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Controlling factor for nucleation of martensite at grain boundary in Fe-Ni bicrystals

机译:Fe-Ni双晶界马氏体成核的控制因素

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摘要

A favourable nucleation of martensites at a grain boundary was investigated using Fe-Ni bicrystals containing a symmetric tilt boundary with various tilt angles, focusing on the martensite-start temperature (Ms), the morphology of martensites and the variant selection. Near the grain boundaries, some variants with the habit plane almost parallel to the boundaries were preferentially selected and their variants changed depending on the tilt angle. In addition, the equivalent variants were symmetrically adjoined at the boundary to maintain the compatibility of shape strain of martensites across the boundary. Such characteristic nucleation can be regarded as a self-accommodation across the boundary, which is called cooperative nucleation (CN). The CN effectively reduces the strain energy due to the formation of martensites compared with the independent nucleation within a grain resulting in an increase in Ms. The characteristic variant selection of martensites can also be explained from the minimisation of strain energy.
机译:以不同倾斜角度的对称倾斜边界为研究对象,研究了马氏体在晶界处的有利成核,重点研究了马氏体的起始温度(Ms)、马氏体的形貌和变异选择。在晶界附近,优先选取了一些习惯平面几乎平行于边界的变体,其变体随倾斜角度的变化而变化。此外,等效变体在边界处对称地相邻,以保持跨边界的马氏体形状应变的相容性。这种特征成核可以看作是跨越边界的自我适应,称为合作成核(CN)。与晶粒内的独立成核相比,CN有效地降低了由于马氏体形成引起的应变能,从而降低了Ms.马氏体的特征变体选择也可以从应变能的最小化来解释。

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