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A Multi-scale Approach for Dynamical Simulations of the Surface Topography in High-pressure Frictional Contacts: Bridging Simulation Scales

机译:高压摩擦接触中表面形貌动力学模拟的多尺度方法:桥接模拟量表

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In tribological dry-friction micro-contacts under high pressure the surfaces of both friction partners are subjected to constant change due to severe plastic deformation and wear. Simulations with the method of Movable Cellular Automata (MCA) have shown that a quasi-fluid layer evolves in the contact zone between the friction partners. The simulation length scales are few nanometers. With computational resources available today it is not possible to make simulations on macroscopic length and time scales. In this paper a particle model is presented that includes the basic processes - plastic deformation, mass transfer, and wear - on the micro-scale and allows for simulation and calculation of larger contact areas. With this model it is possible to combine the existing modeling and simulation tools on the micro-scale with simulations and measurements on macroscopic lengths scale. A master equation is developed that contains transition probabilities for particle-like volume-elements. Using the Fokker-Planck-Formalism the result is a stochastic partial differential equation that describes the formation and development of the stochastic surface of one frictional partner. The resulting time-dependent self-affine power spectrum of the surface profile can be used in other macroscopic methods to calculate friction, wear, traction curves, and other macroscopic quantities.
机译:在高压下的摩擦干摩擦微接触中,由于严重的塑性变形和磨损,两个摩擦副的表面都会不断变化。用可移动细胞自动机(MCA)方法进行的模拟显示,准流体层在摩擦伙伴之间的接触区域中演化。模拟长度尺度只有几纳米。利用当今可用的计算资源,不可能在宏观长度和时间尺度上进行仿真。在本文中,提出了一种微粒模型,其中包括微观尺度上的基本过程-塑性变形,传质和磨损-并允许对较大的接触面积进行仿真和计算。使用此模型,可以将现有的微观建模和仿真工具与宏观长度尺度的仿真和测量结合起来。开发了一个主方程,其中包含了类粒子体积元素的跃迁概率。使用福克-普朗克形式主义,得出的结果是一个随机的偏微分方程,描述了一个摩擦副的随机表面的形成和发展。所得的表面轮廓随时间变化的自仿射功率谱可用于其他宏观方法中,以计算摩擦,磨损,牵引曲线和其他宏观量。

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