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Direct magnetocaloric characterization and simulation of thermomagnetic cycles

机译:直接磁热特征和热磁循环模拟

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摘要

n experimental setup for the direct measurement of the magnetocaloric effect capable of simulating high frequency magnetothermal cycles on laboratory-scale samples is described. The study of the magnetocaloric properties of working materials under operative conditions is fundamental for the development of innovative devices. Frequency and time dependent characterization can provide essential information on intrinsic features such as magnetic field induced fatigue in materials undergoing first order magnetic phase transitions. A full characterization of the adiabatic temperature change performed for a sample of Gadolinium across its Curie transition shows the good agreement between our results and literature data and in-field differential scanning calorimetry.
机译:描述了一种直接测量磁热效应的实验装置,该装置能够模拟实验室规模样品上的高频磁热循环。对工作条件下工作材料的磁热特性的研究是开发创新设备的基础。频率和时间相关的表征可以提供有关固有特征的基本信息,例如磁场引起的经历一阶磁性相变的疲劳。对Ga样品在居里转变过程中绝热温度变化的完整表征表明,我们的结果与文献数据和现场差示扫描量热法之间具有很好的一致性。

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