ansys: 18, 18.1, 18.2
  534. Target Application: Fluent
  535. Automatic settings of dynamic contact angle for VOF simulations. Write out a UDF source file to calculate the dynamic contact angle and build the UDF library (users do not have to directly edit and compile the UDF source)
  536. -
  537. Dynamic Contact Angle V1
  538. Supports Ansys: 17
  539. Target Application: Fluent
  540. Automatic settings of dynamic contact angle for VOF simulations on Fluent
  541. -
  542. EKILL/EALIVE V3
  543. Supports Ansys: 18
  544. Target Application: Mechanical
  545. Expose element birth and death functionality to deactivate and reactivate bodies or contacts during structural analysis in Mechanical
  546. -
  547. EKILL/EALIVE V2
  548. Supports Ansys: 17
  549. Target Application: Mechanical
  550. Expose element birth and death functionality to deactivate and reactivate bodies or contacts during structural analysis in Mechanical
  551. -
  552. EKM Model Import V1
  553. Supports Ansys: 19
  554. Target Application: Systems
  555. Install the EKM model import toolkit onto Simplorer. User can use the toolkit to access and import the compatible model files on the EKM server into Simplorer
  556. -
  557. Electrification Package V2
  558. Supports Ansys: 2021 R1, 2021 R2, 2022 R1
  559. Target Application: Embedded Software
  560. The Electrification Package for Embedded Software provides a framework for implementing the monitoring and control software of electrified systems with Ansys SCADE. The provided libraries can be used for a variety of electrification applications from electric mobility (electric aircrafts, ground vehicles) to auxiliary power electric production and storage systems.
  561. -
  562. Electrification Package V1
  563. Supports Ansys: 2021 R1
  564. Target Application: Embedded Software
  565. The Electrification Package for Embedded Software provides a framework for implementing the monitoring and control software of electrified systems with Ansys SCADE. The provided libraries can be used for a variety of electrification applications from electric mobility (electric aircrafts, ground vehicles) to auxiliary power electric production and storage systems.
  566. -
  567. Electro-Thermal V4
  568. Supports Ansys: 2019 R3
  569. Target Application: Electronics Desktop
  570. Automate the coupling of Electromagnetic tools (HFSS, Maxwell 3D, Q3D, HFSS Layout) to Icepak in AEDT for an electro-thermal simulation.
  571. -
  572. Electro-Thermal V3
  573. Supports Ansys: 2019 R1
  574. Target Application: Electronics Desktop
  575. Automate the coupling of Electromagnetic tools (HFSS, Maxwell 3D, Q3D, HFSS Layout) to Icepak in AEDT for an electro-thermal simulation.
  576. -
  577. Electro-Thermal V2
  578. Supports Ansys: 19.2
  579. Target Application: Electronics Desktop
  580. Automate the coupling of Electromagnetic tools (HFSS, Maxwell 3D, Q3D) to Icepak in AEDT for an electro-thermal simulation
  581. -
  582. Electronic Transformer V2
  583. Supports Ansys: 2021 R1
  584. Target Application: Electronics Desktop
  585. Interface to draw the geometry and setup a solution for a transformer or inductor. A database of basic topologies and materials for the commonly used cores is included. Users can define their own winding strategy (Planar or Wound types) enabling automatic creation of all winding turns with rectangular or circular cross section. Automatically setup an Eddy Current Solution with (or without) a Frequency Sweep Definition. Consider the frequency dependent core permeability and core loss Steinmetz coefficients. Allow defining matrix connections. Process to create a frequency dependent R/L model which can be imported into ANSYS Simplorer as a Maxwell Dynamic Eddy Current component.
  586. -
  587. Electronic Transformer V1.1
  588. Supports Ansys: 19.1, 19.2
  589. Target Application: Electronics Desktop
  590. Interface to draw the geometry and setup a solution for a transformer or inductor. A database of basic topologies and materials for the commonly used cores is included. Users can define their own winding strategy (Planar or Wound types) enabling automatic creation of all winding turns with rectangular or circular cross section. Automatically setup an Eddy Current Solution with (or without) a Frequency Sweep Definition. Consider the frequency dependent core permeability and core loss Steinmetz coefficients. Allow defining matrix connections. Process to create a frequency dependent R/L model which can be imported into ANSYS Simplorer as a Maxwell Dynamic Eddy Current component.
  591. -
  592. Electronic Transformer V1
  593. Supports Ansys: 19.1
  594. Target Application: Electronics Desktop
  595. Interface to draw the geometry and setup a solution for a transformer or inductor. A database of basic topologies and materials for the commonly used cores is included. Users can define their own winding strategy (Planar or Wound types) enabling automatic creation of all winding turns with rectangular or circular cross section. Automatically setup an Eddy Current Solution with (or without) a Frequency Sweep Definition. Consider the frequency dependent core permeability and core loss Steinmetz coefficients. Allow defining matrix connections. Process to create a frequency dependent R/L model which can be imported into ANSYS Simplorer as a Maxwell Dynamic Eddy Current component.
  596. -
  597. Energy Description V1
  598. Supports Ansys: 2019 R2, 2019 R3, 2020 R1, 2020 R2
  599. Target Application: Mechanical
  600. The extension allows evaluation of the time histories of the energies like; stiffness energy, kinetic energy, damping energy, work done by external load, artificial energy due to hourglass control/drill stiffnes or due to contact stabilization damping, and artificial energy due to nonlinear stabilization
  601. -
  602. Explicit Time Step V2
  603. Supports Ansys: 19
  604. Target Application: Mechanical
  605. Estimate and Description the Courant-Friedrichs-Lewy (CFL) time step for Explicit Dynamics analyses, based on the currently-defined mesh and material properties, prior to executing the solution [Contains source code]
  606. -
  607. Explicit Time Step V1
  608. Supports Ansys: 17
  609. Target Application: Mechanical
  610. Estimate and Description the Courant-Friedrichs-Lewy (CFL) time step for Explicit Dynamics analyses, based on the currently-defined mesh and material properties, prior to executing the solution [Contains source code]
  611. -
  612. Explicit Time Step V1
  613. Supports Ansys: 18
  614. Target Application: Mechanical
  615. Estimate and Description the Courant-Friedrichs-Lewy (CFL) time step for Explicit Dynamics analyses, based on the currently-defined mesh and material properties, prior to executing the solution [Contains source code]
  616. -
  617. Export Figures V201.6
  618. Supports Ansys: 19, 19.1, 19.2, 2019 R1, 2019 R2, 2019 R3, 2020 R1, 2020 R2
  619. Target Application: Mechanical
  620. Utility tool to export all defined figures in the model tree as png files to a custom folder or to the projects "user_files".
  621. -
  622. Export Figures V201.5
  623. Supports Ansys: 19, 19.1, 19.2, 2019 R1, 2019 R2, 2019 R3, 2020 R1
  624. Target Application: Mechanical
  625. Utility tool to export all defined figures in the model tree as png files to a custom folder or to the projects 'user_files'.
  626. -
  627. Export Figures V4
  628. Supports Ansys: 19
  629. Target Application: Mechanical
  630. Export all defined figures in the model tree as png files to a custom folder or to the projects user_files
  631. -
  632. Export Figures V3
  633. Supports Ansys: 18
  634. Target Application: Mechanical
  635. Export all defined Figures in the model tree as png files to a selected folder or to the project directory user_files
  636. -
  637. Export Figures V2
  638. Supports Ansys: 17, 17.1, 17.2
  639. Target Application: Mechanical
  640. Export all defined Figures in the model tree as png files to a selected folder or to the project directory user_files
  641. -
  642. Extended Probe V1.1
  643. Supports Ansys: 17, 17.1, 17.2
  644. Target Application: Mechanical
  645. Inspect deformed positions, angles and distances between nodes [Contains source code]
  646. -
  647. External CAD Bridge V2
  648. Supports Ansys: 19, 19.1
  649. Target Application: Workflow
  650. Demonstrate how to create an application that integrates parametric study for non-ANSYS CAD Modeling programs [Contains source code]
  651. -
  652. External CAD Bridge V1
  653. Supports Ansys: 17
  654. Target Application: Workflow
  655. Demonstrate how to create an application that integrates parametric study for non-ANSYS CAD Modeling programs [Contains source code]
  656. -
  657. External CAD Bridge V1
  658. Supports Ansys: 18
  659. Target Application: Workflow
  660. Demonstrate how to create an application that integrates parametric study for non-ANSYS CAD Modeling programs [Contains source code]
  661. -
  662. Extrapolate Results V2020.2
  663. Supports Ansys: 2020 R1, 2020 R2
  664. Target Application: Mechanical
  665. This app facilitates users to extrapolate the results to corner nodes of the element. This will extremely useful when the user needs result quantities on the exterior surface of the model or a nodal component.
  666. -
  667. FE Info V10.2
  668. Supports Ansys: 2019 R3
  669. Target Application: Mechanical
  670. Expose node and element related information, such as element number, node number, nodal coordinates etc...
  671. -
  672. FE Info V10.1
  673. Supports Ansys: 19, 19.1, 19.2, 2019 R1
  674. Target Application: Mechanical
  675. Expose node and element related information
  676. -
  677. FE Info V9.8
  678. Supports Ansys: 19, 19.1, 19.2
  679. Target Application: Mechanical
  680. Expose node and element related information
  681. -
  682. FE Info V9.7
  683. Supports Ansys: 17, 17.1, 17.2
  684. Target Application: Mechanical
  685. Expose node and element related information
  686. -
  687. FE Info V9.7
  688. Supports Ansys: 18, 18.1, 18.2
  689. Target Application: Mechanical
  690. Expose node and element related information
  691. -
  692. FSI Transient Load Mapping V4
  693. Supports Ansys: 17, 17.1, 17.2
  694. Target Application: Mechanical
  695. Map transient CFD results to thermal or structural analysis including the definition of load steps. Include CFD-post macros that also export transient data to csv files for use in External Data System for native transient data mapping
  696. -
  697. Fatigue Scanning V201.8
  698. Supports Ansys: 19.2, 2019 R1, 2019 R2, 2019 R3, 2020 R1, 2020 R2
  699. Target Application: Mechanical
  700. Post processing tool to evaluate maximum stress or strain range from a selected range of solution steps or a Solution Combination. Results are saved in a csv file for external fatigue analysis and Descriptionting using "CSV Description"
  701. -
  702. Fatigue Scanning V201.7
  703. Supports Ansys: 19, 19.1, 19.2, 2019 R1, 2019 R2, 2019 R3, 2020 R1
  704. Target Application: Mechanical
  705. Post processing tool to evaluate maximum stress or strain range from a selected range of solution steps or a Solution Combination. Results are saved in a csv file for external fatigue analysis and Descriptionting using 'CSV Description'.
  706. -
  707. Fatigue Scanning V5
  708. Supports Ansys: 18
  709. Target Application: Mechanical
  710. Post processing tool to evaluate maximum stress or strain range from a selected range of solution steps. Results are saved in a csv file for external fatigue analysis and Descriptionting using CSV Description
  711. -
  712. Fatigue Scanning V4
  713. Supports Ansys: 17, 17.1, 17.2
  714. Target Application: Mechanical
  715. Post processing tool to evaluate maximum stress or strain range from a selected range of solution steps. Results are saved in a csv file for external fatigue analysis and Descriptionting using CSV Description
  716. -
  717. Figures Manager V2.5
  718. Supports Ansys: 2020 R1, 2020 R2, 2021 R1, 2021 R2, 2022 R1
  719. Target Application: Mechanical
  720. The ACT extension allows efficient change of graphical preferences of multiple result Figures from the Mechanical Outline tree. Figure properties are for each Figure displayed in a synoptic table and can be changed by multiple row selection. Export of figures with advanced options is also provided.
  721. -
  722. Figures Manager V2.1
  723. Supports Ansys: 2020 R1, 2020 R2
  724. Target Application: Mechanical
  725. The ACT extension allows efficient change of graphical preferences of multiple result Figures from the Mechanical Outline tree. Figure properties are for each Figure displayed in a synoptic table and can be changed by multiple row selection. Export of figures with advanced options is also provided.
  726. -
  727. Flatness Defect V1.1
  728. Supports Ansys: 19, 19.1, 19.2
  729. Target Application: Mechanical
  730. Flatness defect evaluation of plane surfaces under loading
  731. -
  732. Flatness Defect V1
  733. Supports Ansys: 17
  734. Target Application: Mechanical
  735. Flatness defect evaluation of plane surfaces under loading
  736. -
  737. Follower Loads V7
  738. Supports Ansys: 19, 19.1, 19.2
  739. Target Application: Mechanical
  740. Create follower forces and moments to follow geometric deformation. [Contains source code]
  741. -
  742. Follower Loads V6
  743. Supports Ansys: 17, 17.1, 17.2
  744. Target Application: Mechanical
  745. Create follower forces and moments to follow geometric deformation. [Contains source code]
  746. -
  747. Full Factorial DOE V1
  748. Supports Ansys: 18, 18.1
  749. Target Application: DesignXplorer
  750. Expose a new DOE type in ANSYS DesignXplorer: Full Factorial, supporting up to 10 input parameters, to generate all combinations of parameter levels
  751. -
  752. Full Factorial DOE V1
  753. Supports Ansys: 17, 17.1, 17.2
  754. Target Application: DesignXplorer
  755. Expose a new DOE type in ANSYS DesignXplorer: Full Factorial, supporting up to 10 input parameters, to generate all combinations of parameter levels
  756. -
  757. Function Loading V3
  758. Supports Ansys: 19
  759. Target Application: Mechanical
  760. Apply a load based on a user-defined input function that can contain multiple spatial variables. Support a variable pressure, variable line pressure and a variable heat flux
  761. -
  762. Function Loading V3
  763. Supports Ansys: 18, 18.1, 18.2
  764. Target Application: Mechanical
  765. Apply a load based on a user-defined input function that can contain multiple spatial variables. Support a variable pressure, variable line pressure and a variable heat flux
  766. -
  767. General Axisymmetric Converter V1
  768. Supports Ansys: 19
  769. Target Application: Mechanical
  770. Convert 2D geometry to 3D general axisymmetric elements (geometric axisymmetry with non-axisymmetric loading). See APDL element 272 or 273 for general features. Introduce custom constraint for rigid constraint equations for working with new axisymmetric sections [Contains source code]
  771. -
  772. Gerotor toolkit V1
  773. Supports Ansys: 2022 R1
  774. Target Application: Fluent
  775. Gerotor toolkit is a Fluent based automated solution for design and analysis of gerotor pumps. Through automation, it reduces a few hours manual preprocessing and setup work to a few minutes machine operations.
  776. -
  777. Gradient Extension V1.1
  778. Supports Ansys: 2019 R2, 2019 R3, 2020 R1, 2020 R2, 2021 R1
  779. Target Application: Mechanical
  780. The application is a post-treatment based ACT extension designed for Mechanical. It is compatible with all versions of ANSYS Workbench from V2019R2 to V2021R1.
  781. -
  782. Gradient Extension .1
  783. Supports Ansys: 2019 R2, 2019 R3, 2020 R1
  784. Target Application: Mechanical
  785. The application is a post-treatment based ACT extension designed for Mechanical. It is compatible with V2019R2, V2019R3 and V2020R1 versions of ANSYS Workbench.
  786. -
  787. Heat Balance V1.1
  788. Supports Ansys: 19.1
  789. Target Application: Mechanical
  790. Creates Heat Probes for BCs and Contacts, and Export Results and Heat Balance in an Excel File located in the user_files directory
  791. -
  792. Hip Implant Analysis V2
  793. Supports Ansys: 19
  794. Target Application: AIM
  795. Automate the structural analysis of a hip implant based on ASTM F2996-13. This wizard leads you through the steps of Geometry Import, Material Property definition, Boundary Condition specification, Solution and Results evaluation [Contains source code]
  796. -
  797. Hip Implant Analysis V1.1
  798. Supports Ansys: 18
  799. Target Application: AIM
  800. Automate the structural analysis of a hip implant based on ASTM F2996-13. This wizard leads you through the steps of Geometry Import, Material Property definition, Boundary Condition specification, Solution and Results evaluation [Contains source code]
  801. -
  802. Hip Implant Analysis V1
  803. Supports Ansys: 17.1
  804. Target Application: AIM
  805. Automate the structural analysis of a hip implant based on ASTM F2996-13. This wizard leads you through the steps of Geometry Import, Material Property definition, Boundary Condition specification, Solution and Results evaluation [Contains source code]
  806. -
  807. Honeycomb Creator V2
  808. Supports Ansys: 17, 17.1, 17.2
  809. Target Application: DesignModeler
  810. Easily create honeycomb core models from a few simple cell properties and bulk size specifications. [Contains source code]
  811. -
  812. Hot Keys V1.1
  813. Supports Ansys: 18
  814. Target Application: Mechanical
  815. Expose additional graphics action Hotkeys in Mechanical (and Meshing) application for quick access to some common tasks
  816. -
  817. Hot Keys V1.1
  818. Supports Ansys: 17, 17.1, 17.2
  819. Target Application: Mechanical
  820. Expose additional graphics action Hotkeys in Mechanical (and Meshing) application for quick access to some common tasks
  821. -
  822. Hot Keys Customizer V1
  823. Supports Ansys: 19
  824. Target Application: Mechanical
  825. Allow a user to assign their preferred hot keys (keyboard shortcuts) to custom scripted actions [Contains source code]
  826. -
  827. Hot Spot Finder V1
  828. Supports Ansys: 19, 19.1, 19.2
  829. Target Application: Mechanical
  830. Find and mark high stress areas in a model. Pinball radius ensures no duplicate areas are found. Optional local coordinate systems can be generated for local mesh refinement
  831. -
  832. Hydrostatic Fluid V202.1
  833. Supports Ansys: 2020 R1, 2020 R2
  834. Target Application: Mechanical
  835. Expose hydrostatic fluid elements in Mechanical
  836. -
  837. Hydrostatic Fluid V2
  838. Supports Ansys: 18, 18.1
  839. Target Application: Mechanical
  840. Expose hydrostatic fluid elements in Mechanical
  841. -
  842. Hydrostatic Fluid V2
  843. Supports Ansys: 19, 19.1
  844. Target Application: Mechanical
  845. Expose hydrostatic fluid elements in Mechanical
  846. -
  847. Hydrostatic Fluid V1
  848. Supports Ansys: 17, 17.1
  849. Target Application: Mechanical
  850. Expose hydrostatic fluid elements in Mechanical
  851. -
  852. Hydrostatic Fluid V1
  853. Supports Ansys: 17.2
  854. Target Application: Mechanical
  855. Expose hydrostatic fluid elements in Mechanical
  856. -
  857. Icepak BC Mapping V1
  858. Supports Ansys: 2020 R1
  859. Target Application: Electronics Desktop
  860. This ACT helps automate the process of mapping Boundary Conditions (BCs) from one AEDT Icepak design to another.
  861. -
  862. Impact Velocity V1
  863. Supports Ansys: 17, 17.1, 17.2
  864. Target Application: Mechanical
  865. Calculate the impact velocity for a transient structural simulation. The impact is based on the contact interaction between two or more bodies/parts
  866. -
  867. Import Parameters and DOE V2
  868. Supports Ansys: 18, 18.1
  869. Target Application: DesignXplorer
  870. Import parameters and a solved Design of Experiments into a parameterless Workbench project for the purpose of performing a Response Surface Optimization
  871. -
  872. Import Parameters and DOE V2
  873. Supports Ansys: 17, 17.1
  874. Target Application: DesignXplorer
  875. Import parameters and a solved Design of Experiments into a parameterless Workbench project for the purpose of performing a Response Surface Optimization
  876. -
  877. Inertial Cones V1
  878. Supports Ansys: 19, 19.1
  879. Target Application: Mechanical
  880. Creates a graphical object that displays the inertia properties of the current FEM
  881. -
  882. Infineon Library V2
  883. Supports Ansys: 19, 19.1
  884. Target Application: Systems
  885. Give the ability to install and use the Infineon device library in Simplorer
  886. -
  887. Infineon Library V1.1
  888. Supports Ansys: 18
  889. Target Application: Systems
  890. Give the ability to install and use the Infineon device library in Simplorer
  891. -
  892. Infineon Library V1
  893. Supports Ansys: 17
  894. Target Application: Systems
  895. Give the ability to install and use the Infineon device library in Simplorer
  896. -
  897. Initial Deformation V201.4
  898. Supports Ansys: 19.2, 2019 R1, 2019 R2, 2019 R3, 2020 R1, 2020 R2, 2021 R1
  899. Target Application: Mechanical
  900. ANSYS Mechanical pre-processing tool to map a deformed shape or solution combination of multiple environments, e.g. structural and buckling, as an initial condition to a structural nonlinear buckling or thermal analysis
  901. -
  902. Initial Deformation V201.3
  903. Supports Ansys: 19.2, 2019 R1, 2019 R2, 2019 R3, 2020 R1
  904. Target Application: Mechanical
  905. ANSYS Mechanical pre-processing tool to map a deformed shape or solution combination of multiple environments, e.g. structural and buckling, as an initial condition to a structural nonlinear buckling or thermal analysis.
  906. -
  907. Initial Deformation V192.2
  908. Supports Ansys: 19.2
  909. Target Application: Mechanical
  910. ANSYS Mechanical pre-processing tool to map a deformed shape or solution combination of multiple environments, e.g. structural and buckling, as an initial condition to a structural nonlinear buckling or thermal analysis.
  911. -
  912. Initial Deformation V180.1
  913. Supports Ansys: 18
  914. Target Application: Mechanical
  915. ANSYS Mechanical pre-processing tool to map a deformed shape or solution combination of multiple environments, e.g. structural and buckling, as an initial condition to a structural nonlinear buckling or thermal analysis.
  916. -
  917. Installer for Twin Builder Fluid Power Library V192.1
  918. Supports Ansys: 19.2
  919. Target Application: Systems
  920. The installer to install the commercial Twin Builder Fluid Power libraries (compatible with Twin Builder 2018.2) onto user's machine. Includes Hydraulics, Pneumatics and Modelon Base libraries. Please note that the Twin Builder product and Twin Builder Fluid Power Library licenses need to be purchased separately from ANSYS.
  921. -
  922. Installer for Twin Builder Heating and Cooling Library V1.1
  923. Supports Ansys: 19.2
  924. Target Application: Systems
  925. The installer to install the commercial Twin Builder Heating and Cooling libraries (compatible with Twin Builder 2018.2) onto user's machine. Includes Liquid Cooling library, Vapor Cycle library, Heat Exchanger and Modelon Base libraries. Please note that the Twin Builder product and Twin Builder Heating and Cooling Library licenses need to be purchased separately from ANSYS.
  926. -
  927. Internal Flow V2
  928. Supports Ansys: 19
  929. Target Application: AIM
  930. Custom template to enable simulation of internal flow effects in pipework systems including thermal and stress effects in the containing system (incompressible flow up to Mach 0.3) [Contains source code]
  931. -
  932. Internal Flow V1
  933. Supports Ansys: 17.1, 17.2
  934. Target Application: AIM
  935. Custom template to enable simulation of internal flow effects in pipework systems including thermal and stress effects in the containing system [Contains source code]
  936. -
  937. Internal Flow V1
  938. Supports Ansys: 18
  939. Target Application: AIM
  940. Custom template to enable simulation of internal flow effects in pipework systems including thermal and stress effects in the containing system [Contains source code]
  941. -
  942. Internal Layer V1.1
  943. Supports Ansys: 19.2, 2019 R1
  944. Target Application: Mechanical
  945. Changes the material assignment of a layer of elements given a user-defined thickness that characterizes this layer
  946. -
  947. Internal Layer V1
  948. Supports Ansys: 19.2, 2019 R1
  949. Target Application: Mechanical
  950. Changes the material assignment of a layer of elements given a user-defined thickness that characterizes this layer
  951. -
  952. Iterative Meshing V3
  953. Supports Ansys: 19
  954. Target Application: Meshing
  955. Allow to perform multiple trials in mesh generation and auto-select the best mesh from those
  956. -
  957. Iterative Meshing V2.1
  958. Supports Ansys: 17
  959. Target Application: Meshing
  960. Allow to perform multiple trials in mesh generation and auto-select the best mesh from those
  961. -
  962. Iterative Meshing V2.1
  963. Supports Ansys: 18
  964. Target Application: Meshing
  965. Allow to perform multiple trials in mesh generation and auto-select the best mesh from those
  966. -
  967. Japanese GUI Installer for Mechanical APDL V22.1
  968. Supports Ansys: 2022 R1
  969. Target Application: Mechanical
  970. Japanese GUI Installer is an installer of Japanese GUI and message text files for Mechanical APDL.
  971. -
  972. Japanese GUI Installer for Mechanical APDL V21.2
  973. Supports Ansys: 2021 R2
  974. Target Application: Mechanical
  975. Japanese GUI Installer is an installer of Japanese GUI and message text files for Mechanical APDL
  976. -
  977. Japanese GUI Installer for Mechanical APDL V21.1
  978. Supports Ansys: 2021 R1
  979. Target Application: Mechanical
  980. Japanese GUI Installer is an installer of Japanese GUI and message text files for Mechanical APDL
  981. -
  982. Japanese GUI Installer for Mechanical APDL V20.1
  983. Supports Ansys: 2020 R1
  984. Target Application: Mechanical
  985. Japanese GUI Installer is an installer of Japanese GUI and message text files for Mechanical APDL
  986. -
  987. LHS with Parameter Relationships V1
  988. Supports Ansys: 18, 18.1
  989. Target Application: DesignXplorer
  990. Expose a new DOE type in ANSYS DesignXplorer: Latin Hypercube Sampling (LHS) supporting inequalities or if-else relationships between input parameters
  991. -
  992. LHS with Parameter Relationships V1
  993. Supports Ansys: 17, 17.1, 17.2
  994. Target Application: DesignXplorer
  995. Expose a new DOE type in ANSYS DesignXplorer: Latin Hypercube Sampling (LHS) supporting inequalities or if-else relationships between input parameters
  996. -
  997. LS-Dyna Structured-ALE V1
  998. Supports Ansys: 19.1, 19.2
  999. Target Application: Mechanical
  1000. Provides a user interactive interface for building and running Structured-ALE (Arbitrary Lagrangian Eulerian Method) analysis in Workbench LS-DYNA. Solve high speed Fluid-Structural-Interaction problems such as under water impact and bird strike more easily.
  1001. -
  1002. LSP Model Convertor V2021.1
  1003. Supports Ansys: 2021 R1
  1004. Target Application: Mechanical
  1005. LSP Model Convertor is an act extension wizard. It can convert external model type from abaqus, radioss, nastran, ideas, pamcrash and fluent_msh file to LS-Dyna keyword format via LS_PrePost.
  1006. -
  1007. LST_PrePost V2021.1
  1008. Supports Ansys: 2021 R1
  1009. Target Application: Workflow
  1010. This Application will allow LS-Dyna user launch LS-PrePost for postprocessing within Ansys Workbench using project schematic. It also build LST_LSPP toolbar in Mechanical which are includes 6 icons(run features of LS-PrePost at Mechanical).
  1011. -
  1012. License Reporter V3
  1013. Supports Ansys: 19
  1014. Target Application: Workflow
  1015. Visualize a summary of current license usage information of users organization
  1016. -
  1017. License Reporter V2
  1018. Supports Ansys: 17, 17.1
  1019. Target Application: Workflow
  1020. Visualize a summary of current license usage information of users organization
  1021. -
  1022. License Reporter V2
  1023. Supports Ansys: 18
  1024. Target Application: Workflow
  1025. Visualize a summary of current license usage information of users organization
  1026. -
  1027. LimitState:FORM V3.5
  1028. Supports Ansys: 19, 19.1, 19.2
  1029. Target Application: Mechanical
  1030. Optimization tool for designing strong, light components, particularly those suitable for additive manufacturing (3D printing). Provide a bridge between LimitState:FORM and ANSYS Mechanical, allowing one-click FE analysis of a LimitState:FORM design
  1031. -
  1032. LimitState:FORM V3
  1033. Supports Ansys: 17.2
  1034. Target Application: Mechanical
  1035. Optimization tool for designing strong, light components, particularly those suitable for additive manufacturing (3D printing). Provide a bridge between LimitState:FORM and ANSYS Mechanical, allowing one-click FE analysis of a LimitState:FORM design
  1036. -
  1037. Linear Buckling V1
  1038. Supports Ansys: 18.1
  1039. Target Application: AIM
  1040. Guided Simulation to select a geometry on which to perform a Linear Buckling analysis. Calculate the Euler Buckling Load [Contains source code]
  1041. -
  1042. Linearized Stresses V201
  1043. Supports Ansys: 2020 R1
  1044. Target Application: Mechanical
  1045. Customized result object for efficient post-processing of linearized stress results. Define paths while reviewing stress results. Auto scope to paths. Multiple paths in a single result object. Export to Excel. Ignore or include through thickness bending.
  1046. -
  1047. Linearized Stresses V193
  1048. Supports Ansys: 19, 19.1, 19.2, 2019 R1
  1049. Target Application: Mechanical
  1050. Customized result object for efficient post-processing of linearized stress results. Define paths while reviewing stress results. Auto scope to paths. Multiple paths in a single result object. Export to Excel. Ignore or include through thickness bending.
  1051. -
  1052. Linearized Stresses V192.9
  1053. Supports Ansys: 19, 19.1, 19.2
  1054. Target Application: Mechanical
  1055. Create Linearized Stresses results for Static and Transient Structural analyses and export them to MS Excel. [Contains source code]
  1056. -
  1057. Linearized Stresses V190.8
  1058. Supports Ansys: 19
  1059. Target Application: Mechanical
  1060. Create Linearized Stresses results for Static and Transient Structural analyses and export them to MS Excel. [Contains source code]
  1061. -
  1062. Linearized Stresses V6
  1063. Supports Ansys: 18, 18.1, 18.2
  1064. Target Application: Mechanical
  1065. Create Linearized Stresses results for Static and Transient Structural analyses and export them to MS Excel. [Contains source code]
  1066. -
  1067. Linearized Stresses V6
  1068. Supports Ansys: 17, 17.1, 17.2
  1069. Target Application: Mechanical
  1070. Create Linearized Stresses results for Static and Transient Structural analyses and export them to MS Excel. [Contains source code]
  1071. -
  1072. MATLAB Optimizers for DX V3.8
  1073. Supports Ansys: 19.2
  1074. Target Application: DesignXplorer
  1075. Expose MATLAB optimization algorithms and user programs in the Optimization component of ANSYS DesignXplorer [Contains source code]
  1076. -
  1077. MATLAB Optimizers for DX V3.7
  1078. Supports Ansys: 19.1
  1079. Target Application: DesignXplorer
  1080. Expose MATLAB optimization algorithms and user programs in the Optimization component of ANSYS DesignXplorer [Contains source code]
  1081. -
  1082. MATLAB Optimizers for DX V3.6
  1083. Supports Ansys: 19
  1084. Target Application: DesignXplorer
  1085. Expose MATLAB optimization algorithms and user programs in the Optimization component of ANSYS DesignXplorer [Contains source code]
  1086. -
  1087. MATLAB Optimizers for DX V3.5
  1088. Supports Ansys: 18.2
  1089. Target Application: DesignXplorer
  1090. Expose MATLAB optimization algorithms and user programs in the Optimization component of ANSYS DesignXplorer [Contains source code]
  1091. -
  1092. MATLAB Optimizers for DX V3.4
  1093. Supports Ansys: 18.1
  1094. Target Application: DesignXplorer
  1095. Expose MATLAB optimization algorithms and user programs in the Optimization component of ANSYS DesignXplorer [Contains source code]
  1096. -
  1097. MATLAB Optimizers for DX V3.3
  1098. Supports Ansys: 18
  1099. Target Application: DesignXplorer
  1100. Expose MATLAB optimization algorithms and user programs in the Optimization component of ANSYS DesignXplorer [Contains source code]
  1101. -
  1102. MATLAB Optimizers for DX V3.2
  1103. Supports Ansys: 17.2
  1104. Target Application: DesignXplorer
  1105. Expose MATLAB optimization algorithms and user programs in the Optimization component of ANSYS DesignXplorer [Contains source code]
  1106. -
  1107. MATLAB Optimizers for DX V3.1
  1108. Supports Ansys: 17.1
  1109. Target Application: DesignXplorer
  1110. Expose MATLAB optimization algorithms and user programs in the Optimization component of ANSYS DesignXplorer [Contains source code]
  1111. -
  1112. MATLAB Optimizers for DX V3
  1113. Supports Ansys: 17
  1114. Target Application: DesignXplorer
  1115. Expose MATLAB optimization algorithms and user programs in the Optimization component of ANSYS DesignXplorer [Contains source code]
  1116. -
  1117. Match Control Check V1.4
  1118. Supports Ansys: 17
  1119. Target Application: Mechanical
  1120. Highlight topology problems of match control and cyclic symmetry controls. Will select problematic entities from both sides (hanging edges, vertices, etc...)
  1121. -
  1122. Material Variation V201.2
  1123. Supports Ansys: 19.2, 2019 R1, 2019 R2, 2019 R3, 2020 R1
  1124. Target Application: Mechanical
  1125. Specify a linear variation of material properties over a region of your geometry
  1126. -
  1127. Material Variation V192.2
  1128. Supports Ansys: 19.2, 2019 R1, 2019 R2
  1129. Target Application: Mechanical
  1130. Specify a linear variation of material properties over a region of your geometry
  1131. -
  1132. Material Variation V1
  1133. Supports Ansys: 18
  1134. Target Application: Mechanical
  1135. Specify a linear variation of material properties over a region of the geometry
  1136. -
  1137. Material Variation V1
  1138. Supports Ansys: 19
  1139. Target Application: Mechanical
  1140. Specify a linear variation of material properties over a region of the geometry
  1141. -
  1142. Maxwell Technologies Library V2
  1143. Supports Ansys: 19, 19.1
  1144. Target Application: Systems
  1145. Give the user the ability to install and use the MaxwellTechnologies Ultracapacitor library in Simplorer. It includes 13 manufacture device models
  1146. -
  1147. Maxwell Technologies Library V1.1
  1148. Supports Ansys: 18
  1149. Target Application: Systems
  1150. Give the user the ability to install and use the MaxwellTechnologies Ultracapacitor library in Simplorer. It includes 13 manufacture device models
  1151. -
  1152. Maxwell Technologies Library V1
  1153. Supports Ansys: 17
  1154. Target Application: Systems
  1155. Give the user the ability to install and use the MaxwellTechnologies Ultracapacitor library in Simplorer. It includes 13 manufacture device models
  1156. -
  1157. Mechanical Custom Interface V1
  1158. Supports Ansys: 19
  1159. Target Application: Mechanical
  1160. Work in conjunction with the app Hot Keys Customizer to introduce custom and more efficient workflows for ANSYS Mechanical [Contains source code]
  1161. -
  1162. Mechanical Embedded DesignLife V201
  1163. Supports Ansys: 2020 R1
  1164. Target Application: Mechanical
  1165. Expose nCode DesignLife in Mechanical allowing the user to perform fatigue analysis.
  1166. -
  1167. Mesh Settings V201.7
  1168. Supports Ansys: 19, 19.1, 19.2, 2019 R1, 2019 R2, 2019 R3, 2020 R1
  1169. Target Application: Meshing
  1170. Mesh utility tool to export/import all global mesh settings and local mesh controls in Mechanical meshing for re-use in different Workbench projects
  1171. -
  1172. Mesh Settings V6
  1173. Supports Ansys: 19
  1174. Target Application: Meshing
  1175. Mesh utility tool to export/import all global mesh settings and local mesh controls in Mechanical meshing for re-use in different Workbench projects
  1176. -
  1177. Mesh Settings V5
  1178. Supports Ansys: 18, 18.1
  1179. Target Application: Meshing
  1180. Mesh utility tool to export/import all global mesh settings for re-use in different Workbench projects
  1181. -
  1182. Mesh Settings V3
  1183. Supports Ansys: 17, 17.1, 17.2
  1184. Target Application: Meshing
  1185. Mesh utility tool to export/import all global mesh settings for re-use in different Workbench projects
  1186. -
  1187. MinervaImporter V2022.1
  1188. Supports Ansys: 2022 R1
  1189. Target Application: Mechanical
  1190. This app allows you to preview and import files from Ansys Minerva directly into Ansys Mechanical, from the Mechanical GUI.
  1191. -
  1192. MinervaImporter V2
  1193. Supports Ansys: 2021 R1
  1194. Target Application: Mechanical
  1195. Import commands, geometry, meshes, results, and condensed parts from an ANSYS Minerva server
  1196. -
  1197. MinervaImporter V1
  1198. Supports Ansys: 2020 R2
  1199. Target Application: Mechanical
  1200. Import commands, geometry, results, and condensed parts from an ANSYS Minerva server
  1201. -
  1202. Modal Mass V3
  1203. Supports Ansys: 19
  1204. Target Application: Mechanical
  1205. [Modal Mass is now a native feature in ANSYS Mechanical] Allow users to easily view a modal analysis' effective mass data without searching through the Solver Output file. [Contains source code]
  1206. -
  1207. Modal Mass V2
  1208. Supports Ansys: 17, 17.1, 17.2
  1209. Target Application: Mechanical
  1210. [Modal Mass is now a native feature in ANSYS Mechanical] Allow users to easily view a modal analysis' effective mass data without searching through the Solver Output file. [Contains source code]
  1211. -
  1212. Modal Mass V2
  1213. Supports Ansys: 18
  1214. Target Application: Mechanical
  1215. [Modal Mass is now a native feature in ANSYS Mechanical] Allow users to easily view a modal analysis' effective mass data without searching through the Solver Output file. [Contains source code]
  1216. -
  1217. Modal Profile Export V1
  1218. Supports Ansys: 19
  1219. Target Application: Mechanical
  1220. This app will export a mode shape from a Mechanical modal analysis. The profile exported can be read in to CFX for performing a blade flutter simulation.
  1221. -
  1222. Moment of Inertia Calculation V1
  1223. Supports Ansys: 19
  1224. Target Application: Electronics Desktop
  1225. Calculate moment of inertia of 2D and 3D objects in Ansys Maxwell and create a Band with assigned value. Allow to calculate the value not depending on it complicity and provide exact value. Help to analyze a model consider mechanical transient processes
  1226. -
  1227. Moment of Inertia Calculation V1.1
  1228. Supports Ansys: 19, 19.1, 19.2, 2019 R1
  1229. Target Application: Electronics Desktop
  1230. Calculate moment of inertia of 2D and 3D objects in Ansys Maxwell and create a Band with assigned value. Allow to calculate the value not depending on it complicity and provide exact value. Help to analyze a model consider mechanical transient processes
  1231. -
  1232. Moment of Inertia Calculation V1.1
  1233. Supports Ansys: 19, 19.1, 19.2, 2019 R1
  1234. Target Application: Electronics Desktop
  1235. Calculate moment of inertia of 2D and 3D objects in Ansys Maxwell and create a Band with assigned value. Allow to calculate the value not depending on it complicity and provide exact value. Help to analyze a model consider mechanical transient processes
  1236. -
  1237. Moment of Inertia Calculation V1
  1238. Supports Ansys: 19
  1239. Target Application: Electronics Desktop
  1240. Calculate moment of inertia of 2D and 3D objects in Ansys Maxwell and create a Band with assigned value. Allow to calculate the value not depending on it complicity and provide exact value. Help to analyze a model consider mechanical transient processes
  1241. -
  1242. Motion Loads V2.1
  1243. Supports Ansys: 18, 18.1, 18.2
  1244. Target Application: Mechanical
  1245. Apply motion loads issued from a Rigid body analysis in a static structural analysis [Contains source code]
  1246. -
  1247. Moving Heat Source V4.1
  1248. Supports Ansys: 17, 17.1, 17.2
  1249. Target Application: Mechanical
  1250. Facilitate the definition of a moving heat source in Workbench Mechanical [Contains source code]
  1251. -
  1252. Multi Object Export V1.1
  1253. Supports Ansys: 17, 17.1, 17.2
  1254. Target Application: Mechanical
  1255. Export results for multiple objects at once and have the data combined into a single output file, avoiding the need for multiple exports and manual collection/combination of the data. [Contains source code]
  1256. -
  1257. MultiStep Parametric Loads V2
  1258. Supports Ansys: 18, 18.1
  1259. Target Application: Mechanical
  1260. Expose new parametric structural loads for multistep analyses (incl. transient). Supported loads include Force, Pressure, Moment, and Displacement.
  1261. -
  1262. MultiStep Parametric Loads V1
  1263. Supports Ansys: 17, 17.1
  1264. Target Application: Mechanical
  1265. Expose new parametric structural loads for multistep analyses. Supported loads include Force, Pressure, Moment, and Displacement.
  1266. -
  1267. Multiscale Analysis System V2.2
  1268. Supports Ansys: 19.2
  1269. Target Application: Mechanical
  1270. Evaluate anisotropic material constants for non-homogeneous material which is Lattice structure, Composite (e.g. FRP using short or long fiber), Honeycomb and so on. Template function to create microstructure model is also included in Design Modeler and SpaceClaim
  1271. -
  1272. Multiscale Analysis System V2
  1273. Supports Ansys: 19
  1274. Target Application: Mechanical
  1275. Evaluate anisotropic material constants for non-homogeneous material which is Lattice structure, Composite (e.g. FRP using short or long fiber), Honeycomb and so on. Template function to create microstructure model is also included in Design Modeler and SpaceClaim
  1276. -
  1277. Multiscale Analysis System V1
  1278. Supports Ansys: 18
  1279. Target Application: Mechanical
  1280. Evaluate anisotropic material constants for non-homogeneous material which is Lattice structure, Composite (e.g. FRP using short or long fiber), Honeycomb and so on. Template function to create microstructure model is also included in Design Modeler and SpaceClaim
  1281. -
  1282. NACA Airfoil Maker V2
  1283. Supports Ansys: 19
  1284. Target Application: SpaceClaim
  1285. Easily make NACA (National Advisory Committee for Aeronautics) airfoil geometry models for 3D fluid flow computations
  1286. -
  1287. NACA Airfoil Maker V1.1
  1288. Supports Ansys: 18.1
  1289. Target Application: SpaceClaim
  1290. Easily make NACA (National Advisory Committee for Aeronautics) airfoil geometry models for 3D fluid flow computations
  1291. -
  1292. NACA Airfoil Maker V1
  1293. Supports Ansys: 17, 17.1, 17.2
  1294. Target Application: DesignModeler
  1295. Easily make NACA (National Advisory Committee for Aeronautics) airfoil geometry models for 3D fluid flow computations
  1296. -
  1297. NHTSA - FMVSS 111 Rearview image testing V1
  1298. Supports Ansys: 19.4
  1299. Target Application: Workflow
  1300. This App allows you to use the ANSYS SPEOS OST camera sensor to validate automotive rearview image against the Federal Motor Vehicle Safety Standard 111 (FMVSS111) of the National Highway Traffic Safety Administration (NHTSA)
  1301. -
  1302. NLDIAG V2
  1303. Supports Ansys: 18
  1304. Target Application: Mechanical
  1305. Expose the nonlinear diagnostics (NLDIAG) functionality in Mechanical to identify or display the highly distorted elements
  1306. -
  1307. NLDIAG V2
  1308. Supports Ansys: 17, 17.1, 17.2
  1309. Target Application: Mechanical
  1310. Expose the nonlinear diagnostics (NLDIAG) functionality in Mechanical to identify or display the highly distorted elements
  1311. -
  1312. Near Field Aperture Source V1
  1313. Supports Ansys: 18
  1314. Target Application: Electronics Desktop
  1315. Model radiation fields of antennas and phased arrays without modelling geometry
  1316. -
  1317. Near Field Aperture Source V1
  1318. Supports Ansys: 17, 17.1, 17.2
  1319. Target Application: Electronics Desktop
  1320. Model radiation fields of antennas and phased arrays without modelling geometry
  1321. -
  1322. Neural Networks Package V1
  1323. Supports Ansys: 2022 R1
  1324. Target Application: Embedded Software
  1325. The Neural Networks Package for Embedded Software provides a framework for implementing embedded software based on neural networks using Ansys SCADE. The package allows to import a trained network into SCADE, using a library of common layers and activation functions.
  1326. -
  1327. OASIS-Ansys Plugin V1
  1328. Supports Ansys: 17, 17.1, 17.2
  1329. Target Application: Workflow
  1330. Allow a direct connection between Ansys Workbench and OASIS, a powerful design exploration and optimization tool that can accelerate your design process. The plugin allows for simple setup of optimizations with your Workbench models
  1331. -
  1332. OASIS-Ansys Plugin V1
  1333. Supports Ansys: 18, 18.1, 18.2
  1334. Target Application: Workflow
  1335. Allow a direct connection between Ansys Workbench and OASIS, a powerful design exploration and optimization tool that can accelerate your design process. The plugin allows for simple setup of optimizations with your Workbench models
  1336. -
  1337. Offshore V15.2
  1338. Supports Ansys: 18
  1339. Target Application: Mechanical
  1340. Expose the MAPDL offshore features in Mechanical
  1341. -
  1342. Offshore V15.1
  1343. Supports Ansys: 17
  1344. Target Application: Mechanical
  1345. Expose the MAPDL offshore features in Mechanical
  1346. -
  1347. Pan/Zoom/Rotate Dialog V4
  1348. Supports Ansys: 19
  1349. Target Application: Mechanical
  1350. Provide a dialog box with view controls for the Mechanical graphics window. The controls allow for Pan, Zoom and Rotate in a style similar to the controls available in the Mechanical APDL interface
  1351. -
  1352. Pan/Zoom/Rotate Dialog V3
  1353. Supports Ansys: 18, 18.1, 18.2
  1354. Target Application: Mechanical
  1355. Provide a dialog box with view controls for the Mechanical graphics window. The controls allow for Pan, Zoom and Rotate in a style similar to the controls available in the Mechanical APDL interface
  1356. -
  1357. Pan/Zoom/Rotate Dialog V2
  1358. Supports Ansys: 17, 17.1
  1359. Target Application: Mechanical
  1360. Provide a dialog box with view controls for the Mechanical graphics window. The controls allow for Pan, Zoom and Rotate in a style similar to the controls available in the Mechanical APDL interface
  1361. -
  1362. Parameter Sweep V3
  1363. Supports Ansys: 18, 18.1, 18.2, 19, 19.1, 19.2
  1364. Target Application: DesignXplorer
  1365. Create design points by sweeping parameter values
  1366. -
  1367. Parameter Sweep V2
  1368. Supports Ansys: 18, 18.1, 18.2, 19, 19.1
  1369. Target Application: DesignXplorer
  1370. Create design points by sweeping parameter values
  1371. -
  1372. Parameter Sweep V2
  1373. Supports Ansys: 17, 17.1
  1374. Target Application: DesignXplorer
  1375. Create design points by sweeping parameter values
  1376. -
  1377. Parametric Curves V2
  1378. Supports Ansys: 18
  1379. Target Application: DesignModeler
  1380. Create curves using parametric equations. Any valid Python equation or function can be used to generate parametric curves, with the ability to mark up to 50 independent coefficients as Workbench parameters
  1381. -
  1382. Parametric Curves V1
  1383. Supports Ansys: 17
  1384. Target Application: DesignModeler
  1385. Create curves using parametric equations. Any valid Python equation or function can be used to generate parametric curves, with the ability to mark up to 50 independent coefficients as Workbench parameters
  1386. -
  1387. Piezo and MEMS V2020.1
  1388. Supports Ansys: 2020 R1
  1389. Target Application: Mechanical
  1390. Expose Coupled Field Physics, piezo-electric and MEMS solver capabilities in Workbench.
  1391. -
  1392. Piezo and MEMS V19.3
  1393. Supports Ansys: 2019 R1
  1394. Target Application: Mechanical
  1395. Expose Coupled Field Physics, piezo-electric and MEMS solver capabilities in Workbench.
  1396. -
  1397. Piezo and MEMS V1
  1398. Supports Ansys: 18
  1399. Target Application: Mechanical
  1400. Expose piezo-electric and MEMS solver capabilities in Workbench
  1401. -
  1402. Piezo and MEMS V1
  1403. Supports Ansys: 17, 17.1
  1404. Target Application: Mechanical
  1405. Expose piezo-electric and MEMS solver capabilities in Workbench
  1406. -
  1407. Piezo and MEMS V1
  1408. Supports Ansys: 17.2
  1409. Target Application: Mechanical
  1410. Expose piezo-electric and MEMS solver capabilities in Workbench
  1411. -
  1412. Piezo and MEMS V1
  1413. Supports Ansys: 19, 19.1
  1414. Target Application: Mechanical
  1415. Expose piezo-electric and MEMS solver capabilities in Workbench
  1416. -
  1417. Porous Zone Calculator V1
  1418. Supports Ansys: 18, 18.1, 18.2
  1419. Target Application: Fluent
  1420. Calculate flow through a variety of porous models. Easily compute permeability and inertial resistance coefficients by providing velocity and pressure drop profiles from a .csv file. [Contains source code]
  1421. -
  1422. Pressure Vessels Automatic Path Creation V1
  1423. Supports Ansys: 19, 19.1
  1424. Target Application: Mechanical
  1425. Automate the creation of paths & linearized stress results to meet pressure vessels standards
  1426. -
  1427. Pressure Vessels Automatic Path Creation V3
  1428. Supports Ansys: 17, 17.1
  1429. Target Application: Mechanical
  1430. Automate the creation of paths & linearized stress results to meet pressure vessels standards
  1431. -
  1432. Pressure Vessels Automatic Path Creation V2
  1433. Supports Ansys: 18
  1434. Target Application: Mechanical
  1435. Automate the creation of paths & linearized stress results to meet pressure vessels standards
  1436. -
  1437. Prestressed Show Deformed Mesh V2
  1438. Supports Ansys: 19, 19.1
  1439. Target Application: Mechanical
  1440. Show the deformed mesh in downstream prestressed analyses
  1441. -
  1442. Prestressed Show Deformed Mesh V1.1
  1443. Supports Ansys: 18
  1444. Target Application: Mechanical
  1445. Show the deformed mesh in downstream prestressed analyses
  1446. -
  1447. Prestressed Show Deformed Mesh V1
  1448. Supports Ansys: 17
  1449. Target Application: Mechanical
  1450. Show the deformed mesh in downstream prestressed analyses
  1451. -
  1452. Prestressed Show Deformed Mesh V1
  1453. Supports Ansys: 17.1
  1454. Target Application: Mechanical
  1455. Show the deformed mesh in downstream prestressed analyses
  1456. -
  1457. Prestressed Show Deformed Mesh V1
  1458. Supports Ansys: 17.2
  1459. Target Application: Mechanical
  1460. Show the deformed mesh in downstream prestressed analyses
  1461. -
  1462. Probe Extension V1.1
  1463. Supports Ansys: 2019 R2, 2019 R3, 2020 R1, 2020 R2, 2021 R1
  1464. Target Application: Mechanical
  1465. The application is a post-treatment based ACT extension designed for Mechanical. It is compatible with all versions of ANSYS Workbench from V2019R2 to V2021R1.
  1466. -
  1467. Probe Extension V1
  1468. Supports Ansys: 2019 R2, 2019 R3, 2020 R1
  1469. Target Application: Mechanical
  1470. The application is a post-treatment based ACT extension designed for Mechanical. It is compatible with V2019R2, V2019R3 and V2020R1 versions of ANSYS Workbench.
  1471. -
  1472. Probe Extension .3
  1473. Supports Ansys: 2019 R2, 2019 R3, 2020 R1
  1474. Target Application: Mechanical
  1475. The application is a post-treatment based ACT extension designed for Mechanical. It is compatible with V2019R2, V2019R3 and V2020R1 versions of ANSYS Workbench.
  1476. -
  1477. RADARpost V1.7
  1478. Supports Ansys: 19, 19.1
  1479. Target Application: Electronics Desktop
  1480. Post-processing reports for radar signature simulations in ANSYS Electronics Desktop. Provides automatic post-processing of range (echo) profiles, waterfall Descriptions, inverse synthetic aperture radar (ISAR) images, and creation of Range-Doppler maps for dynamic radar scene simulation. A companion post-processing tool to the RADARpre ACT toolkit.
  1481. -
  1482. RADARpre V1.4
  1483. Supports Ansys: 19, 19.1
  1484. Target Application: Electronics Desktop
  1485. Automate analysis setup for simulation of radar Range Profiles, Waterfall Descriptions and Inverse Synthetic Aperture (ISAR) images in the ANSYS Electronics Desktop.
  1486. -
  1487. ROM Extract V1
  1488. Supports Ansys: 18
  1489. Target Application: Fluent
  1490. Extract Linear and Time-Invariant (LTI) Reduced Order Model (ROM) from ANSYS Fluent 3-D Computation Fluid Dynamics (CFD) simulations for system-level analysis in ANSYS Simplorer.
  1491. -
  1492. RSTMAC V1
  1493. Supports Ansys: 17, 17.1, 17.2
  1494. Target Application: Mechanical
  1495. Implement Modal Assurance Criterion calculation to compare the nodal solutions from two results files (.rst or .rstp) or from one results file and one Universal Format file (.unv)
  1496. -
  1497. Random Vibration Added Capabilities V4
  1498. Supports Ansys: 2020 R1
  1499. Target Application: Mechanical
  1500. Expose additional capabilities for random vibrations analysis or Power Spectral Density analysis (PSD). Make possible to apply a Pressure or Force PSD to a random vibration analysis. Enable the post processing of several nodes or elements at once.
  1501. -
  1502. Random Vibration Added Capabilities V2
  1503. Supports Ansys: 2019 R1
  1504. Target Application: Mechanical
  1505. Expose additional capabilities for random vibrations analysis or Power Spectral Density analysis (PSD). Make possible to apply a Pressure or Force PSD to a random vibration analysis. Enable the post processing of several nodes or elements at once [Contains source code]
  1506. -
  1507. Random Vibration Added Capabilities V1
  1508. Supports Ansys: 18.2
  1509. Target Application: Mechanical
  1510. Expose additional capabilities for random vibrations analysis or Power Spectral Density analysis (PSD). Make possible to apply a Pressure or Force PSD to a random vibration analysis. Enable the post processing of several nodes or elements at once [Contains source code]
  1511. -
  1512. Reaction Forces V3.1
  1513. Supports Ansys: 19, 19.1, 19.2, 2019 R1
  1514. Target Application: Mechanical
  1515. Create Probes for BCs, Contacts, Beams, Springs and Joints and Export Results in an Excel File located in the user_files directory
  1516. -
  1517. Reaction Forces V3
  1518. Supports Ansys: 19
  1519. Target Application: Mechanical
  1520. Create Probes for BCs, Contacts, Beams, Springs and Joints and Export Results in an Excel File located in the user_files directory
  1521. -
  1522. Reaction Forces V2
  1523. Supports Ansys: 18, 18.1, 18.2
  1524. Target Application: Mechanical
  1525. Create Probes for BCs, Contacts, Beams, Springs and Joints and Export Results in an Excel File located in the user_files directory
  1526. -
  1527. Reduced Integration V1
  1528. Supports Ansys: 18
  1529. Target Application: Mechanical
  1530. Change the element behavior to reduced integration for lower order shell elements
  1531. -
  1532. Relative Displacement V4
  1533. Supports Ansys: 18, 18.1, 18.2, 19
  1534. Target Application: Mechanical
  1535. Compute Relative Displacement based on a coordinate system created using nodes in the model those can move during the simulation
  1536. -
  1537. Relative Displacement V3.4
  1538. Supports Ansys: 17, 17.1, 17.2
  1539. Target Application: Mechanical
  1540. Compute Relative Displacement based on a coordinate system created using nodes in the model those can move during the simulation
  1541. -
  1542. Relative Displacement V3.4
  1543. Supports Ansys: 18
  1544. Target Application: Mechanical
  1545. Compute Relative Displacement based on a coordinate system created using nodes in the model those can move during the simulation
  1546. -
  1547. Report Generator V201.12
  1548. Supports Ansys: 19.2, 2019 R1, 2019 R2, 2019 R3, 2020 R1, 2020 R2
  1549. Target Application: Mechanical
  1550. Create Word report direct from an ANSYS Mechanical model. The Word template can be modified by the user. Customer tailored versions can be made to include additional Mechanical features, section headings and text objects etc.
  1551. -
  1552. Report Generator V192.11
  1553. Supports Ansys: 19.2, 2019 R1, 2019 R2
  1554. Target Application: Mechanical
  1555. Create Word report direct from an ANSYS Mechanical model. The Word template can be modified by the user. Customer tailored versions can be made to include additional Mechanical features, section headings and text objects etc.
  1556. -
  1557. Report Generator V192.1
  1558. Supports Ansys: 19.2, 2019 R1
  1559. Target Application: Mechanical
  1560. Create Word report direct from a Mechanical model. The Word template can be modified by the user. Customer tailored versions can be made to include additional Mechanical features, section headings and text objects etc.
  1561. -
  1562. Report Generator V192.09
  1563. Supports Ansys: 19.2
  1564. Target Application: Mechanical
  1565. Create Word report direct from a Mechanical model. The Word template can be modified by the user. Customer tailored versions can be made to include additional Mechanical features, section headings and text objects etc.
  1566. -
  1567. Report Generator V190.08
  1568. Supports Ansys: 19
  1569. Target Application: Mechanical
  1570. Create Word report direct from a Mechanical model. The Word template can be modified by the user. Customer tailored versions can be made to include additional Mechanical features, section headings and text objects etc.
  1571. -
  1572. Response Surface Reader V3.6
  1573. Supports Ansys: 2020 R2
  1574. Target Application: DesignXplorer
  1575. Response Surface readers to load and evaluate any response surface exported from DX and OptiSLang as .dxrom and .omdb files, either from Workbench, from Microsoft Excel or using a standalone executable
  1576. -
  1577. Response Surface Reader V3
  1578. Supports Ansys: 19.2
  1579. Target Application: DesignXplorer
  1580. Response Surface readers to load and evaluate any response surface exported from DX as a .dxrom file, either from Workbench, from Microsoft Excel or using a standalone executable
  1581. -
  1582. Response Surface Reader V2.6
  1583. Supports Ansys: 19.1
  1584. Target Application: DesignXplorer
  1585. Response Surface readers to load and evaluate any response surface exported from DX as a .dxrom file, either from Workbench, from Microsoft Excel or using a standalone executable
  1586. -
  1587. Response Surface Reader V2.5
  1588. Supports Ansys: 19
  1589. Target Application: DesignXplorer
  1590. Response Surface readers to load and evaluate any response surface exported from DX as a .dxrom file, either from Workbench, from Microsoft Excel or using a standalone executable
  1591. -
  1592. Response Surface Reader V2.4
  1593. Supports Ansys: 18.2
  1594. Target Application: DesignXplorer
  1595. Response Surface readers to load and evaluate any response surface exported from DX as a .dxrom file, either from Workbench, from Microsoft Excel or using a standalone executable
  1596. -
  1597. Response Surface Reader V2.3
  1598. Supports Ansys: 18.1
  1599. Target Application: DesignXplorer
  1600. Response Surface readers to load and evaluate any response surface exported from DX as a .dxrom file, either from Workbench, from Microsoft Excel or using a standalone executable
  1601. -
  1602. Response Surface Reader V2.2
  1603. Supports Ansys: 18
  1604. Target Application: DesignXplorer
  1605. Response Surface readers to load and evaluate any response surface exported from DX as a .dxrom file, either from Workbench, from Microsoft Excel or using a standalone executable
  1606. -
  1607. Response Surface Reader V2.1
  1608. Supports Ansys: 17.2
  1609. Target Application: DesignXplorer
  1610. Response Surface readers to load and evaluate any response surface exported from DX as a .dxrom file, either from Workbench, from Microsoft Excel or using a standalone executable
  1611. -
  1612. Response Surface Reader V2
  1613. Supports Ansys: 17.1
  1614. Target Application: DesignXplorer
  1615. Response Surface readers to load and evaluate any response surface exported from DX as a .dxrom file, either from Workbench, from Microsoft Excel or using a standalone executable
  1616. -
  1617. Response Surface Reader V1
  1618. Supports Ansys: 17
  1619. Target Application: DesignXplorer
  1620. Response Surface readers to load and evaluate any response surface exported from DX as a .dxrom file, either from Workbench, from Microsoft Excel or using a standalone executable
  1621. -
  1622. Restart Analysis V3
  1623. Supports Ansys: 19, 19.1, 19.2
  1624. Target Application: Mechanical
  1625. Enable the capability to allow for a restart analysis to be performed from a previously solved linked analysis system
  1626. -
  1627. Restart Analysis V2
  1628. Supports Ansys: 18
  1629. Target Application: Mechanical
  1630. Enable the capability to allow for a restart analysis to be performed from a previously solved linked analysis system
  1631. -
  1632. Restart Analysis V1
  1633. Supports Ansys: 17, 17.1, 17.2
  1634. Target Application: Mechanical
  1635. Enable the capability to allow for a restart analysis to be performed from a previously solved linked analysis system
  1636. -
  1637. Results2ASCII V1
  1638. Supports Ansys: 18
  1639. Target Application: Mechanical
  1640. Export results into ASCII format. Files txt are generated including all wanted results organized in columns
  1641. -
  1642. Rotate View V2
  1643. Supports Ansys: 17, 17.1
  1644. Target Application: Mechanical
  1645. Allow to rotate the model about any of the 3 screen axes by a specified angle for precise viewing of the model in a specified orientation. Useful for re-orienting views such as an axisymmetric model in which the user desires the X axis to point upward
  1646. -
  1647. Rotordynamics Tools V1
  1648. Supports Ansys: 19
  1649. Target Application: Mechanical
  1650. Expose extended functionality for importing bearing coefficients, Descriptionting whirl orbits in graphics window, getting Campbell diagram data, and setting up typical rotordynamic constraints [Contains source code]
  1651. -
  1652. SC TFD V1
  1653. Supports Ansys: 19, 19.1, 19.2, 2019 R1, 2019 R2, 2019 R3, 2020 R1, 2020 R2
  1654. Target Application: SpaceClaim
  1655. Create bend data table for 3D Pipes. Tables for Drawings and/or for Export to Files.
  1656. -
  1657. SC Toolbox for SpaceClaim V1
  1658. Supports Ansys: 19, 19.1, 19.2, 2019 R1, 2019 R2, 2019 R3, 2020 R1, 2020 R2
  1659. Target Application: SpaceClaim
  1660. Create Standard Geometries of Fastners and Shapes from existing Library.
  1661. -
  1662. SDC Verifier-ANSYS Plugin V5.3
  1663. Supports Ansys: 2019 R3
  1664. Target Application: Mechanical
  1665. Check structures according to the following standards: Eurocode3, FEM 1.001, DIN15018, EN13001, DNV C203 (Fatigue); Eurocode3 and DNV C101/C201 (Weld Strength), ABS 2004/2014, DNV-RP-C201 2010 (Plate & Stiffener Buckling); AISC 89/360-10, API RP-2A WSD and LRFD, ISO 19902, Norsok N004 (Offshore). Advanced report generator.
  1666. -
  1667. SDC Verifier-ANSYS Plugin V5.2
  1668. Supports Ansys: 2020 R2
  1669. Target Application: Mechanical
  1670. Check structures according to the following standards: Eurocode3, FEM 1.001, DIN15018, EN13001, DNV C203 (Fatigue); Eurocode3 and DNV C101/C201 (Weld Strength), ABS 2004/2014, DNV-RP-C201 2010 (Plate & Stiffener Buckling); AISC 89/360-10, API RP-2A WSD and LRFD, ISO 19902, Norsok N004 (Offshore). Advanced report generator.
  1671. -
  1672. SDC Verifier-ANSYS Plugin V5.13
  1673. Supports Ansys: 19.2
  1674. Target Application: Mechanical
  1675. This plugin allows a connection between ANSYS and SDC Verifier, software to check structures according to the following standards: Eurocode3, FEM 1.001, DIN15018, EN13001 (Fatigue); DNV C101/C201 (Weld Strength), ABS/DNV (Plate Buckling); AISC 89/360-10, API RP-2A, ISO 19902, Norsok N004 (Offshore). Advanced report generator.
  1676. -
  1677. SDC Verifier-ANSYS Plugin V5.12
  1678. Supports Ansys: 19.1
  1679. Target Application: Mechanical
  1680. Check structures according to the following standards: Eurocode3, FEM 1.001, DIN15018, EN13001 (Fatigue); Eurocode3 and DNV C101/C201 (Weld Strength), ABS 2004/2014, DNV-RP-C201 2010 (Plate Buckling); AISC 89/360-10, API RP-2A, ISO 19902, Norsok N004 (Offshore). Advanced report generator.
  1681. -
  1682. SDC Verifier-ANSYS Plugin V5.11
  1683. Supports Ansys: 19
  1684. Target Application: Mechanical
  1685. Check structures according to the following standards: Eurocode3, FEM 1.001, DIN15018, EN13001 (Fatigue); Eurocode3 and DNV C101/C201 (Weld Strength), ABS 2004/2014, DNV-RP-C201 2010 (Plate Buckling); AISC 89/360-10, API RP-2A, ISO 19902, Norsok N004 (Offshore). Advanced report generator.
  1686. -
  1687. SDC Verifier-ANSYS Plugin V5.1
  1688. Supports Ansys: 18.2
  1689. Target Application: Mechanical
  1690. Check structures according to the following standards: Eurocode3, FEM 1.001, DIN15018, EN13001 (Fatigue); Eurocode3 and DNV C101/C201 (Weld Strength), ABS 2004/2014, DNV-RP-C201 2010 (Plate Buckling); AISC 89/360-10, API RP-2A, ISO 19902, Norsok N004 (Offshore). Advanced report generator.
  1691. -
  1692. SPEOS Sensor Tools V212.6
  1693. Supports Ansys: 2021 R2
  1694. Target Application: Workflow
  1695. Description : A collection of non-official speos tools to facilitate workflows with SPEOS sensors.
  1696. -
  1697. Save_DB V1
  1698. Supports Ansys: 19, 19.1, 19.2
  1699. Target Application: Mechanical
  1700. SAVE_DB allows you to save the MAPDL database file
  1701. without having to solve the Mechanical model, or cause a
  1702. resolve. Just click the icon and the DB file is saved to the solver directory.
  1703. -
  1704. Selection On Results V2
  1705. Supports Ansys: 18, 18.1, 18.2
  1706. Target Application: Mechanical
  1707. Select Bodies/Nodes/Elements based on results (e.g. VonMises stresses)
  1708. -
  1709. Selection Toolbar V4
  1710. Supports Ansys: 18
  1711. Target Application: Mechanical
  1712. Provide several facilities to create or manipulate selections in Mechanical. [Contains source code]
  1713. -
  1714. Selection Toolbar V4
  1715. Supports Ansys: 17
  1716. Target Application: Mechanical
  1717. Provide several facilities to create or manipulate selections in Mechanical. [Contains source code]
  1718. -
  1719. Sequential Meshing V2.2
  1720. Supports Ansys: 17, 17.1, 17.2
  1721. Target Application: Meshing
  1722. Expose some useful functions for quickly modifying sequential meshing order (mesh parts in a certain sequence)
  1723. -
  1724. Ship Component Selection V1
  1725. Supports Ansys: 2019 R3
  1726. Target Application: Mechanical
  1727. An advanced tool to automatically create the main components of the ship's structure from FE mesh (NOT geometry) directly in the Ansys WB environment. The user can automatically create frames and decks no matter how they are placed in the structure. The algorithm analyzes the entire structure and groups the components so that they can be used for further analysis without having to create them manually.
  1728. -
  1729. Soil Stiffness V201.4
  1730. Supports Ansys: 19.2, 2019 R1, 2019 R2, 2019 R3, 2020 R1, 2020 R2, 2021 R1
  1731. Target Application: Mechanical
  1732. ANSYS Mechanical pre-processing tool to apply a non-linear soil stiffness boundary condition with friction on the structure. Layered soil stiffness data from csv text file can be applied and resulting soil pressure can be Descriptionted.
  1733. -
  1734. Solder Joint Fatigue Life Prediction V2.5
  1735. Supports Ansys: 19, 19.1, 19.2
  1736. Target Application: Mechanical
  1737. Predict fatigue life in solder joint using Darveaux method
  1738. -
  1739. Solder Joint Fatigue Life Prediction V2.4
  1740. Supports Ansys: 18
  1741. Target Application: Mechanical
  1742. Predict fatigue life in solder joint using Darveaux method [Contains source code]
  1743. -
  1744. Solder Joint Fatigue Life Prediction V2.3
  1745. Supports Ansys: 17, 17.1, 17.2
  1746. Target Application: Mechanical
  1747. Predict fatigue life in solder joint using Darveaux method [Contains source code]
  1748. -
  1749. SpaceClaim CAD Cleanup V1
  1750. Supports Ansys: 2019 R3
  1751. Target Application: SpaceClaim
  1752. Automate the CAD cleanup process for general applications and offers model preparation and simplification for Icepak, it exports material properties (if available) for a thermal simulation
  1753. -
  1754. SpaceClaimXL V1
  1755. Supports Ansys: 19.1, 19.2, 2019 R1
  1756. Target Application: SpaceClaim
  1757. SpaceClaimXL allows the user to import a large assembly into SpaceClaimXL. You can view the assembly, search and select any sub-component to "move" into SpaceClaim.
  1758. -
  1759. Spiderweb V1
  1760. Supports Ansys: 18, 18.1, 18.2, 19, 19.1
  1761. Target Application: Mechanical
  1762. Create a Spiderweb of Link,Spring,Beam,Rigid,Non-LinSprings
  1763. -
  1764. Spiral Coil Creator V3
  1765. Supports Ansys: 19
  1766. Target Application: Electronics Desktop
  1767. Guided process to easily create parametric planar, simple or 3D complex Coils
  1768. -
  1769. Spiral Coil Creator V2
  1770. Supports Ansys: 17, 17.1, 17.2
  1771. Target Application: Electronics Desktop
  1772. Guided process to easily create parametric planar, simple or 3D complex Coils for HFSS 3D, HFSS-IE, Q3D or Maxwell 3D designs
  1773. -
  1774. Spiral Coil Creator V2
  1775. Supports Ansys: 18
  1776. Target Application: Electronics Desktop
  1777. Guided process to easily create parametric planar, simple or 3D complex Coils for HFSS 3D, HFSS-IE, Q3D or Maxwell 3D designs
  1778. -
  1779. Spreadsheet Based Load Case Combination V1.1
  1780. Supports Ansys: 18
  1781. Target Application: Mechanical
  1782. Supplement the existing Mechanical feature of"Solution Combination" by offering spreadsheet based load case combination
  1783. -
  1784. Spreadsheet Based Load Case Combination V1
  1785. Supports Ansys: 17
  1786. Target Application: Mechanical
  1787. Supplement the existing Mechanical feature of"Solution Combination" by offering spreadsheet based load case combination
  1788. -
  1789. Step Skewed Motor Creation V1
  1790. Supports Ansys: 19
  1791. Target Application: Electronics Desktop
  1792. Allow to automatically create a 3D step-skewed electrical machine. One can set either same skew angles and height for each slice or use equal parameters for each slice. Only need is 2D Maxwell Design and to fill the parameters of future machine
  1793. -
  1794. Stress Envelop V1.3
  1795. Supports Ansys: 19.3, 19.4, 2019 R3
  1796. Target Application: Mechanical
  1797. Create an Envelope of Max/Min Stresses over all the time steps (substeps). User can either scope it to all the time steps or scope to certain time window.
  1798. -
  1799. Stress Envelop V1.2
  1800. Supports Ansys: 18
  1801. Target Application: Mechanical
  1802. Create an Envelope of Max/Min Stresses over all the time steps (substeps). User can either scope it to all the time steps or scope to certain time window
  1803. -
  1804. Stress Envelop V1.1
  1805. Supports Ansys: 17, 17.1, 17.2
  1806. Target Application: Mechanical
  1807. Create an Envelope of Max/Min Stresses over all the time steps (substeps). User can either scope it to all the time steps or scope to certain time window
  1808. -
  1809. TCD Extension V1
  1810. Supports Ansys: 18.1, 18.2
  1811. Target Application: Mechanical
  1812. Refer to a simplified way to use the TCD (Theory of Critical Distances) approach. Exploit a mesh of specific dimensions to evaluate the stress condition in components which present notches and other stress concentration features (such as cracks, weld beads...)
  1813. -
  1814. TU Delft COVID App V1
  1815. Supports Ansys: 2019 R3, 2020 R1, 2020 R2
  1816. Target Application: Fluent
  1817. The TU Delft COVID App standardized the CFD calculation setup of the behaviour of an infected patient which cause the spread of the virus. Default settings for the human expiratory activities (sneezing, coughing, speaking and breathing) enabling engineers and scientists with a basic level of fluid dynamics skills to perform reliable contagion risk calculations in customized environments.
  1818. -
  1819. Tangential Varying Pressure V2
  1820. Supports Ansys: 19
  1821. Target Application: Mechanical
  1822. Create an object to be able to apply a spatially varying tangential pressure
  1823. -
  1824. Temp Dep Allow Stress V2
  1825. Supports Ansys: 18, 18.1
  1826. Target Application: Mechanical
  1827. Calculate the stress safety based on a temperature dependent allowable stress values
  1828. -
  1829. Thermal Comfort V1
  1830. Supports Ansys: 17
  1831. Target Application: Fluent
  1832. Compute Predicted Mean Vote (PMV) and Predicted Percentage Dissatisfied (PPD) from the solution data and create a report containing the maximum and minimum values of PMV and PPD in the computational domain along with contour of PMV and PPD at different sections across the computation
  1833. -
  1834. Thermal Cut V1
  1835. Supports Ansys: 2019 R1, 2019 R2, 2019 R3, 2020 R1
  1836. Target Application: Mechanical
  1837. This wizard allows predicting distortion in components during and after a thermal cut process
  1838. -
  1839. Thermal Output V4.1
  1840. Supports Ansys: 18
  1841. Target Application: Mechanical
  1842. Easily calculate an average temperature or a surface thermal power output in a thermal analysis
  1843. -
  1844. Thermal Output V4.1
  1845. Supports Ansys: 17, 17.1
  1846. Target Application: Mechanical
  1847. Easily calculate an average temperature or a surface thermal power output in a thermal analysis
  1848. -
  1849. Thermo-Mechanical Fatigue Life V190.1
  1850. Supports Ansys: 19
  1851. Target Application: Mechanical
  1852. This App calculates LCF/TMF life (based on BAM damage model) of a component operating at high temperature changes in its operational time. . The life is calculated based on accumulated damage.
  1853. -
  1854. Time Dependent Hydrostatic Pressure V2
  1855. Supports Ansys: 19
  1856. Target Application: Mechanical
  1857. Create an object to be able to apply (and visualize) a time dependent hydrostatic pressure
  1858. -
  1859. Tire Simulation V2022.1
  1860. Supports Ansys: 2022 R1
  1861. Target Application: Mechanical
  1862. Set up a 2D axisymmetric tire model in the Mechanical. Perform 2D analyses, Map2dto3d and further 3D analyses like Footprint and Steady State Rolling etc., however everything in a 2D static structural analysis system.
  1863. -
  1864. Tire Simulation V3.6
  1865. Supports Ansys: 19, 19.1, 19.2
  1866. Target Application: Mechanical
  1867. Set up a 2D axisymmetric tire model in the Mechanical. Perform 2D analyses, Map2dto3d and further 3D analyses like Footprint and Steady State Rolling etc., however everything in a 2D static structural analysis system.
  1868. -
  1869. Topographic STL Maker V3
  1870. Supports Ansys: 19, 19.1
  1871. Target Application: Workflow
  1872. Automatically output three dimensional topographic maps in an STL file format. SRTM data are used to create the maps
  1873. -
  1874. Topographic STL Maker V2
  1875. Supports Ansys: 17, 17.1, 17.2
  1876. Target Application: Workflow
  1877. Automatically output three dimensional topographic maps in an STL file format. SRTM data are used to create the maps
  1878. -
  1879. Topographic STL Maker V2
  1880. Supports Ansys: 18
  1881. Target Application: Workflow
  1882. Automatically output three dimensional topographic maps in an STL file format. SRTM data are used to create the maps
  1883. -
  1884. Toshiba Library V1
  1885. Supports Ansys: 2020 R2
  1886. Target Application: Electronics Desktop
  1887. Twin Builder component library of Toshiba devices
  1888. -
  1889. Update Email V2
  1890. Supports Ansys: 19
  1891. Target Application: Workflow
  1892. Enable ANSYS Workbench to automatically send emails after completing updates of components/systems/design points in Workbench projects
  1893. -
  1894. Update Email V1.3
  1895. Supports Ansys: 18
  1896. Target Application: Workflow
  1897. Enable ANSYS Workbench to automatically send emails after completing updates of components/systems/design points in Workbench projects
  1898. -
  1899. Update Email V1
  1900. Supports Ansys: 17, 17.1, 17.2
  1901. Target Application: Workflow
  1902. Enable ANSYS Workbench to automatically send emails after completing updates of components/systems/design points in Workbench projects
  1903. -
  1904. User Programmable Features V4
  1905. Supports Ansys: 17, 17.1, 17.2, 18, 18.1, 18.2, 19, 19.1, 19.2
  1906. Target Application: Mechanical
  1907. Allow for the use of User Programmable Features (UPF) within Workbench [Contains source code]
  1908. -
  1909. User Programmable Features V4
  1910. Supports Ansys: 17, 17.1, 17.2
  1911. Target Application: Mechanical
  1912. Allow for the use of User Programmable Features (UPF) within Workbench [Contains source code]
  1913. -
  1914. Vacuum Thermal Modeling V1
  1915. Supports Ansys: 2020 R1
  1916. Target Application: Electronics Desktop
  1917. This Wizard helps setup a vacuum thermal model with Icepak in AEDT.
  1918. -
  1919. nCode Fatigue Result V1
  1920. Supports Ansys: 17
  1921. Target Application: Mechanical
  1922. Display results from nCode in Mechanical [Contains source code]
  1923. -
  1924. optiSLang Addin collection V8.1
  1925. Supports Ansys: 2020 R2
  1926. Target Application: Workflow
  1927. For Simulation Workflow Building and Process Automation the core is to connect Ansys, any 3rd party and inhouse tools
  1928. -
  1929. optiSLang DX plugin V2020.1
  1930. Supports Ansys: 2020 R2
  1931. Target Application: Workflow
  1932. DX Plugin exposes Ansys DesignXplorer optimization methods and surrogate models into Ansys optiSLang as custom algorithms and custom surrogates.
  1933. -
  1934. optiSLang Deep Learning Extension V1.2
  1935. Supports Ansys: 2020 R2
  1936. Target Application: Workflow
  1937. The optiSLang Deep Learning Extension (DLE) is a package that currently contains one surrogate model, the "Feedforward_network ".