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Numerical modelling of transformation-induced damage and plasticity in metals

机译:金属相变引起的损伤和塑性的数值模拟

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In multiphase carbon steels, irreversible martensitic transformations from a parent austenitic phase are often accompanied by plastic deformations in the surrounding phases and damage growth in the martensitic product phase. In the present communication the interactions between these complex processes are studied through three-dimensional numerical analyses, where the response of the austenitic phase is simulated using a phase-changing damage model and the response of the surrounding matrix is mimicked with a plasticity model. A numerical update algorithm is provided for the phase-changing damage model, which is based on a fully implicit backward Euler scheme formulated within the framework of finite deformations. The consistent tangent operator for the model is computed using a numerical differentiation technique. Special attention is given to the robust and accurate treatment of the various constraints related to the volume fractions and damaged volume fractions of the transformation parent and product phases. The numerical analyses of a multiphase carbon steel microstructure illustrate the effect of the transformation, plasticity and damage processes on the overall stress-strain response and on the transformation and damage evolutions of the sample for various austenite crystal orientations. The computed responses are in qualitative agreement with experimental results reported in the literature. In terms of the numerical model, a variation study of the mesh density shows that the numerical results tend to converge upon mesh refinement.
机译:在多相碳钢中,母体奥氏体相的不可逆马氏体转变通常伴随着周围相的塑性变形和马氏体产物相的破坏增长。在目前的交流中,通过三维数值分析研究了这些复杂过程之间的相互作用,其中使用相变损伤模型模拟了奥氏体相的响应,并用可塑性模型模拟了周围基质的响应。为相变损伤模型提供了一种数值更新算法,该算法基于在有限变形框架内制定的完全隐式向后欧拉方案。使用数值微分技术计算模型的一致切线算子。特别注意对与转换母体和产物相的体积分数和受损体积分数有关的各种约束的稳健而准确的处理。多相碳钢显微组织的数值分析说明了相变,可塑性和损伤过程对整体应力-应变响应以及不同奥氏体晶体取向的样品的相变和损伤演化的影响。计算得到的响应与文献报道的实验结果在质量上吻合。在数值模型方面,网格密度的变化研究表明,数值结果趋于收敛于网格细化。

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