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Title:Hardening model under proportional loading for Al5154 alloy
Authors:  
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ClassificationCode:TG389
year,vol(issue):pagenumber:2020,45(10):198-202
Abstract:

 For Al5154 alloy commonly used in automobile, the hardening model was constructed  under uniaxial tensile, pure shear and plane strain states. Then, the experimental data of mechanical properties were obtained by the experiments of uniaxial tensile, pure shear and plane strain, VTL hardening model was proposed considering different stress states by adding the stress triaxiality T and Lode parameter L into the Voce hardening model to characterize different stress states, and the Isight simulation optimization platform was used to calibrate the model parameters. Furthermore, the new model was used for numerical simulation, and it was analyzed and compared with the simulation results of traditional Swift and Voce hardening models. The results show that the traditional Swift and Voce hardening models well describe the hardening behavior under uniaxial tensile and plane strain states, but overestimate the hardening behavior under pure shear state. However, VTL hardening model is better than Swift and Voce hardening models to describe the hardening behavior in three different stress states.

Funds:
广东省重点领域研发计划项目(2020B010184002)
AuthorIntro:
周驰(1973-),男,博士,副教授 E-mail:mechzhou@scut.edu.cn 通讯作者:张赛军(1978-),男,博士,副教授 E-mail:mesjzhang@scut.edu.cn
Reference:

 
[1]臧其其, 闫华军,张双杰,等.基于Dynaform的铝合金汽车地板梁成形分析及工艺参数优化
[J].塑性工程学报,2019,26(2):125-131.


Zang Q Q, Yan H J, Zhang S J, et al. Forming analysis and process parameter optimization of aluminum alloy automotive floor beam based on Dynaform
[J]. Journal of Plastic Engineering, 2019, 26(2):125-131.


[2]肖永清. 铝合金是现代汽车轻量化的首选材料
[J].铝加工,2005,(5):36-39.

Xiao Y Q. Aluminum alloythe optimum material for modern light weight automobile
[J]. Aluminium Fabrication, 2005, (5):36-39.


[3]张文沛, 李欢欢, 胡志力, 等.车用轻量化铝合金材料本构关系研究进展
[J].材料导报,2017,31(13):85-89,112.

Zhang W P, Li H H, Hu Z L, et al. Progress in constitutive relationship research of aluminum alloy for automobile lightweighting
[J]. Materials Reports, 2017,31(13):85-89,112.


[4]李尧, 彭书华, 杨俊杰.电致塑性效应对纯钽的流动应力影响
[J].稀有金属,2014,38(6):973-977.

Li Y, Peng S H, Yang J J. Analysis of electroplastic effect on flow stress of pure tantalum
[J]. Chinese Journal of Rare Metals, 2014,38(6):973-977.


[5]秦芳诚, 齐会萍, 康跃华, 等.AA6061铝合金铸坯平面压缩本构模型及组织演变
[J].锻压技术,2019,44(12):159-167.

Qin F C, Qi H P, Kang Y H, et al. Constitutive model and microstructure evolution of AA6061 aluminum alloy casting blank in plain compression
[J]. Forging & Stamping Technology, 2019, 44(12):159-167.


[6]汪冠宇. 铝锂合金本构模型研究及其ABAQUS二次开发
[D].太原:中北大学,2019.


Wang G Y. Study on the Constitutive Model of AlLi Alloy and Its Secondary Development in ABAQUS
[D]. Taiyuan: North University of China, 2019.


[7]Kim J H, Kim D, Han H N, et al. Strain rate dependent tensile behavior of advanced high strength steels: Experiment and constitutive modeling
[J]. Materials Science and Engineering A, 2013, 559:222-231.


[8]Yu H Y, Si J C. A mixed hardening model combined with the transformationinduced plasticity effect
[J]. Journal of Manufacturing Processes, 2017, 28(2):390-398.


[9]Barlat F, Gracio J J, Lee M G, et al. An alternative to kinematic hardening in classical plasticity
[J]. International Journal of Plasticity, 2011, 27(9):1309-1327.


[10]Barlat F, Vincze G, Grácio, et al. Enhancements of homogenous anisotropic hardening model and application to mild and dualphase steels
[J]. International Journal of Plasticity, 2014, 58:201-218.


[11]Liao J, Xue X, Barlat F, et al. Material modelling and springback analysis for multistage rotary draw bending of thinwalled tube using homogeneous anisotropic hardening model
[J]. Procedia Engineering, 2014, 81: 1228-1233.


[12]Wagoner R H, Lim H, Lee M G. Advanced issues in springback
[J]. International Journal of Plasticity, 2013, 45(45):3-20.


[13]Lou Y, Huh H, Lim S, et al. New ductile fracture criterion for prediction of fracture forming limit diagrams of sheet metals
[J]. International Journal of Solids & Structures, 2012, 49(25):3605-3615.

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