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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >A novel ultra-thin vapor chamber for heat dissipation in ultra-thin portable electronic devices
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A novel ultra-thin vapor chamber for heat dissipation in ultra-thin portable electronic devices

机译:用于超薄便携式电子设备中的用于散热的新型超薄蒸气室

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Ultra-thin vapor chamber (UTVC) is an efficient heat transfer element that meets the heat dissipation requirement of miniaturized electronics. In this study, a novel UTVC (0.5 mm thick) with four spiral woven meshes and one bottom mesh composite wick was designed for cooling portable electronic devices. The UTVCs were manufactured using a cost-effective process suitable for mass production. The heat transfer performance of the UTVCs with different filling ratios were tested and the maximum heat transfer capacity of the UTVCs with filling ratios of 90%, 100%, 110% and 120% were 5.10 W, 7.58 W, 6.58 W and 6.33 W, respectively. Furthermore, the maximum heat transfer capacity of the optimal filling ratio UTVC (100%) in five representative placement states: horizontal state, gravity state, anti-gravity state, side state and inverted state were 7.58 W, 9.06 W, 6.33 W, 7.33 W and 7.58 W, respectively. The maximum effective thermal conductivity of the UTVC was found to be about 20900 W/(m.K) in horizontal state and 25200 W/(m.K) in gravity state, which were about 52 times and 63 times higher than that of pure copper, respectively. The proposed novel UTVC is promising for solving the heat dissipation problem of high performance ultra-thin portable electronic devices.
机译:超薄蒸汽室(UTVC)是一种有效的传热元件,符合小型化电子的散热要求。在该研究中,设计了一种具有四个螺旋织物网和一个底网复合芯的新型UTVC(0.5mm厚),用于冷却便携式电子设备。 UTVC使用适用于批量生产的经济高效的方法制造。测试具有不同灌浆比的UTVC的传热性能,UTVC的最大热传递能力为90%,100%,110%和120%的填充率为5.10W,7.58W,6.58W和6.33W,分别。此外,五个代表性放置状态下最佳填充比率UTVC(100%)的最大传热能力:水平状态,重力状态,抗重力状态,侧态和倒置状态为7.58W,9.06W,6.33W,7.33 W和7.58 W分别。发现UTVC的最大有效导热率在水平状态下为约20900W /(M.K),分别为25200W /(M.K),分别比纯铜的高度为约52倍和63倍。该提出的新型UTVC是有助于解决高性能超薄便携式电子设备的散热问题。

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