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磁场和原子序对一种变磁性合金马氏体转变的影响。

Magnetic field and atomic order effect on the martensitic transformation of a metamagnetic alloy.

作者信息

Barandiaran J M, Chernenko V A, Cesari E, Salas D, Gutierrez J, Lazpita P

出版信息

J Phys Condens Matter. 2013 Dec 4;25(48):484005. doi: 10.1088/0953-8984/25/48/484005.

Abstract

The martensitic transformation (MT) of metamagnetic shape memory alloys is very sensitive to the applied magnetic field and atomic order. We analyze the alloy Ni50Mn34.5In15.5 in magnetic fields up to 13 T. The alloy has been prepared both in an ordered state by slow cooling, and in a disordered state by rapid quenching. In both cases the dependence of the martensitic transition temperature on the field is highly nonlinear. Such departure from linearity is due to a decrease of the entropy change at the transition, ΔS, with the applied field. This can be explained by the ordering effect of the magnetic field on the frustrated magnetic structure of the alloy in the martensitic phase. Compliance with a recent model, relying on the strong magnetoelastic interactions in these compounds, is very satisfactory.

摘要

亚磁形状记忆合金的马氏体相变(MT)对施加的磁场和原子序非常敏感。我们分析了合金Ni50Mn34.5In15.5在高达13 T的磁场中的情况。该合金通过缓慢冷却制备成有序状态,通过快速淬火制备成无序状态。在这两种情况下,马氏体转变温度对磁场的依赖性都是高度非线性的。这种偏离线性是由于转变时熵变ΔS随外加磁场的减小。这可以用磁场对马氏体相中合金受挫磁结构的有序化作用来解释。与最近基于这些化合物中强磁弹性相互作用的模型相符程度非常令人满意。

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