PC기반 소성가공공정 성형해석 시스템 개발

Development of PC-based Simulation System for Metal Forming

  • 곽대영 (한국과학기술원 기계공학과) ;
  • 천재승 (한국과학기술원 기계공학과) ;
  • 김수영 (한국과학기술원 기계공학과) ;
  • 이근안 (한국과학기술원 기계공학과) ;
  • 임용택 (한국과학기술원 기계공학과)
  • Published : 2000.06.01

Abstract

It is well known that the quality and efficiency of the design of metal forming processes can be significantly improved with the aid of effective numerical simulations. In the present study, a two-and three-dimensional finite element simulation system, CAMP form, was developed for the analysis of metal forming processes in the PC environment. It is composed of a solver based on the thermo-rigid-viscoplastic approach and graphic user interface (GUI) based pre-and post-processors to be used for the effective description of forming conditions and graphic display of simulation results, respectively. In particular, in the case of CAMPform 2D (two-dimensional), as the solver contains an automatic remeshing module which determines the deformation step when remeshing is required and reconstructs the new mesh system, it is possible to carry out simulations automatically without any user intervention. Also, the forming analysis considers ductile fracture of the workpiece and wear of dies for better usage of the system. In the case of CAMPform 3D, general three-dimensional problems that involve complex die geometries and require remeshing can be analyzed, but full automation of simulations has yet to be achieved. In this paper, the overall structure and computational background of CAMPform will be briefly explained and analysis results of several forming processes will be shown. From the current results, it is construed that CAMPform can be used in providing useful information to assist the design of forming processes.

Keywords

References

  1. Metal forming and the finite element method Kobayashi, S.;Oh, S. I.;Altan, T.
  2. Proceedings of 6th Japan-China Joint Symposim on Precision Forming, Nagoya, Japan, October 5, 1998 Three-dimensional finite element simulations of forming processes Im, Y. T.;Kim, S. Y.
  3. Int. Symp. Adv. Forming and Die Manufac. Tech. Pusan, Korea Development of automated simulation system for forming Kwak, D. Y.;Cheon, J. S.;Kim, S. Y.;Lee, G. A.;Im, Y. T.
  4. Int. J. Num. Meth. Engng. v.40 Quadrilateral finite-element generation and mesh quality control for metal forming simulation Joun, M. S.;Lee, M. C.
  5. 대한기계학회 논문집 A권 v.22 no.9 격자 재구성을 위한 사각형 요소 자동 격자 생성기 개발 곽대영;임용택
  6. Int. J. Num. Meth. Engng. v.29 Development of an automatic two-dimensional finite element mesh generator using quadrilateral elements and Bezier curve boundary definition Talbert, J. A.;Parkinson, A. L.
  7. Int. J. Num. Meth. Engng. v.32 Paving;A new approach to automated quadrilateral mesh generation Blacker, T. D.;Stephenson, M. B.
  8. Engineering Computations v.16 Development of a grid-based mesh generation technique and its application to remeshing during the finite element simulation of a metal forming process Lee, Y. K.;Yang, D. Y.
  9. Proceedings of 5th International Meshing Roundtable,Pittsburgh, USA, October 10 Octree-based generation of hexahedral element meshes Schneiders, R.;Schindler, R.;Weiler, F.
  10. Transactions of ASME - B - Journal of manufacturing Science and Engineering v.121 Prediction of Ductile Fracture in Cold Forming of Aluminum Alloy Kim, H. S.;Im, Y. t.;Geiger, M.
  11. Journal of Material Processing Technology v.89 Finite-element investigation of the wear and elastic deformation of dies in metal forming Lee, G. A.;Im, Y. T.
  12. Metal Forming Fundamentals and Applications Altan, T.;Oh, S. I.;Gegel, L.
  13. Transactions of the North American Manufacturing Research Institute of Society of Manufacturing Engineers v.24 Multi-stage Cold Forming Process Design with A* Searching Algorithm Kim, H. S.;Im, Y. T.