The live series is over, but the on-demand training sessions are available! Choose from a training below to attend an Altair University training for FREE! 


Introduction to HyperMesh/HyperView


This is an introductory course for using HyperMesh to create and set up finite element models for analysis. A combination of lectures and exercises will familiarize students to the HyperMesh environment, process, and suite of tools needed to start using HyperMesh in their work. 

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OptiStruct for Structural Analysis


This session will highlight the capabilities of Altair's award winning solver technology found in OptiStruct. Live demonstrations will feature the Linear Analysis capabilities as well as the multi-disciplinary Optimization capabilities found in this industry leading software. Linear static, modal and buckling analysis as well as topology, topography, size, shape, free size and free shape optimization techniques will be shown. 

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OptiStruct for Composite Analysis & Optimization


This course is intended to provide an overview of performing Composite Analysis and Optimization using HyperMesh and OptiStruct. Students will learn the basic concepts about composite and how to perform analysis and optimization on models with these materials. This is a theoretical and practical course that covers all design steps for systems manufactured with composite materials using an automated optimization technique developed inside HyperWorks.


Virtual Wind Tunnel


In this session, Madhura Karve will give overview of Altair’s Virtual Wind Tunnel (VWT) used for external aerodynamic analysis. Topics will include model preparation, design changes using morphing, solver technology (Navier-Stokes) and shape optimization.


MotionView / MotionSolve


This is an introductory course for solving MBD problems using HyperWorks and includes constructing, solving and post-processing multi-body dynamic (MBD) problems.


Altair Inspire for Design Optimization & Analysis


In this session, Altair will be highlighting the optimization driven design process using Inspire. We will be learning how to create/import geometry, then set up the model for topology optimization, analyze the design concepts generated and then recreate geometry for final design. We will also be learning how to Nurbify a design, using the optimized results.


Altair Compose


Compose is a matrix based math and programming language and IDE (Integrated Development Environment) applicable for CAE data processing and plotting. It allows user to develop math based programs and functions to help simulate real world events.