Prediction of grain size for large-sized aluminium alloy 7050 forging during hot forming

被引:0
作者
易幼平 [1 ]
付欣 [1 ]
崔金栋 [1 ]
陈华 [2 ]
机构
[1] Key Laboratory of Modern Complex Equipment Design and Extreme Manufacturing, Ministry of Education, Central South University
[2] Southwest Aluminum (Group) Co Ltd
关键词
aluminium alloy 7050; grain size; forging; FEM simulation;
D O I
暂无
中图分类号
TG319 [有色金属锻造];
学科分类号
080201 ; 080503 ;
摘要
A numerical approach for process optimization and microstructure evolution of lager-sized forging of aluminium alloy 7050 was proposed, which combined a commercial FEM code Deform 3D with empirical models. To obtain the parameters of empirical constitutive equation and dynamic recrystallization models for aluminium alloy 7050, the isothermal compression tests of 7050 samples were performed on Gleeble-1500 thermo-simulation machine in the temperature range of 250-450 ℃ and strain rate of 0.01-10 s-1, and the metallograph analysis of the samples were carried out on a Leica DMIRM image analyzer. The simulation results show that the dynamic recrystallization in the central area of the billet occurs more easily than that on the edge. Repetitious upsetting and stretching processes make the billet deform adequately. Among several forging processes e.g. upsetting, stretching, rounding and flatting, the stretching process is the most effective way to increase the effective strain and refine the microstructure of the billet. As the forging steps increase, the effective strain rises significantly and the average grain size reduces sharply. Recrystallized volume fractions in most parts of the final forging piece reach 100% and the average grain size reduces to 10 μm from initial value of 90 μm.
引用
收藏
页码:1 / 5
页数:5
相关论文
共 5 条
[1]   Effect of low temperature aging on microstructure and mechanical properties of super-high strength aluminum alloy [J].
冯春 ;
刘志义 ;
宁爱林 ;
曾苏民 .
Journal of Central South University of Technology(English Edition), 2006, (05) :461-467
[2]   2519铝合金热压缩变形过程的动态与静态软化行为 [J].
林启权 ;
彭大暑 ;
张辉 ;
林高用 .
中南大学学报(自然科学版), 2005, (02) :183-187
[3]  
Recrystallization model for hot-rolling of 5182 aluminum alloy[J]. 张辉,彭大暑,杨立斌,孟力平.Transactions of Nonferrous Metals Society of China. 2001(03)
[4]  
Dynamic recrystallization of Ni-base alloys—Experimental results and comparisons with simulations[J] . P. Poelt,C. Sommitsch,S. Mitsche,M. Walter.Materials Science & Engineering A . 2006 (1)
[5]   Physical simulation of hot deformation of TiAl based alloy [J].
Zhang, JH ;
Huang, BY ;
He, YH ;
Zhou, KC ;
Meng, LP .
JOURNAL OF CENTRAL SOUTH UNIVERSITY OF TECHNOLOGY, 2002, 9 (02) :73-76