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霉菌對超高強鋼腐蝕行為的影響

Effect of mold on corrosion behavior of ultra high strength steels

  • 摘要: 采用掃描Kelvin探針測試技術,研究了300M鋼、Aermet100鋼與超高強不銹鋼在黃曲霉、黑曲霉、球毛殼霉、繩狀青霉和雜色曲霉組成的混合霉菌菌種作用下的腐蝕行為.通過掃描電鏡結合能譜分析對霉菌在三種超高強鋼上的生長進行了觀察和分析.300M鋼試樣上霉菌呈現分散式堆積生長,數量逐漸增加;Aermet100鋼試樣上霉菌呈現分散式單個生長方式,數量逐漸增加;超高強不銹鋼上霉菌呈現放射式網狀生長方式,數量急劇增加,在鋼表面形成一層生物膜.霉菌實驗后,三種超高強鋼表面都發生一定的腐蝕.300M鋼腐蝕最嚴重,蝕坑寬而淺;Aermet100鋼次之,蝕坑窄而深;超高強不銹鋼的耐蝕性最好.掃描Kelvin探針測試結果表明,霉菌一定程度上能促進300M鋼和Aermet100鋼的腐蝕,而對超高強度不銹鋼的腐蝕行為有一定抑制作用.

     

    Abstract: The corrosion behavior of 300M steel, Aermetl00 steel, and ultra high strength stainless steel was investigated in the mold environment, including Aspergillus flavus, Aspergillus niger, Chaetomium globosum, Penicillium funiculosum, and Aspergillus versicolor, by scanning Kelvin probe (SKP) measurements. The growth of the mold was observed by scanning electron microscopy (SEM) and was analyzed by energy dispersive X-ray spectroscopy (EDS). The mold presents individual and cumulate growth on the specimen surface of 300M steel and the amount increases gradually, it grow individually and dispersively on the specimen surface of Aermetl00 steel and the amount increases gradually, but it shows radial and netty growth on the specimen surface of ultra high strength stainless steel and the amount increases greatly, which results in a microbial film. Some corrosion appears on the surface of all the three steel specimens after mold test. 300M steel presents the severest corrosion with wide and shallow pits, Aermetl00 steel is the next with narrow and deep pits, and corrosion resistance for ultra high strength stainless steel is the best. SKP measurements show that the mold can facilitate the corrosion process for 300M steel and Aermetl00 steel but inhibit it for ultra high strength stainless steel in some degree.

     

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