Effects of process parameters and die geometry on longitudinal welds quality in aluminum porthole di Effects of process parameters and die geometry on longitudinal welds quality in aluminum porthole di

Effects of process parameters and die geometry on longitudinal welds quality in aluminum porthole di

  • 期刊名字:中南大学学报(英文版)
  • 文件大小:
  • 论文作者:LIU Jian,LIN Gao-yong,FENG Di,
  • 作者单位:School of Materials Science and Engineering
  • 更新时间:2022-10-15
  • 下载次数:
论文简介

By using the rigid-visco-plasticity finite element method,the welding process of aluminum porthole die extrusion to form a tube was simulated based on Deform-3D software.The welding chamber height(H),back dimension of die leg(D),process velocity and initial billet temperature were used in FE simulations so as to determine the conditions in which better longitudinal welding quality can be obtained.According to K criterion,the local welding parameters such as welding pressure,effective stress and welding path length on the welding plane are linked to longitudinal welds quality.Simulation turns out that pressure-to-effective stress ratio(p/σ)and welding path length(L)are the key factors affecting the welding quality.Higher welding chamber best and sharper die leg give better welding quality.When H=10 mm and D=0.4 mm,the longitudinal welds have the best quality.Higher process velocity decreases welds quality.The proper velocity is 10 mm/s for this simulation.In a certain range,higher temperature is beneficial to the longitudinal welds.It is found that both 450 and 465℃ can satisfy the requirements of the longitudinal welds.

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