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Scalable superhydrophobic coating with controllable wettability and investigations of its drag reduction

机译:可伸缩的超疏水涂层,可控制的润湿性和减阻的调查

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摘要

Superhydrophobic surface (SHS) has always been considered to be favorable for reducing drag force due to the air layer in surface asperities, however, debates over whether such surface could reduce the drag force still remains. In this study, steel surface was sprayed with suspension that contained PMMA and hydrophobic nanoscale silica, and the obtained surface showed variable contact angle from 94 degrees to 159 degrees , sliding angle from 90 degrees to 2 degrees, suggesting the controllable wettability; besides, the facile preparation process showed promising prospect to be scaled up. We studied the drag-reducing property of treated steel via sailing test and rotary disc test, results showed that SHS could efficiently reduce the drag force under low fluidic condition; surprisingly, for the intense turbulent flow, the SHS exhibited a drag-increasing effect, indicating that such surface only functions under mild flow condition.
机译:超疏水表面(SHS)一直被认为是有利于减少由于表面粗糙中的空气层引起的阻力,然而,关于这种表面是否可以减少阻力仍然存在仍然存在争论。 在该研究中,用悬浮液喷涂钢表面,含有PMMA和疏水性纳米级二氧化硅,并且所获得的表面显示出可变接触角从94度至159度,从90度到2度的滑动角度,表明可控润湿性; 此外,便利的制备过程表明要扩大前景。 我们通过帆船测试和旋转盘试验研究了处理钢的减压性能,结果表明,SHS可以在低流动性条件下有效地降低阻力; 令人惊讶的是,对于强烈的湍流流动,SHS表现出拖延的效果,表明这种表面仅在温和的流动条件下起作用。

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