Continuum Models for Phase Transitions and Twinning in Crystals

Continuum Models for Phase Transitions and Twinning in Crystals

EnglishHardback
Pitteri Mario
Taylor & Francis Inc
EAN: 9780849303272
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Detailed information

Continuum Models for Phase Transitions and Twinning in Crystals presents the fundamentals of a remarkably successful approach to crystal thermomechanics. Developed over the last two decades, it is based on the mathematical theory of nonlinear thermoelasticity, in which a new viewpoint on material symmetry, motivated by molecular theories, plays a central role. This is the first organized presentation of a nonlinear elastic approach to twinning and displacive phase transition in crystalline solids. The authors develop geometry, kinematics, and energy invariance in crystals in strong connection and with the purpose of investigating the actual mechanical aspects of the phenomena, particularly in an elastostatics framework based on the minimization of a thermodynamic potential. Interesting for both mechanics and mathematical analysis, the new theory offers the possibility of investigating the formation of microstructures in materials undergoing martensitic phase transitions, such as shape-memory alloys. Although phenomena such as twinning and phase transitions were once thought to fall outside the range of elastic models, research efforts in these areas have proved quite fruitful. Relevant to a variety of disciplines, including mathematical physics, continuum mechanics, and materials science, Continuum Models for Phase Transitions and Twinning in Crystals is your opportunity to explore these current research methods and topics.
EAN 9780849303272
ISBN 0849303273
Binding Hardback
Publisher Taylor & Francis Inc
Publication date June 27, 2002
Pages 390
Language English
Dimensions 234 x 156
Country United States
Readership Professional & Scholarly
Authors Pitteri Mario; Zanzotto G.
Illustrations 34 Tables, black and white; 45 Illustrations, black and white
Series editors Knops, R.J.
Series Applied Mathematics
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