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Influence of fluorinated self-assembled monolayer on wetting dynamics during evaporation of refrigerant-oil mixture on metal surface

机译:金属表面上制冷剂 - 油混合物蒸发过程中氟化自组装单层对湿润动力学的影响

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摘要

Reducing wettability of a metal surface is a promising method for enhancing boiling heat transfer of refrigerant-oil mixture on the metal. As fluorinated self-assembled monolayer (F-SAM) coating is effective for wettability reduction, its influence on wetting dynamics including meniscus shape, contact angle, contact line velocity and rising liquid height during evaporation of refrigerant-oil mixture on metal surface were experimentally investigated. The refrigerant-oil mixture was prepared by R141b and NM56, the oil mass fraction ranged from 0 to 10 wt%, and the surface roughness ranged from 0.028 to 1.166 mu m. The results show that during evaporation of refrigerant-oil mixture, the presence of F-SAM changes the evaporation mode to be constant contact line velocity followed by both constant contact angle and contact line velocity, while decreases the rising liquid height. The results suggest that larger surface roughness and higher oil mass fraction are preferred when using F-SAM to reduce surface wettability. (C) 2017 Elsevier Ltd and IIR. All rights reserved.
机译:减少金属表面的润湿性是一种有助于提高金属制冷剂 - 油混合物的沸腾热传递的方法。由于氟化自组装单层(F-SAM)涂层对润湿性降低有效,因此实验研究其对包括弯月面形状,接触角,接触线速度和上升液体高度的润湿动力学的影响是通过实验研究金属表面上的制冷剂 - 油混合物的蒸发过程中的。通过R141B和NM56制备制冷剂 - 油混合物,油质量分数范围为0至10wt%,表面粗糙度范围为0.028至1.166μm。结果表明,在制冷剂 - 油混合物的蒸发过程中,F-SAM的存在将蒸发模式改变为恒定接触线速度,然后恒定接触角和接触线速度,同时降低液体高度上升。结果表明,使用F-SAM以降低表面润湿性时,优选较大的表面粗糙度和更高的油质量分数。 (c)2017年Elsevier Ltd和IIR。版权所有。

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