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Corrosion Behavior and Resistance of Hot-dip Al-Cr Coated Steel Sheet Under a Salt Corrosive Environment

机译:盐腐蚀环境下热浸镀铝铬涂层钢板的腐蚀行为和耐蚀性

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The corrosion behavior and resistance of hot-dip Al and Al-Cr coated steel sheets (SS) were investigated via scanning electron microscopy (SEM), energy dispersive X-ray spectrometry (EDX), electron probe mirco analysis (EPMA), glow discharge light spectroscopy (GDLS), and X-ray diffraction patterns (XKD). The Al-Cr coated layer was composed of the following three phases. Al phase comprised the surface layer, Al_(13)Cr_2 the middle layer, and AluFe4 and Al_5Fe_2 phases the interfacial layer between the Fe substrate and the coated layer. The corrosion behavior of the Al-Cr coated layer showed different aspects compared with the Al coated layer. In the Al-Cr coated layer, Cr was observed at an intermediate layer having a band shape. From the analysis of the polarization curve, the initial corrosion current of the Al-Cr coated SS was 10 times lower than that of Al in the early stage, art the corrosion resistance was superior to that of Al. The Al coated SS formed an Al-Fe-Si IMC layer, and the coated layer was almost destroyed. Many cracks were produced, and the corroded parts were enlarged from the cracks. The upper part of the Al-Cr coated SS, an Al-Si coated layer, was corroded. In contrast, the Cr-rich intermediate layer was not destroyed. Consequently, the high corrosion resistance was attributed to the densely covered Al(OH)_3 and the intermetallic compound layer of Al_(13)Cr_2. These results significantly contribute toward attaining a detailed understanding of the corrosion behavior and resistance Al-Cr coated steel sheets.
机译:通过扫描电子显微镜(SEM),能量色散X射线能谱(EDX),电子探针微镜分析(EPMA),辉光放电研究了热浸镀Al和Al-Cr涂层钢板(SS)的腐蚀行为和电阻光谱(GDLS)和X射线衍射图(XKD)。 Al-Cr被覆层由以下三个阶段组成。 Al相包括表面层,Al_(13)Cr_2是中间层,并且AluFe4和Al_5Fe_2使Fe衬底和涂层之间的界面层相化。与Al涂层相比,Al-Cr涂层的腐蚀行为表现出不同的方面。在Al-Cr涂层中,在具有带状的中间层观察到Cr。从极化曲线的分析来看,Al-Cr涂层的SS的初期腐蚀电流比早期的Al低10倍,其耐蚀性优于Al。涂有Al的SS形成Al-Fe-Si IMC层,并且该涂层几乎被破坏。产生了许多裂缝,并且腐蚀的部分从裂缝中扩大了。 Al-Cr涂层的SS的上部,即Al-Si涂层,被腐蚀。相反,富Cr中间层没有被破坏。因此,高耐蚀性归因于密集覆盖的Al(OH)_3和Al_(13)Cr_2的金属间化合物层。这些结果极大地有助于获得对腐蚀行为和耐Al-Cr涂层钢板的详细了解。

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