Welding simulations using ABAQUS : a practical guide for engineers / Bahman Meyghani, Mokhtar Awang.
2022
TS227.2 .M49 2022
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Title
Welding simulations using ABAQUS : a practical guide for engineers / Bahman Meyghani, Mokhtar Awang.
Author
Meyghani, Bahman, author.
ISBN
9789811913204 (electronic bk.)
981191320X (electronic bk.)
9789811913198
9811913196
981191320X (electronic bk.)
9789811913198
9811913196
Published
Singapore : Springer, [2022]
Copyright
©2022
Language
English
Description
1 online resource (135 pages) : illustrations (chiefly color)
Item Number
10.1007/978-981-19-1320-4 doi
Call Number
TS227.2 .M49 2022
Dewey Decimal Classification
671.5/20285
Summary
This book presents the use of ABAQUS software in a simplified manner, for use in welding-related issues. Increasing human needs leads to the creation of complicated scientific problems. In the majority of these problems, it is necessary to join different parts and geometries together. Classical methods such as elasticity theory of stress distribution and governing equations of temperature distribution are not appropriate for solving these complicated problems. To overcome these challenges, finite element methods are proposed in order to solve different processes using differential equation. ABAQUS is a user-friendly commercial finite element software for modeling different processes in mechanical, civil, aerospace and other engineering fields. This book contains unified and detailed tutorials for professionals and students who are interested in simulating different welding processes using the ABAQUS finite element software. .
Bibliography, etc. Note
Includes bibliographical references.
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Access limited to authorized users.
Source of Description
Description based upon print version of record.
Added Author
Awang, Mokhtar, author.
Available in Other Form
Welding Simulations Using ABAQUS
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Table of Contents
Chapter 1: Introduction to Friction Stir Welding (FSW)
Chapter 2: Thermomechanical Analysis
Chapter 3: Finite Element Modeling of FSW
Chapter 4: Arbitrary Lagrangian-Eulerian (ALE) method
Chapter 5: Post Processor and Visualization of the Results
Chapter 6: Thermomechanical Simulation of FSW Using User Defined Subroutine Modeling Technique
Conclusions
References.
Chapter 2: Thermomechanical Analysis
Chapter 3: Finite Element Modeling of FSW
Chapter 4: Arbitrary Lagrangian-Eulerian (ALE) method
Chapter 5: Post Processor and Visualization of the Results
Chapter 6: Thermomechanical Simulation of FSW Using User Defined Subroutine Modeling Technique
Conclusions
References.