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憎水涂层对铝单丝表面覆冰性能的影响 被引量:10
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作者 汪佛池 李成榕 吕玉珍 《中国电机工程学报》 EI CSCD 北大核心 2011年第10期123-128,共6页
为研究憎水性涂层对铝单丝表面覆冰性能的影响,在低温过冷水条件下,利用实验室导线覆冰模拟系统试验研究了不同憎水性铝单丝表面覆冰的形成过程。研究发现:用普通憎水涂层涂覆铝单丝虽不能抑制表面覆冰的形成和增长,但可以延缓表面覆冰... 为研究憎水性涂层对铝单丝表面覆冰性能的影响,在低温过冷水条件下,利用实验室导线覆冰模拟系统试验研究了不同憎水性铝单丝表面覆冰的形成过程。研究发现:用普通憎水涂层涂覆铝单丝虽不能抑制表面覆冰的形成和增长,但可以延缓表面覆冰层的形成时间;硬脂酸涂覆制备的超憎水铝单丝表面可以有效抑制表面覆冰的形成和增长。分析表明:普通憎水性表面可以抑制表面附着水滴的湿润和扩散,但表面附着水滴与涂层间的作用力较大,水滴滑行角较大,水滴不易滑落表面;硬脂酸涂覆制备的超憎水铝单丝表面具有特殊的微纳米结构和较小的水滴滑行角,不利于水滴的粘附和冻结。 展开更多
关键词 电力系统 憎水涂层 铝单丝 覆冰 超憎水表面
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n-Octadecanethiol Self-Assembled Monolayer Coating with Microscopic Roughness for Dropwise Condensation of Steam 被引量:2
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作者 Liang CHEN Shiqiang LIANG +3 位作者 Runsheng YAN Yanjun CHENG Xiulan HUA Shuling CHEN 《Journal of Thermal Science》 SCIE EI CAS CSCD 2009年第2期160-165,共6页
Here we presented a novel technology to achieve a Super-hydrophobic coating with microscopic roughness oncopper surface. First, make a layer of verdigris grow on the fresh pure copper surface. Gain it by exposing thec... Here we presented a novel technology to achieve a Super-hydrophobic coating with microscopic roughness oncopper surface. First, make a layer of verdigris grow on the fresh pure copper surface. Gain it by exposing thecopper to air and the mist of acetic acid solution. The green coating is a mixture of basic copper(Ⅱ) carbonate andcopper(Ⅱ) acetate. Second heat the coating and make it decompose to CuO. Lastly, form an n-octadecanethiolself-assembled monolayers coating on the outermost surface. Contact angle test, scanning electron microscopeanalysis and electrochemical testing were carried out to characterize the surface, and a heat transfer experimentfor dropwise condensation of steam was performed also. Results show that the modified surface bears a few Super-hydrophobicfeatures, the static contact angle is higher than that in literatures, reaching 153.1±1.7°. The microscopicroughness can be seen in SEM images, differing much from H2O2 etched surface and bare copper surface.The condensation of steam on the surface is a typical form of dropwise condensation, in the measured rangeof temperature difference, under 0.1 MPa, the average convection heat transfer coefficients of the vertical surfaceare 1.7~2.1 times for those of film condensation. At the same time, the inhibition efficiency of surface is improvedto some extent comparing with the same kind of SAMs, which suggests that the lifetime of maintenancedropwise condensation would have the possibility to surpass the existing record. 展开更多
关键词 凝聚 自组合单层 微观粗糙度 超憎水表面 热转移系统
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