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Sliding friction and wear behaviour of polytetrafluoroethylene and its composites under dry conditions

机译:干燥条件下聚四氟乙烯及其复合材料的滑动摩擦和磨损行为

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摘要

In this paper, we studied and explored the influence of test speed and load values on the friction and wear behaviour of pure polytetrafluoroethylene (PTFE), glass fibre reinforced (GFR) and bronze and carbon (C) filled PTFE polymers. Friction and wear experiments were run under ambient conditions in a pin-on-disc arrangement. Tests were carried out at sliding speed of 0.32-, 0.64-, 0.96- and 1.28-m s~(-1) and under a nominal load of 5-, 10-, 20- and 30-N. The results showed that, for pure PTFE and its composites used in this investigated, the friction coefficient decrease with the increase in load. The maximum reductions in wear rate and friction coefficient were obtained by reinforced PTFE + 17 percent glass fiber. The wear rate for pure PTFE was in the order of 10~(-7) mm~2/N, while the wear rate values for PTFE composites were in the order of 10~(-8) and 10~(-9) mm~2/N. Adding glass fiber, bronze and carbon fillers to PTFE were found effective in reducing the wear rate of the PTFE composite. In addition, for the range of load and speeds used in this investigation, the wear rate showed very little sensitivity to test speed and large sensitivity to the applied load, particularly at high load values.
机译:在本文中,我们研究并探索了测试速度和载荷值对纯聚四氟乙烯(PTFE),玻璃纤维增​​强(GFR)以及青铜和碳(C)填充的PTFE聚合物的摩擦磨损性能的影响。摩擦和磨损实验是在环境条件下以针盘式布置进行的。在0.32-,0.64-,0.96-和1.28-m s〜(-1)的滑动速度下以及在5、10-,20-和30-N的额定载荷下进行测试。结果表明,对于本研究中使用的纯PTFE及其复合材料,摩擦系数随着载荷的增加而降低。磨损率和摩擦系数的最大降低是通过增强PTFE + 17%玻璃纤维实现的。纯PTFE的磨损率约为10〜(-7)mm〜2 / N,而PTFE复合材料的磨损率约为10〜(-8)和10〜(-9)mm 〜2 / N。发现在PTFE中添加玻璃纤维,青铜和碳填料可有效降低PTFE复合材料的磨损率。此外,对于本研究中使用的负载范围和速度,磨损率对测试速度的灵敏度非常低,而对所施加负载的灵敏度却很高,特别是在高负载值下。

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