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The mechanism of corrosion of palladium-silver binary alloys in artificial saliva.

机译:人工唾液中钯 - 银二元合金腐蚀机理。

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摘要

Palladium dental casting alloys are alternatives to gold alloys. The aim of this study was to determine the electrochemical behaviour and the corrosion mechanism of binary silver-palladium alloys. Seven binary silver-palladium alloys and pure palladium and silver were tested in a model saliva solution. Electrochemical tests included corrosion potential, polarization resistance, and potentiodynamic polarization measurements. The corrosion products, which may be theoretically formed, were determined by thermodynamic calculation. The behaviour of silver and silver-rich alloys was dominated by the preferential formation of a thiocyanate surface layer, which controlled the free corrosion potential. Palladium dissolved in the form of a thiocyanate complex, but the surface became passivated by either palladium oxide or solid palladium thiocyanate layer, the thermodynamic calculations indicating preference for the oxide. Palladium-rich alloys showed evidence of silver depletion of the surface, resulting in behaviour similar to palladium. Examination of binary silver-palladium alloys has made possible determination of the role of the components of the alloys and model saliva in the corrosion behaviour. The findings are applicable to the more complex commercial dental alloys containing silver and palladium as major components.
机译:钯牙科铸造合金是金合金的替代品。本研究的目的是确定二元银 - 钯合金的电化学行为和腐蚀机制。在模型唾液溶液中测试了七个二元银钯合金和纯钯和银。电化学测试包括腐蚀电位,偏振电阻和电位动力学偏振测量。可以通过热力学计算确定可以理解的腐蚀产物。富含银和银的合金的行为主要由硫氰酸酯表面层的优先形成,其控制自由腐蚀电位。钯以硫氰酸酯络合物的形式溶解,但是表面钝化氧化钯或固体钯硫氰酸盐层,表明氧化物偏好的热力学计算。富含钯的合金显示出表面银耗尽的证据,导致类似于钯的行为。二元银钯合金的检查使得合金和模型唾液中的组分在腐蚀行为中的作用。该研究结果适用于含有银和钯作为主要成分的更复杂的商业牙科合金。

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