论文标题

纯液体和粗糙固体之间的有效界面张力:一项粗粒仿真研究

The Effective Interfacial Tensions between Pure Liquids and Rough Solids: A Coarse-Grained Simulation Study

论文作者

Velázquez, Juan de Dios Hernández, Sánchez-Balderas, Gregorio, Goicochea, Armando Gama, Pérez, Elías

论文摘要

通过粗砂模拟研究了纯液体和粗糙固体表面之间的有效固体液体界面张力(SL IFT)。使用耗散粒子动力学方法,我们设计了固体液体界面,将纯液体限制在两个具有不同粗糙度度的显式固体表面之间。固相的粗糙度以wenzel粗糙度因子为特征,有效的SL IFT(γ_SL^')也是它的函数。研究了两个通过其固体液体排斥强度彼此区分的固体液体系统,以测量表面粗糙度对γ_SL^'计算的影响。我们发现粗糙度会产生液体结构的变化,这在固体附近的第一层液体中观察到。这些变化导致有效的SL IFT随着表面粗糙度的增加而增加。尽管在γ_SL^'的计算中表面粗糙度占主导地位,但发现有效的SL IFT与固体液体排斥强度的大小成正比。这些模拟提供的见解表明,由于地形中测得的垂直偏差,wenzel粗糙度因子的增加是表面积增加的直接结果。反过来,这会导致颗粒之间有效固体液体相互作用的数量增加,最终在压力张量的正常和切向成分的局部值中产生了显着变化。

The effective solid liquid interfacial tension (SL IFT) between pure liquids and rough solid surfaces is studied through coarse grained simulations. Using the dissipative particle dynamics method, we design solid liquid interfaces, confining a pure liquid between two explicit solid surfaces with different roughness degrees. The roughness of the solid phase was characterized by Wenzel roughness factor and the effective SL IFT (γ_sl^') is reported as a function of it also. Two solid liquid systems differentiated from each other by their solid liquid repulsion strength are studied to measure the effects caused by the surface roughness on the calculation of γ_sl^'. We found that the roughness produces changes in the structure of the liquid, which is observed in the first layer of liquid near the solid. These changes are responsible for the effective SL IFT increase as surface roughness increases. Although there is a predominance of surface roughness in the calculation of γ_sl^', it is found that the effective SL IFT is directly proportional to the magnitude of the solid liquid repulsion strength. The insights provided by these simulations suggest that the increase of Wenzel roughness factor is a direct consequence of the increase in surface area due to the vertical deviations measured in the topography. This, in turn, produces an increase in the number of effective solid liquid interactions between particles, eventually yielding significant changes in the local values of the normal and tangential components of the pressure tensor.

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