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Effects of machining on tribological behavior of ultra high molecular weight polyethylene (UHMWPE) under dry reciprocating sliding

机译:在干往复滑动下超高分子量聚乙烯(UHMWPE)摩擦学行为的影响

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This paper presents a study of the machining effect on tribological properties of ultra high molecular weight polyethylene (UHMWPE) in terms of coefficient of friction and wear factor under dry reciprocating sliding conditions. Machining parameters include cutting speed, feed rate and depth of cut. Polymeric structure of the semicrystalline polymer was characterized using differential scanning calorimetry (DSC). Changes in polymeric structure and surface texture caused by machining were related to the tribological behavior of machined UHMWPE. The average coefficient of friction increased quickly in the first 60 s. Then the coefficient of friction increased very slowly and reached a steady state. The initial average coefficient of friction was in the range from 0.12 to 0.15. After 1 h of dry sliding, the average coefficient of friction was in the range from 0.17 to 0.23. No significant correlations were found between depth of cut and coefficient of friction, or between cutting speed and coefficient of friction. However, coefficient of friction decreased as cutting speed increased when the same ratio of cutting speed to tool feed rate was maintained. Increase in cutting speed caused more damage on the subsurface structure of machined UHMWPE. Wear factor decreased as cutting speed increased if tool feed rate was kept unchanged. Wear factor increased as cutting speed increased when the ratio of cutting speed to tool feed rate was kept constant. There was an optimum depth of cut for the best surface roughness and wear resistance, which was about 0.127 mm under the studied condition. Optical microscopy and variable pressure scanning electron microscopy analysis showed severe plastic deformation and ploughing as the main wear mechanisms.
机译:本文提出了在干燥往复式滑动条件下摩擦系数和磨损因子系数的超高分子量聚乙烯(UHMWPE)的加工效果研究。加工参数包括切割速度,进料速率和切割深度。使用差示扫描量热法(DSC)表征半结晶聚合物的聚合物结构。由加工引起的聚合物结构和表面纹理的变化与机加工UHMWPE的摩擦学行为有关。在前60秒中,平均摩擦系数迅速增加。然后摩擦系数非常缓慢地增加并达到稳定状态。初始平均摩擦系数为0.12至0.15。在干滑动1小时后,平均摩擦系数为0.17至0.23。在切割深度和摩擦系数之间或切割速度和摩擦系数之间没有显着相关性。然而,当保持与刀具进料速率相同的切削速度时,切割速度增加,摩擦系数减小。切割速度的增加导致机加工UHMWPE的地下结构造成更多损坏。如果刀具进料速率保持不变,则磨损因子随着切割速度而增加。当切削速度与工具进料速率的比率保持恒定时,磨损因子随着切削速度而增加。最佳的深度为最佳的表面粗糙度和耐磨性,在研究条件下约为0.127mm。光学显微镜和可变压力扫描电子显微镜分析显示出严重的塑性变形和耕作作为主磨损机制。

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