평면이방성 알루미늄 재료의 귀발생 예측에 있어서 항복함수와 초기 Back-Stress의 영향

Influence of yield functions and initial back stress on the earing prediction of drawn cups for planar anisotropic aluminum alloys

  • 윤정환 (LG생산기술원 CAE Group) ;
  • ;
  • 정관수 (서울대 섬유고분자 공학부) ;
  • 양동열 (한국과학기술원 기계공학과) ;
  • 장성기 (LG 생산기술원 CAE Group)
  • ;
  • F. Barlat (Alcoa Technical Center) ;
  • ;
  • ;
  • 발행 : 1998.03.01

초록

Anisotropy is closely related to the formability of sheet metal and should be considered carefully for more realistic analysis of actual sheet metal forming operations. In order to better describe anisotropic plastic properties of aluminum alloy sheets, a planar anisotropic yield function which accounts for the anisotropy of uniaxial yield stresses and strain rate ratios simultaneously was proposed recently[1]. This yield function was used in the finite element simulations of cup drawing tests for an aluminum alloy 2008-T4. Isotropic hardening with a fixed initial back stress based on experimental tensile and compressive test results was assumed in the simulation. The computation results were in very good agreement with the experimental results. It was shown that the initial back stress as well as the yield surface shape have a large influence on the prediction of the cup height profile.

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