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首页> 外文期刊>International Journal of Solids and Structures >Finite element simulation of martensitic phase transitions in elastoplastic materials
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Finite element simulation of martensitic phase transitions in elastoplastic materials

机译:弹塑性材料中马氏体相变的有限元模拟

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摘要

A problem formulation for a continuum thermomechanical description of martensitic phase transitions (PT) in elastoplastic materials is presented. Stress history dependence, during the transformation process, is a characteristic feature of the new PT criterion. Relatively simple mechanical models for noncoherence and fracture at interfaces are proposed. Solution algorithms (which include, in particular, the solution of standard elastoplastic contact problem) and numerical results for elastoplastic model problems with PT (noncoherent interface, interface with fracture, moving interface, progress of PT zone) are presented. It is shown that: (a) a noncoherent interface and fracture promote considerably nucleation; (b) a noncoherent interface has low mobility or cannot move at all which agrees with known experiments; (c) for elastic materials the growth of a single connected region of new phase occurs; for elastoplastic materials complex multiple connected PT region (discrete microstructure) is obtained. (C) 1997 Published by Elsevier Science Ltd. [References: 24]
机译:提出了用于弹塑性材料中马氏体相变(PT)的连续热力学描述的问题公式。在转换过程中,应力历时依赖性是新PT准则的特征。提出了相对简单的力学模型,用于界面处的非连贯性和断裂。给出了求解算法(尤其包括标准弹塑性接触问题的求解)和PT弹塑性模型问题的数值结果(非相干界面,与断裂的界面,移动界面,PT区的进展)。结果表明:(a)不连贯的界面和断裂会明显促进成核; (b)非相干的界面移动性低或完全不能移动,这与已知实验相符; (c)对于弹性材料,会发生新相的单个连接区域的生长;对于弹塑性材料,可以获得复杂的多个连接的PT区(离散的微观结构)。 (C)1997年由Elsevier Science Ltd.发布。[参考:24]

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