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基于具有双轴柔韧性的双层水凝胶/泡沫镍散热器的可穿戴热电冷却器。

Wearable Thermoelectric Cooler Based on a Two-Layer Hydrogel/Nickel Foam Heatsink with Two-Axis Flexibility.

作者信息

Zhang Yong, Gao Jie, Zhu Sijing, Li Jiahui, Lai Huajun, Peng Ying, Miao Lei

机构信息

Guangxi Key Laboratory of Information Material, Engineering Research Center of Electronic Information Materials and Devices, Ministry of Education, School of Material Science and Engineering, Guilin University of Electronic Technology, Guilin 541004, China.

Guangxi Key Laboratory of Precision Navigation Technology and Application, Guilin University of Electronic Technology, Guilin 541004, China.

出版信息

ACS Appl Mater Interfaces. 2022 Apr 6;14(13):15317-15323. doi: 10.1021/acsami.2c01777. Epub 2022 Mar 25.

Abstract

A wearable thermoelectric cooler (w-TEC) shows promising prospects in personal thermal management due to its zero emission, high efficiency, lightweight, and long-term stability. The flexible heatsinks are able to promote the cooling effect of coolers, but the cooling capacity of current coolers still has much room for improvement because of the relatively large thermal resistance between the cooler and heatsink. In this work, the two-layer heatsink units composed of hydrogel and nickel foam are fabricated and attached to a thermoelectric cooler via the thermal silica gel. Thanks to the high thermal conductivity of nickel foam and a tight bond between the hydrogel and nickel foam, effective heat conduction from the cooler to the body of the heatsink was achieved. In addition, the discrete heatsink units endow the w-TEC with excellent flexibility. The bending radius of this w-TEC is as small as 7.5 mm, and a long-term temperature reduction of ∼10 °C can be realized at an input current of 0.3 A for a flat or bent w-TEC. In the on-body testing, a stable temperature reduction of 7 °C can be obtained using an AA battery with an input voltage of 1.5 V.

摘要

可穿戴式热电冷却器(w-TEC)因其零排放、高效率、轻便及长期稳定性,在个人热管理方面展现出广阔前景。柔性散热片能够提升冷却器的冷却效果,但由于冷却器与散热片之间的热阻相对较大,当前冷却器的冷却能力仍有很大提升空间。在这项工作中,由水凝胶和泡沫镍组成的双层散热片单元被制造出来,并通过导热硅胶附着在热电冷却器上。得益于泡沫镍的高导热性以及水凝胶与泡沫镍之间的紧密结合,实现了从冷却器到散热片主体的有效热传导。此外,离散的散热片单元赋予了w-TEC出色的柔韧性。这种w-TEC的弯曲半径小至7.5毫米,在0.3安的输入电流下,扁平或弯曲的w-TEC均可实现约10℃的长期降温。在人体测试中,使用输入电压为1.5伏的AA电池可实现7℃的稳定降温。

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