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Static friction at fractal interfaces

机译:分形界面的静摩擦

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Tribological phenomena are governed by combined effects of material properties, topology and surface-chemistry. We study the interplay of multiscale surface structures with molecular-scale interactions towards interpreting static frictional interactions at fractal interfaces. By spline-assisted-discretization we analyse asperity interactions in pairs of contacting fractal surface-profiles. For elastically deforming asperities, force analysis reveals greater friction at surfaces exhibiting higher fractality, with increasing molecular-scale friction amplifying this trend. Increasing adhesive strength yields higher overall friction at surfaces of lower fractality owing to greater true-contact-area. In systems where adhesive-type interactions play an important role, such as those where cold-welded junctions form, friction is minimised at an intermediate value of surface profile fractality found to be around 1.3-1.5. Results have implications for systems exhibiting evolving surface structures. (C) 2015 Elsevier Ltd. All rights reserved.
机译:摩擦学现象受材料特性,拓扑和表面化学的综合作用支配。我们研究分子尺度相互作用的多尺度表面结构的相互作用,以解释分形界面处的静摩擦相互作用。通过样条辅助离散化,我们分析了接触分形表面轮廓对中的粗糙相互作用。对于粗糙的弹性变形,力分析显示出具有更高分形性的表面具有更大的摩擦力,并且随着分子尺度摩擦力的增大,这种趋势得到了放大。由于更大的真实接触面积,增加粘合强度会在较低分形的表面产生更高的总摩擦。在胶粘剂型相互作用起重要作用的系统中,例如在冷焊接结形成的系统中,在表面轮廓分形的中间值约为1.3-1.5的情况下,摩擦最小化。结果对表现出不断发展的表面结构的系统有影响。 (C)2015 Elsevier Ltd.保留所有权利。

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