Altair Inspire Extrude 2022.3.8022 Win x64
Free Download Altair Inspire Extrude 2022.3.0 | 3.3 Gb
Product:Altair Inspire Extrude
Version:2022.3.8022
Supported Architectures:x64
Website Home Page :www.altair.com
Languages Supported:english
System Requirements:Windows *
Size:3.3 Gb
The Altair Engineering development team is pleased to announce the availability of Inspire Extrude 2022.3 is an easy-to-use tool for simulating metal extrusion, polymer extrusion, and friction stir welding processes to detect potential defects early in the product development phase and improve the process efficiency.
New Features and Enhancements 2022.3
The Inspire Extrude 2022.3 release includes the following new features and enhancements:
General
Enabling Number Format
The interface is enhanced to specify the number format. Real numbers in the model data and results can be now represented in a fixed or scientific format. In addition, the numerical precision can also be specified. (IEXT-2994)
Advanced Tooltips for Preference Dialog
The preferences dialog options for Inspire Extrude now have advanced tooltips enabled to guide the users. (IEXT-2764
Metal Extrusion
Report Generation
In the previous releases, images used in the automatic PDF report were generated using the batch mode of HyperView. This required packaging HyperView with Inspire Extrude and the installer size was exceeding the allowed limit. Now, the interface has implemented a new feature to generate the images using native Inspire tools. This requires generating the report in an interactive mode.The batch HyperView method is also available if the user has their own HyperView installation and specifies that location in the preferences. (IEXT-2982, IEXT-3018)
Post-processing Tensor Results
The interface will now include derived results for tensor quantities, and these include von Mises stress (effective stress), maximum principal stress, minimum principal stress, and max shear stress results in the post-processing. (IEXT-2987)
Tool Deflection Export
The export dialog of tool deflection now includes reference temperature input data. In the previous releases, it was assuming that data. This data plays a crucial role in determining the material data and thermal stresses. (IEXT-2948)
Polymer Extrusion
Puller Speed
A new feature to specify the puller speed at the exit is implemented. The natural exit speed of the profile is computed from the inlet speed and the extrusion ratio. This new puller speed implementation will allow a puller speed of 10% higher or lower than the natural exit speed. This analysis requires performing mesh update iterations in the solver, and a default value of three mesh update iterations is used. The solver is enhanced to automatically detect any unacceptable mesh distortions and stop the solution when it happens. (IEXT1663)
Resin Transfer Molding
Curing Kinetics Material Data and Visualization
Thermoset polymers undergo curing reactions, and the solver supports two material models to compute curing kinetics. Of these, the generalized nth order and autocatalytic model is difficult to understand and visualize how the material data will affect the reaction. To overcome that, the interface has implemented a new feature that will solve an ordinary differential equation using SciPy and Description the degree of curing as a function of time. This feature will help users to understand the data and also correct if there are any errors.(IEXT2984)
Resolved Issues
The following issues have been resolved for the 2022.3 release:
General:
- Name of the Material. The solver has rules for the name of a material used in the data file. The material interface will now check if the specified names adhere to these rules. It will warn and not allow the user to create the material with an incorrect name. (IEXT-2935)
- Source Material Data Folder Used with Fit Material. The fit material module in the interface is used to create material data from raw input data files. The interface expects this input data to be located in a user folder and not inside the material database, and it was failing when the input data was within the material database. This issue is now resolved. The interface is enhancedto handle this data correctly irrespective of its location. (IEXT-3004)
Polymer Extrusion:
- Calibration Analysis and Inlet BC. A critical issue was found in how Inspire communicated the inlet BC data to the batch meshing module. This led to incorrect data decks. This issue is now resolved. (IEXT-2652)
- Assigning Non-existent Preform Materials. The materials assignment interface stored the previously used preform material and showed that as a default choice in the next model setup. Sometimes, this led to assigning material that does not exist in the material database and subsequent errors due to this assignment. This issue is resolved now. (IEXT-2996)
- User Defined Mesh and Number of Layers. The number of layers specified in the user-defined mesh size was not getting communicated to the batch meshing module and was leading to failed model setup. This issue is resolved in this release.(IEXT-3020)
Altair Inspire Extrudeis a simulation environment designed to help extrusion companies meet the ever increasing demands to produce complex profiles with tight tolerances, quality surface finishes, and high strength properties at reduced cost. Altair Inspire Extrude is a simulation solution for both metal and polymer extrusion. It helps achieve productivity gains by reducing product development costs and improve extrusion quality, increasing production yield. Altair Inspire Extrude is a virtual press where users can visualize material flow and temperature inside a die during extrusion and make necessary changes to ensure balanced flow, while identifying and eliminating product defects.
Polymer Extrusion in Altair Inspire Extrude
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.
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