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OptiStruct Optimization Concept Design with Topology and Topography Optimization;Day 1 Agenda;Day 2 Agenda;Chapter 1 - Introduction;HyperWorks Overview;OptiStruct in HyperWorks;OptiStruct Overview;OptiStruct Overview;OptiStruct Optimization Overview;Lightweight SUV Frame Development;Optimization Process for Torsion Links;Chapter 2 – Theoretical Background;Structural Optimization Concepts;Optimization Definitions;Optimization Definitions;Optimization Terminology;Optimization Terminology;Optimization Terminology;Optimization Problem Example;Optimization Problem Example;Optimization Problem Example;Optimization Terminology;Optimization Terminology;Optimization Terminology;Interpreting the Results;Interpreting the results;The DRCO Approach;Optimization Problem Example;Exercise 2.1: Getting Started Using Inspire;Exercise 2.1 (Manual Page 39):
Getting Started using Inspire
File Name and Location:
…\Model Files\2.1_GETTING_STARTED_USING_INSPIRE\dual bracket.stmod
Objectives:
Viewing Geometry Using Inspire
Manipulating Geometry Using Inspire
Editing Geometry Using Inspire
Applying Loads to Geometry Using Inspire;Do-it-yourself;Do-it-yourself;Do-it-yourself;Exercise 2.2: Topology Optimization Using Multiple Load Cases in Inspire;Exercise 2.2 (Manual Page 55):
Topology Optimization Using Multiple Load Cases in Inspire
File Name and Location:
…\Model Files\2.2_TOPO_OPTI_MULT_LOADCASES_IN_INSPIRE\y-bracket.stmod
Objectives:
Editing Geometry Using Inspire
Applying Loads Using Inspire
Defining Design Spaces Using Inspire
Applying Symmetry and Draw Direction Using Inspire
Performing Optimization Using Inspire;Do-it-yourself;Do-it-yourself;Do-it-yourself;Do-it-yourself;Do-it-yourself;Do-it-yourself;Do-it-yourself;Do-it-yourself;Do-it-yourself;Chapter 3 – Optimization Interface and Setup;Optimization GUI ;Optimization Setup module in HyperMesh;Optimization Setup module in HyperMesh;Optimization Setup module in HyperMesh;Optimization Setup module in HyperMesh;Model Definition St
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