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首页> 外文期刊>Journal of Tribology >An Adhesion Model for Elastic-Contacting Fractal Surfaces in the Presence of Meniscus
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An Adhesion Model for Elastic-Contacting Fractal Surfaces in the Presence of Meniscus

机译:半月板存在时弹性接触分形表面的粘附模型

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摘要

The strong stiction of adjacent surfaces with meniscus is a major design concern in the devices with a microsized interface. The present research concerns the elastic adhesion of rough fractal surfaces in the presence of a thin liquid film. A rough fractal surface is characterized with a two-variable Weierstrass-Mandelbrot fractal function. The microcontact model of the single asperity is established in terms of the fractal parameters. The adhesion model from meniscus is developed with the Dugdale approximation of the Laplace pressure to consider the adhesive interaction within/outside the contact area. Then the Maugis-Dugdale model and its extension are used to solve the elastic adhesive interaction for the two approaching fractal surfaces by incorporating the fractal surface model. Simulations of the external force versus the interface stiffness, surface roughness, and relative humidity are performed, respectively. The simulation results show that the interface stiffness, surface topography, and relative humidity can heavily influence the interface adhesion of rough surfaces with meniscus.
机译:在具有微尺寸界面的设备中,弯月面的相邻表面的强烈附着力是主要设计关注点。本研究涉及在存在薄液膜的情况下粗糙的分形表面的弹性粘附。分形粗糙表面的特征是具有两个变量的Weierstrass-Mandelbrot分形函数。根据分形参数建立了单个粗糙的微接触模型。通过考虑拉普拉斯压力的Dugdale近似值来开发弯月面的粘附模型,以考虑接触区域内部/外部的粘合剂相互作用。然后利用Maugis-Dugdale模型及其扩展,通过合并分形表面模型来求解两个接近的分形表面的弹性胶粘剂相互作用。分别进行了外力对界面刚度,表面粗糙度和相对湿度的仿真。仿真结果表明,界面刚度,表面形貌和相对湿度会严重影响具有弯月面的粗糙表面的界面附着力。

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