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(Ebook) Classical Theory of Crystal Dislocations From Iron to Gallium Nitride 1st Edition by Hiroyasu Saka ISBN 9789814749169 9814749168

  • SKU: EBN-42601754
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Authors:Hiroyasu Saka
Pages:400 pages.
Year:2016
Editon:Illustrated
Publisher:World Scientific Publishing Co
Language:english
File Size:50.49 MB
Format:pdf
ISBNS:9789814749169, 9814749168
Categories: Ebooks

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(Ebook) Classical Theory of Crystal Dislocations From Iron to Gallium Nitride 1st Edition by Hiroyasu Saka ISBN 9789814749169 9814749168

(Ebook) Classical Theory of Crystal Dislocations From Iron to Gallium Nitride 1st Edition by Hiroyasu Saka - Ebook PDF Instant Download/Delivery: 9789814749169 ,9814749168
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ISBN 10: 9814749168
ISBN 13: 9789814749169
Author: Hiroyasu Saka

The book consists of two parts: Part 1 is a standard text of dislocation theory. Mathematics is avoided as much as possible. Part 2 describes application of dislocation theory, which includes mechanical properties (including the inverse temperature dependence of strength) and dislocations in functional materials such as Si, GaN and SiC and dislocations in a thin crystal such as an epitaxial layer. This is what has been long anticipated among researchers in industry. The book contains about 330 illustrations (mostly originals by the author) and the pictures obtained by the author by means of in-situ experiment in a transmission electron microscope over the past 50 years. This book includes many exercises, which the author found useful when he was teaching in Department of Materials Science and Engineering of Nagoya University to stimulate their interests in dislocation theory.

(Ebook) Classical Theory of Crystal Dislocations From Iron to Gallium Nitride 1st Edition Table of contents:

  1. Elements of Crystallography

  2. Geometry of Dislocations

  3. Fundamentals of Elasticity Theory

  4. Elasticity Theory of Dislocations

  5. Elastic Interaction Between Dislocations and Solute Atoms

  6. Motion (Peierls Force) and Multiplication (Frank‑Read Source, Bardeen‑Herring Source) of Dislocations

  7. Dislocation Groups

  8. Dissociated Dislocations in FCC Structure

  9. Dissociated Dislocations in HCP

  10. Dislocations in Ordered Alloys and Intermetallic Compounds and the Inverse Temperature Dependence of Strength

  11. Dislocations in Diamond, Zincblende, Wurtzite Structures and SiC

  12. Dislocations and Macroscopic Strength

  13. Dislocations in Thin Foils

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Tags: Hiroyasu Saka, Classical Theory, Crystal Dislocations, Gallium Nitride

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