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Corrosion by galvanic coupling between amalgam and different chromium-based alloys

机译:汞齐与不同铬基合金之间的电偶耦合腐蚀

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Objectives. In recent years there has been an increase in the use of dental casting alloys in prosthodontic treatment. Many patients have metals or alloys, as well as amalgam fillings, in their mouth, and will have them for many years. The aim of this study was to evaluate and compare, in vitro, the galvanic corrosion behavior of chromium-cobalt alloy (Remanium GM 380) and chromium-nickel alloy (Remanium CS) when bound together or coupled with silver-based amalgam (Amalcap plus).rnMethods. An electrochemical characterization of the alloys was performed by potentiostatic and potentiodynamic methods, i.e. the open circuit potential (OCP), the corrosion potential (ECORR), corrosion current density (i_(CORR)) and corrosion resistance (R_P). The electromotive force (EMF) of the bimetallic cells was also tested. Electroanalytical techniques were used to estimate the release of any respective element from the dental alloys under study into the artificial saliva solution.rnResults. It was found that a bimetallic cell consisting of Remanium CS and Remanium GM 380 alloys has a very low EMF (a few mV) and is not a potential source of galvanic currents in the oral cavity. However, galvanic cells prepared from Amalcap plus and Remanium CS or Remanium GM 380 showed a much greater EMF: 104 and 109 mV, respectively. This clearly indicates that in these latter cases it is possible to expect some metal ions in the saliva solution as a result of the work of galvanic currents. It was found, by adsorptive stripping voltammetry analysis, that nickel or cobalt, depending on the alloy used, appeared in the saliva solution and increased in concentration over time.rnSignificance. The results indicate that the correct design anduseof dental alloys are important when determining the appropriate treatment for a specific patient.
机译:目标。近年来,在口腔修复治疗中牙科铸造合金的使用有所增加。许多患者的口腔中都有金属或合金,以及汞合金填充物,并且会长期存在。本研究的目的是在体外评估和比较铬钴合金(Remanium GM 380)和铬镍合金(Remanium CS)结合在一起或与银基汞齐(Amalcap plus)结合时的电偶腐蚀行为。 ).rn方法。合金的电化学表征通过恒电位和恒电位方法进行,即开路电势(OCP),腐蚀电势(ECORR),腐蚀电流密度(i_(CORR))和耐蚀性(R_P)。还测试了双金属电池的电动势(EMF)。使用电分析技术来估计正在研究的牙科合金中任何相应元素向人工唾液中的释放。已发现,由Remanium CS和Remanium GM 380合金组成的双金属电池的EMF非常低(几mV),并且不是口腔中电流的潜在来源。但是,由Amalcap plus和Remanium CS或Remanium GM 380制备的原电池显示出更高的EMF:分别为104和109 mV。这清楚地表明,在后一种情况下,由于电流的作用,可能会在唾液中产生一些金属离子。通过吸附溶出伏安法分析发现,取决于所使用的合金,镍或钴会出现在唾液中,并且浓度会随时间增加。结果表明,在确定针对特定患者的适当治疗方法时,正确设计和使用牙科合金非常重要。

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