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Mechanics of Material Forces

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Cover of 'Mechanics of Material Forces'

Table of Contents

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    Book Overview
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    Chapter 1 On Establishing Balance and Conservation Laws in Elastodynamics
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    Chapter 2 From Mathematical Physics to Engineering Science
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    Chapter 3 The Unifying Nature of the Configurational Force Balance
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    Chapter 4 Generalized Stefan Models
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    Chapter 5 Explicit Kinetic Relation from “First Principles”
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    Chapter 6 Surface and Bulk Growth Unified
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    Chapter 7 Mechanical and Thermodynamical Modelling of Tissue Growth Using Domain Derivation Techniques
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    Chapter 8 Material Forces in the Context of Biotissue Remodelling
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    Chapter 9 Error-Controlled Adaptive Finite Element Methods in Nonlinear Elastic Fracture Mechanics
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    Chapter 10 Material Force Method. Continuum Damage & Thermo-Hyperelasticity
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    Chapter 11 Discrete Material Forces in the Finite Element Method
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    Chapter 12 Mechanics of Material Forces
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    Chapter 13 Self-Driven continuous Dislocations and Growth
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    Chapter 14 Role of the Non-Riemannian Plastic Connection in Finite Elasto-Plasticity with Continuous Distribution of Dislocations
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    Chapter 15 Peach-Koehler Forces within the Theory of Nonlocal Elasticity
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    Chapter 16 On the Material Energy-Momentum Tensor in Electrostatics and Magnetostatics
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    Chapter 17 Continuum Thermodynamic and Variational Models for Continua with Microstructure and Material Inhomogeneity
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    Chapter 18 A Crystal Structure-Based Eigentransformation and its Work-Conjugate Material Stress
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    Chapter 19 Teaching Fracture Mechanics Within the Theory of Strength-of-Materials
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    Chapter 20 Configurational Thermomech-Anics and Crack Driving Forces
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    Chapter 21 Structural Optimization by Material Forces
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    Chapter 22 On Structural Optimisation and Configurational Mechanics
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    Chapter 23 Configurational Forces and the Propagation of a Circular Crack in an Elastic Body
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    Chapter 24 Thermoplastic M Integral and Path Domain Dependence
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    Chapter 25 Peeling Tapes
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    Chapter 26 Stability and Bifurcation with Moving Discontinuities
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    Chapter 27 On Fracture Modelling Based on Inverse Strong Discontinuities
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    Chapter 28 Maxwell’s Relation for Isotropic Bodies
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    Chapter 29 Driving Force in Simulation of Phase Transition Front Propagation
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    Chapter 30 Modeling of the Thermal Treatment of Steel With Phase Changes
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    Chapter 31 Configurational Stress Tensor in Anisotropic Ductile Continuum Damage Mechanics
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    Chapter 32 Some Class of SG Continuum Models to Connect Various Length Scales in Plastic Deformation
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    Chapter 33 Weakly Nonlocal Theories of Damage and Plasticity Based on Balance of Dissipative Material Forces
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Title
Mechanics of Material Forces
Published by
Springer US, January 2005
DOI 10.1007/b137232
ISBNs
978-0-387-26261-1, 978-0-387-26260-4
Authors

Steinmann, Paul, Maugin, G. A

Editors

Steinmann, Paul, Maugin, Gérard A.

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 30 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
France 1 3%
Unknown 29 97%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 10 33%
Researcher 7 23%
Professor 3 10%
Student > Doctoral Student 2 7%
Student > Bachelor 1 3%
Other 4 13%
Unknown 3 10%
Readers by discipline Count As %
Engineering 13 43%
Materials Science 3 10%
Computer Science 2 7%
Mathematics 2 7%
Agricultural and Biological Sciences 1 3%
Other 5 17%
Unknown 4 13%