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Pro/ENGINEER Wildfire 5.0 Mechanica Tutorial (Structure/Thermal)

Author Roger Toogood
Publisher Schroff Development Corporation
Category Computer-aided design
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Book Details
Author(s)Roger Toogood
ISBN / ASIN158503536X
ISBN-139781585035366
AvailabilityIn Stock.
Sales Rank213,952
MarketplaceUnited States 🇺🇸

Description

Pro/ENGINEER Wildfire 5.0 Mechanica Tutorial (Structure/Thermal) introduces new users to finite element analysis using Pro/ENGINEER Mechanica and how it can be used to analyze a variety of problems. The tutorial lessons cover the major concepts and frequently used commands required to progress from a novice to an intermediate user level. The commands are presented in a click-by-click manner using simple examples and exercises that illustrate a broad range of the analysis types that can be performed. In addition to showing the command usage, the text will explain why certain commands are being used and, where appropriate, the relation of commands to the overall FEA philosophy are explained. Moreover, since error analysis is an important skill, considerable time is spent exploring the created models so that users will become comfortable with the debugging phase of modeling.

This textbook is written for first-time FEA users (in general) and MECHANICA users (in particular). After a brief introduction to finite element modeling, the tutorial introduces the major concepts behind the use of Pro/MECHANICA to perform Finite Element Analysis of parts. These include: modes of operation, element types, design studies (analysis, sensitivity studies, organization), and the major steps for setting up a model (materials, loads, constraints, analysis type), studying convergence of the solution, and viewing the results. Both 2D and 3D problems are treated.

Table of Contents
1. Introduction to the Tutorials
2. Finite Element Modeling with MECHANICA
3. Solid Models (Part 1)
4. Solid Models (Part 2)
5. Plane Stress and Plane Strain Models
6. Axisymmetric Solids and Shells
7. Shell Models
8. Beams and Frames
9. Miscellaneous Topics
10. Thermal Models

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