Prediction of Deformation Texture for FCC Metals Using the Finite Element Method

유한요소법을 이용한 면심입방정금속의 변형 집합조직 예측

  • 권재욱 (서울대학교 금속공학과 및 신소재 공동연구소) ;
  • 정효태 (서울대학교 금속공학과 및 신소재 공동연구소) ;
  • 오규환 (서울대학교 금속공학과 및 신소재 공동연구소) ;
  • 이동녕 (서울대학교 금속공학과 및 신소재 공동연구소)
  • Published : 1994.06.01

Abstract

An approximate procedure based on a combination micro-macroscopic theories of plasticity for predicting the crystallographic texture during the plane strain forming of fcc metals has been developed. This procedure is divided into two steps. Firstly, we extract the history of the deformation gradient at all deformed elements with a elasto-plastic finite element method using isotropic plasticity model. Secondly, we use this deformation gradient history to predict the crystallographic deformation texture based on the Bishop-Hill theory. Renouard and Wintenberger' method is chosen for selecting the active slip systems. The predicted results have been compared with reported experimental results. The calculated results are in good agreement with their results.

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