Comparative studies on resistance to pitting corrosion of manganese steels with different deoxidization degrees
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摘要: 選擇四種不同脫氧程度的錳鋼,在pH10的3%(質量分數)NaCl溶液中進行動電位極化實驗,比較鋼的點蝕誘發敏感性;在3%(質量分數)海鹽水中進行室內間浸掛片實驗,評價鋼的點蝕擴展速度;利用掃描電鏡(SEM)和電子探針(EPMA)分析了鋼中夾雜物組成和腐蝕形貌.結果表明,隨著脫氧程度的加強,鋼中的硫化物夾雜由短棒狀變為長條狀.脫氧程度越差,鋼基體熱力學穩定性越強,鋼的點蝕誘發敏感性也越弱.室內間浸掛片實驗結果表明,脫氧程度較強的錳鋼表現出更強的點蝕擴展能力.Abstract: Four manganese steels with different deoxidization degrees were selected. Their susceptibility to pit initiation was compared by means of potentiodynamic polarization tests in a 3% NaCl solution with pH 10. The pitting propagation rate was evaluated by indoor interval hanging plate tests in a 3% sea salt solution. The composition of inclusions and the corrosive feature were studied by scanning electro microscopy (SEM) and electron probe micro-analyzer (EPMA). The results indicate that the shape of sulphide inclusions change from a short spindle shape to a long strip shape with increasing deoxidization degree. Under the same condition, the lower the deoxidization degree, the stronger the thermodynamic stability becomes, and the weaker the susceptibility to pit initiation. Additionally, the results of interval hanging plate tests indicate that the manganese steel with a stronger deoxidization degree exhibit a stronger pit propagation rate.
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Key words:
- manganese steel /
- deoxidization /
- pitting /
- inclusions
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