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Localized Corrosion Behavior of High Nitrogen-bearing Austenitic Stainless Steels in Seawater Environment

机译:高氮奥氏体不锈钢在海水环境中的局部腐蚀行为

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摘要

Crevice corrosion behavior of high nitrogen-bearing stainless steels with up to 1.1 mass% nitrogen were investigated in artificial seawater. Specimens were highly purified and contained ultra-high nitrogen of about 1 mass% obtained by using nitrogen gas pressurized electroslag remelting (P-ESR) system. 23%Cr-4%Ni-0 to 2%Mo-0.7 to 1.1%N stainless steels were used as test specimens. Crevice corrosion resistant properties of the stainless steels were evaluated by means of electrochemical corrosion test method using multiple crevice assemblies. Crevice corrosion was confirmed by visual observation to be generated after test and by in-situ current response under test. It was seen that there was a positive correlation between nitrogen content and crevice corrosion potential. High nitrogen-bearing austenitic stainless steels produced by P-ESR had good crevice corrosion resistance. It was also found that ultra-high nitrogen stainless steels containing molybdenum had superior crevice corrosion resistance. Surface of high nitrogen stainless steel was analyzed using X-ray photoelectron spectroscopy (XPS). After polarization at the passive potential region (at +300 mV vs. SCE), an alloying nitrogen or nitride peak of N1s spectra appeared at higher take-off angle measurement, indicating that nitrogen concentrated at the inner layer of the interface between passive film and bulk metal. Enriched nitrogen at the interface may be possible to improve crevice corrosion resistance.
机译:在人造海水中研究了氮含量高达1.1质量%的高含氮不锈钢的缝隙腐蚀行为。通过使用氮气加压电渣重熔(P-ESR)系统获得的样品高度纯化,并含有约1质量%的超高氮。使用23%Cr-4%Ni-0至2%Mo-0.7至1.1%N不锈钢作为试样。通过使用多个缝隙组件的电化学腐蚀测试方法评估了不锈钢的抗缝隙腐蚀性能。通过肉眼观察证实裂缝腐蚀是在测试之后以及在测试中的原位电流响应下产生的。可以看出,氮含量与缝隙腐蚀电位之间存在正相关。 P-ESR生产的高含氮奥氏体不锈钢具有良好的耐缝隙腐蚀性能。还发现含有钼的超高氮不锈钢具有优异的耐缝隙腐蚀性能。使用X射线光电子能谱(XPS)分析高氮不锈钢的表面。在无源电势区域(+300 mV vs. SCE)极化后,在较高的起飞角测量下,N1s光谱的合金氮或氮化峰出现了合金化,表明氮集中在无源膜与膜之间的界面内层。大块金属。界面处富集的氮可能会改善缝隙耐腐蚀性。

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