Effect of phosphorus on the pitting propagation of low carbon steels
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摘要: 采用特殊設計的閉塞腐蝕電池實驗,并利用能量色散譜儀分析腐蝕產物成分,研究了磷對低碳鋼蝕孔擴展的影響機理.結果表明:在模擬蝕孔的閉塞區鋼樣陽極表面沉積物中有磷酸根離子存在,在蝕孔活化腐蝕過程中,鋼中磷轉化成磷酸根離子是在金屬表面進行的,并形成磷酸鹽沉積在金屬表面,對蝕孔的擴展起抑制作用;磷含量不同的鋼,表面沉積物中磷酸鹽及磷酸根離子含量可相差很大,從而對蝕孔擴展的抑制作用也會有明顯差異;同一鋼樣中,由于磷的偏析,在蝕孔擴展過程中高磷部位腐蝕速率較低,低磷部位腐蝕溶解速率較高,磷的偏析帶導致了凸凹腐蝕溝槽的形成.Abstract: The effect of phosphorus on the pitting propagation of low carbon steels was studied by specific occluded corrosion cell tests and by analyzing the corrosion products with an energy dispersive spectrometer.The results showed that there were phosphate ions in sediments on the surface of the steels in the occluded hole,and the phosphate ions were the production of phosphorus in the steels.During the activation of pits in corrosion,phosphorus converted into phosphate ions on the surface of the metal,then phosphates formed and deposited,and these phosphates inhibited the propagation of pits.Different contents of phosphorus in the steels could lead to a great difference of phosphate content on the surface of the steels,and the effects of pit propagation inhibition had a large difference too.In the same steel sample,because of phosphorus segregation,the corrosion rate was lower in the region of high phosphorus content than that of low phosphorus content.The formation of convexo-concave corrosion grooves was due to phosphorus segregation.
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Key words:
- low carbon steel /
- phosphorus /
- corrosion rate /
- pitting /
- phosphates
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