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High-performance elastocaloric materials for the engineering of bulk- and micro-cooling devices

机译:用于大体积和微冷却设备工程的高性能弹性材料

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Pseudoelastic NiTi-based shape-memory alloys (SMAs) have recently received attention as candidate materials for solid-state refrigeration. The elastocaloric effect in SMAs exploits stress-induced martensitic transformation, which is associated with large latent heat. Most importantly, cyclic mechanical loading/unloading provides large adiabatic temperature drops exceeding 25 K at high process efficiencies. This article summarizes the underlying principles, important material parameters and process requirements, and reviews recent progress in the development of pseudoelastic SMAs with large coefficients of performance, as well as very good functional fatigue resistance. The application potential of SMA film and bulk materials is demonstrated for the case of cyclic tensile loading/unloading in prototypes ranging from miniature-scale devices to large-scale cooling units.
机译:伪弹性NiTi基形状记忆合金(SMAs)作为固态制冷的候选材料最近受到关注。 SMA中的弹性热效应利用了应力诱导的马氏体转变,这与大的潜热有关。最重要的是,在高工艺效率下,循环机械加载/卸载可提供超过25 K的绝热大温降。本文总结了基本原理,重要的材料参数和工艺要求,并回顾了具有较大性能系数以及非常好的功能耐疲劳性的伪弹性SMA的开发最新进展。从微型设备到大型冷却装置的原型中,证明了SMA薄膜和块状材料在循环拉伸装/卸情况下的应用潜力。

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