Plasticity and Beyond Microstructures, Crystal-Plasticity and Phase Transitions /

Detalles Bibliográficos
Otros autores o Colaboradores: Schroder, Jorg (ed.), Hackl, Klaus (ed.)
Formato: Libro
Lengua:inglés
Datos de publicación: Vienna : Springer Vienna : Imprint: Springer, 2014.
Series:CISM International Centre for Mechanical Sciences, 550
Temas:
Acceso en línea:http://dx.doi.org/10.1007/978-3-7091-1625-8
Resumen:The book presents the latest findings in experimental plasticity, crystal plasticity, phase transitions, advanced mathematical modeling of finite plasticity and multi-scale modeling. The associated algorithmic treatment is mainly based on finite element formulations for standard (local approach) as well as for non-standard (non-local approach) continua and for pure macroscopic as well as for directly coupled two-scale boundary value problems. Applications in the area of material design/processing are covered, ranging from grain boundary effects in polycrystals and phase transitions to deep-drawing of multiphase steels by directly taking into account random microstructures.
Descripción Física:vii, 412 p. : il.
ISBN:9783709116258
ISSN:0254-1971 ;
DOI:10.1007/978-3-7091-1625-8

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245 1 0 |a Plasticity and Beyond   |h [libro electrónico] : ;   |b Microstructures, Crystal-Plasticity and Phase Transitions /   |c edited by Jorg Schroder, Klaus Hackl. 
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490 1 |a CISM International Centre for Mechanical Sciences,  |x 0254-1971 ;  |v 550 
505 0 |a A discrete two-scale homogenization scheme of micro-macro-transition procedure: The FE2-method -- Variational modeling of microstructures in plasticity -- Micromorphic approach to crystal plasticity and phase transformation -- Formation of deformation substructures observed in ductile materials -- On scale-dependent crystal plasticity models -- Construction of statistically similar representative volume elements. 
520 |a The book presents the latest findings in experimental plasticity, crystal plasticity, phase transitions, advanced mathematical modeling of finite plasticity and multi-scale modeling. The associated algorithmic treatment is mainly based on finite element formulations for standard (local approach) as well as for non-standard (non-local approach) continua and for pure macroscopic as well as for directly coupled two-scale boundary value problems. Applications in the area of material design/processing are covered, ranging from grain boundary effects in polycrystals and phase transitions to deep-drawing of multiphase steels by directly taking into account random microstructures. 
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650 2 4 |a Characterization and Evaluation of Materials.  |9 259717 
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700 1 |a Hackl, Klaus,   |e ed.  |9 261998 
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