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Electrochemical behaviour of a cobalt-chromium-molybdenum dental alloy in artificial salivas Influence of phosphate ions and mucin components

机译:钴-铬-钼牙科合金在人工唾液中的电化学行为 磷酸根离子和粘蛋白成分的影响

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摘要

The stability of the Co-Cr-Mo dental alloy immersed in artificial salivas (pH 6.7) was investigated over 24 h. Three artificial salivas have been studied: saline saliva (saliva I); saline saliva buffered with phosphate ions (saliva II) and saliva II plus mucin molecules (saliva III). For all the systems, open circuit potential shift positively over 24 hours of immersion. Data extracted from the steady-state polarization curves demonstrated that the Co-Cr-Mo alloy has higher corrosion potential in saliva III, lower corrosion potential in saliva I and lower initial corrosion resistance in saliva III. After 24 hours of immersion in the artificial salivas, the Co-Cr-Mo alloy presents high corrosion stability, due to the protective action created by the presence of corrosion products. From the analysis of the breakdown potential it was concluded that, the presence of the phosphate ions and mucin promote the oxidation process, inducing the formation of etch pits. Regarding the effect of the mucin concentration in the corrosion behaviour of the Co-Cr-Mo dental alloy, it was observed a negative shift in the corrosion potential, pointing to a cathodic inhibitor role for the mucin molecules. Nevertheless, no correlation between the mucin concentration and corrosion rate was possible to establish.
机译:研究了浸泡在人工唾液(pH 6.7)中的Co-Cr-Mo牙科合金在24 h内的稳定性。已经研究了三种人工唾液:盐水唾液(唾液I);用磷酸根离子缓冲的盐水唾液(唾液 II)和唾液 II 加粘蛋白分子(唾液 III)。对于所有系统,开路电位在浸泡 24 小时内呈正向变化。从稳态极化曲线中提取的数据表明,Co-Cr-Mo合金在唾液III中具有较高的腐蚀电位,在唾液I中具有较低的腐蚀电位,在唾液III中的初始耐腐蚀性较低。在人工唾液中浸泡 24 小时后,由于腐蚀产物的存在产生的保护作用,Co-Cr-Mo 合金具有很高的腐蚀稳定性。通过对击穿电位的分析得出结论,磷酸根离子和粘蛋白的存在促进了氧化过程,诱导了蚀刻坑的形成。关于粘蛋白浓度对Co-Cr-Mo牙科合金腐蚀行为的影响,观察到腐蚀电位的负变化,表明粘蛋白分子具有阴极抑制剂的作用。然而,粘蛋白浓度和腐蚀速率之间的相关性无法确定。

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