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Aluminum nitride as an alternative ceramic for fabrication of microchannel heat exchangers: A numerical study

机译:氮化铝作为制造微通道热交换器的替代陶瓷:数值研究

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摘要

Advances in micro electro mechanical systems (MEMS) necessitate utilizing efficient types of materials which are capable of dissipating high heat transfer rates. Aluminum nitride (AlN) as a member of advanced ceramics family, offers remarkable thermal conductivity which makes it suitable candidate in manufacturing of special and high-tech heat exchangers. The present work aims to investigate the application of a micro-sized heat exchanger made of AlN. According to the performed numerical simulations using Comsol Multiphysics, AlN made heat exchanger showed remarkable heat transfer enhancement of 59%, compared to the Al2O3 made one. Such a considerable improvement can be attributed to the higher thermal conductivity of AlN in comparison with Al2O3. The effectiveness of the heat exchangers were calculated for both AlN and Al2O3 made heat exchangers, and a 26% improvement was observed using aluminum nitride.
机译:微电器机械系统(MEMS)的进步需要利用能够耗散高传热速率的有效类型的材料。 氮化铝(ALN)作为先进陶瓷家族的成员,提供了显着的导热系数,使其成为特殊和高科技热交换器制造的合适候选者。 目前的工作旨在研究由ALN制成的微尺寸热交换器的应用。 根据使用COMSOL多发性的进行的数值模拟,与AL2O3相比,ALN制造的热交换器显示出显着的热转移增强59%。 与Al2O3相比,这种相当大的改善归因于ALN的较高导热率。 为ALN和Al2O3制成的热交换器计算热交换器的有效性,使用氮化铝观察到26%的改善。

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