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Investigation of capillary properties of copper metal foams by the rate of rise method in the presence of evaporation

机译:蒸发条件下上升速率法研究铜泡沫金属的毛细管性能

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An experimental study has been done to define the capillary characteristics of a novel a type of copper metal foam which is to be used as a wick in flat heat pipes for electronic cooling. Capillary properties such as permeability (K) and effective pore radius (reff) are critical in defining the capillary limit of heat pipes, because their ratio (K/reff) i s a measure of pumping capacity of the wicking material. Foam strips with porosities of 68%, 75% and 82% are tested by the rate of rise method to measure K and reff. Impact of evaporation on the capillary rise has been studied by using acetone as test liquid in an open and a partially saturated ambient to reduce the evaporation rate. It was found out that the rate of evaporation while the liquid is rising is less than the evaporation rate of a saturated sample with stationary liquid. This will allow ignoring the evaporation effect in the mathematical model used to extract K and reff. By this simplification, rate of increasing of acetone and water weight with time is measured with a high precision balance and then, by using an appropriate mathematical model, K and reff are extracted. Results show that 75% porosity foam has the highest K/reff ratio which makes it a suitable candidate for a heat pipe wicking material.
机译:已经进行了一项实验研究,以定义一种新型的铜泡沫金属的毛细管特性,该泡沫金属将用作扁平热管中的芯,用于电子冷却。毛细管性质(例如渗透率(K)和有效孔半径(reff))对于定义热管的毛细管极限至关重要,因为它们的比率(K / reff)是芯吸材料的抽吸能力的量度。孔隙率分别为68%,75%和82%的泡沫条通过上升率测试来测量K和reff。通过在开放和部分饱和的环境中使用丙酮作为测试液体,研究了蒸发对毛细管上升的影响,以降低蒸发速率。发现当液体上升时的蒸发速率小于具有固定液体的饱和样品的蒸发速率。这将可以忽略用于提取K和reff的数学模型中的蒸发效应。通过这种简化,以高精度的平衡来测量丙酮和水的重量随时间的增加速率,然后通过使用适当的数学模型来提取K和reff。结果表明,孔隙率为75%的泡沫具有最高的K /反射率,这使其非常适合用作热管芯吸材料。

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