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首页> 外文期刊>Tribology letters >Investigation of the transition state in the wear of polyphenylene sulfide sliding against steel
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Investigation of the transition state in the wear of polyphenylene sulfide sliding against steel

机译:聚苯硫醚在钢上滑动的磨损过渡态研究

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摘要

The effect of sliding variables, including counterface roughness, sliding speed, and contact pressure, on the run-in state of wear and friction was studied. Sliding was performed in the pin-on-disk configuration with a polyphenylene sulfide (PPS) pin resting on the flat steel counterface. Some experiments were also run to study the effect of air cooling and heating. Optical microscopy and scanning electron microscopy were used to study the shape and size of the wear debris, worn pin surface, and the transfer film formed on steel counterfaces. It was found that friction and wear in the run-in state were significantly affected by the sliding variables studied and their influence was closely related to the development of a transfer film during the run-in state. If the transfer film developed during initial sliding, the coefficient of friction increased and wear rate decreased. The wear rate in the run-in state increased with the increase in initial counterface roughness and there was an optimal counterface: roughness of 0.06 μm Ra for minimum steady state wear rate. A higher applied load led to a higher wear rate in the run-in state but that was not the case with steady state wear rate.
机译:研究了滑动变量(包括相对表面粗糙度,滑动速度和接触压力)对磨合和磨合磨合状态的影响。滑动以销盘式配置进行,将聚苯硫醚(PPS)销钉放置在扁平钢对接面上。还进行了一些实验来研究空气冷却和加热的影响。使用光学显微镜和扫描电子显微镜研究磨损碎片的形状和尺寸,磨损的销钉表面以及在钢对接面上形成的转移膜。发现在磨合状态下的摩擦和磨损受到所研究的滑动变量的显着影响,并且它们的影响与在磨合状态下转印膜的发展密切相关。如果转印膜在初始滑动过程中显影,则摩擦系数会增加,磨损率会降低。磨合状态下的磨损率随初始配合面粗糙度的增加而增加,并且存在一个最佳配合面:对于最小的稳态磨损率,粗糙度为0.06μmRa。较高的施加负载会导致在磨合状态下出现较高的磨损率,但稳态磨损率却并非如此。

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