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Modeling induced flow anisotropy and phase transformations in air hardening steels

机译:造型诱导诱导空气硬化钢中的流动各向异性和相变

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In this work a material model for hardening development in sheet metals during forming processes involving loading path changes is formulated. In particular, such hardening development is due to the formation and interaction of dislocation microstructures in the material, resulting in an evolution in the size, center and shape of the yield surface. Such yield surface evolution is accounted for in the current model with the help of an evolving structure tensor. The model is intended for an air hardening steel and takes therefore thermomechanics into account in particular phase transformations from ferrite to austenite and from austenite to martensite. As numerical examples a tension shear test and a heating-cooling sequence are simulated.
机译:在这项工作中,制定了制定涉及负载路径变化的成型过程中板材金属的硬化开发的材料模型。特别地,这种硬化发育是由于材料中位错微结构的形成和相互作用,导致屈服表面的尺寸,中心和形状的进化。借助于不断发展的结构张量,在当前模型中考虑了这种屈服表面演化。该模型用于空气硬化钢,从而考虑来自铁素体的奥氏体和奥氏体到马氏体的相位变换中的热机械。作为数值实施例,模拟张力剪切试验和加热冷却序列。

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