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Effect of Self-Generated Transfer Layer on the Tribological Properties of PTFE Composites Sliding against Steel

机译:自生成转移层对钢滑动PTFE复合材料摩擦学特性的影响

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Coatings are normally employed to meet some functional requirements. There is a kind of self-generated coating during use, such as the transfer layer during sliding, which may greatly affect the tribological behavior. Although the transfer layer has aroused much attention recently, the formation of the transfer layer closely depends on the service conditions, which need to be further studied. In this paper, the effects of sliding speed, normal load, and duration of wear test on the transfer layer thickness during friction of Ni/PTFE (Polytetrafluoroethylene) composites were experimentally investigated. The formation mechanism of transfer layer and the relationships between tribological properties and transfer layer thickness were analyzed in detail. It was found that the transfer layer thickness increased with increases of sliding speed and normal load; and after a period of wear test, the transfer layer thickness remained stable. The transfer layer thickness correlates linearly with the friction coefficient and wear volume of the PTFE composites. With the increase of the transfer layer thickness, the friction coefficient decreased, while the wear volume increased, which means that a uniform, thin, and stable transfer layer is beneficial for the reduction of friction and wear of the polymeric composites.
机译:通常使用涂层以满足一些功能性要求。在使用期间存在一种自我产生的涂层,例如滑动期间的转印层,这可能极大地影响摩擦学行为。尽管最近转移层引起了很多关注,但转移层的形成密切相关,这取决于需要进一步研究的服务条件。在本文中,实验研究了在Ni / PTFE(聚四氟乙烯)复合材料摩擦期间转移层厚度的滑动速度,正常负荷和磨损试验持续时间的影响。分析了转移层的形成机制和摩擦学性质与转移层厚度之间的关系。发现转移层厚度随着滑动速度和正常负载的增加而增加;经过一段时间的磨损试验,转移层厚度保持稳定。转移层厚度随着PTFE复合材料的摩擦系数和磨损体积而线性地相关。随着转移层厚度的增加,摩擦系数降低,而磨损体积增加,这意味着均匀,薄,稳定的转移层有利于降低聚合物复合材料的摩擦和磨损。

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