首页> 外文期刊>Tribology International >Friction between a polyethylene pin and a microtextured CoCrMo disc, and its correlation to polyethylene wear, as a function of sliding velocity and contact pressure, in the context of metal-on-polyethylene prosthetic hip implants
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Friction between a polyethylene pin and a microtextured CoCrMo disc, and its correlation to polyethylene wear, as a function of sliding velocity and contact pressure, in the context of metal-on-polyethylene prosthetic hip implants

机译:聚乙烯销和微织物COCRMO盘之间的摩擦,以及其与聚乙烯磨损的相关性,作为滑动速度和接触压力的函数,在金属对聚乙烯假体髋部植入物的背景下

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摘要

The longevity of metal-on-polyethylene prosthetic hip implant bearings, in which a polished CoCrMo femoral head articulates with a polyethylene liner, is limited by mechanical instability or inflammation resulting from osteolysis caused by polyethylene wear debris. We use pin-on-disc experiments to measure friction and wear of a polyethylene pin that articulates with different microtextured CoCrMo surfaces, covering a wide range of operating conditions including sliding velocity and contact pressure. We determine how the lubrication regime changes as a function of operating conditions, and show that the microtexture accelerates the transition from boundary to elastohydrodynamic lubrication. Additionally, we illustrate that the microtexture could enable tailoring the hip implant to specific patient needs based on activity level, gender, and age.
机译:金属上的聚乙烯假体髋部植入物轴承的寿命,其中抛光的COCRMO股骨头与聚乙烯衬垫铰接,受到由聚乙烯磨损碎片引起的骨溶解引起的机械不稳定或炎症的限制。 我们使用引脚盘试验来测量聚乙烯销的摩擦和磨损,使得具有不同的微纹理COCRMO表面,覆盖各种操作条件,包括滑动速度和接触压力。 我们确定润滑制度如何随运行条件的函数而变化,并表明MicroTexture将过渡从边界加速到弹性流体动力学润滑。 此外,我们说明了微纹理可以根据活动水平,性别和年龄来使髋关节植入物定制到特定的患者需求。

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