Advanced Continuum Theories And Finite Element Analyses

Advanced Continuum Theories And Finite Element Analyses

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Advanced Continuum Theories And Finite Element Analyses by James D Lee

This comprehensive volume presents a unified framework of continuum theories. It indicates that (i) microcontinuum theories (micromorphic and micropolar theories) are natural extension of classical continuum mechanics, and (ii) classical continuum mechanics is a special case of microcontinuum theories when the deformable material point is idealized as a single mathematical point. The kinematics and basic laws are rigorously derived. Based on axiomatic approach, constitutive theory is systematically derived for various kinds of materials, ranging from Stokesian fluid to thermo-visco-elastic-plastic solid. Material force and Thermomechanical-electromagnetic coupling are introduced and discussed. Moreover, general finite element methods for large-strain thermomechanical coupling physical phenomena are systematically formulated. Also, non-classical continuum theories (Nonlocal Theory, Mechanobiology, 4D printing, Poromechanics, and Non-Self-Similar Crack Propagation) are rigorously formulated with applications and demonstrated numerically.As an advanced monograph, this unique compendium can also be used as a textbook for several graduate courses, including continuum mechanics, finite element methods, and advanced engineering science theories. Extensive problems are provided to help students to better understand the topics covered.
SKU Nicht verfügbar
ISBN 13 9789811201486
ISBN 10 981120148X
Titel Advanced Continuum Theories And Finite Element Analyses
Autor James D Lee
Serie Frontier Research In Computation And Mechanics Of Materials And Biology
Buchzustand Nicht verfügbar
Bindungsart Hardback
Verlag World Scientific Publishing Co Pte Ltd
Erscheinungsjahr 2020-01-30
Seitenanzahl 524
Hinweis auf dem Einband Die Abbildung des Buches dient nur Illustrationszwecken, die tatsächliche Bindung, das Cover und die Auflage können sich davon unterscheiden.