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A novel oxidized composite braided wires wick structure applicable for ultra-thin flattened heat pipes

机译:一种适用于超薄扁平热管的新型氧化复合编织丝芯结构

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摘要

This present study proposed a novel low-cost and high performance braided wire wick structure having su-perhydrophilic treatment applicable for ultra-thin heat pipe. The test wick structures include mono and composite wick structure. The composite braided wire adopts two different diameter wire design, using a large diameter (0.1 mm) in the core while the exterior of the core is covered by smaller diameter copper wire (0.05 mm). The mono design contains only one uniform wire diameter (0.1 mm) in core region. Test results indicate that via oxidizing the surface of the braided wires can largely enhance the surface roughness and result in a much higher capillary force as comparing to the un-oxidized one. In addition, both mono (m-FHP) and composite braided wire (c-FHP) with oxidization could possess a maximum heat transfer capability over 15 W under horizontal operation, and test results showed that the heat transfer capability of composite design outperforms mono one by more than 32.5% in all orientations. It is also found that the filling loading ratio plays essential role on the overall performance of FHP. Either a low filling loading ratio or a high filling loading ratio may yield a lower maximum heat transfer capability and a higher thermal resistance. An optimum filling loading ratio of 125% yields the lowest thermal resistance around 0.12 K/W with the best heat transfer capability of 20 W.
机译:本研究提出了一种适用于超薄热管的具有超亲水处理的新型低成本,高性能编织线芯结构。测试芯结构包括单芯和复合芯结构。复合编织线采用两种不同直径的导线设计,芯线使用大直径(0.1毫米),而芯线的外部被直径较小的铜线(0.05毫米)覆盖。单声道设计在芯区域仅包含一个均匀的线径(0.1毫米)。测试结果表明,与未氧化的编织线相比,通过氧化编织线的表面可以大大提高表面粗糙度,并导致更高的毛细作用力。此外,在水平操作下,具有氧化作用的单丝(m-FHP)和复合编织线(c-FHP)均可在15 W以上的条件下具有最大传热能力,并且测试结果表明,复合设计的传热性能优于单丝。在所有方向上都超过32.5%。还发现填充填充率对FHP的整体性能起着至关重要的作用。低填充负荷率或高填充负荷率会产生较低的最大传热能力和较高的热阻。最佳填充负载率为125%时,最低热阻约为0.12 K / W,最佳传热能力为20 W.

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  • 作者单位

    Green Energy & Environment Research Laboratories, Industrial Technology Research Institute, Hsinchu 310, Taiwan;

    Green Energy & Environment Research Laboratories, Industrial Technology Research Institute, Hsinchu 310, Taiwan;

    Green Energy & Environment Research Laboratories, Industrial Technology Research Institute, Hsinchu 310, Taiwan;

    Green Energy & Environment Research Laboratories, Industrial Technology Research Institute, Hsinchu 310, Taiwan,Department of Mechanical Engineering, National Chiao Tung University, Hsinchu 300, Taiwan;

    Department of Mechanical Engineering, National Chiao Tung University, Hsinchu 300, Taiwan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ultra-thin flattened heat pipes; Composite fibers; Maximum heat transfer;

    机译:超薄扁平热管;复合纤维;最大传热;
  • 入库时间 2022-08-18 00:18:03

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