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Advanced Methods of Continuum Mechanics for Materials and Structures

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Cover of 'Advanced Methods of Continuum Mechanics for Materials and Structures'

Table of Contents

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    Book Overview
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    Chapter 1 Time Derivatives in Material and Spatial Description—What Are the Differences and Why Do They Concern Us?
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    Chapter 2 The Cosserats’ Memoir of 1896 on Elasticity
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    Chapter 3 On Equivalent Inhomogeneities for Particles with Multiple-Component Interphases
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    Chapter 4 The Influence of Distributed Dislocations on Large Deformations of an Elastic Sphere
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    Chapter 5 A Closed-Form Solution for a Linear Viscoelastic Self-gravitating Sphere
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    Chapter 6 Constitutive Modelling of the Glass Transition and Related Phenomena: Relaxation of Shear Stress Under Pressure
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    Chapter 7 A Material Model for Electroactive Polymers
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    Chapter 8 Finite Elastoplasticity with Thermal Effects—Some Unexpected Phenomena
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    Chapter 9 Advanced Methods of Continuum Mechanics for Materials and Structures
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    Chapter 10 Warpage Variation Analysis of Si/Solder/Cu Layered Plates Subjected to Cyclic Thermal Loading
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    Chapter 11 A Note on Plasticity with Additional Internal Variables
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    Chapter 12 Finite Inelastic Deformations of Compressible Soft Solids with the Mullins Effect
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    Chapter 13 Effect of Geometric Dimension on the Dissipative Property of the Structures Consisting of NiTi Shape Memory Alloy Wires
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    Chapter 14 Advanced Methods of Continuum Mechanics for Materials and Structures
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    Chapter 15 Experiments on Damage and Failure Mechanisms in Ductile Metals at Different Loading Conditions
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    Chapter 16 Modeling of Damage Deactivation in Concrete Under Cyclic Compression
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    Chapter 17 Phase-Field Modelling of Damage and Fracture—Convergence and Local Mesh Refinement
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    Chapter 18 Prestressed Orthotropic Material Containing an Elliptical Hole
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    Chapter 19 Generalized Limit Surfaces—With an Example of Hard Foams
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    Chapter 20 On the Problem of Cracking in 2-Phase Ceramic Matrix Composite Materials
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    Chapter 21 On Failure Theories for Composite Materials
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    Chapter 22 On the Dislocation Density Tensor in the Cosserat Theory of Elastic Shells
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    Chapter 23 Direct Approach Versus Consistent Approximation
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    Chapter 24 Modelling of a Rotating Active Thin-Walled Composite Beam System Subjected to High Electric Fields
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    Chapter 25 On a Description of Deformable Junction in the Resultant Nonlinear Shell Theory
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    Chapter 26 Analytical and Numerical Modelling of a Sub- and Supersonic Moving Load Front Along a Rod’s Skin
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    Chapter 27 Advanced Methods of Continuum Mechanics for Materials and Structures
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    Chapter 28 Against the Fragmentation of Knowledge: The Power of Multidisciplinary Research for the Design of Metamaterials
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    Chapter 29 On Equilibrium of a Second-Gradient Fluid Near Edges and Corner Points
Attention for Chapter 21: On Failure Theories for Composite Materials
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Chapter title
On Failure Theories for Composite Materials
Chapter number 21
Book title
Advanced Methods of Continuum Mechanics for Materials and Structures
Published by
Springer, Singapore, January 2016
DOI 10.1007/978-981-10-0959-4_21
Book ISBNs
978-9-81-100958-7, 978-9-81-100959-4
Authors

Ramesh Talreja

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 33 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 33 100%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 9 27%
Student > Master 7 21%
Student > Bachelor 3 9%
Other 2 6%
Student > Doctoral Student 2 6%
Other 4 12%
Unknown 6 18%
Readers by discipline Count As %
Engineering 18 55%
Materials Science 3 9%
Unspecified 1 3%
Chemical Engineering 1 3%
Design 1 3%
Other 0 0%
Unknown 9 27%