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Simulation of mechanical behavior of multiphase TRIP steel taking account of transformation-induced plasticity

机译:考虑相变诱发塑性的多相TRIP钢力学性能模拟

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Due to the effect of transformation-induced plasticity, multiphase low alloy TRIP steel exhibits an enhanced combination of strength and ductility. Moreover, volume fractions of the constituents in TRIP steel vary during its plastic deformation. In this paper, a constitutive model for mechanical behavior of multiphase TRIP steel is presented. In the model, TRIP steel microstructure is decomposed into four individual constituents: austenite, martensite, bainitic ferrite and ferrite. Mechanical behavior of each individual phase is described by using physically-based model. On the basis of introducing transformation-induced plasticity (TRIP) strain into decomposition of total strain, stress-strain relation of multiphase composite is obtained by using mixture rule and Iso-W hypothesis. Kinetics of strain-induced martensitic transformation is described by a generalized form of Olson-Cohen model, which takes into account temperature and stress state. Moreover, a new method to describe evolving grain size of retained austenite due to martensitic transformation is developed. On the basis of presented model, mechanical behavior of multiphase steel is simulated by using finite element method. Parameters of the model are calibrated for different mixture laws used in calculation. The simulated results have a good agreement with those observed in experiments. (C) 2008 Elsevier B.V. All rights reserved.
机译:由于相变诱导塑性的影响,多相低合金TRIP钢表现出强度和延展性的增强组合。此外,TRIP钢中的成分体积分数在其塑性变形过程中会发生变化。提出了多相TRIP钢力学行为的本构模型。在该模型中,TRIP钢的显微组织被分解成四个单独的成分:奥氏体,马氏体,贝氏体铁素体和铁素体。通过使用基于物理的模型来描述每个单独相的机械行为。在将相变诱发塑性(TRIP)应变引入总应变分解的基础上,利用混合规则和Iso-W假设,得到了多相复合材料的应力-应变关系。应变诱导的马氏体相变的动力学由Olson-Cohen模型的广义形式描述,该模型考虑了温度和应力状态。此外,开发了一种描述由于马氏体相变而引起的残余奥氏体晶粒尺寸演变的新方法。在给出的模型的基础上,采用有限元方法模拟了多相钢的力学行为。针对计算中使用的不同混合定律,对模型的参数进行了校准。仿真结果与实验观察结果吻合良好。 (C)2008 Elsevier B.V.保留所有权利。

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