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Ansys Mechanical Finite Element Analysis (FEA)

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SKU ansys-mechanical
Status Enabled
Description

Ansys Mechanical
Finite Element Analysis (FEA) Software for Structural Engineering

Ansys Mechanical is a best-in-class finite element solver with structural, thermal, acoustics, transient and nonlinear capabilities to improve your modeling.

Engineers Gain Answers Fast and With Confidence

Ansys Mechanical enables you to solve complex structural engineering problems and make better, faster design decisions. With the finite element analysis (FEA) solvers available in the suite, you can customize and automate solutions for your structural mechanics problems and parameterize them to analyze multiple design scenarios. Ansys Mechanical is a dynamic tool that has a complete range of analysis tools.

  • Easy to Use, Multi-Purpose Tool
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  • Dynamic, Integrated Platform
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  • Persistent, Dependable, Accurate Solver Technology
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  • Powerful Nonlinear and Linear Solvers

Quick Specs

Ansys Mechanical offers a dynamic environment with a complete range of analysis tools, from preparing geometry for analysis to connecting additional physics for even greater fidelity. The intuitive and customizable user interface enables engineers of all levels to get answers fast and with confidence.

Mechanical Add-Ons Ribbon

An intuitively designed toolbar for Ansys Mechanical Add-ons empowers users to quickly and efficiently access multipurpose workflows. The toolbar includes 14 Add-ons such as the NVH Toolkit, DesignLife Fatigue, and Bolt Tools.

MSUP Harmonic and MSUP Transient workflow

Robust workflow improvements with Mode Superposition (MSUP) Harmonic and MSUP Transient facilitate faster workflows and overall solver speed. Updates include cutting data mapping time by 50% a,nd a 4X reduction in overall disk space helps users cut costs and maintain workspace flexibility when conducting the MSUP Harmonic and MSUP Transient workflows.

Coupled Field Analyses

Increased exposure of Coupled Field Elements in Mechanical enables easier workflows for sensor design, MEMs devices, and actuators. New capabilities include the ability to model piezoelectric and acoustic degrees of freedom and a library of commonly used piezoelectric materials used in sensor design.