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低合金耐候鋼在含氯離子環境中的腐蝕行為

Corrosion behavior of low-alloy weathering steel in environment containing chloride ions

  • 摘要: 利用干濕周浸加速腐蝕實驗對比研究了低合金鋼A588和SPA-H在含氯離子環境下腐蝕行為,并利用金相顯微鏡、掃描電鏡、X射線衍射和電子探針等方法分析了Ni、Mn對于低合金鋼腐蝕行為的影響.結果表明:實驗鋼銹層中的物質主要由α-FeOOH、γ-FeOOH和Fe3O4組成,但其含量存在差異;Ni元素在內銹層含量高于外銹層,Mn元素在銹層的孔洞處富集;內銹層的致密程度高于外銹層;提高合金元素Mn和Ni的含量,可以提高內銹層的致密性,從而提高低合金鋼的耐蝕性能.

     

    Abstract: The corrosion behavior of two low-alloy weathering steels, A588 and SPA-H, in an environment containing chloride ions was investigated by alternate wet-dry accelerated corrosion tests. The effects of Ni and Mn elements on the corrosion behavior were studied by using optical microscopy, scanning electron microscopy (SEM), X-ray diffraction (XRD) and electron microprobe analysis (EMPA). It is shown that the rust layer is mainly composed of Fe3O4, γ-FeOOH and α-FeOOH; however, their contents are somewhat different for the two experimental steels. The content of Ni in the inner rust layer is higher than that in the outer rust layer, and Mn is enriched at pores in the rust layer. The inner rust layer is more compact than the outer rust layer. The compactness of the inner rust layer is improved by increasing the Ni and Mn contents, thereby increasing the corrosion resistance of the low-alloy steel.

     

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