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Direct measurements of the magnetocaloric effect in pulsed magnetic fields: The example of the Heusler alloy Ni50Mn35In15

机译:直接测量脉冲磁场中的磁热效应:赫斯勒合金Ni 50 mn 35 In 15 的例子

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摘要

We have studied the magnetocaloric effect (MCE) in the shape-memory Heusler alloy Ni50Mn35In15 by direct measurements in pulsed magnetic fields up to 6 and 20 T. The results in 6 T are compared with data obtained from heat-capacity experiments. We find a saturation of the inverse MCE, related to the first-order martensitic transition, with a maximum adiabatic temperature change of Delta T-ad = -7 K at 250K and a conventional field-dependent MCE near the second-order ferromagnetic transition in the austenitic phase. The pulsed magnetic field data allow for an analysis of the temperature response of the sample to the magnetic field on a time scale of similar to 10 to 100 ms, which is on the order of typical operation frequencies (10-100 Hz) of magnetocaloric cooling devices. Our results disclose that in shape-memory alloys, the different contributions to the MCE and hysteresis effects around the martensitic transition have to be carefully considered for future cooling applications. (C) 2015 AIP Publishing LLC.
机译:我们通过在高达6和20 T的脉冲磁场中直接测量,研究了形状记忆Heusler合金Ni50Mn35In15中的磁热效应(MCE)。将6 T的结果与热容量实验的数据进行了比较。我们发现与一阶马氏体转变有关的逆MCE饱和,最大绝热温度变化为250 K时的Delta T-ad = -7 K,而传统的磁场相关MCE接近于二阶铁磁转变。奥氏体阶段。脉冲磁场数据允许在大约10到100毫秒的时间尺度上分析样品对磁场的温度响应,这大约是磁热冷却的典型工作频率(10-100 Hz)设备。我们的结果表明,在形状记忆合金中,对于未来的冷却应用,必须仔细考虑对MCE和马氏体转变周围的磁滞效应的不同贡献。 (C)2015 AIP Publishing LLC。

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