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Unexpected Constrained Twin Hierarchy in Equiatomic Ru-based High Temperature Shape Memory Alloy Martensite

机译:基于阶段Ru的高温形状记忆合金马氏体的意外约束双层结构

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Among the different systems for high temperature shape memory alloys (SMA's), equiatomic RuNb and RuTa alloys demonstrate both shape memory effect (SME) and MT temperatures above 800°C. Equiatomic compounds undergo two successive martensitic transformations, β (B2) → β' (tetragonal) → β" (monoclinic), whereas out of stoechiometry alloys exhibit a single transition from cubic to tetragonal. In the case of two successive martensitic transformations, we expect to have a finer microstructure of the second martensite because it is supposed to develop inside the smallest twin elements of the former one. In equiatomic Ru-based alloys, if the first martensitic transformation is "normal", the second one provides different unexpected microstructures with, for instance, twins with a thickness which is larger than the smallest spacing between twin variants of the first martensite. In fact, the reason for this unexpected hierarchy of the twins size is that the second martensitic transformation takes place in special conditions, namely geometrically, elastically and crystallographically constrained.
机译:在高温形状记忆合金(SMA)的不同系统中,赤脂润滑率和RUTA合金展示了形状记忆效应(SME)和800℃高于800℃的MT温度。赤脂化合物经历两个连续的马氏体转化,β(B2)→β'(四方)→β“(单斜晶→β”(单斜),而超出化学计量合金表现出从立方体到四方的单一转变。在两个连续的马氏体转变的情况下,我们期待为了具有更好的第二马氏体微观结构,因为它应该在前者的最小双胞胎元素内部发展。在赤素ru基合金中,如果第一马氏体转变为“正常”,则第二个是提供不同的意外的微观结构例如,厚度大于第一马氏体的双变体之间的最小间隔的双胞胎。事实上,对于双胞胎尺寸的这种意外等级的原因是第二马氏体转变在特殊条件下发生,即几何上,弹性和晶体地限制。

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