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Experimental and numerical study on phase change material (PCM) for thermal management of mobile devices

机译:用于移动设备热管理的相变材料(PCM)的实验和数值研究

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摘要

As mobile devices become more complex and higher in performance despite the smaller size, heat concentration at localized areas has become a problem. In recent years, passive cooling using phase change materials (PCMs) has drawn attention as a thermal management method for mobile devices. PCMs reduce the temperature increase rate due to their latent heat properties. This reduction in the temperature increase rate is called a "delay effect". Moreover, microencapsulated PCMs (MPCMs) are attracting attention because they keep the melted PCMs from leaking. In this study, PCM sheets containing MPCM/polyethylene composite material are investigated for the thermal management of mobile devices. Namely the authors conduct a series of experiments using the PCM sheet with a high thermal conductivity sheet mounted into a simply modeled mobile device. Effects of the mass, the latent heat, the thermal conductivity, the configuration of the PCM sheet, and high thermal conductivity sheet on the temperature of a smart phone simulator are investigated. A finite element analysis (FEA) is also conducted considering the phase change of PCMs to investigate the optimal dimension and shape of PCMs. As a result, the delay effect of PCMs and the effectivity of a copper sheet pasted on the PCMs are verified by experiments. Moreover, FEA shows that using the PCM sheet with high thermal conductivity sheet has an advantage for the thermal management of mobile devices and gives an optimal condition for the PCM sheets. (C) 2015 Elsevier Ltd. All rights reserved.
机译:尽管尺寸更小,但随着移动设备变得越来越复杂和性能更高,局部区域的热量集中已成为一个问题。近年来,作为移动设备的热管理方法,使用相变材料(PCM)的被动冷却引起了人们的注意。 PCM由于其潜热特性而降低了温度上升速率。温度升高速率的这种降低称为“延迟效应”。此外,微囊PCM(MPCM)吸引了人们的注意,因为它们可以防止熔化的PCM泄漏。在这项研究中,包含MPCM /聚乙烯复合材料的PCM板被研究用于移动设备的热管理。也就是说,作者使用PCM板进行了一系列实验,该PCM板具有安装在简单建模的移动设备中的高导热率板。研究了质量,潜热,导热率,PCM板的配置和高导热率板对智能手机模拟器温度的影响。还进行了考虑PCM相变的有限元分析(FEA),以研究PCM的最佳尺寸和形状。结果,通过实验验证了PCM的延迟效果和粘贴在PCM上的铜片的有效性。而且,FEA表明,将具有高导热率的PCM板使用在移动设备的热管理方面具有优势,并为PCM板提供了最佳条件。 (C)2015 Elsevier Ltd.保留所有权利。

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