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Titlebook: Atomistic and Continuum Modeling of Nanocrystalline Materials; Deformation Mechanis Mohammed Cherkaoui,Laurent Capolungo Book 2009 Springer

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Atilla Vuran,Thea Koch,Stefan Jockenhövel possible to accurately model or predict their deformation, fracture, and fatigue behavior as well as the relative tradeoffs of these responses with changes in microstructure. Even empirical models predicting deformation behavior do not exist due to lack of reliable data. Also, atomistic modeling ha
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,Führung im Kundenbeziehungsmanagement,hanisms (e.g., Coble creep, twinning, grain boundary dislocation emission, grain boundary sliding) that rely on the typical nanoscale structure of grain boundaries and their extremely high-volume fraction. Although these deformation mechanisms have been highlighted by experimental observations and m
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Mohammed Cherkaoui,Laurent CapolungoMeets the high demand for material dealing with nanocrystalline materials.Discusses new modeling techniques and their potential applications and possible extensions, such as molecular dynamics, strain
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