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High Frequency Thermal Energy Harvesting Using Magnetic Shape Memory Films

机译:使用磁性形状记忆膜的高频热能收集

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摘要

A new method for thermal energy harvesting at small temperature difference and high cycling frequency is presented that exploits the unique magnetic properties and actuation capability of magnetic shape memory alloy (MSMA) films. Polycrystalline films of the Ni50.4Co3.7Mn32.8In13.1 alloy are tailored, showing a large abrupt change of magnetization and low thermal hysteresis well above room temperature. Based on this material, a free-standing film device is designed that exhibits thermomagnetically induced actuation between a heat source and sink with short heat transfer times. The cycling frequency of the device is tuned by mechanical frequency up-conversion to over 200 Hz. An integrated pick-up coil converts the thermally induced change of magnetization as well as the kinetic energy to electricity. For a temperature change of 10 K, the maximum peak power density is in the order of 5 mW cm-3.
机译:提出了一种在小温差和高循环频率下收集热能的新方法,该方法利用了磁形状记忆合金(MSMA)膜的独特磁性能和驱动能力。量身定制的Ni50.4Co3.7Mn32.8In13.1合金多晶膜,显示出大的磁化强度突变和远高于室温的低热滞。基于这种材料,设计了一种独立式薄膜装置,该装置可以在热源和散热片之间以短时间的传热时间表现出热磁感应的致动。通过机械频率上变频将器件的循环频率调谐到200 Hz以上。集成的拾波线圈将热感应的磁化强度变化以及动能转换为电能。对于10 K的温度变化,最大峰值功率密度约为5 mW cm-3。

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