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首页> 外文期刊>Journal of Materials Science >Adhesion and sliding of wet snow on a super-hydrophobic surface with hydrophilic channels
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Adhesion and sliding of wet snow on a super-hydrophobic surface with hydrophilic channels

机译:湿雪在具有亲水通道的超疏水表面上的附着和滑动

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摘要

Adhesion and sliding of wet snow on a superhydrophobic surface with hydrophilic channel were investigated. Two different alignment (two dimensional and three dimensional) of the hydrophilic channels in a superhydrophobic surface were prepared and compared with merely a superhydrophobic surface and a hydrophilic surface. Both alignment samples exhibited intermediate level of wet snow adhesion between merely a superhydrophobic surface and a hydrophilic surface. Although the three dimensional sample also showed intermediate level for the wet snow sliding behavior, the two dimensional sample exhibits poorer snow sliding behavior than a superhydrophobic surface. Based on the experiments using a water-hollow glass beads composite, water movement to hydrophilic parts from wet snow occurs on both samples. It is deduced that the poor sliding behavior on the two dimensional sample was due to the increase of viscosity of wet snow on superhydrophobic parts as a result of the water movement to hydrophilic parts.
机译:研究了湿雪在具有亲水通道的超疏水表面上的黏附和滑动。制备了超疏水性表面中亲水通道的两种不同取向(二维和三维),并将其与仅超疏水性表面和亲水性表面进行了比较。两种取向样品仅在超疏水性表面和亲水性表面之间表现出中等水平的湿雪粘附力。尽管三维样品还显示出中等水平的湿滑雪行为,但二维样品比超疏水表面显示出较差的雪滑行为。基于使用水空心玻璃珠复合材料的实验,两个样品均发生了水从湿雪向亲水部分移动的情况。可以推断,由于水向亲水性部分的运动,二维样品上较差的滑动行为是由于超疏水性部分上的湿雪的粘度增加所致。

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