期刊文献+

Micromechanical Behavior and Failure Mechanism of F / B Multi-phase High Performance Steel 被引量:7

Micromechanical Behavior and Failure Mechanism of F / B Multi-phase High Performance Steel
原文传递
导出
摘要 The deformation and micro-voids formation mechanisms in ferrite / bainite( F / B) multi-phase steel with the volume fraction of bainite less than 50% were studied by numerical simulation and experimental observation. The results show that the micro-strain concentrates at the soft / hard phase( F / B) interface in the multi-phase steel,which should be correlated with the mechanism of incoordinate deformation. During the necking of the steel,the micro-voids initially form around the F / B interface,which also form in ferrite and bainite with the severe strain. The micro-voids in bainite are more dense and finer than those in ferrite. The failure mechanism of bainite is the coalescence of micro-voids,and the failure mechanism of ferrite is the growth and tearing of micro-voids. Due to the different failure mechanisms of ferrite and bainite,a suitable part of soft phase would be beneficial to the capability of anti-failure of F / B multi-phase steel during the ductile fracture. The deformation and micro-voids formation mechanisms in ferrite / bainite( F / B) multi-phase steel with the volume fraction of bainite less than 50% were studied by numerical simulation and experimental observation. The results show that the micro-strain concentrates at the soft / hard phase( F / B) interface in the multi-phase steel,which should be correlated with the mechanism of incoordinate deformation. During the necking of the steel,the micro-voids initially form around the F / B interface,which also form in ferrite and bainite with the severe strain. The micro-voids in bainite are more dense and finer than those in ferrite. The failure mechanism of bainite is the coalescence of micro-voids,and the failure mechanism of ferrite is the growth and tearing of micro-voids. Due to the different failure mechanisms of ferrite and bainite,a suitable part of soft phase would be beneficial to the capability of anti-failure of F / B multi-phase steel during the ductile fracture.
出处 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2016年第5期489-494,共6页 钢铁研究学报(英文版)
基金 Item Sponsored by National Basic Research Program of China(2010CB630801)
关键词 ferrite / bainite multi-phase steel numerical simulation ferrite / bainite interface micro-strain micro-void failure mechanism soft phase ferrite / bainite multi-phase steel numerical simulation ferrite / bainite interface micro-strain micro-void failure mechanism soft phase
  • 相关文献

参考文献29

  • 1J. M. Gray, S. V. Subramanian, in: ASME 2013 India Oil and Gas Pipeline Con{erence, American Society of Mechanical Engi- neers, USA, 2013, pp. 1-7.
  • 2H. Gao, M. T. Wang, Z. F. Yu, in: Seventeenth International Offshore and Polar Engineering Conference, International Soci- ety of Offshore and Polar Engineers, USA, 2007, pp. 3088 3092.
  • 3X. Y. Zhang, H.L. Gao, X.Q. Zhang, Y. Yang, Mater. Sci. Eng. A 531 (2012) 84-90.
  • 4J. Y. Koo, M.J. Luton, N.V. Bangaru, R.A. Petkovic, D.P. Fairchild, C. W. Petersen, H. Asahi, T. Hara, Y. Terada, M. Sugiyama, H. Tamehiro, Y. Komizo, S. Okaguchi, M. Hama- da, A. Yamamoto, I. Takeuchi, in: Thirteenth International Offshore and Polar Engineering Conference, International Soci- ety of Offshore and Polar Engineers, USA, 2003, pp. 10-18.
  • 5M. AI-Mansour, A. M. Alfantazi, M. EI-Boujdaini, Mater. Des. 30 (2009) 4088-4094.
  • 6D.X. Xia, X. L. Wang, X.C. Li, Y. You, C.J. Shang, Acta Metall. Sin. 49 (2013) 271 276.
  • 7W. G. Zhao, M. Chen, S. H. Chen, J. B. Qu, Mater. Sei. Eng. A 550 (2012) 418-422.
  • 8W.J. Nie, C.J. Shang, H. L. Guan, X. B. Zhang, S. H. Chen, Acta Metall. Sin. 48 (2012) 298-306.
  • 9N. Ishikawa, M. Okatsu, S. Endo, J. Kondo, in: 2006 Inter-national Pipeline Conference, American Society of Mechanical Engineers, USA, 2006, pp. 1-8.
  • 10S.J. Wu, W.J. Nie, C.J. Shang, J.J. Cheng, H.W. Zhang, X. B. Zhang, J. Univ. Sci. Technol. Beiiing 36 (2014) 63-68.

同被引文献66

引证文献7

二级引证文献21

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