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Computational Wear Prediction of UHMWPE in Knee Replacements

机译:超高分子量聚乙烯在膝关节置换术中的计算磨损预测

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摘要

A multibody dynamic contact model predicted the damage sustained by two tibial inserts tested under different conditions on an AMTI knee simulator machine. The model required a wear factor of 7.7×10~7 mm~3/Nm to match the wear volume measured from the first insert after 0.86 million cycles of simulated gait. The model matched the medial and lateral damage depths measured from the second insert to within 0.3 mm after 5 million cycles of simulated gait and stair (10:1 ratio). Computational models may be valuable for screening new knee implant designs rapidly and performing sensitivity studies of component positioning issues.
机译:多体动态接触模型预测了在AMTI膝部模拟器机器上在不同条件下测试的两个胫骨插入物所遭受的损坏。该模型需要7.7×10〜7 mm〜3 / Nm的磨损系数,以匹配经过86万次模拟步态后从第一个插件测量的磨损量。经过500万次模拟步态和楼梯(比率为10:1)循环后,该模型将第二个插入物所测的内侧和外侧损伤深度与0.3 mm内相匹配。计算模型对于快速筛选新的膝关节植入物设计以及进行部件定位问题的敏感性研究可能是有价值的。

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