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含砷/銅砷C-Mn鋼的高溫氧化行為

High temperature oxidation behavior of C-Mn steels containing As/Cu-As

  • 摘要: 利用熱重分析儀、掃描電鏡和電子探針研究了含As或者Cu+As的C-Mn鋼的高溫氧化特性.1050℃氧化初期約500 s內,As鋼和Cu-As鋼為線性氧化階段,隨后轉為拋物線氧化,兩種鋼的拋物線氧化速率均高于C-Mn鋼.因氧化層分離,1150℃氧化增重小于1050℃氧化增重.鋼中Cu和As的存在促進了固相Fe2SiO4層的生長.由于As在氧化層/基體界面的富集,1050℃氧化時,As鋼中存在明顯的條帶狀內部氧化粒子層;C-Mn鋼中加入Cu和As后,其氧化層/基體界面變得崎嶇不平,內部氧化粒子的數量隨著氧化時間及氧化溫度的增加而增加.1050℃氧化時氧化層/基體界面處Cu和As的富集程度高于1150℃氧化.

     

    Abstract: The high temperature oxidation characteristics of C-Mn steels containing As or Cu + As were investigated by thermo-gravimetry, scanning electron microscopy, and electron probe micro-analysis. It is shown that the oxidation kinetic curves at 1050℃ obey a linear law in the first 500 s and subsequently change to a parabolic law. The parabolic oxidation rates of the As and Cu-As steels are higher than that of the C-Mn steel. Due to separation of the scale from the matrix, the mass increment of the steels at 1150℃ is smaller than that at 1050℃. Cu and As in the steels could promote solid Fe2SiO4 layer growth. A significant internal oxidation particle layer is observed in the As steel because of As enrichment at the scale/steel interface at 1050℃. The interface is found to be uneven when Cu and As are added to the C-Mn steel, and the number of internal oxides increases with increasing oxidation time and temperature. The oxidation enrichment degree of Cu and As at the scale/steel interface at 1050℃ is higher than that at 1150℃.

     

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