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HyperView and HyperGraph Introduction

The purpose of this self paced course is to introduce the post processing tools available in HyperView and HyperGraph. Most sections will use the See It, Try It, Do It methodology to cover the concepts. See It allows you to watch a video demonstration of the exercise covered in the section. Try It allows you to go through an interactive video which will guide you through performing the exercise. Do It consists of a written exercise and model that can be opened in HyperWorks Desktop which allows you to perform the exercise on your own.

Inspire Introduction

The purpose of this self paced course is to introduce running optimizations with the Inspire environment. Most sections will use the See It, Try It, Do It methodology to cover the concepts. See It allows you to watch a video demonstration of the exercise covered in the section. Try It allows you to go through an interactive video which will guide you through performing the exercise. Do It consists of a written exercise and model that can be opened in Inspire which allows you to perform the exercise on your own.

Introduction to HyperWorks Desktop for Aerospace Applications

This course is meant for HyperWokrs Desktop users in the Aerospace environment. The course contains a tailored approach to using variuos tools within HyperMesh and HyperView for Aerospace users. Most Chapters will also contain demonstration videos based on Aerospace components.

HM-1010 Opening and Saving Models

Interactive Tutorial demonstrating opening and saving models.

HM-1020 Working with Panels

Interactive Tutorial demonstrating HyperMesh panels.

HM-1030 Organizing a Model

Interactive Tutorial demonstrating tools used for model organization.

HM-2000 Importing and Repairing CAD Models

Interactive Tutorial demonstrating CAD geometry import and repair tools.

HM-2030 Refining Topology to Achieve a Quality Mesh

Interactive Tutorial demonstrating refining topology to achieve a quality mesh.

HM-3000 Creating 1-D Elements

Interactive Tutorial demonstrating the creation of 1-D Elements.

HM-3100 AutoMeshing

Interactive Tutorial demonstrating automesh functionality.

HM-3110 Meshing without Surfaces

Interactive Tutorial demonstrating meshing without surface geometry.

HM-3120 2-D Mesh in Curved

Interactive Tutorial demonstrating the creation of a mesh on curved surfaces.

HM-3200 Tetrameshing

Interactive Tutorial demonstrating the creation of a tetramesh.

RD-2000 Direct Frequency Repsonse Analysis of a Flat Plate

Interactive Tutorial demonstrating how to import an existing FE model, apply boundary conditions, and perform a finite element analysis on a flat plate.

RD-2020 Direct Transient Dynamic Analysis of a Bracket

Interactive Tutorial demonstrating how to perform direct transient dynamic analysis using RADIOSS.

RD-2030 Modal Transient Dynamic Analysis of a Bracket

Interactive Tutorial demonstrating how to perform modal transient dynamic analysis using RADIOSS.

RD-2040 Nonlinear Gap Analysis of an Airplane Wing Rib

Interactive Tutorial demonstrating how to perform nonlinear gap analysis using RADIOSS.

RD-2050 Random Response Analysis of a Flat Plate

Interactive Tutorial demonstrating how to set up the random response analysis for the existing frequency response analysis model.

OS-2070 Topology Optimization of a Reduced Model Using DMIC

Interactive Tutorial demonstrating how to reduce the finite element model using static reduction and also how to perform topology optimization on that reduced model.

OS-2080 Topology Optimization of a Hook With Stress Constraints

Interactive Tutorial demonstrating a topology optimization on a bracket-hook modeled with shell elements.

OS-2095 Frequency Response Optimization of a Rectangular Plate

Interactive Tutorial demonstrating the capability of frequency response optimization using OptiStruct.

OS-4070 Free-Sizing Nonlinear Gap Optimization on an Airplane Wing Rib

Interactive Tutorial demonstrating how to perform free-sizing optimization using OptiStruct.

RD-2010 Modal Frequency Response Analysis of a Flat Plate

Interactive Tutorial demonstrating how to import an existing FE model, apply boundary conditions, and perform a modal frequency response analysis on a flat plate.

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