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首页> 外文期刊>Physical review. B, Condensed Matter And Materials Physics >Effect of lattice-mismatch-induced strains on coupled diffusive and displacive phase transformations
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Effect of lattice-mismatch-induced strains on coupled diffusive and displacive phase transformations

机译:晶格失配引起的应变对扩散和位移相变耦合的影响

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Materials which can undergo slow diffusive transformations as well as fast displacive transformations are studied using the phase-field method. The model captures the essential features of the time-temperature-transformation (TTT) diagrams, continuous cooling transformation (CCT) diagrams, and microstructure formation of these alloys. In some material systems there can exist an intrinsic volume change associated with these transformations. We show that these coherency strains can stabilize mixed microstructures (such as retained austenite-martensite and pearlite-martensite mixtures) by an interplay between diffusive and displacive mechanisms, which can alter TTT and CCT diagrams. Depending on the conditions there can be competitive or cooperative nucleation of the two kinds of phases. The model also shows that small differences in volume changes can have noticeable effects on the early stages of martensite formation and on the resulting microstructures.
机译:使用相场方法研究了可以经历缓慢扩散转变以及快速置换转变的材料。该模型捕获了这些合金的时间-温度-转变(TTT)图,连续冷却转变(CCT)图以及微观结构形成的基本特征。在某些材料系统中,可能存在与这些转换相关的固有体积变化。我们表明,这些相干应变可以通过扩散和置换机制之间的相互作用来稳定混合的微观结构(例如残留的奥氏体-马氏体和珠光体-马氏体的混合物),从而可以改变TTT和CCT图。取决于条件,两种相可以竞争或协同成核。该模型还表明,体积变化的细微差异可对马氏体形成的早期阶段以及由此产生的微观结构产生显着影响。

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