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  1. [center][img]https://c.radikal.ru/c02/2101/8a/4265cb44a9be.jpg[/img] [b]Altair FluxMotor 2020.1.0 (x64) | 1.7 GB[/b][/center] Increasing efficiency by changing design paradigms for electric equipment. Global system performance prediction - from the design of the device to its final operational efficiency - using the most efficient design tools and methods, is key for organizations to innovate. FluxMotor is a flexible standalone software tool focusing on the pre-design of electric rotating machines. It enables the user to design and create motors from standard or customized parts, as well as to intuitively add windings and materials to run a selection of tests and compare machine behavior. Addressing a broad range of users, FluxMotor is easy to use with an efficient working environment allowing for the creation and performance evaluation of an electric motor within a few minutes. Benefits: High productivity gain Automatically driven workflow offering an efficient user-oriented environment to different level of users Facilitated project management, allow a quick access to past studies and to manage the full range of products Creating a model of an electric motor and evaluating its technical-economic potential within a few minutes No compromise on accuracy Based on optimization technology, FluxMotor helps reduce computing time to the minimum, while maintaining accurate results Computing methods wisely using the high power of finite element modeling Settings adapted to the task levels of accuracy vs. rapidity Connection for advanced studies Easy project export to Flux to perform advanced studies like eccentricity, vibro-acoustic, etc. At any time, the full parameterized Flux project, with all the physical properties embedded, is ready to be solved in Flux environment Capabilities: Effective machines parts management Libraries are provided with standard parts A wide variety of slots or magnets are available All the topologies are parameterized Offered standard parts, slots or magnets, can be edited and customized for unlimited configuration Productive interfaces to shape the machine Step by step, from the shaft, rotor magnet to the slot, winding and housing of the stator, a dedicated interface guides users to finalize machine design 4 different winding modes (from automatic to expert) help users to find the right winding architecture Comprehensive and scalable material database Testing and evaluating electric motors The FluxMotor dedicated test environment enables users to assess motor performance Example of tests ready to be performed Maps vs (Id, Iq): Flux, inductance, torque, iron losses, etc. Open circuit tests with cogging torque and back-emf Torque-speed curves & efficiency maps Relevant input parameters allow users to control the test conditions A detailed motor datasheet can be edited and exported Powerful project management The motor catalogue environment allows easy management of motors projects, helping the user to classify the machine and offering quick access to past studies The general data and performance of several machines can be compared and help simplify the machine choice [code]www.altair.com/[/code] [code] http://nitroflare.com/view/19613286B91A4CB/Altair.FluxMotor.2020.1.0.Win64-SSQ.part1.rar http://nitroflare.com/view/04D7EAC33B96059/Altair.FluxMotor.2020.1.0.Win64-SSQ.part2.rar https://rapidgator.net/file/6113de303fc8cd03d533d5bd4d94d5d2/Altair.FluxMotor.2020.1.0.Win64-SSQ.part1.rar.html https://rapidgator.net/file/0954fc306254380d8d279bda736fc652/Altair.FluxMotor.2020.1.0.Win64-SSQ.part2.rar.html https://uploadgig.com/file/download/71603a7462E64Ac4/Altair.FluxMotor.2020.1.0.Win64-SSQ.part1.rar https://uploadgig.com/file/download/9eA7A44956bf4e2c/Altair.FluxMotor.2020.1.0.Win64-SSQ.part2.rar [/code]
  2. [center][img]https://a.radikal.ru/a19/2105/2c/01c8eec3ea2a.jpg[/img] [b]Altair HWDesktop + Solvers 2021.1.0 (x64) | 11 GB[/b][/center] Altair HyperWorks is one of the most comprehensive tools for open architecture CE modeling HyperWorks modernizes CE modeling and visualization by combining the capabilities of HyperMesh and HyperView in one solution. In addition, significant visual enhancements have helped create an even easier to use interface. In HyperMesh, the possibilities of creating a grid for acoustics problems are expanded; the possibility of three-dimensional visualization of shell and beam models has appeared.HyperWorks also now includes new collaboration tools that provide the ability to work outside the organization. These updates, tightly integrated with HyperWorks applications, provide an intuitive experience in managing personal and shared data and processes without leaving the familiar HyperWorks environment. Distribution composition hwDesktop 2021.1.0 Win64 hwDesktop Help 2021.1.0 Win64 hwCFDSolvers 2021.1.0 Win64 hwMechanicalSolvers 2021.1.0 Win64 hwSolversHelp 2021.1.0 Win64 What's New: Read: Release_Notes [code]https://altairhyperworks.com/[/code] [code] https://nitro.download/view/4C85B9BA859A80A/Altair.HW.Desktop_Solvers.2021.1.0.Win64-SSQ.part01.rar https://nitro.download/view/15A5E4C2CC1FB34/Altair.HW.Desktop_Solvers.2021.1.0.Win64-SSQ.part02.rar https://nitro.download/view/37B9DE0484DD28B/Altair.HW.Desktop_Solvers.2021.1.0.Win64-SSQ.part03.rar https://nitro.download/view/26B58EF13B57AA2/Altair.HW.Desktop_Solvers.2021.1.0.Win64-SSQ.part04.rar https://nitro.download/view/31B1CD52EC6DD53/Altair.HW.Desktop_Solvers.2021.1.0.Win64-SSQ.part05.rar https://nitro.download/view/F8720F30EBF43CE/Altair.HW.Desktop_Solvers.2021.1.0.Win64-SSQ.part06.rar https://nitro.download/view/CAF8C284F24C73E/Altair.HW.Desktop_Solvers.2021.1.0.Win64-SSQ.part07.rar https://nitro.download/view/CF439B1B4748E2C/Altair.HW.Desktop_Solvers.2021.1.0.Win64-SSQ.part08.rar https://nitro.download/view/397E31DF17061A8/Altair.HW.Desktop_Solvers.2021.1.0.Win64-SSQ.part09.rar https://nitro.download/view/53A863DC365C48B/Altair.HW.Desktop_Solvers.2021.1.0.Win64-SSQ.part10.rar https://nitro.download/view/986CFC97CB5961C/Altair.HW.Desktop_Solvers.2021.1.0.Win64-SSQ.part11.rar https://rapidgator.net/file/829da1357d0343c74fc4dd200c540978/Altair.HW.Desktop_Solvers.2021.1.0.Win64-SSQ.part01.rar.html https://rapidgator.net/file/19277732f7922c3e6a52f09014f4d732/Altair.HW.Desktop_Solvers.2021.1.0.Win64-SSQ.part02.rar.html https://rapidgator.net/file/e0174c727394d4bd6d7c9d2fb386494d/Altair.HW.Desktop_Solvers.2021.1.0.Win64-SSQ.part03.rar.html https://rapidgator.net/file/cd6302fef2849dc9216efc3ab619f26c/Altair.HW.Desktop_Solvers.2021.1.0.Win64-SSQ.part04.rar.html https://rapidgator.net/file/b3accad183bbe87eea9b112a3e7db2cb/Altair.HW.Desktop_Solvers.2021.1.0.Win64-SSQ.part05.rar.html https://rapidgator.net/file/d172d3ce13d447b4c4563e256372b5ca/Altair.HW.Desktop_Solvers.2021.1.0.Win64-SSQ.part06.rar.html https://rapidgator.net/file/d726b61f527dc3fee5a014e0ae1c58a0/Altair.HW.Desktop_Solvers.2021.1.0.Win64-SSQ.part07.rar.html https://rapidgator.net/file/c4b3b7ddba1fa365059c45cd0261250f/Altair.HW.Desktop_Solvers.2021.1.0.Win64-SSQ.part08.rar.html https://rapidgator.net/file/7ba9de91960b090da3eba120f0001cbf/Altair.HW.Desktop_Solvers.2021.1.0.Win64-SSQ.part09.rar.html https://rapidgator.net/file/b177e4821106ce60aa498607bdca36c4/Altair.HW.Desktop_Solvers.2021.1.0.Win64-SSQ.part10.rar.html https://rapidgator.net/file/d04e952c955c456e80b3b7f5c46e9dcf/Altair.HW.Desktop_Solvers.2021.1.0.Win64-SSQ.part11.rar.html https://uploadgig.com/file/download/4a9aCF41606e77dD/Altair.HW.Desktop_Solvers.2021.1.0.Win64-SSQ.part01.rar https://uploadgig.com/file/download/3b624D1f24b5EA75/Altair.HW.Desktop_Solvers.2021.1.0.Win64-SSQ.part02.rar https://uploadgig.com/file/download/98686627d973A945/Altair.HW.Desktop_Solvers.2021.1.0.Win64-SSQ.part03.rar https://uploadgig.com/file/download/71A6c9117e5f62e2/Altair.HW.Desktop_Solvers.2021.1.0.Win64-SSQ.part04.rar https://uploadgig.com/file/download/439041f4bEf7054c/Altair.HW.Desktop_Solvers.2021.1.0.Win64-SSQ.part05.rar https://uploadgig.com/file/download/c9a0D0F712af072f/Altair.HW.Desktop_Solvers.2021.1.0.Win64-SSQ.part06.rar https://uploadgig.com/file/download/2dd5b0d3f71a63C5/Altair.HW.Desktop_Solvers.2021.1.0.Win64-SSQ.part07.rar https://uploadgig.com/file/download/Ca39dd19c6166a1f/Altair.HW.Desktop_Solvers.2021.1.0.Win64-SSQ.part08.rar https://uploadgig.com/file/download/9c57a90f4Aee5121/Altair.HW.Desktop_Solvers.2021.1.0.Win64-SSQ.part09.rar https://uploadgig.com/file/download/bAbD162fc5e8f036/Altair.HW.Desktop_Solvers.2021.1.0.Win64-SSQ.part10.rar https://uploadgig.com/file/download/09A7f341c89f59A6/Altair.HW.Desktop_Solvers.2021.1.0.Win64-SSQ.part11.rar [/code]
  3. Altair FluxMotor 2020.1.1 HotFix | 267.6 mb The Altair development team is pleased to announce the availability of FluxMotor 2020.1.1 is a flexible software solution dedicated to the pre-design of electric motor. [b[i]Fixed issues of FluxMotor 2020.1.1[/i][/b] Induction machines - Thermal computation fails - Same name of materials for winding and squirrel cage Induction machines: Thermal computations fails when the same name of material is used for the winding and the squirrel cage Causing the displaying of false results for the "One iteration" and "Iterative" thermal processes (ref.: FXM-13280) Induction machines - Working point & thermal computation fails - Double cage topology For induction machines, when computing a working point defined by U, f, N, the thermal computation fails when the squirrel cage is built with a double cage topology like for instance the parts belonging to the library "Inner bar/ibc_Misc2. This is true for inner and outer rotor (ref.: FXM-13280). Computation of iron losses may be wrong for very high speeds The computation of iron losses may be wrong when considering very high speeds WP (I, U), Datasheet, Eff. Map (ref.: FXM-13311) The colors of axis labels are reversed The colors of axis labels are reversed when exporting maps in *.xls format files (ref.: FXM-13353). Process allowing multiple choices in Export/HyperStudy doesn't work The process allowing Multiple choices for selecting the type of user's inputs doesn't work in the Export/HyperStudy environment. This concerns the different ways to define the electrical current in conductors (All the tests where a current is considered as user input) and the maximum engine order (test Mechanics/NVH-WP - I,N) (ref.: FXM-13346). FluxMotoris dedicated to addressing the global design of electric motors. It enables engineers to accelerate the design of machines, quickly explore a variety of configurations while considering multiphysics constraints, and select the most promising options within minutes. FluxMotor's intuitive environment allows users - from generalist to experts - to efficiently create, analyze, report and optimize their electric motors. Within a single environment, the new multiphysics capabilities enable designers to not only predict the electromagnetic performance of the motor, but also to optimize the cooling strategies and the NVH performance. Discover Altair FluxMotor an Easy to Use Software Dedicated to e-Motor Concept Design Altairis a global technology company that provides software and cloud solutions in the areas of product development, high performance computing (HPC) and data analytics. Altair enables organizations across broad industry segments to compete more effectively in a connected world while creating a more sustainable future. Product:Altair FluxMotor Version:2020.1.0 (2021/03/01) Supported Architectures:x64 Website Home Page :[url=http://www.altairhyperworks.com]www.altairhyperworks.com Language:english System Requirements:PC * Software Prerequisites:Altair FluxMotor 2020.1.0 Size:267.6 mb Supported operating systems Altair FluxMotor is qualified * on the following operating systems: - Windows 10 -64 bits * Note: A qualified platform is a platform on which all the quality assurance tests have been performed Validation of Altair FluxMotor FluxMotor is validated * on the following operating systems: - Windows 10 -64 bits * Note: A validated platform is a platform on which only installation and startup tests have been performedSupportFor all the operating systems mentioned above, Altair provides full technical support.For all the other ones, Altair will give no guarantee regarding the provision of technical support DOWNLOAD (Buy premium account for maximum speed and resuming ability) http://nitroflare.com/view/1D505F1AEB05412/cgv8j.Altair.FluxMotor.2020.1.1.HotFix.rar https://rapidgator.net/file/b5749e48b6fd7e32cab874eeee8f020c/cgv8j.Altair.FluxMotor.2020.1.1.HotFix.rar
  4. File Size: 458.3 MB (x64) Flow Simulator is an integrated flow, heat transfer, and combustion design software that enables mixed fidelity simulations to optimize machine and systems design. This fluid system design tool provides interdisciplinary modeling and optimization capabilities within a single platform for machine design with respect to fluid dynamics/thermal/combustion within a 3D design environment. This tool allows users to import actual hardware and utilization of 3D CAD point-cloud to automatically create the computational model overlaid on the machine hardware. An extended library of preconfigured elements/components is available to model/simulate a wide-range of physical phenomena including compressible/incompressible fluid flow, buoyancy-driven flow, rotating cavity system flow, conduction/convection/radiation heat transfer, combustion equilibrium-chemistry & species transport. Eight combinations of analysis modes (steady state, quasi steady state, and transient analysis for fluid dynamics, thermal, and combustions) are available to predict system/subsystem run conditions during a cycle/mission simulation (flight mission, power ramp up, shut down.etc). Control system components (proportional integral derivative (PID) controllers, feedforward, and mission) can be integrated with computational model system/subsystem to optimize the simulated-machine operation during cycle/mission analysis. Key Features & Benefits: Fast and accurate mixed-fidelity (1D, 2D, and 3D) flow simulations that handle complex geometry and long transient missions. A flexible common platform that allows different groups to perform modeling with respect to their verticals and thus be combined to create system models. Modern graphic user interface with the ability to overlay/integrate the 3D digital CAD with the analytical models. The GUI is geared for design where the Pre/Solver/and Post are all embedded in a single interface. The fully integrated optimization module provides the capability to quickly explore the entire design space within 3D modeling environment; system models can be parametrized based on flow configuration, shape, dimension, and thermal characteristics to achieve an optimal cost-benefit design. Extended library of preconfigured elements/components leveraging a large set of publicly-available experimental data for pressure drop and heat transfer characteristics. This fully extensible platform provides customers the capability to integrate their own IP and element formulations seamlessly utilizing Python scripting. Industry Applications Flow Simulator can be used in many industries including aerospace, power generation, oil & gas power conversion, transportation, additive manufacturing, automotive, and others. Flow Simulator's capabilities cover a wide range of application within these industries including turbomachinery rotating cavity systems, secondary flow & engine sealing, combustor cooling, fuel/lube systems, and power plant piping networks. The software can also be used for renewable wind turbines and electrical generator cooling and thermal management. For additive manufacturing, it allows for heat exchanger design and optimization. Whats New: Read: Flow_Simulator_2021_1_Release_Notes.pdf DOWNLOAD (Buy premium account for maximum speed and resuming ability) http://nitroflare.com/view/37ACD583CED6D6D/no900.Altair.Flow.Simulator.2021.1.0.rar https://rapidgator.net/file/6d02e56d62b6faabbe560e04c5d2c10e/no900.Altair.Flow.Simulator.2021.1.0.rar
  5. Altair Compose 2020.1.1 build 5228 | 1.1 Gb The Altair development team is pleased to announce the availability of Compose 2020.1.1. Apart from hotfixes in the detected issues, this version hosts a couple of noteworthy enhancements as well. Altair Compose 2020.1.1 Altair Compose 2020.1.1 is a hotfix release (see Compose 2020.1 Release Notes below) and includes the following enhancements Resolved Issues and Enhancements Fixed issues with the OML H3D commands - Fixed a crash in writeh3ddata when passing a wrong argument. - Updated writeh3ddata to not support string as subcase and datatype. - Fixed an issue when "layers" is a number or a matrix in function createh3ddatatype. - Updated the documentation and examples. Fixed issues with the input and pause commands. Fixed an issue with properties for UI creation due to the order of creation of the callback. Improved the performance of the command to read XLSX/XLSX files. Altair Compose 2020.1 Altair Compose 2020.1 includes the following new features and enhancements. New OML Functions The following functions have been added to the OML language: omllinenumber kurtosis csvread / csvwrite filesep skipformat moga multiobjective optimization method* display Integration and I/O New commands to read HDF5 files (read groups, data, and attributes) have been added. readhdf5 readhdf5toc readhdf5attributes Extension of H3D file write commands. Support writing original and new results in a new .h3d file.* Handle complex data. New Plot Features Implemented pan functionality on 3D plots. patch fill3 Save plots in JPEG format. Panels are visible in UI control GUIs. Compose Notebook New Features Support for sliders on plots in the Compose Notebook (using uicontrol). The following OML functions are supported in the Compose Notebook: - text - bar3 - view - colormap - colorbar - plotyy - text Additional Enhancements for OML and OML Functions repmat enhancements ifft enhancements Improve try-catch error information. Cell-list indexing Support Unicode file path and file name in save Update error messages for Unicode file path and file names in readvector and readmultvectors. Support Unicode file path and file name in textread, rename, isdir, and copyfile commands. Example and documentation for Fortran routine with Binary Compatible interface. Print error messages with diary function. Printing empty cells/structs. writeh3ddata does not write complex data. Update the notebook plot to work with plotly 4.0.0. Sparse empty matrices should display the row and column information. Negative values in whos/memoryuse. isa function not working with inheritance. Executing a Tcl/Python file by Compose.bat. Improve load command. Keyword list not refreshed on every command in OML Command window. Implemented Whitespace, Returnonerror options in textscan. Support Unicode file path in textread, copyfile, rename, isdir, dlmread, and cvsread. Print error messages in diary. Additional Enhancements for Plotting and UI Commands Add mouseover message in GUI uicontrols. Add "Deselect All" option/button to listdlg. Support 'columnwidth' as uitable graphical object property. Set text font size. axis equal and axis square improvements. Missing optional arguments in graphical commands. Ability to type a new line in the title of a plot. Include a 'Size' or 'Resolution' control to 'saveas' command. Add columnname property for uitable. On hover curve name for 3D line in fanplot. Resolved Issues Value is not being set correctly for some uicontrol styles. Matrix Allocation issue causes a crash. Issue with setting text color in plots. Using comma separated value from a cell fails in concat. Issue with non-active figures when saved with a certain resolution. fft([]) causes a crash. [V,L]=eig(A,B) produces incorrect Eigen vectors. Font size update in Preferences panel does not work. Multiple output functions force multiple expression evaluations. Wrong output in debug mode when you cancel the action in uiputfile file dialog. saefilter command crash for two signals with different sampling frequencies.* Whitespace not recognized in labels of bar plots. get()not working in uicontrol. Issue with string indexing of non-ASCII characters in OML. fft multidimensional performance issue. dlmread wrong behavior when setting "headerlines" or "linestoskip" options. dlmread not supporting \t delimiter. saefilter bug with default fft size. classdef with only 'properties' returns a syntax error. Memory leak with imagesc. Syntax error in try/catch can cause a crash. Plots in Notebook can hide other contents. Pagination commands are not properly displayed. rename doesn't support file name with UTF8 characters. Dots are connected in scatter plot in Linux. min() and max() issue for sparse matrix. Commands after interactive pagination not executed when pasted in OML Command Window. Cell content not properly assigned. Wrong output of textscan function. Display issue in console mode (-f option) with input command. [V,D]=eig(A,B) returns incorrect results for a B=0. hex2dec fails for numbers with different lengths. Overlay plot of bar and hist is not correct. Properties xdata/ydata are not valid when calling imshow. sortrows() produces different results on Windows and Linux platforms. contour3 in Compose Notebook isn't rendered correctly. OML library cannot be loaded in OptiStruct 2020.* dir command does not show utf8 directory on Windows. Cannot set 'parent' in uicontrol, uipanel. regexp issue with returned type. uibuttongroup can't have uiframe or uipanel as parents. Application can freeze when closing a large plot. Issue with global variables between different files with GUI handles. Error message displayed in Linux terminal when hiding a figure. Implicit function ends should make functions local, not nested. Labels not properly shown. Changing X axis scale interactively should not affect Y axis limits. On Linux: when importing Python Tensorflow module, importing mnist data errors out. Issue with 3D plots after saveas. Printing a large matrix in command window is too slow. Crash when saving a plot as .scm in the project browser. Multiple selection in uicontrol listbox, with Ctrl+mouse click. Issue with separator in dlmread function. Function 'hour' cannot support some formats which don't specify the hour. 'HH:MM PM' in function 'hour' doesn't work. Delete file/folder with unicode name doesn't work in the file browser. xlsopen open file in read-only mode doesn't work. Open file dialog issue in Debug mode. Brace symbol is evaluated in plot commands. Error printing large integers with fprintf. Issue in printed pause message when running a script using run() function. Issue when saving scripts in debug mode. Memory issue on imshow(). Font name of bar plot is not correct. OML exit function argument is ignored. File path returned by uigetfile does not include final slash separator. Altair Compose software is an environment for doing calculations, manipulating and visualizing data (including from CAE simulations or test results), programming and debugging scripts useful for repeated computations and process automation. Compose allows users to perform a wide variety of math operations including linear algebra and matrix manipulations, statistics, differential equations, signal processing, control systems, polynomial fitting and optimization. Other products in Altair's Model-Based Development offering include Altair Activate and Altair Embed. Model Based Development with solidThinking Compose, Activate and Embed Altair is a global technology company that provides software and cloud solutions in the areas of product development, high performance computing (HPC) and data analytics. Altair enables organizations across broad industry segments to compete more effectively in a connected world while creating a more sustainable future. Product: Altair Compose Version: 2020.1.1 build 5228 Supported Architectures: x64 Website Home Page : http://www.altair.com Language: english System Requirements: PC * Size: 1.1 Gb Operating System Windows 7, 8.1 and 10. 64 bits only Hardware OpenGL graphics card with at least 256 MB of onboard memory. Integrated Intel graphics hardware is currently not supported. Memory 4 GB of RAM (8 GB recommended). 10 GB or more of free hard disk space. 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  6. x64 | Language:Multilanguage | File Size: 539 MB SIMSOLID's unique technology completely eliminates geometry simplification and meshing, the two most time consuming, expertise extensive and error prone tasks done in traditional FEA. With SIMSOLID, model preparation is done in minutes. SimSolid is a next generation, high capacity, structural FEA. It uses new computational methods which operate on original, unsimplified, CAD geometry and does not create a mesh SimSolid can solve very large assemblies on a standard desktop computer. SimSolid is the perfect complement to your existing CAE specific or CAD embedded Simulation. It extends their analysis range to larger models and provides feedback in seconds to minutes ANALYZE COMPLEX PARTS AND LARGE ASSEMBLIES SIMSOLID has been designed to analyze complex parts and large assemblies not practical with traditional FEA. SIMSOLID is tolerant of imprecise geometry. Its assembly connections are industry best at handling ragged contact surfaces with both gaps and overlapping geometry. GET RESULTS IN SECONDS TO MINUTES SIMSOLID is fast, real fast. Solution times are typically measured in second to minutes on a standard PC. With SIMSOLID, multiple design scenarios can be quickly analyzed and compared. And, accuracy can be specified on an individual part level allowing a rapid drill down to any level of detail that is required. DESIGN INTEGRATED All SIMSOLID editions are directly integrated with the Onshape, SOLIDWORKS and Autodesk Fusion 360 CAD systems. Since geometry simplification is not required, both CAD and SIMSOLID share an identical view of the full assembly hierarchy. Make a design change? SIMSOLID's unique design studies are fully associative, so analysis updates are fast and painless. Don't have Fusion 360, Onshape or SOLIDWORKS? No problem, SIMSOLID can also read standard STL files from any CAD system. Want even more? SIMSOLID Professional adds direct file support for all mainstream CAD systems including CATIA, NX, Creo, SOLIDWORKS, Inventor and Solid Edge as well as many common neutral formats such as STEP, ACIS and Parasolid. WORKFLOW COMPARISON How does SIMSOLID's workflow compare with traditional FEA? Here is one example of a 214 part assembly containing a variety of multi-scale parts - big and small, thick and thin walled. With SIMSOLID, answers to guide design intent are available in minutes. Analysis can be used to evaluate every design iteration. With traditional FEA, the complexity of the geometry simplification and meshing process makes it impractical to incorporate analysis in the design workflow. Still doing analysis the old way? Try SIMSOLID. Fast, robust and accurate - this is how design-analysis is supposed to work. Whats New https://www.simsolid.com/latest-news/ HOMEPAGE https://www.simsolid.com/ DOWNLOAD http://nitroflare.com/view/1EF2247E945602A/t2z1n.Altair.SimSolid.2020.2.0.89.x64.rar https://rapidgator.net/file/fc0ca81d81e5cc51011fa0c4b3dd5705/t2z1n.Altair.SimSolid.2020.2.0.89.x64.rar
  7. Altair SimSolid 2020.2.0 build 89 | 553.8 mb The Altair development team is pleased to announce the availability of Altair SimSolid 2020.2 is a project-based system, allowing you to have, within a single project, multiple sets of geometry, multiple study types (it supports linear and non-linear structural, modal, transient and thermal analyses.) Highlights Highlights of this release include the following: Fatigue Analysis using S-N (stress-life) Multi-loadcases workbench for running multiple linear structural analyses Teamcenter integration Export deformed shapes in a design study Volumetric expansion/shrinkage Enhanced response mesh Improved solver performance resulting in faster runtimes and reduced memory footprint New Features Fatigue Analysis using S-N (stress life) approach You can now solve multiaxial fatigue analysis using S-N (stress-life) approach. This method helps predicts fatigue life when the stress level in the structure fall mostly in the elastic range. Time-series histories and sequential loadcases are supported. Time series histories can be imported via RSP, RPC, or CSV files. Use mean-stress correction to account for the effect of non-zero mean stresses. For damage caused by tensile crack growth along a critical plane, use the Goodman and FKM models. Use the Findley model for shear crack growth. Use a loadcase-channel map file to create several events automatically. This includes importing channels from the file directory and mapping load cases to channels automatically to create several events. Similarly, you can import several load case sequences from a CSV file. Multi-loadcases Workbench You can run multiple linear structural analyses with common constraints. Linear structural analysis assumes the model is loaded slowly (static) and stresses do not exceed the yield strength of any part material (linear). Inertia relief, pressure, force, and remote load boundary conditions are supported. You can also import forces and remote loads from a CSV file to automatically create loadcases. Teamcenter Integration SimSolid now supports connection to existing Teamcenter instances. You can query for and retrieve CAD files directly into SimSolid. Teamcenter versions 10.0 to 12.1 are currently supported. Export Deformed Shape You can export deformed shapes for all parts in a given design study in ssg/stl format. Export of scaled deformation is also supported. Note that this feature is only available for results plots created in version 2020.2 or later. For older projects, right-click on a project to initialize the solution, then re-run the analysis so you can export the deformed shape. Volumetric Expansion/Shrinkage You can now apply volumetric expansion/shrinkage to seam welds or other parts in the assembly in a structural analysis. Volumetric expansion works similarly to thermal expansion on a body. A volumetric expansion of 100% yields similar result as a thermal load of 1 C with a thermal expansion coefficient of 1/C. With this option, you can also study volumetric shrinkage studies by applying a negative coefficient value. Enhancements Response Mesh SimSolid now uses a new response mesh algorithm. On average this new method is faster, the number of facets is reduced, and the distribution of facets is more even. Overall analysis solution time is reduced, and results are displayed faster. This is especially beneficial to large models. The degree of improvement is model specific, but response mesh creation can be up to 16x faster and the number of facets can be reduced by 2 to 6x. If the response mesh is too rough, a new Refining option is available for the Results plot. This works on all faces of a selected part. There are three levels of refinement available. This should be used sparingly as it will increase the response facet count. Note that this does not improve solution quality; it adds more visualization points. Solution quality is still controlled by the Adaption settings menu. You can reset to the initial result plot with the Reset option. Equation Solver The equation solver is further optimized, providing performance improvements of 2 to 5x. Note that equation solve is only a portion of the overall analysis, and is performed once with each solution pass. Modal analysis and non-linear analysis with larger equation sets are affected the most by this enhancement. Reduced Memory Footprint The peak working set and the commit size required to solve analysis is reduced by up to 2x. Models with large equation sets are affected the most by this enhancement. Seam Welds Material assignment - You can assign materials to seam welds from the Connections Workbech toolbar. Use the > Apply material to seam welds option. If you do not assign materials, they are automatically assigned when you solve the analysis. Assignment is based on the materials of connected parts. If parts with multiple materials are connected to the weld, the stiffer material is assigned. Seam welds on curvature - You can create seam welds on curvatures with no feature lines. They are created from lines/solids. You can create lines in the Assembly Workbench toolbar or import them from an XML file. New Units Tonnes and N-mm are now supported as input/output units for mass and moment respectively. Set Coordinates in COG You can set coordinates to COG in remote load, remote mass, remote support, virtual bushings, and virtual joints. Bolt/Nut Tightening You can now have up to 10 decimal places in the number of bolt/nut turns field. You can also paste the number of bolt/nut turns copied from the bolt/nut resultant forces dialog. When the resultant axial force of the bolt/nut deviates by over 10%, the following occurs: ◦ In the Project Tree, a warning icon appears next to the Results branch. Right-click on the Results and select Warnings to view. ◦ In the Bolt/Nut forces dialog, bolts/nuts with significant deviation are marked in red and deviation from the target is listed Cylindrical Faces The faces on a cylindrical surface are not merged along the axis. Depreciated Features Check rigid motion - This feature is removed from static analysis. You can analyze rigid motions by running a modal analysis. Resolved Issues Fixed - crashes on machine with basic opengl support. On machines with basic opengl, following message is displayed: ◦ "This system has very basic version 1.1.0 of OpenGL graphics. Some graphics features of Altair SimSolid cannot not be supported by this version." Fixed - Issues with longer runtimes for subsequent analysis. Fixed - Issues copying analysis with thermal load or B.Cs applied in local coordinate system across design studies. Local coordinate system is copied to the new design study in such case. Fixed - Issues with rivet connections. The parts connected via rivets will be held together by the riveted joint. Fixed - Issues with creating welds from solids. Fixed - Issues with seam weld search by edges. Improved the search time for geometries with huge number of small holes. Fixed - Issues creating connections between parts that have been used to create welds. Fixed - Issues related to contact condition display in contact response dialogue while switching between load cases. Fixed - Issues related to improper assignment of contact conditions for parts converted to bolts. Fixed - Issues with editing remote load. The faces where remote loads are applied to are retained. Fixed - Issues with mapping loads using import remote loads functionality. Fixed - Issues related to liquid mass. Liquid masses are now carried over to subsequent design studies. Existing results are invalidated up on creating a new liquid body. Multiple liquid bodies are disabled on the same face. Fixed - Crashes related to very large assemblies with adapt to thin solids. Fixed - Crashes opening project file that contain virtual connectors. Fixed - Issues related to display of spot center coordinates. Fixed - Issues related to export of bookmarks for large models. The timeout for creating bookmarks has been increased. Fixed - Several other product crashes have been fixed. Fixed - Issues related to structural analysis results with inertia relief. This issue was specific to using remote load with higher levels of adaption. Altair SimSolid is structural analysis software developed specifically for rapidly evolving design processes. It works directly on CAD geometry and eliminates geometry simplification and meshing, the two most time consuming and expertise extensive tasks done in traditional FEA. Moreover, SimSolid can analyze complex parts and large assemblies not practical with traditional FEA and do it efficiently on a desktop class computer. Both fast and accurate, SIMSOLID controls solution accuracy using a unique multi-pass adaptive analysis. Join the Simulation Revolution with Altair SimSolid - No Meshing Required Altair transforms design and decision making by applying simulation, machine learning and optimization throughout product lifecycles. Our broad portfolio of simulation technology and patented units-based software licensing model enable Simulation-Driven Innovation for our customers. With more than 2,000 employees, Altair is headquartered in Troy, Michigan, USA and operates 71 offices throughout 24 countries. Altair serves more than 5,000 customers across broad industry segments. Product: Altair SimSolid Version: 2020.2.0 build 89 Supported Architectures: x64 Website Home Page : http://www.altair.com Language: english System Requirements: PC * Size: 553.8 mb Platform support and system requirements The recommended computer configuration is an Intel I7 or I9 or Xeon based computer; 4-cores (8-threads); 16 GB of memory; OpenGL compatible graphics card with OpenGL 3.1 or later; running Microsoft Windows 10 (64-bit only). SimSolid is multi-threaded so more cores are always better. To use the direct document integration to Onshape, you must have either a free or paid Onshape account. There will be a one-time prompt to authorize SimSolid to access your Onshape account. To use the SOLIDWORKS add-in, you must have a 2013 through 2020 version of SOLIDWORKS. DOWNLOAD http://nitroflare.com/view/E909DB26121E112/lg0kw.Altair.SimSolid.2020.2.0.build.89.x64.rar https://rapidgator.net/file/64ab265b674c29a32e7f10dd9d2a73f0/lg0kw.Altair.SimSolid.2020.2.0.build.89.x64.rar
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