دانلود نرم افزار Altair HyperXtrude
شرکت های اکستروژن امروزی به علت استفاده از چرخه های کوتاهتر توسعه محصول، مجبور به تولید مخلوط عالی تر و بهتری از پروفیل های پیچیده و در عین حال کاهش هزینه های تولید هستند.
HyperXtrude با ارائه یک محیط شبیه سازی شده برای تجزیه و تحلیل و بهینه سازی قالب اکستروژن و وضعیت پروسه، می تواند پاسخگویی برای این نیازها باشد. HyperXtrude به طور گسترده ای در صنعت اکستروژن استفاده می شود و در واقع مانند یک پرس مجازی است که کاربر می تواند جریان مواد و درجه حرارت داخل قالب در حین اکستروژن را تجسم کند و به ایجاد تغییرات لازم برای اطمینان از جریان متعادل و رفع نقایص محصول بپردازد.
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دانلود Altair HyperXtrude v2015.1 Build 1362 x64 - نرم افزار تجزیه و تحلیل قالب های اکستروژن
💿 نام نرم افزار | Altair HyperXtrude |
📌 شماره نسخه | v2015.1 Build 1362 |
📁 دسته بندی | Altair |
💾 حجم فایل | 549.33 مگابایت |
📅 تاریخ به روزرسانی | 1395/1/16 |
📊 تعداد دانلود | 13,731 |
❤️ هزینه دانلود | رایگان و نیم بها |
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ابزار تجزیه و تحلیل برای آزمایش مجازی، اعتبار سنجی، اصلاح و بهینه سازی طرح قالب اکستروژن
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HyperXtrude offers an analysis tool for virtual testing, validation, correction, and optimization of extrusion die designs,
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ابزار تجزیه و تحلیل برای آزمایش مجازی، اعتبار سنجی، اصلاح و بهینه سازی طرح قالب اکستروژن,
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2022-08-23
11:01:01
Altair HyperXtrude 2015.1 Build 1362 Download
Today's extrusion companies are forced to produce a higher mix of complex profiles in shorter product development cycles while simultaneously reducing their production costs. HyperXtrude is a simulation environment to meet these needs and increases productivity by analyzing and optimizing extrusion dies, and process conditions.
HyperXtrude is like a virtual press where the user can visualize material flow and temperature inside a die during extrusion, and make necessary changes to ensure balanced flow and eliminate product defects. HyperXtrude helps reducing costly die-trials.
HyperXtrude is widely used in the extrusion industry and since its inception in 1999, its development is driven by the industry and customer needs.
HyperXtrude® 2015 introduces a new CAD interface for HyperXtrude solver and takes a giant leap to a direct CAD to solution approach. This approach automates and hides the meshing and data deck creation, and completely relegates it to the background. Hence, users can submit the analysis after creating the CAD model. In this release, interface for steady state metal extrusion is supported. Key features are listed below and they all can be completed in few mouse clicks.
Metal Extrusion:
- Speed and Performance: Now you can work with large models up to 4 million nodes on both Windows and Linux 64-bit platforms.
- Solver Accuracy: Improvements include cone prediction of profiles, especially for those with large variation in thicknesses.
- Bearing Optimization: This module determines the imbalance in material flow at the end of the bearing region instead of the exit to improve the accuracy of the bearing optimization.
- Mandrel Offset: In this release, you can mesh the model with the mandrel offset and the solver will account for this step in the computation. The advantage of including the mandrel offset is savings in time spent in CAD correction.
- Grain Size Computations: A new dynamic recrystallization grain size model (DRX) accounts for the dependency of grain size on strain, and temperature-corrected strain rate.
- Automatic Extraction of Flow Volume: A new one-click option extracts the negative volume for the tool assembly and greatly minimizes model preparation time.
- Automatic Billet Creation: This option lets you determine a billet center from a die surface or edge. Specify center coordinates and estimate the upset billet length from the specified data.
- One-Click Solid Editing: One-click editing lets you merge or connect solids with a shared, common surface at the interface of adjacent solids.
- Geometry Cleanup: Access HX-Geom Cleanup from the Geometry menu to remove edges and sliver surfaces. This option greatly minimizes model cleanup time.
- Specifying Billet Taper Data: With the Billet Taper option, you can specify three types of tapers in your analysis (Axial taper, radial taper, and lateral taper). You can specify the Axial Taper in up to five zones where temperature can vary linearly with different gradients.
- Starter Billet: Using the Billet Taper option, you can specify starter billets of different lengths and use a different ram speed for each billet. This data is relevant only for transient, multi-cycle analysis. You can specify up to 5 different initial cycles with varying billet length data. In addition, you can use different axial tapers for each of the initial cycles.
- Super Alloy Extrusion Using Glass Lubrication: The Extrusion Wizard now supports glass lubricated (with glass pad and glass powder coating) extrusion. Glass lubrication is often used with nickel, titanium, and steel alloy extrusion (requires a custom solver version).
- Fit Material: An improved Fit Material GUI in the HyperXtrude material database lets you specify material data interactively or via the DAT file.
- Improve Mesh: The Extrusion Wizard provides an option to improve the mesh quality by remeshing the solids based on initially generated mesh.
- Tool Deflection Analysis in User Units: The Tool Deflection Wizard now supports user units. For example, if you set up a model in British units, your results from OptiStruct will have displacements in inches and stresses in ksi.
- HX Job Manager: Added support for this feature lets you submit OptiStruct runs on remote machines.
Polymer Extrusion:
- Performance Enhancements: Now you can work with large models up to 4 million nodes on both Windows and Linux 64-bit platforms.
- Automatic Extraction of Flow Volume: A new one-click option extracts the negative volume for the tool assembly and greatly minimizes model preparation time.
- One-Click Solid Editing: The Merge option merges selected solids. The Connect option creates a shared common surface at the interface between adjacent selected solids.
- Easy Geometry Cleanup: The new HX-Geom Cleanup option, accessed from the Geometry menu, lets you remove unwanted edges and sliver surfaces, and minimize model cleanup time.
- Tire Extrusion Wizard: The Tire Extrusion Wizard is used to simulate the extrusion of tire treads. The model-setup feature lets you create geometry based on a given die configuration or user-specified solids. This feature includes support of multi-cut extrusion dies, specification of tread and die contours as symmetric or full contours, and automatic report-generation.
- Improve Mesh: The Extrusion Wizard provides an option to improve mesh quality by remeshing the solids based on initially generated mesh.
- Tool Deflection Analysis Wizard: Solve tool deflection analysis with OptiStruct. Second order elements are supported, as well as pressures and forces. Loads from a HyperXtrude analysis can be mapped. Contacts between die plates, temperature conditions and other boundary conditions are automatically created.
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