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首页> 外文期刊>The Journal of Prosthetic Dentistry >Corrosion of CoCr and NiCr dental alloys alloyed with palladium.
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Corrosion of CoCr and NiCr dental alloys alloyed with palladium.

机译:CoCr和NiCr牙科合金与钯合金的腐蚀。

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摘要

STATEMENT OF PROBLEM: A new subclass of casting alloy composition involving the addition of palladium (25 wt%) to traditional base metal alloys, thereby raising their classification to that of a noble alloy, has been recently introduced. Little is known about this class of casting alloy, particularly its corrosion properties, which influence its biocompatibility and esthetics. PURPOSE: The purpose of this study was to evaluate the corrosion properties of 2 new CoPdCr and one new NiPdCr alloy and compare them to traditional CoCr and NiCr alloys. MATERIAL AND METHODS: The casting alloys investigated were: CoPdCr-A (NobleCrown NF), CoPdCr-I (Callisto CP+), NiPdCr (Noble Crown), CoCr (Argeloy N.P. Special), and NiCr (Argeloy N.P. Star). Cylindrical (4.8-mm diameter) as-cast and oxidized specimens were assessed electrochemically in phosphate-buffered saline at 24 degrees C (n=8 and n=6, respectively). The open circuit potential (OCP) was monitored for 20 hours, followed by linear polarization and cyclic polarization tests. A generalized linear mixed model was used to determine whether differences existed between alloys and to examine the effect of oxidation (alpha=.05). Representative alloy surfaces were scanned and examined with light microscopy. RESULTS: The palladium-containing alloys possessed a significantly greater OCP (P<.001); however, their polarization resistance was less and the corrosion current density was significantly greater (P<.05) than their traditional CoCr and NiCr alloy counterparts. Additionally, a greater incidence of pitting was observed in the palladium-containing alloys. Some differences were noted within alloys between the as-cast and oxidized conditions, but a major trend was not observed. CONCLUSIONS: Overall, the inclusion of palladium in CoCr and NiCr alloys had deleterious effects on electrochemical corrosion properties.
机译:问题陈述:最近引入了一种新的铸造合金成分子类别,其中涉及在传统的贱金属合金中添加钯(25 wt%),从而将其分类提高到贵金属的分类。对这类铸造合金知之甚少,特别是其腐蚀性能会影响其生物相容性和美观性。目的:本研究的目的是评估2种新型CoPdCr和一种新型NiPdCr合金的腐蚀性能,并将其与传统CoCr和NiCr合金进行比较。材料和方法:研究的铸造合金为:CoPdCr-A(NobleCrown NF),CoPdCr-I(Callisto CP +),NiPdCr(Noble Crown),CoCr(Argeloy N.P. Special)和NiCr(Argeloy N.P. Star)。在磷酸盐缓冲液中于24摄氏度(分别为n = 8和n = 6)进行电化学评估的圆柱(直径为4.8 mm)铸件和氧化件。监测开路电势(OCP)20小时,然后进行线性极化和循环极化测试。使用广义线性混合模型来确定合金之间是否存在差异,并检查氧化作用(α= .05)。扫描代表性的合金表面并用光学显微镜检查。结果:含钯合金的OCP明显更高(P <.001)。但是,与传统的CoCr和NiCr合金相比,它们的极化电阻较小,腐蚀电流密度显着更大(P <.05)。另外,在含钯合金中观察到更大的点蚀发生率。在铸态和氧化态之间合金之间存在一些差异,但未观察到主要趋势。结论:总体而言,在CoCr和NiCr合金中包含钯对电化学腐蚀性能具有有害影响。

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