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熱連軋GH4169合金的晶粒長大行為
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上海市重大基礎(chǔ)研究項(xiàng)目子課題(08dj1400405)


Study on Grain Growth of Hot Continuous Rolled GH4169 Superalloy
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    摘要:

    對熱連軋 (HCR) GH4169合金在固溶處理過程中晶粒長大行為進(jìn)行系統(tǒng)研究。結(jié)果表明,該合金d相溶解溫度在990~1000 ℃之間,d相對晶粒長大有顯著阻礙作用,在低于d相溶解溫度進(jìn)行固溶處理時,析出的d相使得晶粒長大緩慢;在高于d相溶解溫度以上時,晶粒隨溫度的升高快速長大。晶粒長大動力學(xué)表明:在高于d相固溶線溫度以上進(jìn)行固溶處理時,晶粒生長指數(shù)隨著固溶溫度的升高而增加;固溶處理溫度為1000和1050 ℃時的晶粒長大激活能為223.849 kJ/mol,晶粒長大機(jī)制為自擴(kuò)散過程控制機(jī)制,并建立了相應(yīng)的晶粒長大動力學(xué)方程。

    Abstract:

    Grain growth behavior and its kinetics during the solution treating process of hot continuous rolled (HCR) GH4169 superalloy have been investigated. The experimental results show that the d-phase dissolution temperature of HCR GH4169 superalloy is from 990 °C to 1000 °C, and the d-phase in the superalloy greatly restrains grain growth. The solution treatment at the temperature below d-phase dissolution leads to little variation of grain size, and the solution treatment at the temperature above the d-phase dissolution leads to the rapid grain growth for HCR GH4169 superalloy. The grain growth kinetics at the temperature above the d-phase dissolution shows that grain growth exponentially increases with the increasing of solution treating temperature. At the temperatures from 1000 °C to 1050 °C, the activation energy value for grain growth in HCR GH4169 superalloy is 223.849 kJ/mol, which means that the grain growth mechanism is self-diffusion-controlling process, and the grain growth kinetics eqution are given.

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孔永華,胡華斌,李東方,陳國勝,朱世根.熱連軋GH4169合金的晶粒長大行為[J].稀有金屬材料與工程,2012,41(5):877~880.[Kong Yonghua, Hu Huabin, Li Dongfang, Chen Guosheng, Zhu Shigen. Study on Grain Growth of Hot Continuous Rolled GH4169 Superalloy[J]. Rare Metal Materials and Engineering,2012,41(5):877~880.]
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  • 收稿日期:2011-05-04
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