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Titanium corrosion in molten glasses Part 2.Electrochemical study and corrosion mechanisms

机译:熔融玻璃中的钛腐蚀第二部分电化学研究和腐蚀机理

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In situ electrochemical experiments are carried out to determine the mechanisms of pure titanium corrosion in molten glasses.The corrosion layers formed at the metal/glass interface are systematically reported.The formal potentials of the Ti~(III)/Ti~(II) and Ti~(IV)/Ti~(III) redox couples are respectively positioned at -1.0 V and -0.7 V by coupling square wave voltammetry measurements and polarization of titanium rods.The potential of the B~(III)/B~0 couple is estimated to be near -1.4 V.The results obtained by immersion tests and electrochemical measurements in glasses are compared.They are consistent in terms of corrosion rate variations and morphology of the corrosion scales.The corrosion mechanisms are described in the form of successive redox reactions between the glass and the substrate followed by diffusion of the formed species into the titanium substrate.It is demonstrated that Ti does not form spontaneously protective scales when immersed in molten glass and that protection can not be reached by either anodic or cathodic polarization.
机译:进行了原位电化学实验以确定熔融玻璃中纯钛的腐蚀机理,系统地报道了在金属/玻璃界面形成的腐蚀层.Ti〜(III)/ Ti〜(II)和通过耦合方波伏安法测量和钛棒极化,将Ti〜(IV)/ Ti〜(III)氧化还原对分别置于-1.0 V和-0.7 V.B〜(III)/ B〜0对的电势估计约为-1.4 V.比较了在玻璃中的浸没测试和电化学测量获得的结果,它们在腐蚀速率变化和腐蚀垢的形貌方面是一致的,以连续氧化还原的形式描述了腐蚀机理玻璃与基体之间发生反应,随后形成的物质扩散到钛基体中。事实证明,当Ti浸入熔融玻璃中时不会形成自发的保护性氧化皮阳极极化或阴极极化都无法达到。

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