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Recent progress and future perspectives in magnetic and metamagnetic shape-memory Heusler alloys

机译:磁性和心绞罩形状记忆空气合金中的最近进展和未来观点

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Magnetic shape-memory properties refer to the ability of certain materials to show strong response in strain to an applied magnetic field. This strain is caused by either inducing the martensitic transition or rearranging martensitic variants. In the first, case a superelastic effect is possible, while in the second, the system is able to show the shape-memory effect. The complex behaviour displayed by these materials is mainly a consequence of a strong interplay between magnetism and structure which is driven by a martensitic transition. This interplay is the source of many other observed effects such as giant magneto-resistance, exchange bias and magnetocaloric effects. In this paper, we will overview the present state of the art, discuss present challenges and outline some future perspectives in the field.
机译:磁形记忆特性是指某些材料在施加磁场中表达强响应的能力。这种菌株是由诱导马氏体过渡或重新排列马氏体变体引起的。首先,案例是可能的,而在第二种中,系统能够显示形状记忆效果。这些材料显示的复杂行为主要是由马氏体转变驱动的磁性和结构之间的强相互作用的结果。这种相互作用是许多其他观察到的效果的来源,例如巨型磁阻,交换偏压和磁热效应。在本文中,我们将概述现有技术,讨论现场挑战和概述该领域的未来观点。

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