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鎳基合金C276在超臨界水中的腐蝕行為

Corrosion behavior of Ni-base alloy C276 in supercritical water

  • 摘要: 研究鎳基合金C276在550~650℃/25 MPa超臨界水中的腐蝕特性.采用腐蝕增重、掃描電鏡、能譜和X射線衍射方法分析材料的氧化動力學、氧化膜形貌、合金元素分布和組織結構.結果表明,C276合金在超臨界水中以均勻腐蝕為主,其腐蝕增重服從拋物線生長規律.當溫度由550℃升高到600℃時,材料的腐蝕增重大約升高到3倍;當溫度進一步升高到650℃時,材料的腐蝕增重反而下降.C276合金表面氧化膜分層不明顯,氧化膜的主要成分為(Ni,Fe)Cr2O4,同時其表層離散分布著大量的NiO氧化物顆粒.C276合金表面氧化膜的保護性能主要取決于氧化膜內Cr含量,Cr含量越高其結構越致密,從而保護性能也越好.

     

    Abstract: This article is focused on the corrosion behavior of Ni-base alloy C276 exposed to 550-650℃/25 MPa supercritical water. The oxidation kinetics,oxide morphology,element distribution and structure of the oxide film were analyzed by using weight gain measurement,scanning electron microscopy,energy spectrometry,and X-ray diffraction analysis. It is shown that C276 alloy exhibits general corrosion in the supercritical water,and the weight gain is subject to parabolic growth kinetics. The weight gain of C276 alloy at 600℃ is approximately three times that of C276 alloy at 550℃,while the weight gain shows a decline when the temperature increases to 650℃. The oxide film is not distinguishable and is mainly consisted of(Ni,Fe) Cr2O4. A large number of Ni O oxide particles are observed on the oxide film. The protective ability of the oxide film is dependent upon Cr content,and the higher the Cr content,the better the protective ability is.

     

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