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Thermal energy harvesting by high frequency actuation of magnetic shape memory alloy films

机译:高频驱动磁性形状记忆合金薄膜收集热能

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摘要

A novel energy harvesting device using magnetic shape memory alloy (MSMA) film actuation is presented showing a power density of up to 3 mW/cm at a temperature change of the material of about 2 K. This exceeds the power output of previous MSMA harvesting devices by at least three orders of magnitude and challenges state-of-the-art thermoelectrics. The results are accomplished by using a tailored Ni-Co-Mn-Ga film with large temperature-dependent change of magnetization at the Curie temperature T and a new cantilever design, with low thermal mass for rapid heat transfer in the order of 10 ms, matching the time constant of eigenoscillation.
机译:提出了一种使用磁性形状记忆合金(MSMA)薄膜致动的新型能量采集装置,该材料在温度变化约2 K时显示出高达3 mW / cm的功率密度。这超过了以前的MSMA采集装置的功率输出至少三个数量级,并挑战了最新的热电技术。通过使用量身定制的Ni-Co-Mn-Ga膜可实现这一结果,该膜在居里温度T下具有很大的温度依赖性磁化强度变化,并且采用新型悬臂设计,具有低热质量,可实现10 ms左右的快速传热,匹配本征振荡的时间常数。

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