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微凸纹理与颗粒介质对橡胶滑动界面摩擦学性能的协同作用

Synergistic Effect of Microconvex Texture and Particle Medium on the Tribological Property of the Rubber Sliding Interface.

作者信息

Ji Jiawei, Liu Xiaojun, Wang Wei, Jiao Yunlong, Liu Kun

机构信息

Institute of Tribology, Hefei University of Technology, Hefei 230009, China.

出版信息

Langmuir. 2024 Jul 23;40(29):15263-15270. doi: 10.1021/acs.langmuir.4c01774. Epub 2024 Jul 13.

Abstract

In this study, we examined how surface topography and particle medium interact to affect the tribological performance of rubber sliding interfaces, uncovering the mechanisms of particle lubrication under various conditions. We found that microtextured surfaces, created using a mold transfer method, modestly reduced the friction coefficient of rubber under both dry and lubricated states, primarily by altering the real contact area. Additionally, the presence of different microconvex textures on the surface topography significantly influenced rubber's tribological properties. Our three-dimensional morphological analysis revealed that microtextured rubber surfaces with higher , , and and lower values consistently showed lower friction coefficients during sliding. The friction mechanism was attributed to the combined effects of the material properties, surface topography, and contact area. With the addition of a particle medium, the dry friction coefficient of the rubber interface decreased but exhibited an initial increase, followed by a decrease with increasing particle diameter. When particles were mixed with a water-based cutting fluid, the concentration, diameter, and wettability of the particles significantly impacted the tribological properties due to the synergistic effects of surface topography and particle lubrication. This work enhances our understanding of tribological control for viscoelastic materials through surface design, providing a theoretical basis for the tribological optimization of rubber surfaces.

摘要

在本研究中,我们研究了表面形貌与颗粒介质如何相互作用以影响橡胶滑动界面的摩擦学性能,揭示了各种条件下颗粒润滑的机制。我们发现,采用模具转移法制造的微织构表面在干燥和润滑状态下均适度降低了橡胶的摩擦系数,主要是通过改变实际接触面积来实现的。此外,表面形貌上不同微凸纹理的存在显著影响了橡胶的摩擦学性能。我们的三维形态分析表明,具有较高的 、 和 以及较低 值的微织构橡胶表面在滑动过程中始终表现出较低的摩擦系数。摩擦机制归因于材料特性、表面形貌和接触面积的综合作用。添加颗粒介质后,橡胶界面的干摩擦系数降低,但呈现出先增加后随着颗粒直径增大而减小的趋势。当颗粒与水基切削液混合时,由于表面形貌和颗粒润滑的协同作用,颗粒的浓度、直径和润湿性对摩擦学性能有显著影响。这项工作通过表面设计增强了我们对粘弹性材料摩擦学控制的理解,为橡胶表面的摩擦学优化提供了理论基础。

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