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Evaluation of factors affecting the edge formability of two hot rolled multiphase steels 被引量:3

Evaluation of factors affecting the edge formability of two hot rolled multiphase steels
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摘要 In this study, the effect of various factors on the hole expansion ratio and hence on the edge formability of two hot rolled multiphase steels, one with a ferrite–martensite microstructure and the other with a ferrite-bainite microstructure, was investigated through systematic microstructural and mechanical characterization. The study revealed that the microstructure of the steels, which determines their strain hardening capacity and fracture resistance, is the principal factor controlling edge formability. The influence of other factors such as tensile strength, ductility, anisotropy, and thickness, though present, are secondary. A critical evaluation of the available empirical models for hole expansion ratio prediction is also presented. In this study, the effect of various factors on the hole expansion ratio and hence on the edge formability of two hot rolled multiphase steels, one with a ferrite–martensite microstructure and the other with a ferrite-bainite microstructure, was investigated through systematic microstructural and mechanical characterization. The study revealed that the microstructure of the steels, which determines their strain hardening capacity and fracture resistance, is the principal factor controlling edge formability. The influence of other factors such as tensile strength, ductility, anisotropy, and thickness, though present, are secondary. A critical evaluation of the available empirical models for hole expansion ratio prediction is also presented.
出处 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2018年第2期199-215,共17页 矿物冶金与材料学报(英文版)
关键词 stretch flanging hole expansion ratio martensite bainite edge formability multiphase steels stretch flanging hole expansion ratio martensite bainite edge formability multiphase steels
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  • 1Cho Y R, Chung J H, Ku H H, et al. Effect of Controlled Cooling on the Formabilky of TS 590 MPa Grade Hot-Rolled High Strength Steels ill. Metals and Materials, 1999, 5(6): 571.
  • 2Fang X, Fan Z, Ralph B, et al. The Relationships Between Tensile Properties and Hole Expansion Property of OMn Steels [J]. Journal of Materials Science, 2003, 38(18): 3877.
  • 3Fujita T, Nakamura A N, Iizuka S. High Carbon Steel Sheets for Power Train Parts Formable High-Carbon Steel Sheets Suit- able for One Piece Forming Ell- JFE Technical Report, 2004 (4) : 44.
  • 4Kagechika H. Production and Technology of Iron and Steel in Japan During 2005 in. ISIJ International, 2006, 46(7): 939.
  • 5Buzziehelli G, Anelli E. Present Status and Perspectives of Eu- ropean Research in the Field of Advanced Structural Steels ill. ISIJ International, 2002, 42(12): 1354.
  • 6Lucas A, Simon P, Bourdon G, et al. Metallurgical Aspects of Ultra Fast Cooling in Front of the Down-Coiler [J]. Steel Re- search International, 2004, 75(2): 139.
  • 7Furuhara T, Kikumoto K, Saito H, et al. Phase Transforma- tion From Fine-Grained Austenite[J]. ISIJ International, 2008, 48(8): 1038.
  • 8CAI Ming-hui, DING Hua, LEE Young-kook, et al. Effects of Si on Mierostructural Evolution and Mechanical Properties of Hot-Rolled Ferrite and Bainite Dual-Phase Steels [J]. ISIJ In- ternational, 2011, 51(3): 476.
  • 9Yamashita T, Torizuka S, Nagai K. Effect of Mn Segregation on Fine-Grained Ferrite Structure in Low-Carbon Steel Slabs [J]. ISIJ International, 2003, 43(11): 1833.
  • 10Vedula K M, Heekel R W. Spheroidization of Binary Fe-C Al- loys Over a Range of Temperatures [J]. Metallurgical and Materials Transactions, 1970, 1B(1): 9.

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