Forming limit diagram of aluminum-copper two-layer sheets: numerical simulations and experimental verifications

被引:0
作者
E. Karajibani
R. Hashemi
M. Sedighi
机构
[1] Iran University of Science and Technology,School of Mechanical Engineering
来源
The International Journal of Advanced Manufacturing Technology | 2017年 / 90卷
关键词
Two-layer sheet; Finite element analysis; Forming; Experiment;
D O I
暂无
中图分类号
学科分类号
摘要
The aim of this research was to introduce a simulation-based approach for determination of the Forming limit curve (FLC) in two-layer metallic sheets. In this study, the FLC of aluminum-1100/copper-C10100 two-layer sheets were obtained through numerical simulations and experimental investigations. In order to construct the FLC, two different criterions including the acceleration (i.e., the second order of derivatives) of equivalent plastic strain and major strain were applied to obtain the onset of necking in the materials. Based on these methods, the localized necking would be started when the acceleration of the equivalent plastic strain or the major strain got its maximum value. To verify the numerical predictions, the experimental works were accomplished on the aluminum-1100/copper-C10100 two-layer sheets and a good agreement between the proposed methods and experimental works was observed.
引用
收藏
页码:2713 / 2722
页数:9
相关论文
共 142 条
  • [1] Karajibani E(2015)Determination of forming limit curve in two-layer metallic sheets using the finite element simulation Proc IMechE Part L: J Materials: Design and Applications 18 131-140
  • [2] Hashemi R(2015)Numerical and experimental investigations of hydro-mechanical deep drawing process of laminated aluminum/steel sheets J Manuf Process 2 45-50
  • [3] Sedighi M(2016)Experimental determination of forming limit diagram in aluminum-copper two-layer metallic sheets, in Persian J Sci Technol Composites 2 423-426
  • [4] Bagherzadeh S(2016)Forming limit diagram of Al-Cu two-layer metallic sheets considering the Marciniak and Kuczynski theory Proc IMechE Part B: J Eng Manuf 67 522-530
  • [5] Mirnia MJ(2009)Formability prediction of thin metal sheets using various localization criteria Int J Mater Form 22 3324-3336
  • [6] Mollaei Dariani B(2015)Dedicated linear–Voce model and its application in investigating temperature and strain rate effects on sheet formability of aluminum alloys Mater Des 9 297-303
  • [7] Karajibani E(2013)Analytical method for forming limit diagram prediction with application to a magnesium ZEK100-O alloy J Mater Eng Perform 55 35-42
  • [8] Hashemi R(2016)Prediction of forming limit diagrams using the modified M-K method in hydroforming of aluminum tubes Int J Mater Form 82 13-24
  • [9] Sedighi M(2014)Effect of differential heat treatment on the formability of aluminum tailor welded blanks Mater Des 66 809-823
  • [10] Hashemi R(2014)Forming limits of an age hardenable aluminum sheet after pre-straining and annealing Int J Mech Sci 45 195-204