首页> 外文期刊>Journal of Cranio-Maxillofacial Surgery >An electrochemical investigation of TMJ implant metal alloys in an artificial joint fluid environment: The influence of pH variation
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An electrochemical investigation of TMJ implant metal alloys in an artificial joint fluid environment: The influence of pH variation

机译:人工关节液环境中TMJ植入金属合金的电化学研究:pH值变化的影响

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Objective To investigate the corrosion behaviour of commonly used TMJ implants alloys (CoCrMo and Ti6Al4V) under simulated physiological conditions. Methods Corrosion behaviour was evaluated using standard electrochemical corrosion techniques and galvanic corrosion techniques as per ASTM standards. Standard electrochemical tests (Ecorr, Icorr, Rp and Cf) were conducted in bovine calf serum (BCS), as a function of alloys type and different pHs. Galvanic corrosion tests were conducted in BCS at a pH of 7.6. Alloy surfaces were characterized using white-light interferometry (WLI) and scanning electron microscopy (SEM).Results The potentiodynamic test results exhibited the enhanced passive layer growth and a better corrosion resistance of Ti6Al4V compared to CoCrMo. Electrochemical impedance spectroscopy measurements demonstrated the influence of protein as a function of pH on corrosion mechanisms/kinetics. Galvanic coupling was not a major contributor to corrosion. SEM and WLI images demonstrated a significantly higher in surface roughness in CoCrMo after corrosion.Conclusions The results of this study suggest that Ti6Al4V shows superior corrosion behaviour to CoCrMo due to its strong passive layer, simulated joint fluid components can affect the electrochemical nature of the metal/electrolyte interface as a function of pH, and the galvanic effect of coupling CoCrMo and Ti6Al4V in a single joint is weak.
机译:目的研究常用的TMJ植入合金(CoCrMo和Ti6Al4V)在模拟生理条件下的腐蚀行为。方法根据ASTM标准,使用标准的电化学腐蚀技术和电化腐蚀技术评估腐蚀行为。根据合金类型和不同pH,在牛犊血清(BCS)中进行了标准的电化学测试(Ecorr,Icorr,Rp和Cf)。在BCS的pH值为7.6的条件下进行电腐蚀试验。结果电位动力学测试结果表明,与CoCrMo相比,Ti6Al4V的钝化层生长得到增强,并且具有更好的耐蚀性。电化学阻抗谱测量表明蛋白质作为pH的函数对腐蚀机理/动力学的影响。电偶不是腐蚀的主要因素。 SEM和WLI图像显示出腐蚀后CoCrMo的表面粗糙度明显更高。结论本研究结果表明,Ti6Al4V由于其强大的钝化层而表现出优于CoCrMo的腐蚀行为,模拟的接头流体成分可以影响金属的电化学性质/电解质界面随pH的变化而变化,并且在单个接头中耦合CoCrMo和Ti6Al4V的电效应很弱。

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