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Strain localization analysis deduced from a large strain elasticplastic self-consistent model for multiphase steels

机译:从大菌株钢的大菌株弹性自给式模型推导出应变定位分析

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In order to investigate the impact of microstructures and deformation mechanisms on the ductility of materials, the criterion based on bifurcation theory first proposed by Rice is applied to elastic-plastic tangent moduli derived from a large strain micromechanical model combined with a self-consistent scale transition scheme. This approach takes into account several microstructural aspects for polycrystalline aggregates: initial and induced textures, dislocation densities, softening mechanisms so that the behavior during complex loading paths can be accurately described. Based on this formulation, Forming Limit Diagrams (FLDs) are derived and compared with a reference model for multiphase steels involving linear and complex loading paths. Furthermore, the effect of various physical and microstructural parameters on the ductility limit of a single-phase steel is qualitatively studied with the aim of helping in the design of new materials.
机译:为了研究微观结构和变形机制对材料的延展性的影响,基于水稻首次提出的基于分叉理论的标准应用于来自大应变微机械模型的弹性塑料切线模型,结合自洽规模转变方案。这种方法考虑了多晶聚集体的几个微观结构方面:初始和诱导的纹理,位错密度,软化机制,使得可以精确描述复杂负载路径期间的行为。基于该配方,得出形成限位图(FLD),并与涉及线性和复量负载路径的多相钢的参考模型进行比较。此外,各种物理和微观结构参数对单相钢的延展性极限的影响是有助于帮助设计新材料的目的。

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