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Formation and Growth of Micro and Macro Bubbles on Copper-Graphite Composite Surfaces

机译:铜-石墨复合材料表面微气泡和大气泡的形成和生长

摘要

Micro scale boiling behavior in the vicinity of graphite micro-fiber tips on the coppergraphite composite boiling surfaces is investigated. It is discovered that a large number of micro bubbles are formed first at the micro scratches and cavities on the copper matrix in pool boiling. In virtue of the non-wetting property of graphite, once the growing micro bubbles touch the graphite tips, the micro bubbles are sucked by the tips and merged into larger micro bubbles sitting on the tips. The micro bubbles grow rapidly and coalesce to form macro bubbles, each of which sitting on several tips. The growth processes of the micro and macro bubbles are analyzed and formulated followed by an analysis of bubble departure on the composite surfaces. Based on these analyses, the enhancement mechanism of the pool boiling heat transfer on the composite surfaces is clearly revealed. Experimental results of pool boiling heat transfer both for water and Freon-113 on the composite surfaces convincingly demonstrate the enhancement effects of the unique structure of Cu-Gr composite surfaces on boiling heat transfer.
机译:研究了石墨微纤维尖端在铜石墨复合沸腾表面附近的微尺度沸腾行为。发现在池沸腾中首先在铜基质上的微小划痕和空腔处形成大量的微小气泡。由于石墨的不润湿性,一旦生长的微气泡接触到石墨尖端,微气泡就会被尖端吸走并合并成更大的微气泡。微小气泡迅速生长并聚结形成大气泡,每个气泡都位于几个尖端上。分析和配制微气泡和大气泡的生长过程,然后分析复合材料表面上的气泡离开。基于这些分析,清楚地揭示了复合表面上池沸腾传热的增强机理。复合表面上水和氟利昂113的池沸腾传热实验结果令人信服地证明了Cu-Gr复合材料表面独特结构对沸腾传热的增强作用。

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