Applied Mathematics and Mechanics (English Edition) ›› 1990, Vol. 11 ›› Issue (8): 733-741.

• 论文 • 上一篇    下一篇

ANALYSIS OF SURFACE CRACK ON FORWARD EXTRUDING BAR DURING AXISYMMETRIC CUP-BAR COMBINED EXTRUSION PROCESS

李淼泉, 吴诗惇, 唐才荣   

  1. Northwest Polytechnical University, Xi’an
  • 收稿日期:1989-05-04 出版日期:1990-08-18 发布日期:1990-08-18
  • 基金资助:
    National Natural Science Foundation of China

ANALYSIS OF SURFACE CRACK ON FORWARD EXTRUDING BAR DURING AXISYMMETRIC CUP-BAR COMBINED EXTRUSION PROCESS

Li Miao-quan, Wu Shi-chun, Tang Cai-rong   

  1. Northwest Polytechnical University, Xi’an
  • Received:1989-05-04 Online:1990-08-18 Published:1990-08-18
  • Supported by:
    National Natural Science Foundation of China

摘要: In this paper, the kinematically admissible velocity field with surface crack on forward extruding bar is put forward during the axisymmetric cup-bar combined extrusion process, in accordance with the results of model experiments.On the basis of velocity field, the necessary condition for surface crack formation on the forward extruding bar is derived, with the help of upper bound theorem and the minimum energy principle. Meanwhile, the relationships between surface crack formation and combination of reduction in area for the part of forward and backward extursions (εbf) relative residual thickness of billet (T/R0),frictional factor (m) or relative land length of ram and chamber (lb|R0,lf|R0) are calculated during the extrusion process. Therefore, whether the surface crack on forward exturding bar occurs can be predicted before extruding the lower-plasticity metals for axisymmetric cup-bar combined extrusion process.The analytical results agree very well with experimental results of aluminium alloy LY12 (ASTM 2024) and LC4 (ASTM 7075).

Abstract: In this paper, the kinematically admissible velocity field with surface crack on forward extruding bar is put forward during the axisymmetric cup-bar combined extrusion process, in accordance with the results of model experiments.On the basis of velocity field, the necessary condition for surface crack formation on the forward extruding bar is derived, with the help of upper bound theorem and the minimum energy principle. Meanwhile, the relationships between surface crack formation and combination of reduction in area for the part of forward and backward extursions (εbf) relative residual thickness of billet (T/R0),frictional factor (m) or relative land length of ram and chamber (lb|R0,lf|R0) are calculated during the extrusion process. Therefore, whether the surface crack on forward exturding bar occurs can be predicted before extruding the lower-plasticity metals for axisymmetric cup-bar combined extrusion process.The analytical results agree very well with experimental results of aluminium alloy LY12 (ASTM 2024) and LC4 (ASTM 7075).

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