Nonlinear theory of dislocations and disclinations in elastic bodies - Info and Reading Options
By Leonid M. Zubov

"Nonlinear theory of dislocations and disclinations in elastic bodies" was published by Springer in 1997 - Berlin, it has 205 pages and the language of the book is English.
“Nonlinear theory of dislocations and disclinations in elastic bodies” Metadata:
- Title: ➤ Nonlinear theory of dislocations and disclinations in elastic bodies
- Author: Leonid M. Zubov
- Language: English
- Number of Pages: 205
- Publisher: Springer
- Publish Date: 1997
- Publish Location: Berlin
“Nonlinear theory of dislocations and disclinations in elastic bodies” Subjects and Themes:
- Subjects: ➤ Dislocations in crystals - Nonlinear theories - Solid state physics - Elasticity - Nichtlineare Elastizitätstheorie - Versetzung <Kristallographie> - Crystallography - Physics - Mathematical physics - Mathematical Methods in Physics - Numerical and Computational Methods
Edition Specifications:
- Pagination: vi, 205 p. :
Edition Identifiers:
- The Open Library ID: OL690052M - OL2720162W
- Online Computer Library Center (OCLC) ID: 37546779
- Library of Congress Control Number (LCCN): 97037130
- ISBN-10: 3540626840
- All ISBNs: 3540626840
AI-generated Review of “Nonlinear theory of dislocations and disclinations in elastic bodies”:
"Nonlinear theory of dislocations and disclinations in elastic bodies" Description:
The Open Library:
The author applies methods of nonlinear elasticity to the investigation of the defects in the crystal structure of solids such as dislocations and disclinations. These defects characterize mainly the plastic and strength properties of many constructional materials. Contrary to the well-developed nonlinear continual theory of dislocations continuously distributed in the body, which is based on geometrical ideas, the nonlinear analysis of isolated dislocations and disclinations is less developed; it is given for the first time in this book. This analysis is essential since the deformation near the axes of an isolated defect is rather big, so the linear theory is not applicable here. The general theory of Volterra's dislocations in elastic media under large deformations is developed. A number of exact solutions of the problems are found. The nonlinear approach to investigating the isolated defects produces the results that often differ qualitatively from those of the linear theory. The book addresses students and researchers.
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