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Elastocaloric Cooling on the Miniature Scale: A Review on Materials and Device Engineering

机译:弹性焦距在微型规模上的冷却:材料与设备工程综述

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摘要

This Review covers the fundamentals of operation and scaling of elastocaloric cooling devices as well as current developments of elastocaloric shape-memory alloy (SMA) films and the engineering of SMA film-based cooling devices. Sputter-deposited TiNiCuCo alloys showing ultra-low fatigue enable unique functional properties such as tailored transformation temperature gradients. Two substantially different concepts for the development of elastocaloric cooling demonstrators are discussed. One concept relies on heat transfer by mechanical contact between the elastocaloric SMA film and solid heat sink and source elements. The second concept makes use of the heat transfer between the elastocaloric SMA film and a heat transfer fluid, including the advanced technology of active regeneration. Demonstrators based on a single SMA film reach device temperature spans of 14K and a high specific cooling power of up to 18Wg(-1). The performance characteristics are compared with other solid-state caloric cooling technologies.
机译:本综述涵盖了弹性机械冷却装置的运行和缩放的基础以及弹性形状记忆合金(SMA)薄膜的电流发展以及SMA薄膜的冷却装置的工程。溅射沉积的Tinicuco合金,显示超低疲劳,可实现独特的功能性,如定制的变换温度梯度。讨论了为弹性传导示威者发展的两个基本上不同的概念。一个概念依赖于弹性蜂制SMA薄膜和固体散热器和源元件之间的机械接触进行热传递。第二个概念利用弹性焦膜和传热流体之间的传热,包括高活性再生技术的先进技术。示威者基于单个SMA薄膜达到14K的设备温度跨度和高达18Wg(-1)的高特定冷却功率。将性能特性与其他固态热冷却技术进行比较。

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