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FRICTION AND WEAR BEHAVIOR OF ULTRA-HIGH MOLECULAR WEIGHT POLYETHYLENE AS A FUNCTION OF POLYMER CRYSTALLINITY

机译:超高分子量聚乙烯的摩擦和磨损行为与聚合物结晶度的关系

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摘要

In this study the friction and wear behavior of medical grade ultra-high molecular weight polyethylene (UHMWPE) (GUR 1050 resin) were evaluated as a function of polymer crystallinity. Crystallinity was controlled by heating UHMWPE samples to a temperature above its melting point and varying the hold time and cooling rates. Degree of crystallinity of the samples was evaluated using differential scanning calorimetry (DSC). Quantitative friction experiments were conducted at two different scales. A custom-made microtribometer with commercially available spherical Si_3N_4 probes in dry conditions was used to test friction at the microscale. An atomic force microscope with commercially available Si_3N_4 probes under dry conditions was used for nanoscale experiments. A higher degree of crystallinity in the UHMWPE resulted in lower friction force and an increase in scratch resistance at both scales. Reciprocating wear tests preformed using the tribometer show that higher crystallinity also results in lower friction, as well as lower wear depth and width.
机译:在这项研究中,将医用级超高分子量聚乙烯(UHMWPE)(GUR 1050树脂)的摩擦磨损性能作为聚合物结晶度的函数进行了评估。通过将UHMWPE样品加热到高于其熔点的温度并改变保持时间和冷却速率来控制结晶度。使用差示扫描量热法(DSC)评估样品的结晶度。定量摩擦实验以两种不同的规模进行。使用在干燥条件下具有可商购的球形Si_3N_4探针的定制微摩擦计来测试微尺度的摩擦。在干燥条件下将具有市售Si_3N_4探针的原子力显微镜用于纳米级实验。在两个级别上,UHMWPE中较高的结晶度导致较低的摩擦力并提高了耐刮擦性。使用摩擦计进行的往复磨损测试表明,较高的结晶度还可以降低摩擦,并降低磨损深度和宽度。

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