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Defect structure and martensitic transformation crystallography in Ni_2MnGa alloy

机译:Ni_2MnGa合金的缺陷结构和马氏体相变晶体学

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Ferromagnetic shape memory alloys can produce large strains in a magnetic field by twin boundary motion. The mobility of parent-martensite inter-phase interfaces and twin-twin inter-variant boundaries is closely related to their interfacial structures and the mechanism of migration, therefore a thorough understanding of its nature is of importance. A physical model of the structure of parent-martensite interface has been developed recently based on dislocation theories and topological arguments. On the basis of the topological model, the present work performs a theoretical study of the defect structure of the martensitic interface, and the transformation crystallography in Ni2MnGa alloy. The habit plane, i.e., the parent-martensite interface plane was determined to be (-0.761, -0.054, -0.646)P for the parent crystal index frame, and (-0.818, 0.067, -0.57 1)m for the martensite frame. The habit plane inclination angle is 5.945° and 5.953° with respect to the terrace plane in the parent and martensite crystals, respectively.
机译:铁磁形状记忆合金可以通过双边界运动在磁场中产生较大的应变。母-马氏体相间界面和孪生双胞胎变体边界的迁移性与其界面结构和迁移机制密切相关,因此,透彻了解其性质非常重要。最近,基于位错理论和拓扑论证,开发了一种亲-马氏体界面结构的物理模型。在此拓扑模型的基础上,本文对Ni2MnGa合金的马氏体界面缺陷结构和相变晶体学进行了理论研究。习惯平面,即母体-马氏体的界面平面,对于母体晶体折射率框架确定为(-0.761,-0.054,-0.646)P,对于马氏体框架确定为(-0.818,0.067,-0.57 1)m 。相对于母体和马氏体晶体中的平台平面,惯性平面倾斜角分别为5.945°和5.953°。

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