Finite Element Analysis of Extrusion Process in Semi-Solid State

반용융 재료의 압출공정에 관한 유한요소해석

  • 황재호 (부산대원) ;
  • 고대철 (부산대 기계기술 연구소) ;
  • 민규식 (마산전문대학 자동차과) ;
  • 김병민 (부산대 정밀정형 및 금형가공 연구센터) ;
  • 최재찬 (부산대 정밀정형 및 금형가공 연구센터)
  • Published : 1997.06.01

Abstract

It is the objective of this study that by conducting the serni-solid extrusion using A12024, the effect of various process variables on the quality of extruded product and extrusion force is understood. The results of experiment are compared with those of finite element simulation in order to verify the effectiveness of the developed FE-simulation code. In order to simulate densification in the deformation of serni-solid material, the semi-solid material is assumed to be composed of solid region as porous skeleton following compressible visco-plastic model and liquid region following Darcy's equation for the liquid flow saturated in the interstitial space. Then the flow and deformation of the semi-solid alloy are analyzed by coupling the deformation of the porous skeleton and the flow of the eutectic liquid. It is assumed that initial solid fraction is homogeneous. Yield and plastic potential function presented by Kuhn and constitutive model developed by Gunasekera are used for solid skeleton.

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