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Influence of material parameters on 2D-martensitic transformation based on the phase-field finite-element method

机译:基于相场有限元法的材料参数对2D-马氏体变换的影响

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Obtaining an accurate microscopic representation of the martensitic transformation process is key to realizing the best performance of materials and is of great significance in the field of material design. Due to the martensite phase transformation is rapidly, the current experimental is hard to capture all the information in the Martensite phase transformation process. Combining the phase-field method with the finite-element method, a model of martensitic transformation from a metastable state to a steady state is established. The law of a single martensite nucleus during martensitic transformation is accurately described. By changing the key materials that affect martensite transformation and the phase-field parameters, the effects of the parameters on the single martensitic nucleation process are obtained. This study provides an important theoretical basis for effectively revealing the essence of martensite transformation and can determine effective ways to influence martensite transformation, obtain the optimal parameters and improve the mechanical properties of such materials.
机译:获得马氏体转化过程的准确微观表示是实现材料最佳性能的关键,并且在材料设计领域具有重要意义。由于马氏体相变快速,目前的实验难以捕获马氏体相变过程中的所有信息。将相位现场方法与有限元方法组合,建立了从亚稳态到稳态的马氏体变换模型。准确描述了在马氏体转换期间的单一马氏体核的定律。通过改变影响马氏体变换和相场参数的关键材料,获得了参数对单一马氏体成核过程的影响。本研究为有效揭示马氏体转化的本质提供了重要的理论依据,并可以确定影响马氏体转化的有效方法,获得最佳参数,提高这些材料的机械性能。

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