期刊文献+

TRIP钢相变平衡温度A_(e3)和A_(e1)的计算

Calculation of Phase Equilibrium Temperature of A_(e3) and A_(e1) for TRIP Steel
原文传递
导出
摘要 采用超组元模型和LFG模型,计算了TRIP钢的碳在γ/α相界面处奥氏体侧的平衡浓度xγC/α、先共析铁素体相变驱动力ΔGγ→α+γ1和珠光体相变驱动力ΔGγ→α+cem以及相变平衡温度Ae3和Ae1,并分析了不同热变形和化学成分的影响。计算TRIP钢未变形条件下的相变平衡温度Ae3和Ae1与试验值吻合较好,显示了本文相变热力学计算的较高精度。 By using of the super element model in association with the LFG model,the equilibrium concentration of xγ/αC,driving force for pro-eutectioid ferrite and pearlite transformation,ΔGγ→α+γ1 and ΔGγ→α+cem,and thermodynamic equilibrium temperature of Ae3 and Ae1 were calculated for TRIP steel,in addition,the influence on TRIP steel of different chemical composition and hot deformation conditions was discussed.The predicted and measured Ae3 and Ae1 for un-deformed TRIP steel have good agreement,which shows that the calculations on phase equilibrium temperature in the paper is sufficiently accurate and reliable.
出处 《物理测试》 CAS 2011年第3期12-15,共4页 Physics Examination and Testing
关键词 TRIP钢 超组元模型 LFG模型 Ae3 AE1 TRIP steel superelement model LFG model Ae3 Ae1
  • 相关文献

参考文献5

  • 1Aaronson H I, Domain H A, Pound G M. Thermodynamics of The Austenite→ Proeutectoid Ferrite Transformation I, Fe-C-X Alloys[J]. Trans. Metall. Soc. AIME, 1966, 236 ( 5 ) : 753.
  • 2彭宁琦,唐广波,刘正东,吴秀月.Fe-∑Xi-C合金系超组元模型Zener两参数的修正[J].金属学报,2009,45(3):331-337. 被引量:7
  • 3Zackay V F, Aaronson H I. Decomposion of Austenite by Diffusional Processes [M]. New York: Interscience Publishers, 1962.
  • 4Shiflet G J, Bradley J B, Aaronson H I. Re-Examination of The Thermodynamics of The Proeutectoid Ferrite Transformation in Fe-C Alloys[J]. Metall. Trans. A, 1978, 9(7): 999.
  • 5徐祖耀 牟翊文.Fe-C合金中C-C交互作用能.金属学报,1987,11(4):82-82.

二级参考文献33

  • 1由伟,白秉哲,方鸿生,谢锡善.用人工神经网络模型预测钢的奥氏体形成温度[J].金属学报,2004,40(11):1133-1137. 被引量:7
  • 2Miettinen J. Calphad, 1998; 22:231
  • 3朱洪涛.上海交通大学博士后报告.2002
  • 4Chou K C, Chang Y A. Ber Bunsen-Ges Phys Chem, 1989; 93:741
  • 5Bichara C, Bergman C, Mathieu J C. Acta Metall, 1985; 33:91
  • 6Hashiguchi K, Kirkaldy J S, Fukuzumi P, Pavaskar V. Calphad, 1984; 8:173
  • 7Chang H B, Hsu T Y (Xu Z Y). Acta Metall, 1986; 34: 333
  • 8Qu J B, Liu Z Y, Liu X H, Wang G D. Mater Sci Technol, 1998; 14: 380.
  • 9Bhadeshia H K. Met Sci, 1981; 15:178
  • 10Aaronson H I, Domain H A, Pound G M. Trans Metall Soc AIME, 1966; 236:768

共引文献6

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