Moving Interfaces in Solids are typically phase boundaries and grain or subgrain boundaries. Continuum thermodynamics and continuum mechanics are applied to explain the motion process. Related numerical and experimental concepts are dealt with. Experts from material physics and mechanics bridge the gap between these fields. The reader is offered a common view of interface mtion in a unique representation. Examples are presented for various material systems.
Moving Interfaces in Solids are typically phase boundaries and grain or subgrain boundaries. Continuum thermodynamics and continuum mechanics are applied to explain the motion process. Related numerical and experimental concepts are dealt with. Experts from material physics and mechanics bridge the gap between these fields. The reader is offered a common view of interface mtion in a unique representation. Examples are presented for various material systems.
Produktdetails
Produktdetails
CISM International Centre for Mechanical Sciences 453
Artikelnr. des Verlages: 11355274, 978-3-211-23899-8
2005
Seitenzahl: 268
Erscheinungstermin: 12. Januar 2005
Englisch
Abmessung: 244mm x 170mm x 15mm
Gewicht: 462g
ISBN-13: 9783211238998
ISBN-10: 3211238999
Artikelnr.: 13916785
Autorenporträt
Franz D. Fischer, Montanuniversität Leoben, Austria / Erich Schmid, Austrian Academy of Sciences, Leoben, Austria
Inhaltsangabe
Application of Configurational Mechanics to Elastic Solids with Defects and Cracks.- Phase Separation in Binary Alloys - Modeling Approaches.- Utilization of the thermodynamic extremal principle for modelling in material science.- Thermodynamics and Kinetics of Phase and Twin Boundaries.- Moving Grain Boundaries During Hot Deformation of Metals: Dynamic Recrystallization.
Application of Configurational Mechanics to Elastic Solids with Defects and Cracks.- Phase Separation in Binary Alloys - Modeling Approaches.- Utilization of the thermodynamic extremal principle for modelling in material science.- Thermodynamics and Kinetics of Phase and Twin Boundaries.- Moving Grain Boundaries During Hot Deformation of Metals: Dynamic Recrystallization.
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