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Hard-on-Hard Lubrication in the Artificial Hip under Dynamic Loading Conditions

机译:动态载荷条件下人工髋关节的硬质润滑

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摘要

The tribological performance of an artificial hip joint has a particularly strong influence on its success. The principle causes for failure are adverse short- and long-term reactions to wear debris and high frictional torque in the case of poor lubrication that may cause loosening of the implant. Therefore, using experimental and theoretical approaches models have been developed to evaluate lubrication under standardized conditions. A steady-state numerical model has been extended with dynamic experimental data for hard-on-hard bearings used in total hip replacements to verify the tribological relevance of the ISO 14242-1 gait cycle in comparison to experimental data from the Orthoload database and instrumented gait analysis for three additional loading conditions: normal walking, climbing stairs and descending stairs. Ceramic-on-ceramic bearing partners show superior lubrication potential compared to hard-on-hard bearings that work with at least one articulating metal component. Lubrication regimes during the investigated activities are shown to strongly depend on the kinematics and loading conditions. The outcome from the ISO gait is not fully confirmed by the normal walking data and more challenging conditions show evidence of inferior lubrication. These findings may help to explain the differences between the in vitro predictions using the ISO gait cycle and the clinical outcome of some hard-on-hard bearings, e.g., using metal-on-metal.
机译:人工髋关节的摩擦学性能对其成功有特别强烈的影响。失效的主要原因是在润滑不良的情况下对磨损碎片的短期和长期不良反应以及高摩擦扭矩,这可能会导致植入物松动。因此,已经使用实验和理论方法开发了模型来评估标准化条件下的润滑。稳态数值模型已扩展,其中包含用于全髋关节置换的硬对硬轴承的动态实验数据,以与来自Orthoload数据库和仪器化步态的实验数据相比,验证ISO 14242-1步态周期的摩擦学相关性分析三个附加载荷条件:正常行走,爬楼梯和下降楼梯。与使用至少一种铰接金属部件的硬对硬轴承相比,陶瓷对陶瓷轴承伙伴显示出更高的润滑潜力。研究过程中的润滑方式在很大程度上取决于运动学和载荷条件。正常的步行数据不能完全确认ISO步态的结果,而更具挑战性的情况则表明润滑性能较差。这些发现可能有助于解释使用ISO步态周期进行的体外预测与某些难于对付的轴承(例如对金属进行的对照)的临床结果之间的差异。

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