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Compact cooling devices based on giant electrocaloric effect dielectrics

机译:基于巨型电热效应电介质的紧凑型冷却装置

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摘要

The entropy and/or temperature change of material with respect to electric fields is known as electrocaloric effect (ECE). Giant ECE is discovered in P(VDF-TrFE) ferroelectric copolymers near ferroelectric-paraelectric (F-P) transition temperature. F-P transition is normally much higher than room temperature around which is preferred by working temperature of cooling device configuration. This paper presents the two defect-inducing methods to lower and broaden working temperature range of P(VDF-TrFE) based copolymers for ECE. Giant ECE is experimentally demonstrated in large temperature range (0–55°C). In addition, an electrocaloric oscillatory refrigerator (ECOR) was proposed and simulated by finite volume method and its high performance was theoretically demonstrated. Temperature gradient larger than 30 °C can be maintained across the two sides of a 1 cm device. For ΔT=20 °C cooling condition, a high cooling power (5.4 W/cm2) and significantly higher coefficient of performance (COP) can be achieved (50% of Carnot efficiency).
机译:材料相对于电场的熵和/或温度变化称为电热效应(ECE)。在接近铁电-顺电(F-P)转变温度的P(VDF-TrFE)铁电共聚物中发现了巨型ECE。 F-P过渡温度通常比室温高得多,在室温附近,冷却设备配置的工作温度是优选的。本文提出了两种降低和扩大P(VDF-TrFE)基ECE共聚物工作温度范围的方法。在大温度范围(0–55°C)中通过实验证明了巨型ECE。此外,提出了一种电热振荡制冷机(ECOR),并通过有限体积法对其进行了仿真,并从理论上证明了其高性能。 1 cm设备的两侧可以保持大于30°C的温度梯度。在ΔT= 20°C的冷却条件下,可以实现高冷却功率(5.4 W / cm 2 )和显着更高的性能系数(COP)(卡诺效率的50%)。

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