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可伐合金在模擬現場N2/H2O二元氣氛下的氧化行為

Oxidation behavior of kovar alloy in N2/H2O atmosphere under simulated field condition

  • 摘要: 采用稱重法、X射線衍射(XRD)和掃描電子顯微鏡(SEM)研究了可伐合金(Fe-29Ni-17Co)在模擬現場N2/H2O二元氣氛下的氧化行為.可伐合金在1000℃不同露點的N2中氧化的增重曲線表明其氧化動力學遵循拋物線規律.XRD和SEM分析顯示了在上述條件下表面氧化物的組成和形貌.通過熱力學計算說明可伐合金在現場的N2/H2O二元氣氛下氧化時,外界空氣會滲入爐內增加氧分壓,導致表面氧化物中不可避免存在α-Fe2O3.在露點溫度較高和氧化時間較長時,生成α-Fe2O3的數量會超過Fe3O4.

     

    Abstract: The oxidation behavior of kovar alloy (Fe-29Ni-17Co) was studied in N2/H2O atmosphere under simulated field condition by weighing method. The weight gain curves of kovar alloy oxidized at 1000℃ in N2 with different dew points were tested, and the results show that these oxidation kinetics obey parabolic rule. The composition and pattern of the oxides were analyzed by XRD and SEM. Thermodynamical calculations reveal that if kovar alloy is oxidized in N2/H2O atmosphere under simulated field condition, external air will infiltrate into the furnace, which increases the partial pressure of oxygen, and the presence of α-Fe2O3 in oxides surface is unavoidable. In the condition of a higher dew point and a longer oxidation time, the quantity of α-Fe2O3 formed will exceed that of Fe3O4.

     

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