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Ultra-low-field magneto-elastocaloric cooling in a multiferroic composite device

机译:多铁复合设备中的超低场磁弹热冷却

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摘要

The advent of caloric materials for magnetocaloric, electrocaloric, and elastocaloric cooling is changing the landscape of solid state cooling technologies with potentials for high-efficiency and environmentally friendly residential and commercial cooling and heat-pumping applications. Given that caloric materials are ferroic materials that undergo first (or second) order phase transitions near room temperature, they open up intriguing possibilities for multiferroic devices with hitherto unexplored functionalities coupling their thermal properties with different fields (magnetic, electric, and stress) through composite configurations. Here we demonstrate a magneto-elastocaloric effect with ultra-low magnetic field (0.16 T) in a compact geometry to generate a cooling temperature change as large as 4 K using a magnetostriction/superelastic alloy composite. Such composite systems can be used to circumvent shortcomings of existing technologies such as the need for high-stress actuation mechanism for elastocaloric materials and the high magnetic field requirement of magnetocaloric materials, while enabling new applications such as compact remote cooling devices.
机译:磁热,电热和弹性热冷却用热材料的出现改变了固态冷却技术的面貌,具有高效,环保的住宅和商业冷却以及热泵应用的潜力。鉴于热量材料是在室温附近经历一阶(或二阶)相变的铁酸盐材料,它们为具有迄今未曾探索过的功能的多铁性装置打开了有趣的可能性,通过复合材料将其热特性与不同的场(磁场,电场和应力)耦合配置。在这里,我们展示了具有致密几何形状的超低磁场(0.16 T)的磁弹性效应,使用磁致伸缩/超弹性合金复合材料可产生高达4 K的冷却温度变化。这样的复合系统可用于克服现有技术的缺点,例如对弹性热材料的高应力致动机构的需求以及磁热材料的高磁场需求,同时实现诸如紧凑型远程冷却装置的新应用。

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