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Tribocorrosion behavior of CoCrMo alloy for hip prosthesis as a function of loads: A comparison between two testing systems

机译:CoCrMo合金对髋关节假体的摩擦腐蚀行为与载荷的关系:两种测试系统的比较

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摘要

Metal-on-metal (MOM) hip prosthesis bearings have enjoyed renewed popularity, but concerns remain with wear debris and metal ion release causing a negative response in the surrounding tissues. Further understanding into the wear and corrosion mechanisms occurring in MOM hips is therefore essential.The purpose of this study was to evaluate the tribocorrosion behavior, or interplay between corrosion and wear, of a low-carbon CoCrMo alloy as a function of loading. The tribocorrosion tests were performed using two tribometer configurations. In the first configuration, “System A”, a linearly reciprocating alumina ball slid against the flat metal immersed in a phosphate buffer solution (PBS). In the second configuration, “System B”, the flat end of a cylindrical metal pin was pressed against an alumina ball that oscillated rotationally, using bovine calf serum (BCS) as the lubricant and electrolyte. System B was custom-built to emulate in vivo conditions. The tribocorrosion tests were performed under potentiostatic conditions at −0.345 V, with a sliding duration of 1800 s and a frequency of 1 Hz. In System A the applied loads were 0.05, 0.5, and 1 N (138, 296 and 373 MPa, respectively) and in System B were 16, 32, and 64 N (474, 597, and 752 MPa, respectively). Electrochemical impedance spectroscopy (EIS) and polarization resistance were estimated. The total mass loss (Kwc) in the CoCrMo was determined. The mass loss due to wear (Kw) and that due to corrosion (Kc) were determined. The dominant wear regime for the CoCrMo alloy subjected to sliding changes from wear–corrosion to mechanical wear as the contact stress increases. An attempt was made to compare both system, in their tribochemical responses and formulate some insights in the total degradation processes. Our results also suggest that the proteins in the serum lubricant assist in the generation of a protective layer against corrosion during sliding. The study highlights the need of adequate methodology/guidelines to compare the results from different test systems and translating in solving the practical problems.
机译:金属对金属(MOM)髋关节假体轴承重新受到欢迎,但仍然存在磨损碎片和金属离子释放引起周围组织不良反应的担忧。因此,有必要进一步了解MOM髋部的磨损和腐蚀机理。本研究的目的是评估低碳CoCrMo合金的摩擦腐蚀行为或腐蚀与磨损之间的相互关系,作为载荷的函数。摩擦腐蚀测试是使用两种摩擦计配置进行的。在第一种配置“系统A”中,线性往复运动的氧化铝球在浸入磷酸盐缓冲溶液(PBS)中的扁平金属上滑动。在第二种配置“系统B”中,使用牛犊血清(BCS)作为润滑剂和电解质,将圆柱形金属销的平端压在旋转摆动的氧化铝球上。系统B是为模拟体内条件定制的。摩擦腐蚀试验是在恒电位条件下于-0.345 V下进行的,滑动时间为1800 s,频率为1 Hz。在系统A中,施加的载荷为0.05 N,0.5 N和1 N(分别为138、296和373 MPa),在系统B中,施加的载荷为16 N,32和64 N(分别为474、597和752 MPa)。估计了电化学阻抗谱(EIS)和极化电阻。确定了CoCrMo中的总质量损失(Kwc)。确定了由于磨损引起的质量损失(Kw)和由于腐蚀引起的质量损失(Kc)。随着接触应力的增加,CoCrMo合金的主要磨损方式从滑动腐蚀到机械磨损都会发生滑动变化。试图比较两种系统的摩擦化学反应,并在总降解过程中得出一些见解。我们的结果还表明,血清润滑剂中的蛋白质有助于在滑动过程中产生抗腐蚀保护层。该研究强调需要适当的方法/指南来比较不同测试系统的结果并转化为解决实际问题的方法。

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