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A Tracer Method to Determine Extremely Low Wear Rates of Ultrahigh Molecular Weight Polyethylene

机译:示踪法测定超高分子量聚乙烯的极低磨损率

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Wear testing protocols of ultrahigh molecular weight polyethylene (UHMWPE), which rely on gravimetric or topographic measurements, or both, for wear determination, are usually complicated due to fluid absorption or creep, or both, of the polyethylene samples. In this study we report the feasibility of using a tracer material to quantify wear of polyethylene. Europium (Eu), a rare earth element, has been identified as a suitable tracer material. Eu can be quantified with ICP-MS. Nascent UHMWPE powder has been mixed with a solution of Eu-acetate. Different mixing techniques were tried to homogenize the tracer distribution before consolidation. After molding, the 10-mm diameter pins were worn on a pin-on-disk testing apparatus. In addition, lubricant samples were taken at regular time intervals. The Eu content was analyzed and the derived polyethylene wear rate was compared with the weight loss of the pins.
机译:超高分子量聚乙烯(UHMWPE)的磨损测试规程(取决于重量或形貌测量值,或两者兼而有之,以确定磨损),通常由于聚乙烯样品的流体吸收或蠕变或两者兼而复杂。在这项研究中,我们报告了使用示踪材料量化聚乙烯磨损的可行性。 identified(Eu)是一种稀土元素,已被确定为合适的示踪材料。 Eu可以用ICP-MS定量。将新生的UHMWPE粉末与乙酸Eu溶液混合。在固结之前,尝试了各种混合技术来使示踪剂分布均匀。成型后,将直径10毫米的销钉戴在磁盘上的销钉测试设备上。另外,以规则的时间间隔采集润滑剂样品。分析了Eu含量,并将得出的聚乙烯磨损率与销的重量损失进行了比较。

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