Mechanical simulation with MATLAB® / Dan B. Marghitu, Hamid Ghaednia, Jing Zhao.
2022
TA350
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Title
Mechanical simulation with MATLAB® / Dan B. Marghitu, Hamid Ghaednia, Jing Zhao.
Author
ISBN
9783030881023 (electronic bk.)
3030881024 (electronic bk.)
3030881016
9783030881016
3030881024 (electronic bk.)
3030881016
9783030881016
Publication Details
Cham, Switzerland : Springer, [2022]
Language
English
Description
1 online resource
Item Number
10.1007/978-3-030-88102-3 doi
Call Number
TA350
Dewey Decimal Classification
620.10015/118
Summary
This book deals with the simulation of the mechanical behavior of engineering structures, mechanisms and components. It presents a set of strategies and tools for formulating the mathematical equations and the methods of solving them using MATLAB. For the same mechanical systems, it also shows how to obtain solutions using a different approaches. It then compares the results obtained with the two methods. By combining fundamentals of kinematics and dynamics of mechanisms with applications and different solutions in MATLAB of problems related to gears, cams, and multilink mechanisms, and by presenting the concepts in an accessible manner, this book is intended to assist advanced undergraduate and mechanical engineering graduate students in solving various kinds of dynamical problems by using methods in MATLAB. It also offers a comprehensive, practice-oriented guide to mechanical engineers dealing with kinematics and dynamics of several mechanical systems.
Bibliography, etc. Note
Includes bibliographical references and index.
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Access limited to authorized users.
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text file
PDF
Source of Description
Online resource; title from PDF title page (SpringerLink, viewed November 18, 2021).
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Series
Springer tracts in mechanical engineering, 2195-9870
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Table of Contents
Introduction
Classical Analysis of a Mechanism with One Dyad
Contour Analysis of a Mechanism with One Dyad
Classical Analysis of a Mechanism with Two Dyads
Contour Analysis of a Mechanism with Two Dyads
Dyad Routines for Mechanisms
Epicyclic Gear Trains
Cam and Follower Mechanism
Direct Dynamics.
Classical Analysis of a Mechanism with One Dyad
Contour Analysis of a Mechanism with One Dyad
Classical Analysis of a Mechanism with Two Dyads
Contour Analysis of a Mechanism with Two Dyads
Dyad Routines for Mechanisms
Epicyclic Gear Trains
Cam and Follower Mechanism
Direct Dynamics.