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Mechanics of Anisotropic Materials: Engineering Materials

Editat de Jacek J. Skrzypek, Artur W. Ganczarski
en Limba Engleză Hardback – 21 mai 2015
The book is focused on constitutive description of mechanical behaviour of engineering materials: both conventional (polycrystalline homogeneous isotropic or anisotropic metallic materials) and non-conventional (heterogeneous multicomponent anisotropic composite materials). Effective material properties at the macro-level depend on both the material microstructure (originally isotropic or anisotropic) as well as dissipative phenomena occurred on fabrication and consecutive loading phase (hardening) resulting in irreversible microstructure changes (acquired anisotropy). The material symmetry is a background and anisotropy is a core around which the book is formed. In this way a revision of classical rules of enhanced constitutive description of materials is required.
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Specificații

ISBN-13: 9783319171593
ISBN-10: 3319171593
Pagini: 311
Ilustrații: XXIII, 311 p. 191 illus., 14 illus. in color.
Dimensiuni: 155 x 235 x 25 mm
Greutate: 0.64 kg
Ediția:2015
Editura: Springer International Publishing
Colecția Springer
Seria Engineering Materials

Locul publicării:Cham, Switzerland

Public țintă

Research

Cuprins

1 Introduction to mechanics of anisotropic materials.- 2 Constitutive equations for isotropic and anisotropic linear viscoelastic materials.- 3 Mechanics of anisotropic composite materials.- 4 General concept of limit surfaces – convexity and normality rules, material stability.- 5 Termination of elastic range of pressure insensitive materials – isotropic and anisotropic initial yield criteria.- 6 Termination of elastic range of pressure sensitive materials – isotropic and anisotropic initial yield/failure criteria.- 7 Classification of constitutive equations for dissipative materials – general review.

Textul de pe ultima copertă

The book is focused on constitutive description of mechanical behaviour of engineering materials: both conventional (polycrystalline homogeneous isotropic or anisotropic metallic materials) and non-conventional (heterogeneous multicomponent anisotropic composite materials). Effective material properties at the macro-level depend on both the material microstructure (originally isotropic or anisotropic) as well as dissipative phenomena occurred on fabrication and consecutive loading phase (hardening) resulting in irreversible microstructure changes (acquired anisotropy).
The material symmetry is a background and anisotropy is a core around which the book is formed. In this way a revision of classical rules of enhanced constitutive description of materials is required.

Caracteristici

Describes the mechanics of engineering materials, among them both conventional and non-conventional materials fabricated by modern material engineering Revises of classical rules of constitutive descriptions of materials Written by experts in the field Includes supplementary material: sn.pub/extras