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核電主管道鑄造不銹鋼的熱老化脆化

Thermal aging embrittlement of cast stainless steel for nuclear primary pipes

  • 摘要: 為了研究中國核電主管道鑄造不銹鋼Z3CN20-09M的熱老化,在300、350和400℃下,對Z3CN20-09M進行了長達30000h的加速熱老化實驗.對不同熱老化時間下的樣品進行了沖擊性能和鐵素體納米硬度測定.以夏比沖擊功作為熱老化脆化參量,利用擬合的方法得出該材料的熱老化激活能為51.962kJ·mol-1.通過熱老化因子P得出了用夏比沖擊功表示的熱老化脆化動力學公式.利用熱老化激活能和熱老化動力學公式預測了Z3CN20-09M在實際運行溫度下服役40a內的夏比沖擊功和鐵素體顯微硬度變化.預測結果表明在運行5a內是該材料韌性迅速下降的時期,隨后的運行過程中下降過程趨緩.

     

    Abstract: To study the thermal aging of the nuclear primary pipe material Z3CN20-09M, accelerated thermal aging experiments were performed at 300, 350 and 400℃ for 30000 h. Charpy impact energy and nanohardness of ferrite phase were tested for samples with different thermally aged time. Taking Charpy impact energy as the standard of thermal aging embrittlement, the thermal aging activation energy of the material was obtained to be 51.962 kJ·mol-1 by the fitting method. Meanwhile, the thermal aging parameter P was used to describe the kinetics of thermal aging embrittlement with Charpy impact energy. Finally, the Charpy impact energy and nanohardness of the material during 40 operation years at the actual operation temperature were estimated by the thermal aging activation energy and the thermal aging kinetics. The predicted results show that the toughness of the material decreases fast in the early 5 years, and then undergoes a slowly-decreased operation process.

     

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