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Adhesion Analysis Considering van der Waals Force in a NanoSized Region Using the Boundary Element Method

机译:考虑范德华力的纳米区域黏附力的边界元分析

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Recently, micro- and nanomachines for micro-electromechanical systems and the mechanism of bio-adhesive pads have attracted great interest. Nanoscale structures are affected by forces such as the van der Waals force, even though they are neglected in large-scale structures. In this paper, the van der Waals force is introduced to a boundary element method (BEM) program for analyzing adhesion in arbitrarily shaped bodies. The van der Waals force is described by a nonlinear function of the distance between two surfaces in close proximity, and the adhesion and repulsion forces vary greatly within the atom equilibrium distance. Therefore, it is difficult to obtain a solution for the simultaneous equation in the BEM. We propose a method to compute the body deformation and apply it to the adhesion between a cylinder and a flat, rigid substrate. The solution is compared with previously published theoretical results, and the validity of the algorithm for approaching the solution is demonstrated. Further calculations for the adhesive contact of softer and harder cylinders with a rigid substrate are conducted.
机译:近来,用于微机电系统的微型和纳米机器以及生物粘附垫的机制引起了极大的兴趣。纳米级结构受范德华力等力的影响,即使它们在大型结构中被忽略。本文将范德华力引入边界元方法(BEM)程序中,以分析任意形状的物体中的附着力。范德华力是由两个紧密相邻的表面之间的距离的非线性函数来描述的,粘附力和斥力在原子平衡距离之内变化很大。因此,很难在BEM中获得联立方程的解。我们提出了一种计算车身变形的方法,并将其应用于圆柱体与平坦的刚性基材之间的粘附力。该解决方案与先前发表的理论结果进行了比较,并证明了该算法的有效性。进行了更软和更硬的圆柱体与刚性基材的胶粘接触的进一步计算。

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