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Impact of Intragranular Substructure Parameters on the Forming Limit Diagrams of Single-Phase B.C.C. Steels
An advanced elastic-plastic self-consistent polycrystalline model, accounting for intragranular microstructure development and evolution, is coupled with a bifurcation-based localization criterion and applied to the numerical investigation of the impact of microstructural patterns on ductility of si...
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Published in: | Materials 2013-11, Vol.6 (11), p.5217-5233 |
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creator | Franz, Gérald Abed-Meraim, Farid Berveiller, Marcel |
description | An advanced elastic-plastic self-consistent polycrystalline model, accounting for intragranular microstructure development and evolution, is coupled with a bifurcation-based localization criterion and applied to the numerical investigation of the impact of microstructural patterns on ductility of single-phase steels. The proposed multiscale model, taking into account essential microstructural aspects, such as initial and induced textures, dislocation densities, and softening mechanisms, allows us to emphasize the relationship between intragranular microstructure of B.C.C. steels and their ductility. A qualitative study in terms of forming limit diagrams for various dislocation networks, during monotonic loading tests, is conducted in order to analyze the impact of intragranular substructure parameters on the formability of single-phase B.C.C. steels. |
doi_str_mv | 10.3390/ma6115217 |
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subjects | Anisotropy Chemical Sciences Ductility Engineering Sciences Investigations Localization Material chemistry Mechanical engineering Mechanics Mechanics of materials Metal forming Physics Single crystals Solid mechanics |
title | Impact of Intragranular Substructure Parameters on the Forming Limit Diagrams of Single-Phase B.C.C. Steels |
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