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Fabrication and evaluation of a high-performance flexible pulsating heat pipe hermetically sealed with metal

机译:高性能金属气密脉动热管的制作与评估

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摘要

A high-performance flexible pulsating heat pipe (FPHP) hermetically sealed with metal has been developed as a flexible heat spreader. For this, experimental works are conducted to evaluate the thermal performance and long-term reliability of the FPHP. The FPHP consisted of a polycarbonate sheet and flexible-copper-clad-laminates (FCCLs). Rectangular channels with dual hydraulic diameters of 0.75 mm and 0.5 mm were engraved on the polycarbonate sheet. The width, length, and thickness of the FPHP were 53.4 mm, 85.5 mm, and 0.64 mm, respectively. To prevent the permeation of non-condensable gases (NGCs) from the ambient, the upper and lower sides of the channel wall were encapsulated with the copper side of the FCCLs by a silane-mediated bonding method, and the flanges of the FPHP were sealed by soldering the two copper-foils. As the working fluid, HFE-7000 was charged into the FPHP. The FPHP has a maximum effective thermal conductivity of 1070 W/m-K, which is approximately 2.7 times higher than that of copper in the vertical orientation. The effective thermal conductivity of the FPHP decreases by 20.4% and 3.4% for the horizontal orientation and 45-degree bent condition, respectively. The long-term reliability of the FPHP was evaluated by measuring its gas permeability. The results show that the rate of the pressure increase inside the FPHP is approximately 0.54 Pa/day, indicating that the lifetime of the FPHP is at least 2000 days. The proposed method enables the fabrication of a thin and flexible pulsating heat pipe with high thermal performance and guaranteed long-term reliability.
机译:已经开发了一种用金属气密密封的高性能柔性脉动热管(FPHP)作为柔性散热器。为此,进行了实验工作以评估FPHP的热性能和长期可靠性。 FPHP由聚碳酸酯板和柔性覆铜箔层压板(FCCL)组成。在聚碳酸酯板上刻有0.75mm和0.5mm双液压直径的矩形通道。 FPHP的宽度,长度和厚度分别为53.4 mm,85.5 mm和0.64 mm。为防止不可冷凝气体(NGC)从周围环境渗透,通过硅烷介导的粘合方法将通道壁的上,下侧与FCCL的铜侧一起封装,并密封FPHP的法兰通过焊接两个铜箔。将HFE-7000作为工作流体装入FPHP。 FPHP的最大有效热导率为1070 W / m-K,比垂直方向的铜高约2.7倍。在水平方向和45度弯曲条件下,FPHP的有效导热率分别降低了20.4%和3.4%。通过测量FPHP的气体渗透率来评估其长期可靠性。结果表明,FPHP内部的压力增加速率约为0.54 Pa / day,表明FPHP的寿命至少为2000天。所提出的方法使得能够制造具有高热性能并保证长期可靠性的薄且柔性的脉动热管。

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