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Multiscale Analysis on Friction-Reducing Characteristics of Textured Surface in Nanoscale Sliding Contacts

机译:纳米级滑动触点纹理表面摩擦降低特性的多尺度分析

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A multiscale method coupled molecular dynamics simulation and finite element method is used to investigate two dimensional nanoscale sliding contacts between a rigid cylindrical tip and an elastic face centered cubic copper substrate with textured surface, in which adhesive effects are considered. Two series of nanoscale surface textures with different asperity shape, different asperity heights and different spacing between asperities are designed. Through the friction forces comparisons between smooth surface and textured surfaces, a better shape is advised to indicate that asperity shape plays an important role in friction force reduction. With proper asperity height and proper spacing between asperities, surface textures can reduce friction forces effectively.
机译:多尺度方法耦合分子动力学模拟和有限元方法用于研究刚性圆柱形尖端和带纹理表面的刚性圆柱形尖端和弹性面中心立方铜基板之间的二维纳米级滑动触点,其中考虑了粘合效果。设计了两种纳米级表面纹理,具有不同的粗糙度,不同的粗糙度和粗糙度之间的不同间距。通过摩擦力比较光滑表面和纹理表面之间的比较,建议更好的形状表明在摩擦力减小中起着重要作用。具有适当的粗糙度高度和粗糙度之间的适当间隔,表面纹理可以有效地减少摩擦力。

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