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Interface conditions of roughness-induced superoleophilic and superoleophobic surfaces immersed in hexadecane and ethylene glycol

机译:浸在十六烷和乙二醇中的粗糙度诱导的超亲油和超疏油表面的界面条件

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摘要

Interface conditions are an important property that can affect the drag of fluid flow. For surfaces with different oleophobicity, the boundary slip at the solid–oil interface is mostly larger than that at the solid–water interface. Roughness is a key factor for the wettability of superoleophilic/superoleophobic surfaces, and it has been found to affect the effective value of slip length in measurements. Moreover, there are no studies on the effect of roughness on slip at interfaces between oil and superoleophilic/superoleophobic surfaces. A theoretical description of the real surface roughness is yet to be found. Results show that the effective slip length is negative and decreases with an increasing root mean squared (RMS) roughness of surfaces, as the increasing roughness enhances the area with discontinuous slip at the solid–liquid interface. The underlying mechanisms are analyzed. The amplitude parameters of surface roughness could significantly inhibit the degree of boundary slip on both superoleophilic surfaces in Wenzel state and superoleophobic surfaces in Cassie state immersed in oil. The oleic systems were likely to enhance boundary slip and resulted in a corresponding reduction in drag with decreasing roughness on the solid–oil interfaces.
机译:界面条件是一个重要的属性,可能会影响流体的阻力。对于疏油性不同的表面,固-油界面处的边界滑移通常大于固-水界面处的滑移。粗糙度是超亲油性/超疏油性表面润湿性的关键因素,并且已发现其会影响测量中滑移长度的有效值。此外,还没有研究粗糙度对油与超亲油/超疏油表面之间的界面滑移的影响。实际表面粗糙度的理论描述尚待发现。结果表明,有效滑移长度为负值,并且随着表面粗糙度均方根(RMS)粗糙度的增加而减小,因为粗糙度的增加会增加固液界面处不连续滑动的面积。分析了潜在的机制。表面粗糙度的振幅参数可以显着抑制Wenzel态的超亲油性表面和Cassie态的超疏油性表面浸入油中的边界滑动程度。油酸体系可能会增加边界滑移,并导致相应的阻力减小,固体-油界面的粗糙度降低。

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