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首页> 外文期刊>Electrochimica Acta >Effect of physico-chemical properties of simulated body fluids on the electrochemical behaviour of CoCrMo alloy
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Effect of physico-chemical properties of simulated body fluids on the electrochemical behaviour of CoCrMo alloy

机译:模拟体液的理化性质对CoCrMo合金电化学行为的影响

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摘要

The behaviour of the CoCrMo alloy was studied under different experimental conditions of solution pH, chemical composition (phosphate buffer solution with and without addition of bovine serum albumin) and aeration (presence and absence of oxygen in the solution). With this purpose, electrochemical techniques such as open circuit measurements (OCP), potentiodynamic curves, potentiostatic tests and electrochemical impedance spectroscopy (EIS) were employed. The results show that the general corrosion behaviour of CoCrMo alloy depends on the solution pH. Thus, the effect of BSA and the aeration conditions are related to the solution pH. At pH 3 no influence of BSA was observed in deoxygenated solutions which imply that BSA acts over the oxygen reduction reaction in acidic media. On the contrary, a noticeable influence of BSA addition was observed at pH 7.4 (independently on the gas content). Finally, at pH 10, the influence of BSA was only significant in oxygenated solution. It was found that H_2PO_4~- favours the formation of passivating compounds which improves the resistance of the CoCrMo alloy to passive dissolution. Therefore, when the concentration of the H_2PO_4~- increases (when pH decreases) the polarization resistance of the alloy also increases. On the other hand, the oxygen (aerated conditions) decreases the polarization resistance of the alloy in all the studied conditions.
机译:在溶液pH值,化学成分(添加和不添加牛血清白蛋白的磷酸盐缓冲溶液)和充气(溶液中存在和不存在氧气)的不同实验条件下,研究了CoCrMo合金的行为。为此,采用了电化学技术,例如开路测量(OCP),恒电位曲线,恒电位测试和电化学阻抗谱(EIS)。结果表明,CoCrMo合金的一般腐蚀行为取决于溶液的pH值。因此,BSA的影响和通气条件与溶液的pH有关。在pH 3下,在脱氧溶液中未观察到BSA的影响,这表明BSA在酸性介质中对氧还原反应起作用。相反,在pH 7.4时观察到了BSA添加的显着影响(与气体含量无关)。最后,在pH 10时,BSA的影响仅在含氧溶液中显着。发现H_2PO_4-有利于钝化化合物的形成,从而提高了CoCrMo合金的抗被动溶解性。因此,当H_2PO_4〜-的浓度增加时(pH降低时),合金的极化电阻也增加。另一方面,在所有研究条件下,氧气(充气条件)都会降低合金的极化电阻。

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