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首页> 外文期刊>Journal of Applied Physics >Calorimetric and magnetic study for Ni50Mn36In14 and relative cooling power in paramagnetic inverse magnetocaloric systems
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Calorimetric and magnetic study for Ni50Mn36In14 and relative cooling power in paramagnetic inverse magnetocaloric systems

机译:顺磁逆磁热系统中Ni 50 Mn 36 In 14 的量热和磁研究以及相对冷却功率

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摘要

The non-stoichiometric Heusler alloy NiMnIn undergoes a martensitic phase transformation in the vicinity of 345 K, with the high temperature austenite phase exhibiting paramagnetic rather than ferromagnetic behavior, as shown in similar alloys with lower-temperature transformations. Suitably prepared samples are shown to exhibit a sharp transformation, a relatively small thermal hysteresis, and a large field-induced entropy change. We analyzed the magnetocaloric behavior both through magnetization and direct field-dependent calorimetry measurements. For measurements passing through the first-order transformation, an improved method for heat-pulse relaxation calorimetry was designed. The results provide a firm basis for the analytic evaluation of field-induced entropy changes in related materials. An analysis of the relative cooling power (RCP), based on the integrated field-induced entropy change and magnetizing behavior of the Mn spin system with ferromagnetic correlations, shows that a significant RCP may be obtained in these materials by tuning the magnetic and structural transformation temperatures through minor compositional changes or local order changes.
机译:非化学计量的Heusler合金NiMnIn在345 K附近经历马氏体相变,高温奥氏体相表现出顺磁而不是铁磁行为,如具有较低温度转变的类似合金所示。适当制备的样品显示出尖锐的相变,相对较小的热滞后和较大的场致熵变。我们通过磁化和直接依赖于场的量热法分析了磁热行为。对于通过一阶转换的测量,设计了一种改进的热脉冲弛豫量热法。该结果为相关材料的场致熵变化的分析评估提供了坚实的基础。基于具有铁磁相关性的锰自旋系统的积分场感应熵变化和磁化行为,对相对冷却功率(RCP)进行分析,结果表明,通过调整磁和结构转变,可以在这些材料中获得显着的RCP轻微的成分变化或局部顺序变化导致温度升高。

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