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Depassivation–repassivation Behavior of a CoCrMo Alloy under Tribological Contact in Simulated Body Fluids

机译:在模拟体液中摩擦接触下的CoCrMo合金的去钝化-再钝化行为

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The long term performance of CoCrMo alloys in a tribocorrosive environment relies on the passivation properties of such alloys. The depassivation–repassivation phenomenon of CoCrMo alloy surfaces in a 0.9% NaCl solution, with and without the addition of Bovine Serum Albumin (BSA), was investigated. The relationships between the wear-induced-depassivation rate (D), applied load (F) and stroke frequency (f) were deduced. These can be summarised as D = 7.57E-6F0.56f in a 0.9% NaCl solution and D = 2.31E-6F0.85f in BSA containing solution. It was found that the ratio of the Cr element in the outer layer of the passive film was lower after depassivation. The passive film formed initially has better stability, which results in a lower depassivation rate in the initial few cycles compared with later cycles (relatively stable) in 0.9% NaCl solution. The adsorption of BSA and the effects of mechanical wear result in a higher depassivation rate in the initial a couple of cycles in BAS containing 0.9% NaCl solution.
机译:CoCrMo合金在摩擦腐蚀环境中的长期性能取决于此类合金的钝化性能。研究了在0.9%NaCl溶液中添加和不添加牛血清白蛋白(BSA)的情况下CoCrMo合金表面的钝化-再钝化现象。推导了磨损引起的钝化率(D),施加的载荷(F)和冲程频率(f)之间的关系。这些可以总结为在0.9%NaCl溶液中的D = 7.57E-6F0.56f和在包含BSA的溶液中的D = 2.31E-6F0.85f。发现钝化后在钝化膜的外层中Cr元素的比率较低。最初形成的钝化膜具有更好的稳定性,与在0.9%NaCl溶液中的后续循环(相对稳定)相比,在最初的几个循环中其钝化速率较低。在含有0.9%NaCl溶液的BAS中,最初的几个循环中,BSA的吸附和机械磨损的影响导致较高的钝化率。

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