Bitter T, Khan I, Marriott T, Schreurs B W, Verdonschot N, Janssen D
J Biomech Eng. 2016 Mar;138(3):4032446. doi: 10.1115/1.4032446.
The modular taper junction in total hip replacements has been implicated as a possible source of wear. The finite-element (FE) method can be used to study the wear potential at the taper junction. For such simulations it is important to implement representative contact parameters, in order to achieve accurate results. One of the main parameters in FE simulations is the coefficient of friction. However, in current literature, there is quite a wide spread in coefficient of friction values (0.15 - 0.8), which has a significant effect on the outcome of the FE simulations. Therefore, to obtain more accurate results, one should use a coefficient of friction that is determined for the specific material couple being analyzed. In this study, the static coefficient of friction was determined for two types of titanium-on-titanium stem-adaptor couples, using actual cut-outs of the final implants, to ensure that the coefficient of friction was determined consistently for the actual implant material and surface finish characteristics. Two types of tapers were examined, Biomet type-1 and 12/14, where type-1 has a polished surface finish and the 12/14 is a microgrooved system. We found static coefficients of friction of 0.19 and 0.29 for the 12/14 and type-1 stem-adaptor couples, respectively.
全髋关节置换中的模块化锥度连接被认为是可能的磨损源。有限元(FE)方法可用于研究锥度连接处的磨损可能性。对于此类模拟,为了获得准确结果,实施具有代表性的接触参数非常重要。有限元模拟中的主要参数之一是摩擦系数。然而,在当前文献中,摩擦系数值的分布范围相当广泛(0.15 - 0.8),这对有限元模拟的结果有显著影响。因此,为了获得更准确的结果,应该使用针对所分析的特定材料对偶确定的摩擦系数。在本研究中,使用最终植入物的实际切口,确定了两种钛对钛柄 - 适配器对偶的静摩擦系数,以确保针对实际植入物材料和表面光洁度特征一致地确定摩擦系数。研究了两种类型的锥度,即Biomet 1型和12/14型,其中1型具有抛光的表面光洁度,12/14是微槽系统。我们发现12/14型和1型柄 - 适配器对偶的静摩擦系数分别为0.19和0.29。