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低碳钢形变诱导铁素体相变技术 被引量:3

Technology of Deformation Induced Ferrite Transformation of Low-carbon Steels
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摘要 叙述了获得超细晶粒铁素体的形变诱导相变技术的定义和基本特征,从形变诱导铁素体相变实验证实、相变原理、产物性能、影响因素和相变机制等方面系统地评述了变形诱导铁素体相变以及该技术在低碳钢板材轧制工艺中的应用前景. This paper presented the definition and basic characteristics of technology of deformation induced transformation which leads to the ultrafine ferrite grains and systematically reviewed the research progress on deformation induced ferrite transformation (DIFT) from five aspects, such as experimental proving, phase transformation principle, product properties,factors to affect DIFT and transformation mechanism, etc, and discussed its prospect of applying DIFT technology in plate materials rolling process.
出处 《南华大学学报(自然科学版)》 2008年第4期22-26,31,共6页 Journal of University of South China:Science and Technology
基金 湖南省自然科学基金资助项目(05JJ40063)
关键词 低碳钢 形变诱导铁素体相变 超细晶 low carbon steel deformation induced ferrite transformation ultrafine grain
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  • 1刘朝霞,佟铭明,黄成江,李殿中.低碳钢形变诱导铁素体相变过程中碳的扩散行为[J].金属学报,2004,40(9):930-934. 被引量:15
  • 2[9]B.Mintz, J.J.Jonas, Mater. Sci.& Tech., 10(8), 721(1994)
  • 3[10].H.Sekine, T.Maruyama, H.Kageyama, Y.Kawashima, in: Themomechanical Processing of Microalloyed Austenite, edited by DeArdo, A.J., et.al. (Warrendale: TMS-AIME, 1982) p.141
  • 4[1]C.J.Cuddy, Mater Trans., 15A(1), 87(1984)
  • 5[2]T.M.Maccagno, J.J.Jonas, ISIJ International, 36(10), 720(1996)
  • 6[3]R.Priestner, P.D.Hodgson, Mat.Sci.Tech., 8(10), 849(1992)
  • 7[4]H.Yada, Y.Matsumura, K.Nakajima, United States Patent, 4(466), 842(1984)
  • 8[5]J.H.Beynon, R.Gloss, P.D.Hodgson, Mater. Forum, 16, 37(1992)
  • 9[6]P.J.Hurley, P.D.Hodgson, B.C.Muddle, Scripta Materialia, 40(4), 433(1999)
  • 10[7]P.D.Hodgson, M.R.Hickson, R.K.Gibbs, Scripta. Materialia, 40(10), 1179(1999)

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