Size-Dependent Continuum Mechanics Approaches

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160,49 

Theory and Applications, Springer Tracts in Mechanical Engineering

ISBN: 3030630528
ISBN 13: 9783030630522
Herausgeber: Esmaeal Ghavanloo/S Ahmad Fazelzadeh/Francesco Marotti de Sciarra
Verlag: Springer Verlag GmbH
Umfang: xviii, 452 S., 63 s/w Illustr., 85 farbige Illustr., 452 p. 148 illus., 85 illus. in color.
Erscheinungsdatum: 03.04.2022
Auflage: 1/2022
Produktform: Kartoniert
Einband: Kartoniert

This book offers a comprehensive and timely report of size-dependent continuum mechanics approaches. Written by scientists with worldwide reputation and established expertise, it covers the most recent findings, advanced theoretical developments and computational techniques, as well as a range of applications, in the field of nonlocal continuum mechanics. Chapters are concerned with lattice-based nonlocal models, Eringen’s nonlocal models, gradient theories of elasticity, strain- and stress-driven nonlocal models, and peridynamic theory, among other topics. This book provides researchers and practitioners with extensive and specialized information on cutting-edge theories and methods, innovative solutions to current problems and a timely insight into the behavior of some advanced materials and structures. It also offers a useful reference guide to senior undergraduate and graduate students in mechanical engineering, materials science, and applied physics.

Artikelnummer: 5273984 Kategorie:

Beschreibung

This book offers a comprehensive and timely report of size-dependent continuum mechanics approaches. Written by scientists with worldwide reputation and established expertise, it covers the most recent findings, advanced theoretical developments and computational techniques, as well as a range of applications, in the field of nonlocal continuum mechanics. Chapters are concerned with lattice-based nonlocal models, Eringens nonlocal models, gradient theories of elasticity, strain- and stress-driven nonlocal models, and peridynamic theory, among other topics. This book provides researchers and practitioners with extensive and specialized information on cutting-edge theories and methods, innovative solutions to current problems and a timely insight into the behavior of some advanced materials and structures. It also offers a useful reference guide to senior undergraduate and graduate students in mechanical engineering, materials science, and applied physics.

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