Finite Element Analysis of Compression Holding step Considering Solidification for Semi-Solid Forging

반용융 단조에서 응고 현상을 고려한 가압유지 단계의 유한요소해석

  • Park, J.C. (Sheet Products Process Research Group, Busan National University) ;
  • Park, H.J. ;
  • Cho, H.Y.
  • Published : 1997.10.01

Abstract

The technology of Semi-Solid Forging (SSF) has been actively developed to fabricate near-net- shape products using light and hardly formable materials. Generally, the SSF process is composed of slug heating, forming, compression holding and ejecting step. After forming step in SSF, the slug is compressed during a certain holding time in order to be completely filled in the die cavity and be accelerated in solidification rate. This paper presents the analysis of temperature, solid fraction and shrinkage at compression holding step for a cylindrical slug, then predicts the solidification time to obtain the final shaped part. Enthalpy-based finite element analysis is performed to solve the heat transfer problem considering phase change in solidification.

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