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Role of magnetism on the martensitic transformation in Ni-Mn-based magnetic shape memory alloys

机译:磁性对Ni-Mn基磁性形状记忆合金中马氏体相变的作用

摘要

The effect of magnetism on the martensitic structural transformation has been analyzed through the evolution of the transformation temperatures of several Ni-Mn-Ga and Ni-Mn-In alloys subjected to high-temperature quenching and post-quench annealing thermal treatments. It is found that the atomic order variations associated with the thermal treatments affect the structural transformation in different ways depending on the character of the magnetic ordering in the austenitic and the martensitic phases. In particular, regardless of composition, the variation in the atomic order affects the martensitic transformation temperature only in those alloys in which at least one of the structural phases show magnetic order at the transformation temperature, whereas those transformations taking place between paramagnetic phases remain unaffected. The observed behaviors are explained in terms of the effect of the magnetic exchange coupling variations on the free energy difference between austenite and martensite. The results confirm the key role of magnetism in the martensitic transformation. © 2011 Published by Elsevier Ltd. on behalf of Acta Materialia Inc. All rights reserved.
机译:通过几种经过高温淬火和淬火后退火热处理的Ni-Mn-Ga和Ni-Mn-In合金的相变温度演变,分析了磁性对马氏体组织相变的影响。已发现,与热处理相关的原子序变化取决于奥氏体和马氏体相中的磁序特征,以不同的方式影响结构转变。特别地,不管组成如何,原子序的变化仅影响那些合金中的马氏体相变温度,在这些合金中,至少一种结构相在相变温度下显示出磁序,而在顺磁相之间发生的那些相变则不受影响。根据磁交换耦合变化对奥氏体和马氏体之间的自由能差的影响来解释观察到的行为。结果证实了磁性在马氏体相变中的关键作用。 ©2011由Elsevier Ltd.代表Acta Materialia Inc.出版。保留所有权利。

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