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Chemical passivation as a method of improving the electrochemical corrosion resistance of Co-Cr-based dental alloy

机译:化学钝化作为提高CO-CR基牙科合金电化学耐腐蚀性的方法

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Purpose: The purpose of the study was to evaluate corrosion resistance of Wirobond C (R) alloy after chemical passivation treatment. Methods: The alloy surface undergone chemical passivation treatment in four different media. Corrosion studies were carried out by means of electrochemical methods in saline solution. Corrosion effects were determined using SEM. Results: The greatest increase in the alloy polarization resistance was observed for passive layer produced in Na2SO4 solution with graphite. The same layer caused the highest increase in corrosion current. Generally speaking, the alloy passivation in Na2SO4 solution with graphite caused a substantial improvement of the corrosion resistance. The sample after passivation in Na2SO4 solution without graphite, contrary to others, lost its protective properties along with successive anodic polarization cycles. The alloy passivation in Na3PO4 solution with graphite was the only one that caused a decrease in the alloy corrosion properties. The SEM studies of all samples after chemical passivation revealed no pit corrosion - in contrast to the sample without any modification. Conclusions: Every successive polarization cycle in anodic direction of pure Wirobond C (R) alloy enhances corrosion resistance shifting corrosion potential in the positive direction and decreasing corrosion current value. The chemical passivation in solutions with low pH values decreases susceptibility to electrochemical corrosion of Co-Cr dental alloy. The best protection against corrosion was obtained after chemical passivation of Wirobond C (R) in Na2SO4 solution with graphite. Passivation with Na2SO4 in solution of high pH does not cause an increase in corrosion resistance of WIROBOND C. Passivation process increases alloy resistance to pit corrosion.
机译:目的:该研究的目的是评估化学钝化处理后瓦罗酮C(R)合金的耐腐蚀性。方法:合金表面在四种不同介质中经过化学钝化处理。通过盐水溶液中的电化学方法进行腐蚀研究。使用SEM测定腐蚀效应。结果:用石墨Na 2 SO 4溶液中制备的被动层观察到合金偏振电阻的最大增加。同一层导致腐蚀电流的最高增加。一般来说,用石墨的Na2SO4溶液中的合金钝化导致耐腐蚀性的大大提高。在没有石墨的Na 2 SO 4溶液中钝化后的样品与其他溶液相反,与连续的阳极偏振循环一起失去了其保护性能。 Na 3PO4溶液中的合金钝化是唯一的溶液,导致合金腐蚀性能降低。化学钝化后所有样品的SEM研究显示没有坑腐蚀 - 与样品相比没有任何改性。结论:纯瓦硼酮C(R)合金的阳极方向上的每个连续偏振循环可提高正方向上的耐腐蚀腐蚀电位和降低腐蚀电流值。具有低pH值的溶液中的化学钝化降低了CO-CR牙科合金的电化学腐蚀的敏感性。用石墨在Na 2 SO 4溶液中的瓦硼胺C(R)化学钝化后获得了最佳防腐保护。在高pH的溶液中对Na 2 SO 4的钝化不会导致丝酮C的耐腐蚀性增加。钝化过程增加了合金抗坑腐蚀。

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