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The Corrosion Mechanism of Cu-Containing Weathering Steel in A Cyclic Dry-Wet Condition

机译:循环干湿条件下含铜耐候钢的腐蚀机理

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The weather resistance of 10CuPRE、10CuP and Q235 steels were studied by dry-wet cyclic immersion test. The corrosion resistance mechanism of rare earth Cu-containing weathering steel was studied through electrochemical polarization test, scanning electron microscope(SEM) and X ray diffraction(XRD). The results show the small and spherical rare earth oxysulfides replace the elongated MnS inclusions in the rare earth weathering steel. Less and fewer rare earth oxysulfides heavily decrease pitting susceptibility and rate of pit propagation. So the electrochemical corrosion of microarea in the steel matrix is weakened after rare earth was added in the Cu-containing weathering steel. The inner rust layer of rare earth weathering steel is more compact and uniform than that of weathering steel without rare earth. The main corrosion product on the rare earth weathering steel is α-FeOOH. The formation of the steady corrosion product is promoted by rare earth, which result in that the protective property of the inner rust layer on weathering steels is enhanced. As a result, the corrosion resistance of Cu-containing weathering steel is improved by rare earth elements.
机译:通过干湿循环浸没试验研究了10CuPRE,10CuP和Q235钢的耐候性。通过电化学极化试验,扫描电子显微镜(SEM)和X射线衍射(XRD)研究了含铜耐候钢的耐蚀机理。结果表明,球形小稀土氧化物硫化物替代了稀土耐候钢中细长的MnS夹杂物。越来越少的稀土氧硫化物严重降低了点蚀敏感性和点蚀传播速度。因此,在含铜的耐候钢中添加稀土后,钢基质中微区的电化学腐蚀得以减弱。稀土耐候钢的内锈层比不含稀土的耐候钢的内锈层更致密,更均匀。稀土耐候钢上的主要腐蚀产物是α-FeO​​OH。稀土促进了稳定腐蚀产物的形成,从而增强了耐候钢内锈层的防护性能。结果,含稀土元素提高了含铜耐候钢的耐腐蚀性。

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