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首页> 外文期刊>Microgravity science and technology >Modelling of Unidirectional Reciprocating Sliding Contacts of Nanoscale Textured Surfaces Considering the Impact Effects in Microgravity Environment
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Modelling of Unidirectional Reciprocating Sliding Contacts of Nanoscale Textured Surfaces Considering the Impact Effects in Microgravity Environment

机译:考虑微匍匐环境中的冲击效应的纳米尺度纹理表面的单向往复滑动触点的建模

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摘要

In space environment, the adhesion effects can cause a high adhesion component of a friction force, and the impact effects caused by the microgravity can induce a high ploughing component, so the friction force is higher than the ground environment. Nanoscale textures affect the adhesion behaviors by reducing contact areas, and they also vary the shear strength of the interface, which are beneficial to the friction reduction. Considering the impact effects, the motion of a clearance joint is simplified as a unidirectional reciprocating sliding contact, and a multiscale model is employed to investigate the friction and wear characteristics between a rigid cylindrical tip and nanoscale textured surfaces. The effects of texture shapes on running-in stages, average friction forces and wear characteristics are investigated. The results show that the isosceles trapezoid textured surface (surface II) and the surface with right-angled trapezoid textures on the right side (surface III) can come to steady states for different sliding modes. Surface II presents the lowest total average friction force to show its potential to reduce friction forces. The worn atoms are the least for surface III, and surface III can be used to improve the wear behaviors. The impact effects make that the unidirectional reciprocating sliding contacts show higher total average friction forces than reciprocating sliding contacts. This work could contribute to designing textured surfaces, reducing friction and wear in unidirectional reciprocating sliding contacts under impact effects in microgravity environment, and help to prolong the life of components in the spacecraft.
机译:在太空环境中,粘合效果可以引起摩擦力的高粘附成分,并且由微匍匐度引起的冲击效应可以诱导高犁部件,因此摩擦力高于地面环境。纳米级纹理通过减少接触区域影响粘附性行为,它们也改变了界面的剪切强度,这有利于摩擦减少。考虑到冲击效应,简化了间隙接头的运动作为单向往复滑动接触,并且采用多尺度模型来研究刚性圆柱形尖端和纳米级纹理表面之间的摩擦和磨损特性。研究了纹理形状对连续阶段,平均摩擦力和磨损特性的影响。结果表明,等腰梯形纹理表面(表面II)和右侧右侧梯形纹理的表面(表面III)可以实现不同的滑动模式的稳定状态。表面II呈现最低的总平均摩擦力,以显示其减少摩擦力的可能性。表面III的磨损原子最少,并且表面III可用于改善磨损行为。影响效应使得单向往复滑动触点显示比往复式滑动触头更高的总平均摩擦力。这项工作可能有助于设计纹理表面,减少在微匍匐环境中的冲击效应下的单向往复滑动触点中的摩擦和磨损,并有助于延长航天器中的部件的寿命。

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