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Fabrication, modeling, and testing of micro-cross-flow heat exchangers

机译:微型错流换热器的制造,建模和测试

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摘要

Planar micro-cross-flow heat exchangers, similar in concept to most automobile radiators, have been fabricated using two different processes. A process that was previously reported (Harris et al., 2000) to fabricate a polymer heat exchanger involved embossing two identical polymer parts using the LIGA process. Then the two parts were aligned and bonded together. In this paper, a process is described to fabricate a nickel micro-cross-flow heat exchanger by embossing a sacrificial polymer mandrel using a LIGA-fabricated mold insert. The mandrel is coated with nickel (using either electroplating or electroless plating), then the sacrificial mandrel is dissolved. Experimental results are reported for both the polymer and nickel heat exchangers to determine the rates of heat transfer between the in-plane liquid (water) and the through-plane gas (air). Pressure drops of both fluid streams were also measured. The experimental results compare favorably with a modified version of the analytical model that was described previously. The fabricated heat exchangers have values of heat transfer/volume that are more than five times higher than conventional scale counterparts (with characteristic dimensions at least one order of magnitude larger than those reported here) and values of heat transfer/mass that are 50% greater than their conventional scale counterparts.
机译:在概念上与大多数汽车散热器相似的平面微错流热交换器已使用两种不同的工艺制造。先前已报道过一种制造聚合物热交换器的方法(Harris等,2000),涉及使用LIGA方法压花两个相同的聚合物部件。然后将两个部分对齐并粘合在一起。在本文中,描述了一种通过使用LIGA制成的模具插件对牺牲聚合物心轴进行压花来制造镍微错流热交换器的方法。将芯棒涂上镍(使用电镀或化学镀),然后将牺牲芯棒溶解。报告了聚合物和镍热交换器的实验结果,以确定面内液体(水)和面内气体(空气)之间的传热速率。还测量了两种流体流的压降。实验结果与先前描述的分析模型的修改版本相比具有优势。所制造的热交换器的传热/体积值比传统的标尺高出五倍以上(特征尺寸比此处报道的尺寸大至少一个数量级),传热/质量值高出50%比他们的传统规模。

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