期刊文献+

方盒形件拉深弹塑性有限元分析 被引量:8

Elasto-Plastic FEM Analysis of Square Cup Drawing
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摘要 建立了包括板料、凸凹模及压边圈在内的整体分析模型,应用ANSYS软件,对方盒形件拉深成形过程进行了数值模拟,初步探讨了方盒形件的变形特点.考察了方法的可行性和模型的可靠性. The whole analysis model including sheet metal, dies and blank holder is built. The numerical simulation is carried out to square cup's drawing process. The square cup's deformation characteristics are discussed preliminarily. The method's feasibility and model's credilbility are inspected also.
出处 《燕山大学学报》 CAS 1998年第3期210-213,共4页 Journal of Yanshan University
关键词 盒形件 拉深 弹塑性 有限元 ANSYS软件 square cup, drawing, elasto-plastic FEM, ANSYS.
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同被引文献27

  • 1LEI Jun-xiang.Prediction and Control of Wrinkle and Fracture for Stamping Regular Polygonal Box[J].Journal of Iron and Steel Research International,2004,11(5):44-49. 被引量:7
  • 2熊志卿.筒盒拉深的应力通解[J].塑性工程学报,1995,2(2):9-17. 被引量:5
  • 3郭成,贾玉玺,郭建卿,寿洪涛.铝-钢复层板材的力学性能与拉深成形性能[J].机械工程学报,1995,31(6):91-96. 被引量:3
  • 4Choongho Lee, Jian Cao. Shell element formulation of multistep inverse analysis for axisymmetric deep drawing process [J]. International Journal for Numerical Methods in Engineering, 2001, (50): 681- 706.
  • 5Takuda H, Mori K, Fujimoto H, et al. Prediction of forming limit in deep drawing of Fe/Al laminated composite sheets using ductile fracture criterion [J]. Journal of Materials Processing Technology, 1996, (60): 291-296.
  • 6Mohammad Habibi Parsa, Katsuhiko Yamaguchi, Norio Takakur. Redrawing analysis of aluminum-stainless-steel (laminated sheet) using FEM simulations and experiments [J]. International Journal of Mechanical Sciences, 2001, (43): 2331 - 2347.
  • 7万敏,杨玉英,李硕本.圆锥形零件成形时极限承载能力的确定[J].机械工程学报,1997,33(3):80-86. 被引量:9
  • 8T.Mori,and S.Kurimoto. Journal of Materials . 1996
  • 9Choongho Lee,and Jian Cao.Shell element formulation of multi-step inverse analysis for axisymmetric deep drawing process. International Journal For Numerical Methods in Engineering . 2001
  • 10H.Takuda,,K.Mori,H.Fujimoto,,N.Hatta.Prediction of forming limit in deep drawing of Fe/Al laminated composite sheets using ductile fracture criterion. Journal of Materials ProcessingTechnogy . 1996

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