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Fretting-corrosion in Hip Implant Modular Junctions: New Experimental Set-up and Initial Outcome

机译:髋关节植入模块连接处的微动腐蚀:新的实验装置和初步结果

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摘要

Modern hip prostheses feature a modular implant design with at least one tapered junction. This design can lead to several complications due to the introduction of additional interfaces, which are subjected to various loading conditions and micromotion. The main objective of current study is to develop a fretting corrosion apparatus, which is able characterize the mechanical and electrochemical behaviour of various existing metal alloy couples during fretting motion.This study describes the design and the main considerations during the development of a novel fretting corrosion apparatus, as well as determination of the machine compliance and the initial testing results. Machine compliance considerations and frictional interactions of the couples are discussed in detail. For the preliminary tests, metal alloy pins, made of Ti6Al4V and wrought high-carbon CoCrMo were mechanically polished to a surface roughness of less than 20nm. 2 pins (Diameter = 11mm) of either Ti6Al4V or CoCrMo were loaded onto a Ti6Al4V alloy rod at a normal force of 200N. The interface types included: Ti6Al4V-Ti6Al4V-Ti6Al4V, Ti6Al4V-Ti6Al4V-CoCrMo, and CoCrMo-Ti6Al4V-CoCrMo. The Ti6Al4V rod articulated against the metal alloy pins in a sinusoidal fretting motion with a displacement amplitude of ±50μm. Bovine calf serum (30g/L of protein content) was selected as a lubricant and tested at 2 different pH levels (pH 3.0 and 7.6). In all cases, current and friction energy were monitored during the fretting process.The results indicated distinct, material-specific current evolutions and friction energies. No significant differences were observed in electrochemical or mechanical behaviour in response to pH change. In general, Ti6Al4V-Ti6Al4V-Ti6Al4V couples displayed the earliest passivation and superior electrochemical behaviour compared to Ti6Al4V-Ti6Al4V-CoCrMo and CoCrMo-Ti6Al4V-CoCrMo under fretting conditions. In addition, fluctuations in current were observed in specific regions at all instances where Ti6Al4V was coupled with Ti6Al4V. These fluctuations were not observed in instances where Ti6Al4V was coupled with CoCrMo. These findings suggest transitions in the degradation mechanisms at the modular junction as a function of material couples/contacts. The findings may assist in improving the current hip modular junctions.
机译:现代髋关节假体采用模块化植入物设计,至少具有一个锥形结。由于引入了额外的接口,该设计会导致多种复杂性,这些接口会受到各种加载条件和微动的影响。当前研究的主要目的是开发一种微动腐蚀设备,该设备能够表征各种现有金属合金偶在微动运动过程中的机械和电化学行为。本研究描述了新型微动腐蚀的设计和主要考虑因素仪器,以及机器合规性和初始测试结果的确定。详细讨论了机器柔顺性考虑因素和两对摩擦相互作用。对于初步测试,将由Ti6Al4V制成的金属合金销和锻造的高碳CoCrMo机械抛光至小于20nm的表面粗糙度。以200N的法向力将2个Ti6Al4V或CoCrMo引脚(直径= 11mm)加载到Ti6Al4V合金棒上。接口类型包括:Ti6Al4V-Ti6Al4V-Ti6Al4V,Ti6Al4V-Ti6Al4V-CoCrMo和CoCrMo-Ti6Al4V-CoCrMo。 Ti6Al4V杆以正弦微动运动与金属合金销铰接,位移幅度为±50μm。选择牛犊血清(蛋白质含量为30g / L)作为润滑剂,并在2种不同的pH值(pH 3.0和7.6)下进行测试。在所有情况下,在微动过程中均会监测电流和摩擦能,结果显示出不同的,特定于材料的电流演变和摩擦能。没有观察到响应pH变化的电化学或机械行为的显着差异。通常,在微动条件下,与Ti6Al4V-Ti6Al4V-CoCrMo和CoCrMo-Ti6Al4V-CoCrMo相比,Ti6Al4V-Ti6Al4V-Ti6Al4V对显示出最早的钝化和优异的电化学性能。此外,在Ti6Al4V与Ti6Al4V耦合的所有情况下,在特定区域都观察到电流波动。在Ti6Al4V与CoCrMo偶联的情况下未观察到这些波动。这些发现表明,模块结处降解机理的转变是材料耦合/接触的函数。这些发现可能有助于改善当前的髋部模块化连接处。

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