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首页> 外文期刊>Journal of solid state electrochemistry >Effect of Pb-underpotential deposition on anodic dissolution and passivation of pure Fe and Fe-Ni alloys in acidic perchlorate solution
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Effect of Pb-underpotential deposition on anodic dissolution and passivation of pure Fe and Fe-Ni alloys in acidic perchlorate solution

机译:Pb欠电位沉积对酸性高氯酸盐溶液中纯Fe和Fe-Ni合金阳极溶解和钝化的影响

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摘要

The potentio-dynamic polarization curves of pure Fe, Fe-30 Ni, and Fe-70 Ni alloys in acidic perchlorate solutions (pH 1.9) without and with 10(-3) M Pb2+ were measured to investigate the effect of Pb-underpotential deposition (Pb-UPD) on anodic dissolution and passivation in relation to Pb-induced stress corrosion cracking (Pb-SCC) of Ni base alloys. The addition of 10(-3) M Pb2+ shifts the open circuit potentials of pure Fe and Fe-Ni alloys toward noble direction to inhibit the anodic dissolution and promote the passivation, which results from Pb-UPD on substrate metals. The electro-desorption of Pb proceeds with anodic potential sweep and the anodic dissolution is enhanced when the surface coverage of Pb is reduced to a critical level. Tafel slopes (b (+) = 8.5 similar to 15 mV decade(-1)) of anodic dissolution for pure Fe and Fe-Ni alloys in the presence of Pb2+ are significantly low as compared with those (b (+) = 34 similar to 40 mV decade(-1)) in the absence of Pb2+, which reflects on the rapid enhancement in surface reactivity as a result of electro-desorption of Pb. It is found that the potential region in which anodic dissolution is inhibited by Pb-UPD is located within the potential window of Pb-UPD estimated from the differences in work-function between substrate metals and Pb.
机译:测量了纯Fe,Fe-30Ni和Fe-70Ni合金在无铅和含10(-3)M Pb2 +的酸性高氯酸盐溶液(pH 1.9)中的电势极化曲线,以研究Pb欠电位沉积的影响(Pb-UPD)与Ni基合金的Pb诱导的应力腐蚀开裂(Pb-SCC)有关的阳极溶解和钝化。 10(-3)M Pb2 +的添加将纯Fe和Fe-Ni合金的开路电势移向高贵方向,以抑制阳极溶解并促进钝化,这是由基底金属上的Pb-UPD引起的。 Pb的电解吸随着阳极电势扫描而进行,并且当Pb的表面覆盖率降低到临界水平时,阳极溶解会增强。在Pb2 +存在下,纯Fe和Fe-Ni合金的阳极溶解的Tafel斜率(b(+)= 8.5类似于15 mV十倍(-1))与(b(+)= 34相似不含Pb2 +时达到40 mV十年(-1)),这反映了由于Pb的电脱附而使表面反应性迅速提高。已经发现,其中由Pb-UPD抑制阳极溶解的电位区域位于由基底金属和Pb之间的功函数差异估计的Pb-UPD的电位窗口内。

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