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Semiconductivity of steam generator tubing alloys in simulated crevice chemistries containing lead and sulphur

机译:含铅和硫的模拟缝隙化学中蒸汽发生器管合金的半导电性

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Semiconductivity of passive films on steam generator (SG) tubing alloys, Alloys 690 and 800, in simulated crevice chemistries containing lead and sulphur was investigated using the Mott-Schottky analysis. The interaction of the above species with other ions on the properties of passive film and the correlation between the semiconductivity and the breakdown of passive film were discussed. Experimental results revealed that semiconductivity could be either n or p type semiconductor; both Pb and S can incorporate into the passive layer, depending on the solution pH and alloy compositions. For n type semiconductors formed on Alloy 800, they are easily broken down but more resistant to anodic dissolution; for p type passive films formed on Alloys 690 and 800, they are not easily broken down but more prone to anodic dissolution. It is concluded that the semiconductivity of passive film on SG tubing alloys was dependent on the alloy compositions, the solutions, temperature and film formation potentials.
机译:使用Mott-Schottky分析研究了在含铅和硫的模拟缝隙化学中,蒸汽发生器(SG)管合金690和800上的钝化膜的半导电性。讨论了上述物质与其他离子的相互作用对钝化膜性能的影响,以及半导电性与钝化膜击穿之间的关系。实验结果表明,半导体可以是n型或p型半导体。根据溶液的pH值和合金成分,Pb和S均可掺入钝化层。对于在800合金上形成的n型半导体,它们很容易分解,但更耐阳极溶解。对于在690和800合金上形成的p型钝化膜,它们不易破裂,但更容易发生阳极溶解。结论是,SG管合金上的钝化膜的半导电性取决于合金成分,溶液,温度和成膜电势。

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