Introduction to Adiabatic Shear Localization Introduction to Adiabatic Shear Localization

Introduction to Adiabatic Shear Localization

Revised Edition

    • 54,99 €
    • 54,99 €

Publisher Description

Adiabatic shear bands are found in a variety of metals and other materials; they cause rapid weakening due to energy concentration into narrow regions of the material. This is the very first book on this important topic and the only true introduction to the subject.

An enhanced and updated student-friendly edition of the authors' 1992 book Adiabatic Shear Localization: Occurrence, Theories and Applications, this seminal text now includes essential Further Reading sections in some chapters. It explains adiabatic shear bands in a descriptive rather than a mathematical way, with a ‘quick reference’ section for readers wanting a more rapid introduction. Entirely comprehensive, the reader can dip into the chapters as suits his or her course material or research.

If you are a postgraduate materials scientist, engineer, physicist, metallurgist, or indeed any researcher in materials that undergo rapid deformation and failure, this text is not to be missed.
Contents:

Introduction
Characteristic Aspects of Adiabatic Shear Bands
Fracture and Damage Related to Adiabatic Shear Bands
Testing Methods
Constitutive Equations
Occurrence of Adiabatic Shear Bands
Formation and Evolution of Shear Bands
Numerical Studies of Adiabatic Shear Bands
Selected Topics in Impact Dynamics
Selected Topics in Metalworking
Appendices:

Quick Reference
Specific Heat and Thermal Conductivity
Thermal Softening and Related Temperature Dependence
Materials Showing Adiabatic Shear Bands
Specification of Selected Materials Showing Adiabatic Shear Bands
Conversion Factors




Readership: Graduate and undergraduate students interested in adiabatic shear.
Key Features:


The only introductory book of its kind
Subject matter is up to date
Available in an affordable paperback version

RELEASED
2014
14 August
LANGUAGE
EN
English
LENGTH
468
Pages
PUBLISHER
Imperial College Press
SIZE
39.9
MB

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