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Corrosion behaviours of the dental magnetic keeper complexes made by different alloys and methods

机译:不同合金和方法制备的牙科磁性保持器复合物的腐蚀行为

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摘要

The keeper and cast dowel–coping, as a primary component for a magnetic attachment, is easily subjected to corrosion in a wet environment, such as the oral cavity, which contains electrolyte-rich saliva, complex microflora and chewing behaviour and so on. The objective of this in vitro study was to examine the corrosion resistance of a dowel and coping-keeper complex fabricated by finish keeper and three alloys (cobalt–chromium, CoCr; silver–palladium–gold, PdAu; gold–platinum, AuPt) using a laser-welding process and a casting technique. The surface morphology characteristics and microstructures of the samples were examined by means of metallographic microscope and scanning electron microscope (SEM). Energy-dispersive spectroscopy (EDS) with SEM provided elements analysis information for the test samples after 10% oxalic acid solution etching test. Tafel polarization curve recordings demonstrated parameter values indicating corrosion of the samples when subjected to electrochemical testing. This study has suggested that massive oxides are attached to the surface of the CoCr–keeper complex but not to the AuPt–keeper complex. Only the keeper area of cast CoCr–keeper complex displayed obvious intergranular corrosion and changes in the Fe and Co elements. Both cast and laser-welded AuPt–keeper complexes had the highest free corrosion potential, followed by the PdAu–keeper complex. We concluded that although the corrosion resistance of the CoCr–keeper complex was worst, the keeper surface passive film was actually preserved to its maximum extent. The laser-welded CoCr– and PdAu–keeper complexes possessed superior corrosion resistance as compared with their cast specimens, but no significant difference was found between the cast and laser-welded AuPt–keeper complexes. The Fe-poor and Cr-rich band, appearing on the edge of the keeper when casting, has been proven to be a corrosion-prone area.
机译:作为磁性附件的主要组成部分,保持架和铸造销钉铜管在潮湿的环境中很容易受到腐蚀,例如口腔中含有丰富的电解质唾液,复杂的菌群和咀嚼行为等。这项体外研究的目的是通过使用以下材料来检查饰面保持剂和三种合金(钴-铬,CoCr;银-钯-金,PdAu;金-铂,AuPt)制成的销钉和保持器复合物的耐腐蚀性。激光焊接工艺和铸造技术。用金相显微镜和扫描电子显微镜(SEM)检查了样品的表面形貌特征和显微结构。使用SEM的能量色散光谱(EDS)为10%草酸溶液蚀刻测试后的测试样品提供了元素分析信息。 Tafel极化曲线记录显示了参数值,该参数值指示了经受电化学测试时样品的腐蚀。这项研究表明,大量的氧化物附着在CoCr保持器复合物的表面,而不附着在AuPt保持器复合物上。仅铸造的CoCr-保持物配合物的保持区域显示出明显的晶间腐蚀以及Fe和Co元素的变化。铸造和激光焊接的AuPt-保持器配合物都具有最高的自由腐蚀潜能,其次是PdAu-保持器配合物。我们得出的结论是,尽管CoCr-Keep配合物的耐腐蚀性最差,但实际上可以最大程度地保存Keep-表面钝化膜。与铸造样品相比,激光焊接的CoCr和PdAu保持器配合物具有优异的耐蚀性,但是铸造和激光焊接的AuPt保持器配合物之间没有显着差异。铸造时出现在保持架边缘的贫铁和富铬带已被证明是容易腐蚀的区域。

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