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Thin Film Materials: Stress, Defect Formation and Surface Evolution

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Thin Film Materials: Stress, Defect Formation and Surface Evolution Cover

 

Synopses & Reviews

Publisher Comments:

This book provides comprehensive coverage of stress, defect formation and surface evolution in thin films. With its balanced coverage of theory, experiment and simulation and many homework problems, the text will be essential reading in senior undergraduate and graduate courses on thin films.

Synopsis:

Thin films play an important role in many technological applications which include: microelectronic devices, magnetic storage media and surface coatings. This book provides a comprehensive coverage of the major issues and topics dealing with stress, defect formation and surface evolution in thin films. Of particular interest to engineers, materials scientists and physicists, it provides a balanced coverage of theory, experiment and simulation. Highly illustrated and containing numerous homework problems, this book will be essential reading on senior undergraduate and graduate courses on thin films.

Synopsis:

This graduate textbook provides a comprehensive coverage of the mechanical properties of thin films, with practical examples and homework problems.

Synopsis:

This book provides comprehensive coverage of stress, defect formation and surface evolution in thin films. With its balanced coverage of theory, experiment and simulation and many homework problems, the text will be essential reading in senior undergraduate and graduate courses on thin films.

About the Author

L. Ben Freund is the Henry Ledyard Goddard University Professor in the Division of Engineering at Brown University.Subra Suresh is the Ford Professor of Engineering and Head of the Department of Materials Science and Engineering, and Professor of Mechanical Engineering at Massachusetts Institute of Technology.

Table of Contents

1. Introduction and overview; 2. Film stress and substrate curvature; 3. Stress in anisotropic and patterned films; 4. Delamination and fracture; 5. Film buckling, bulging and peeling; 6. Dislocation formation in epitaxial systems; 7. Dislocation interactions and strain relaxation; 8. Equilibrium and stability of surfaces; 9. The role of stress in mass transport.

Product Details

ISBN:
9780521529778
Author:
Freund, L. B.
Publisher:
Cambridge University Press
Author:
Suresh, S.
Author:
Freund, Ben
Author:
Suresh, Subra
Location:
Cambridge
Subject:
Material Science
Subject:
Thin films
Subject:
Materials Science-General
Edition Description:
Trade paper
Series Volume:
Stress, Defect Forma
Publication Date:
20101131
Binding:
TRADE PAPER
Grade Level:
Professional and scholarly
Language:
English
Illustrations:
75 b/w illus. 75 exercises
Pages:
770
Dimensions:
9.50x6.80x1.30 in. 3.30 lbs.

Related Subjects

Engineering » Engineering » General Engineering
Science and Mathematics » Electricity » General Electronics
Science and Mathematics » Materials Science » General

Thin Film Materials: Stress, Defect Formation and Surface Evolution New Trade Paper
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Product details 770 pages Cambridge University Press - English 9780521529778 Reviews:
"Synopsis" by , Thin films play an important role in many technological applications which include: microelectronic devices, magnetic storage media and surface coatings. This book provides a comprehensive coverage of the major issues and topics dealing with stress, defect formation and surface evolution in thin films. Of particular interest to engineers, materials scientists and physicists, it provides a balanced coverage of theory, experiment and simulation. Highly illustrated and containing numerous homework problems, this book will be essential reading on senior undergraduate and graduate courses on thin films.
"Synopsis" by , This graduate textbook provides a comprehensive coverage of the mechanical properties of thin films, with practical examples and homework problems.
"Synopsis" by , This book provides comprehensive coverage of stress, defect formation and surface evolution in thin films. With its balanced coverage of theory, experiment and simulation and many homework problems, the text will be essential reading in senior undergraduate and graduate courses on thin films.
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