Finite Element Analysis for Design Engineers
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Finite Element Analysis for Design Engineers
Third Edition
PAUL M. KUROWSKI
Warrendale, Pennsylvania, USA
Finite Element Analysis for Design Engineers
Front Matter
Print ISBN: 978-1-4686-0535-8
eISBN: 978-1-4686-0537-2
DOI: 10.4271/R-541
Finite Element Analysis for Design Engineers
Third Edition
Every effort has been made to provide an accurate text. The author and the manufacturers shall not be held liable for any parts developed with this book or held responsible for any inaccuracies or errors that appear in the book.
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Copyright 2023 SAE International. All rights reserved.
No part of this publication may be reproduced, stored in a retrieval system, or transmitted, in any form or by any means, electronic, mechanical, photocopying, recording, or otherwise, without the prior written permission of SAE International. For permission and licensing requests, contact SAE Permissions, 400 Commonwealth Drive, Warrendale, PA 15096-0001 USA; e-mail: ; phone: 724-772-4028
Library of Congress Catalog Number 2022949904
http://dx.doi.org/10.4271/9781468603125
Information contained in this work has been obtained by SAE International from sources believed to be reliable. However, neither SAE International nor its authors guarantee the accuracy or completeness of any information published herein and neither SAE International nor its authors shall be responsible for any errors, omissions, or damages arising out of use of this information. This work is published with the understanding that SAE International and its authors are supplying information but are not attempting to render engineering or other professional services. If such services are required, the assistance of an appropriate professional should be sought.
ISBN-Print978-1-4686-0535-8
ISBN-PDF978-1-4686-0536-5
ISBN-epub978-1-4686-0537-2
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Publisher
Sherry Dickinson Nigam
Product Manager
Amanda Zeidan
Director of Content Management
Kelli Zilko
Production and Manufacturing Associate
Brandon Joy
During the 60+ years of its development, Finite Element Analysis (FEA) evolved from an exotic analysis method accessible only to specialized analysts into a mainstream engineering tool. Progress in computer hardware and operating systems combined with progress in Computer-Aided Design made FEA available to design engineers for use during product design process.
Many books have been written about FEA. At one end of the spectrum, we find books going deep into theory, and at the other end of the spectrum, software manuals explaining how to use a certain program. There is little FEA literature taking a middle ground approach and specifically addressing the needs of design engineers who use FEA as an everyday design tool. This book attempts to fill this void by focusing on understanding FEA fundamentals, which are explained by simple yet meaningful examples. Finite Element Analysis for Design Engineers takes a practical approach, characteristic of the attitudes of design engineers, and offers the readers an opportunity to try out all discussed topics by solving downloadable exercises using their own FEA program.
Finite Element Analysis is a very broad field of knowledge. Repetitions in discussing concepts, methods, and techniques cannot be avoided. Some topics are discussed more than once, taking advantage of a growing body of knowledge as the reader progresses through the book.
Back Matter
Print ISBN: 978-1-4686-0535-8
eISBN: 978-1-4686-0537-2
DOI: 10.4271/R-541
Anti-symmetry,
bracket02 model,
definition,
shaft01 model,
torsion,
vibration modes,
visualization,
Automatic meshing,
Averaged stress,
Axial symmetry,
Boundary conditions,
anti-symmetry,
bracket02 model,
definition,
shaft01 model,
torsion,
visualization,
axial symmetry,
cyclic symmetry,
definition,
degrees of freedom,
displacement,
load,
mirror symmetry
blue faces,
bracket02 model,
definition,
link01 model,
pressure tank model,
restraints,
Boundary Element Method,
Boundary value problem,
Buckling analysis
linear analysis
analogies and terminology,
BLF,
convergence,
stress stiffness,
modes of failure,
nonlinear analysis
Arc-Length Control method,
buckling mode shape,
chain of events,
compressive loads,
elastic-perfectly plastic material model,
vs. linear buckling analysis,
linear material model,
Load Control method,
load-displacement curve,
onset controlling,
results,
snap-through effect,
stress stiffness,
structural collapse,
notched column,
stress stiffening,
Buckling Load Factor (BLF),
Computational Fluid Dynamic (CFD) modules,
Computer-Aided Design (CAD),
analyses,
by curve,
displacement boundary conditions,
geometry preparation,
load boundary conditions,
pulley geometry,
solution domain,
by surfaces,
system of units,
by volumes,
Computer-Aided Engineering (CAE)
applications,
boundary conditions,
design engineers,
material properties,
mechanism analysis,
numerical methods,
Conduction,
Conjugate heat transfer,
Contact analysis,
cylindrical faces,
large displacement analysis,
mesh,
oversized ring,
pressure,
solution,
Von Mises stress,
Convection,
Convergence process,
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