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基于M-K模型的相变诱发塑性钢板的成形极限研究 被引量:2

Study on Forming Limit Diagram for Transformation-induced Plasticity Sheet Steel Based on M-K Model
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摘要 在M-K模型的基础上,将描述相变诱发塑性的硬化方程引入到成形极限的推导中,通过考虑板料冲压成形过程中硬化性能的变化对TRIP钢极限变形能力的影响,建立了适合于TRIP钢板的成形极限预测模型。预测结果与试验结果吻合较好,表明提出的考虑相变诱发塑性效应的成形极限预测模型较准确地预测了相变诱发塑性钢的极限变形能力,有利于指导相变诱发塑性钢板成形工艺。 On the basis of classical M-K model, a hardening equation describing transformation -induced plasticity was introduced into the derivation of forming limit diagrams. And the effect of hardenability variation on limit formability during forming had been taken into account. A forming limit criteria considering transformation-induced plasticity was put forwarded. The predicted FLC is consistent with the experimental results, which shows that the proposed FLD model considering TRIP effect can predict the limit formability of TRIP steel with good precision and is helpful to guide the stamping process for TRIP steels.
机构地区 同济大学
出处 《中国机械工程》 EI CAS CSCD 北大核心 2007年第1期109-113,共5页 China Mechanical Engineering
基金 汽车车身先进设计制造国家重点试验室开放基金资助项目(KLVB200508)
关键词 相变诱发塑性(TRIP) 成形极限曲线(FLC) M-K模型 冲压成形 transformation- induced plasticity (TRIP) forming limit curve(FLC) M- K model sheet metal forming
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参考文献20

  • 1Keeler S P. Circular Grid Systems, a Valuable Aid for Evaluation Sheet Forming[J]. Fuel and Metallurgical Journals, 1969, 45 : 63a-640.
  • 2Marciniak Z, Kuczynski K. Limit Strains in the Processes of Stretch Forming Sheet Metal [J].Int. J. Mech. Sci,1967,9:609-620.
  • 3Swift H W. Plastic Instability Under Plane Stress[J]. J. Mech. Phys. Solids,1952,1:1-18.
  • 4Hill R. On Discontinuous Plastic States with Special Reference to Localized Necking in Thin Sheets[J].J. Mech. Phys. Solids,1952,1:19-30.
  • 5Storen S, Rice J R. Localized Neck in Thin Sheets[J].J. Mech. Phys. Solids,1975,23 (6) :421-441.
  • 6后藤學.彈塑性構成式の形式[J].金属薄板のFLDの計算の適用,1983:92-92.
  • 7Chow C L, Yang X J. Prediction of Forming Limit Diagram with Mixed Anisotropie Kinematic- Isotropic Harden -Ing Plastic Constitutive Model Based on Stress Criteria [J]. J. Mater. Process.Techn, 2003,133:304-310.
  • 8Kuroda M, Tvergaard V, Forming Limit Diagrams for Anisotropie Metal Sheets with Different Yield Criteria[J]. Int. J. Solids and Structures,2000, 37:5037-5059.
  • 9Sugimoto K-I, Kanda A, Kikuchi R,et al. Ductility and Formability of Newly Developed High Strength Low Alloy TRIP-Aided Sheet Steels with Annealed Martensite Matrix [J ]. ISIJ Intern ,2002, 42(8): 910-915.
  • 10韦习成,李麟,符仁钰.TRIP钢显微组织与性能关系的评述[J].钢铁研究学报,2001,13(5):71-76. 被引量:41

二级参考文献20

  • 1方鸿生,贝氏体相变,1999年
  • 2Liu S K,Metal Trans.A,1990年,21卷,4期,1517页
  • 3Sakuma Y, Matsumura O,Akisue O.Influence of C Content and Annealing Temperature on Microstructure and Mechanical Properties of 400℃ Transformed Steel Containing Retained Austenite.ISIJ Intern.,1991,31(11):1348~1353
  • 4Jeong W C,Matlock D K,Krauss G.Observation of Deformation and Transformation Behavior of Retained Austenite in 0.14C-1.2Si-1.5Mn Steel With Ferrite-bainite-austenite Structure.Mater. Sci. Engn. A,1993,165 (1):1~8
  • 5Meyer M D,Vanderschueren D,De Cooman B C.Influence of the Substitution of Si by Al on the Properties of Cold Rolled C-Mn-Si TRIP Steels.ISIJ Intern.,1999,39(8): 813~822
  • 6Jacques P J, Ladriere J, Delannay F.On the Influence of Interactions Between Phases on the Mechanical Stability of Retained Austenite in Transformation-induced Plasticity Multi -phase Steels. Metallurg. Mater. Trans., 2001, A32(11), 2759~2768
  • 7Sugimoto K-i,Kobayshi M,Nagasaka A,et al.Warm Stretch-formability of TRIP-aided Dual-phase Sheet Steels.ISIJ Intern.,1995,35(11): 1407~1414
  • 8Streicher A M, Speer J G, Matlock D K.Forming Response of Retained Austenite in a C-Si-Mn High Strength TRIP Sheet Steel.Steel Research,2002,73(6): 287~293
  • 9Noriyuki T,Tomota Y.A Micromechanic Modeling for Transformation Induced Plasticity in Steels.Mater.Sci.Engn.,2000,A285(1): 345~352
  • 10Fischer F D,Reisner G,Werner E,et al.A New View on Transformation Induced Plasticity (TRIP).Inter. J. Plasticity,2000,16(7-8):723~748

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