Relationship between high temperature microstructural evolution and creep rupture life of Cr35Ni45Nb alloy under different oxidation conditions
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摘要: 以Cr35Ni45Nb合金為研究對象,進行不同氣氛條件下高溫時效及高溫持久試驗,并結合掃描電鏡及定量電子探針對樣品表面及橫截面的觀察分析,系統研究不同氧化條件下Cr35Ni45Nb合金組織演變與持久壽命的關系.結果表明:隨著處理時間的延長,管材邊緣及內部組織均逐漸發生變化.氧化序列體現為先是在樣品邊界不同地點形成不連續的氧化膜,隨后氧化膜連成一體形成連續氧化膜,同時貧化區也逐漸形成;由于溫度波動,氧化膜破裂脫落,而在氧分壓較高的時效環境中,氧化膜得不到及時修復,使得貧化區晶界中出現內氧化.此外,在空氣中氧化與在真空充氬氣石英管中持久試驗結果表明,較薄的連續氧化膜有助于提高合金的蠕變性能,而隨著高溫時效時間的延長,邊界貧化區逐漸形成,氧化膜破裂及內氧化的發生,使得合金的蠕變性能逐漸弱化.Abstract: The relationship of creep rupture life and microstructural evolution under different high temperature oxidation conditions for Cr35Ni45 Nb alloy was studied by using SEM and quantitative electronic probe analysis. It was found that the microstructure gradually varied both in the edge and inside of the tube with increasing treatment time. The oxidation sequence showed that discontinuous oxidation films firstly developed at different places from the surface of the tube specimen,then they became continuous,and the carbide depleted zone developed as well during the high temperature oxidation process. As time went by,the oxidation films ruptured with temperature fluctuation,the characteristic of a higher oxygen partial pressure during the aging process resulted in the untimely recovery of the broken oxide films,and internal oxidation occurred at grain boundaries. Furthermore,creep rupture tests under different pretreating conditions of oxidation in air and argon gas atmosphere showed that the newly-built thin and continuous oxidation films improved the creep properties,while with increasing aging time,carbide depleted zone formation,oxidation film rupture and internal oxidation could decrease the creep properties of this alloy.
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