Corrosion mechanism of arc spraying aluminum coatings in marine environment
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摘要: 采用電弧噴涂技術在Q235鋼基體上制備了鋁涂層,并用完整涂層和局部破壞涂層兩種試樣進行室內模擬浸泡腐蝕實驗,腐蝕介質為3.5% NaCl水溶液,流速為0.6m·s-1,實驗溫度為50±1℃.結果表明:涂層局部破壞時的腐蝕速度與涂層完好時相差不大;鋁涂層表面的均勻腐蝕并不嚴重,鋁涂層的腐蝕主要是由于閉塞電池和活性-鈍性腐蝕微電池的聯合作用引起的局部腐蝕,主要類型為點蝕,且涂層層狀剝落形成蝕坑;腐蝕介質到達基體時,將發生電偶腐蝕,鋁涂層會作為犧牲陽極保護基體免受腐蝕.Abstract: Aluminum coatings were sprayed on Q235 steel by arc spraying. The failure process was studied through the simulated immersing tests in 3.5% NaCl solution at a fluid velocity of 0.6 m·s-1 and a test temperature of 50 ±1℃. The results showed that there was little difference in the corrosion rates of undamaged and partially damaged samples. Uniform corrosion of the aluminum coatings was slight. Local corrosion occurred on the coatings because of synergism of the occluded cell and the active-passive cell. The main corrosion type was pit corrosion which induced bed separation and pits. Once corrosive solution arrived at the substrate, galvanic corrosion occurred, and aluminum coatings acted as the sacrificial anode protecting the steel substrate from corrosion.
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Key words:
- arc spraying /
- aluminum coating /
- electrochemical corrosion /
- localized corrosion /
- corrosion resistance
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