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三種土壤對X70鋼腐蝕行為的比較

Corrosion Behavior Comparison of X70 Steel in Three Different Environments

  • 摘要: 通過在庫爾勒地區現場土壤、實驗室內含水飽和土壤和土壤模擬溶液中埋設和浸泡試樣的方法,利用SEM,EDS,XRD等手段以及失重法對X70鋼在庫爾勒土壤中腐蝕行為進行了研究.結果表明,在實驗期間內,三種不同環境下的腐蝕速率大小順序為:模擬溶液>現場土壤>飽和含水土壤.這因為在現場實驗中,土壤中存在微生物腐蝕而使X70鋼腐蝕速率較高;在含水飽和土壤中,水分降低了土壤透氣性,土壤阻礙了離子交換,腐蝕速率大大降低;在模擬溶液中,電化學反應非常容易進行,腐蝕速率很高.

     

    Abstract: Corrosion behaviors of X70 steel in the environments of Ku'erle soil corrosion station, soil saturated with water and simulated soil solution were studied by means of macroscopical observations, SEM, EDS, XRD, weight-loss method etc. The results reveal that the ranking of corrosion rate from the biggest is simulated soil solution, Ku'erle field soil, and soil saturated with water. It can be explained that the occurrence of microbiologically influenced corrosion leads to a high corrosion rate of X70 steel in Ku'erle field soil. In soil saturated water, water reduces the permeability of air, and soil blocks the ion exchange of X70 steel, which result in a low corrosion rate. In simulated soil solution, electrochemical reactions are easiest to take place, so the corrosion rate is the highest.

     

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