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Two successive magneto-structural transformations and their relation to enhanced magnetocaloric effect for Ni55.8Mn18.1Ga26.1 Heusler alloy

机译:Ni55.8Mn18.1Ga26.1 Heusler合金的两次连续磁结构转变及其与增强磁热效应的关系

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摘要

In the present work, two successive magneto-structural transformations (MSTs) consisting of martensitic and intermartensitic transitions have been observed in polycrystalline Ni55.8Mn18.1Ga26.1 Heusler alloy. Benefiting from the additional latent heat contributed from intermediate phase, this alloy exhibits a large transition entropy change ΔStr with the value of ~27 J/kg K. Moreover, the magnetocaloric effect (MCE) has been also evaluated in terms of Maxwell relation. For a magnetic field change of 30 kOe, it was found that the calculated value of refrigeration capacity in Ni55.8Mn18.1Ga26.1 attains to ~72 J/kg around room temperature, which significantly surpasses those obtained for many Ni-Mn based Heusler alloys in the same condition. Such an enhanced MCE can be ascribed to the fact that the isothermal entropy change ΔST is spread over a relatively wide temperature interval owing to existence of two successive MSTs for studied sample.
机译:在本工作中,已在多晶Ni55.8Mn18.1Ga26.1 Heusler合金中观察到由马氏体和马氏体转变组成的两个连续的磁结构转变(MST)。受益于中间相带来的额外潜热,该合金表现出较大的跃迁熵变ΔStr,其值为〜27 J / kgK。此外,还根据麦克斯韦关系对磁热效应(MCE)进行了评估。对于30 kOe的磁场变化,发现室温下Ni55.8Mn18.1Ga26.1中制冷能力的计算值达到〜72 J / kg,大大超过了许多基于Ni-Mn的Heusler的计算值在相同条件下的合金。如此增强的MCE可以归因于以下事实:由于存在两个连续的MST,因此等温熵变ΔST分布在相对较宽的温度范围内。

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