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Lumped Element Model for Thermomagnetic Generators Based on Magnetic SMA Films

机译:基于磁性SMA薄膜的热磁发生器集成的元件模型

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摘要

This paper presents a lumped element model (LEM) to describe the coupled dynamic properties of thermomagnetic generators (TMGs) based on magnetic shape memory alloy (MSMA) films. The TMG generators make use of the concept of resonant self-actuation of a freely movable cantilever, caused by a large abrupt temperature-dependent change of magnetization and rapid heat transfer inherent to the MSMA films. The LEM is validated for the case of a Ni-Mn-Ga film with Curie temperature TC of 375 K. For a heat source temperature of 443 K, the maximum power generated is 3.1 µW corresponding to a power density with respect to the active material’s volume of 80 mW/cm3. Corresponding LEM simulations allow for a detailed study of the time-resolved temperature change of the MSMA film, the change of magnetic field at the position of the film and of the corresponding film magnetization. Resonant self-actuation is observed at 114 Hz, while rapid temperature changes of about 10 K occur within 1 ms during mechanical contact between heat source and Ni-Mn-Ga film. The LEM is used to estimate the effect of decreasing TC on the lower limit of heat source temperature in order to predict possible routes towards waste heat recovery near room temperature.
机译:本文呈现了集总元素模型(LEM),用于描述基于磁形记忆合金(MSMA)膜的热磁性发生器(TMG)的耦合动态特性。 TMG发电机利用自由可移动悬臂的谐振自动致动的概念,由MSMA膜固有的磁化和快速热传递的突然依赖性变化引起。对于具有375k的居民温度Tc的Ni-Mn-Ga膜的情况验证了lem。对于443k的热源温度,产生的最大功率为3.1μW,对应于活动材料的功率密度体积为80 mw / cm3。相应的LEM模拟允许对MSMA膜的时间分辨温度变化进行详细研究,磁场在膜的位置和相应的薄膜磁化处的变化。在114Hz观察到共振自致动,而在热源和Ni-Mn-Ga膜之间的机械接触期间,在1ms内发生约10k的快速温度变化。 lem用于估计降低Tc对热源温度下限的影响,以预测在室温附近的浪费热量恢复的可能途径。

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