期刊文献+

Mechanical properties and kinetics of thermally aged Z3CN20.09M cast duplex stainless steel 被引量:1

Mechanical properties and kinetics of thermally aged Z3CN20.09M cast duplex stainless steel
下载PDF
导出
摘要 Cast stainless steels used in nuclear power plants suffer from fracture toughness losses owing to thermal aging after long-term service at temperatures ranging from 280–320°C. To study the thermal aging embrittlement of Z3 CN20.09 M duplex stainless steel produced in China, accelerated thermal aging experiments were carried out at 350, 380, and 400°C for up to 10000 h. Microhardness and Charpy impact energies were measured at different aging times. The microhardness of ferrite increased drastically over the initial aging time of 2000 h at 380 and 400°C and then slowly reached HV0.01 560. In contrast to this observed change in microhardness, Charpy impact energies sharply decreased after initial aging and then gradually reached a minimum value. Taking the microhardness of the ferrite phase as the parameter describing the thermal kinetics of the stainless steel samples, the activation energy of thermal aging was calculated to be 51 kJ/mol. Correlations between the thermal aging parameter, P, and ferrite microhardness and between P and Charpy impact energy were also analyzed. The results showed that the activation energy calculated from the ferrite microhardness is much more reasonable than that obtained using other parameters, such as chemical composition and impact energy. Cast stainless steels used in nuclear power plants suffer from fracture toughness losses owing to thermal aging after long-term service at temperatures ranging from 280–320°C. To study the thermal aging embrittlement of Z3 CN20.09 M duplex stainless steel produced in China, accelerated thermal aging experiments were carried out at 350, 380, and 400°C for up to 10000 h. Microhardness and Charpy impact energies were measured at different aging times. The microhardness of ferrite increased drastically over the initial aging time of 2000 h at 380 and 400°C and then slowly reached HV0.01 560. In contrast to this observed change in microhardness, Charpy impact energies sharply decreased after initial aging and then gradually reached a minimum value. Taking the microhardness of the ferrite phase as the parameter describing the thermal kinetics of the stainless steel samples, the activation energy of thermal aging was calculated to be 51 kJ/mol. Correlations between the thermal aging parameter, P, and ferrite microhardness and between P and Charpy impact energy were also analyzed. The results showed that the activation energy calculated from the ferrite microhardness is much more reasonable than that obtained using other parameters, such as chemical composition and impact energy.
出处 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2018年第10期1148-1155,共8页 矿物冶金与材料学报(英文版)
基金 financially supported by the China General Nuclear Power Group
关键词 STAINLESS steel thermal AGING EMBRITTLEMENT ACTIVATION ENERGY MICROHARDNESS Charpy impact ENERGY stainless steel thermal aging embrittlement activation energy microhardness Charpy impact energy
  • 相关文献

参考文献2

二级参考文献46

  • 1刘鹏,薛飞,戴忠华,陈世均,朱文彬,汪小龙,遆文新.轻水堆核电站奥氏体不锈钢铸件的热老化及其老化管理[J].核动力工程,2005,26(S1):93-96. 被引量:23
  • 2束国刚,陆念文.压水堆核电厂关键金属部件的老化和寿命评估[J].中国电力,2006,39(5):53-58. 被引量:22
  • 3Sahu J K, Krupp U, Ghosh R N, et al. Effect of 475℃ embrittlement on the mechanical properties of duplex stainless steel. Mater Sci Eng A, 2009, 508(1/2): 1.
  • 4Chopra O K. Estimation of Fracture Toughness of Cast Stainless Steels during Thermal Aging in LWR Systems, NUREG/CR-4513. Washington: U.S. Nuclear Regulatory Commission, 1994.
  • 5Chopra O K, Shack W J. Assessment of Thermal Embrittlement of Cast Stainless Steels, NUREG/CR- 6177.
  • 6Chung H M. Aging and life prediction of cast duplex stainless steel components. Int J Pressure Vessels Piping, 1992, 50:179.
  • 7Li S L, Wang Y L, Zhang H L, et ai. Microstructure evolution and impact fracture behaviors of Z3CN20-09M stain-less steels after long-term thermal aging. J Nucl Mater, 2013, 433(1-3): 41.
  • 8Pareige C, Novy S, Saillet S, et al. Study of phase trans-formation and mechanical properties evolution of duplex stainless steels after long term thermal ageing (>20 years). J Nucl Mater, 2011, 411(1-3): 90.
  • 9L. Llanes, A. Mateo, P. Villechaise, J. M6ndez, M. Anglada, Int.J. Fatigue 21 (1999) S1 19-S125.
  • 10Y.Q. Wang, J. Han, H.C. Wu, B. Yang,X.T. Wang, Nucl. Eng. Des. 259 (2013) 1.

共引文献8

同被引文献13

引证文献1

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部