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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Achievement of a reversible giant magnetocaloric effect via exerting external hydrostatic pressure on a Ni45Co5Mn35In15 metamagnetic Heusler alloy
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Achievement of a reversible giant magnetocaloric effect via exerting external hydrostatic pressure on a Ni45Co5Mn35In15 metamagnetic Heusler alloy

机译:通过对Ni45Co5MN35IN15型静脉静脉合金施加外部静压压力来实现可逆巨型磁热效应

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摘要

Magnetocaloric materials with first-order phase transition are potential refrigerant media for solid state refrigeration. In this work, the Ni45Co5Mn35In15 alloy possesses a representative first-order martensitic transition (MT), which is found to be sensitive to both magnetic field and isostatic pressure with rates of similar to-6.4 K T-1 and similar to 4.24 K kbar(-1). Such an active response to multi-stimuli derives from the strong coupling of the spin and the lattice. A low magnetic field of 1 T can drive nearly 100% of the total entropy change corresponding to the whole transformation in this alloy. However, the prominent magnetocaloric effect (MCE) is almost irreversible owing to the intrinsic hysteresis of the first-order phase transition. By virtue of the strong magnetostructural coupling during the MT, a hydrostatic pressure assisted magnetic field loading loop has been constructed for eliminating the hysteresis and to a large extent improve the reversibility of the MCE.
机译:具有一级相变的磁热材料是固态制冷的潜在制冷剂介质。在这项工作中,Ni45Co5Mn35In15合金具有代表性的一级马氏体相变(MT),该相变对磁场和等静压都很敏感,其速率类似于-6.4kT-1,类似于4.24kkbar(-1)。这种对多种刺激的积极反应源于自旋和晶格的强耦合。1T的低磁场可以驱动该合金中与整个相变相对应的近100%的总熵变。然而,由于一级相变的固有滞后性,显著的磁热效应(MCE)几乎是不可逆的。借助于磁共振过程中的强磁结构耦合,构造了一个静水压辅助磁场加载回路,以消除磁滞现象,并在很大程度上提高了MCE的可逆性。

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