Coupling Computational Homogenization with Crystal Plasticity Modelling for Predicting the Warm Deformation Behaviour of AA2060-T8 Al-Li Alloy

被引:6
作者
Abd El-Aty, Ali [1 ,2 ]
Ha, Sangyul [3 ]
Xu, Yong [4 ,5 ]
Hou, Yong [6 ,7 ]
Zhang, Shi-Hong [4 ,5 ]
Alzahrani, Bandar [1 ]
Ali, Alamry [1 ]
Ahmed, Mohamed M. Z. [1 ]
机构
[1] Prince Sattam Bin Abdulaziz Univ, Dept Mech Engn, Coll Engn, Al Kharj 11942, Saudi Arabia
[2] Helwan Univ, Fac Engn Helwan, Mech Engn Dept, Cairo 11795, Egypt
[3] SK Hynix Inc, PKG Simulat, Icheon 17336, Gyeonggi, South Korea
[4] Chinese Acad Sci, Inst Met Res, Shi Changxu Innovat Ctr Adv Mat, Shenyang 110016, Peoples R China
[5] Univ Sci & Technol China, Sch Mat Sci & Engn, Shenyang 110016, Peoples R China
[6] Seoul Natl Univ, Dept Mat Sci & Engn, Seoul 08826, South Korea
[7] Seoul Natl Univ, RIAM, Seoul 08826, South Korea
关键词
AA2060-T8; crystal plasticity modelling; computational homogenization; dynamic recovery; storage and recovery processes; MODIFIED JOHNSON-COOK; DISLOCATION-DENSITY; FLOW BEHAVIOR; TENSILE; TEMPERATURES; ANISOTROPY; EVOLUTION; TEXTURE; SHEET;
D O I
10.3390/ma16114069
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
This study aimed to propose a new approach for predicting the warm deformation behaviour of AA2060-T8 sheets by coupling computational homogenization (CH) with crystal plasticity (CP) modeling. Firstly, to reveal the warm deformation behaviour of the AA2060-T8 sheet, isothermal warm tensile testing was accomplished using a Gleeble-3800 thermomechanical simulator at the temperatures and strain rates that varied from 373 to 573 K and 0.001 to 0.1 s(-1). Then, a novel crystal plasticity model was proposed for describing the grains' behaviour and reflecting the crystals' actual deformation mechanism under warm forming conditions. Afterward, to clarify the in-grain deformation and link the mechanical behaviour of AA2060-T8 with its microstructural state, RVE elements were created to represent the microstructure of AA2060-T8, where several finite elements discretized every grain. A remarkable accordance was observed between the predicted results and their experimental counterparts for all testing conditions. This signifies that coupling CH with CP modelling can successfully determine the warm deformation behaviour of AA2060-T8 (polycrystalline metals) under different working conditions.
引用
收藏
页数:15
相关论文
共 55 条
[1]   Phenomenological-based constitutive modelling of warm deformation behavior of high-Strength lightweight AL-Li alloy sheets [J].
Abd El-Aty, A. ;
Xu, Y. ;
Zhang, Sh ;
Guo, X. ;
Tao, J. ;
Lee, M. G. .
INTERNATIONAL DEEP-DRAWING RESEARCH GROUP CONFERENCE (IDDRG 2022), 2022, 1238
[2]   Prediction of tensile deformation behavior of Al-Li alloy 2060-T8 by computational homogenization-based crystal plasticity finite element method [J].
Abd El-Aty, A. ;
Ha, S. ;
Zhang, S. H. ;
Xu, Y. .
NUMISHEET 2018: 11TH INTERNATIONAL CONFERENCE AND WORKSHOP ON NUMERICAL SIMULATION OF 3D SHEET METAL FORMING PROCESSES, 2018, 1063
[3]   A review on flexibility of free bending forming technology for manufacturing thin-walled complex-shaped metallic tubes [J].
Abd El-Aty, Ali ;
Guo, Xunzhong ;
Lee, Myoung-Gyu ;
Tao, Jie ;
Hou, Yong ;
Hu, Shenghan ;
Li, Tao ;
Wu, Cong ;
Yang, Qiucheng .
INTERNATIONAL JOURNAL OF LIGHTWEIGHT MATERIALS AND MANUFACTURE, 2023, 6 (02) :165-188
[4]   Impact of high strain rate deformation on the mechanical behavior, fracture mechanisms and anisotropic response of 2060 Al-Cu-Li alloy [J].
Abd El-Aty, Ali ;
Xu, Yong ;
Zhang, Shi-Hong ;
Ha, Sangyul ;
Ma, Yan ;
Chen, Dayong .
JOURNAL OF ADVANCED RESEARCH, 2019, 18 :19-37
[5]   Computational homogenization of tensile deformation behaviors of a third generation Al-Li alloy 2060-T8 using crystal plasticity finite element method [J].
Abd El-Aty, Ali ;
Xu, Yong ;
Ha, Sangyul ;
Zhang, Shi-Hong .
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2018, 731 :583-594
[6]   Experimental investigation of tensile properties and anisotropy of 1420, 8090 and 2060 Al-Li alloys sheet undergoing different strain rates and fibre orientation: a comparative study [J].
Abd El-Aty, Ali ;
Xu, Yong ;
Zhang, Shihong ;
Ma, Yan ;
Chen, Dayong .
INTERNATIONAL CONFERENCE ON THE TECHNOLOGY OF PLASTICITY, ICTP 2017, 2017, 207 :13-18
[7]   Strengthening mechanisms, deformation behavior, and anisotropic mechanical properties of Al-Li alloys: A review [J].
Abd El-Aty, Ali ;
Xu, Yong ;
Guo, Xunzhong ;
Zhang, Shi-Hong ;
Ma, Yan ;
Chen, Dayong .
JOURNAL OF ADVANCED RESEARCH, 2018, 10 :49-67
[8]   Forming of AA5182-O and AA5754-O at elevated temperatures using coupled thermo-mechanical finite element models [J].
Abedrabbo, Nader ;
Pourboghrat, Farhang ;
Carsley, John .
INTERNATIONAL JOURNAL OF PLASTICITY, 2007, 23 (05) :841-875
[9]   A dislocation-density-based 3D crystal plasticity model for pure aluminum [J].
Alankar, Alankar ;
Mastorakos, Ioannis N. ;
Field, David P. .
ACTA MATERIALIA, 2009, 57 (19) :5936-5946
[10]   Modeling the evolution of crystallographic dislocation density in crystal plasticity [J].
Arsenlis, A ;
Parks, DM .
JOURNAL OF THE MECHANICS AND PHYSICS OF SOLIDS, 2002, 50 (09) :1979-2009