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Published in: Journal of Materials Engineering and Performance 5/2016

17-03-2016

Constitutive Modeling of Hot Deformation Behavior of High-Strength Armor Steel

Authors: Ravindranadh Bobbili, Vemuri Madhu

Published in: Journal of Materials Engineering and Performance | Issue 5/2016

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Abstract

The hot isothermal compression tests of high-strength armor steel under a wide range of deformation temperatures (1100-1250 °C) and strain rates of (0.001-1/s) were performed. Based on the experimental data, constitutive models were established using the original Johnson-Cook (JC) model, modified JC model, and strain-compensated Arrhenius model, respectively. The modified JC model considers the coupled effects of strain hardening, strain rate hardening, and thermal softening. Moreover, the prediction accuracy of these developed models was determined by estimating the correlation coefficient (R) and average absolute relative error (AARE). The results demonstrate that the flow behavior of high-strength armor steel is considerably influenced by the strain rate and temperature. The original JC model is inadequate to provide good description on the flow stress at evaluated temperatures. The modified JC model and strain-compensated Arrhenius model significantly enhance the predictability. It is also observed from the microstructure study that at low strain rates (0.001-0.01/s) and high temperatures (1200-1250 °C), a typical dynamic recrystallization (DRX) occurs.

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Literature
1.
go back to reference Y.C. Lin and X.M. Chen, A Critical Review of Experimental Results and Constitutive Descriptions for Metals and Alloys in Hot Working, Mater. Des., 2011, 32, p 1733–1759CrossRef Y.C. Lin and X.M. Chen, A Critical Review of Experimental Results and Constitutive Descriptions for Metals and Alloys in Hot Working, Mater. Des., 2011, 32, p 1733–1759CrossRef
2.
go back to reference F.L. Chen, G. Zhao, and J. Yu, Hot Deformation Behavior and Constitutive Modeling of Homogenized 6026 Aluminum Alloy, Mater. Des., 2015, 74, p 25–35CrossRef F.L. Chen, G. Zhao, and J. Yu, Hot Deformation Behavior and Constitutive Modeling of Homogenized 6026 Aluminum Alloy, Mater. Des., 2015, 74, p 25–35CrossRef
3.
go back to reference D. Trimble and G.E. O’Donnell, Constitutive Modelling for Elevated Temperature Flow Behaviour of AA7075, Mater. Des., 2015, 76, p 150–168CrossRef D. Trimble and G.E. O’Donnell, Constitutive Modelling for Elevated Temperature Flow Behaviour of AA7075, Mater. Des., 2015, 76, p 150–168CrossRef
4.
go back to reference A. Abbasi-Bani, A. Zarei-Hanzaki, M.H. Pishbin, and N. Haghdadi, A Comparative Study on the Capability of Johnson-Cook and Arrhenius-Type Constitutive Equations to Describe the Flow Behavior of Mg-6Al-1Zn Alloy, Mech. Mater., 2014, 71, p 52–61CrossRef A. Abbasi-Bani, A. Zarei-Hanzaki, M.H. Pishbin, and N. Haghdadi, A Comparative Study on the Capability of Johnson-Cook and Arrhenius-Type Constitutive Equations to Describe the Flow Behavior of Mg-6Al-1Zn Alloy, Mech. Mater., 2014, 71, p 52–61CrossRef
5.
go back to reference Y.C. Lin, L.T. Li, Y.X. Fu, and Y.Q. Jiang, Hot Compressive Deformation Behavior of 7075 Al Alloy Under Elevated Temperature, J. Mater. Sci., 2012, 47, p 1306–1318CrossRef Y.C. Lin, L.T. Li, Y.X. Fu, and Y.Q. Jiang, Hot Compressive Deformation Behavior of 7075 Al Alloy Under Elevated Temperature, J. Mater. Sci., 2012, 47, p 1306–1318CrossRef
6.
go back to reference Y.C. Lin, Q.F. Li, Y.C. Xia, and L.T. Li, A Phenomenological Constitutive Model for High Temperature Flow Stress Prediction of Al-Cu-Mg Alloy, Mater. Sci. Eng. A, 2012, 534, p 654–662CrossRef Y.C. Lin, Q.F. Li, Y.C. Xia, and L.T. Li, A Phenomenological Constitutive Model for High Temperature Flow Stress Prediction of Al-Cu-Mg Alloy, Mater. Sci. Eng. A, 2012, 534, p 654–662CrossRef
7.
go back to reference A. He, G. Xie, H. Zhang, and X. Wang, A Comparative Study on Johnson-Cook, Modified Johnson-Cook and Arrhenius-Type Constitutive Models to Predict the High Temperature Flow Stress in 20CrMo Alloy Steel, Mater. Des., 2013, 52, p 677–685CrossRef A. He, G. Xie, H. Zhang, and X. Wang, A Comparative Study on Johnson-Cook, Modified Johnson-Cook and Arrhenius-Type Constitutive Models to Predict the High Temperature Flow Stress in 20CrMo Alloy Steel, Mater. Des., 2013, 52, p 677–685CrossRef
8.
go back to reference A. He, G. Xie, H. Zhang, and X. Wang, A Modified Zerilli-Armstrong Constitutive Model to Predict Hot Deformation Behavior of 20CrMo Alloy Steel, Mater. Des., 2014, 56, p 122–127CrossRef A. He, G. Xie, H. Zhang, and X. Wang, A Modified Zerilli-Armstrong Constitutive Model to Predict Hot Deformation Behavior of 20CrMo Alloy Steel, Mater. Des., 2014, 56, p 122–127CrossRef
9.
go back to reference Y.C. Lin, X.M. Chen, and G. Liu, A Modified Johnson-Cook Model for Tensile Behaviors of Typical High-Strength Alloy Steel, Mater. Sci. Eng. A, 2010, 527, p 6980–6986CrossRef Y.C. Lin, X.M. Chen, and G. Liu, A Modified Johnson-Cook Model for Tensile Behaviors of Typical High-Strength Alloy Steel, Mater. Sci. Eng. A, 2010, 527, p 6980–6986CrossRef
10.
go back to reference H.Y. Li, X.F. Wang, J.Y. Duan, and J.J. Liu, A Modified Johnson Cook Model for Elevated Temperature Flow Behavior of T24 Steel, Mater. Sci. Eng. A, 2013, 577, p 138–146CrossRef H.Y. Li, X.F. Wang, J.Y. Duan, and J.J. Liu, A Modified Johnson Cook Model for Elevated Temperature Flow Behavior of T24 Steel, Mater. Sci. Eng. A, 2013, 577, p 138–146CrossRef
11.
go back to reference W. Song, J. Ning, X. Mao, and H. Tang, A Modified Johnson-Cook Model for Titanium Matrix Composites Reinforced with Titanium Carbide Particles at Elevated Temperatures, Mater. Sci. Eng. A, 2013, 576, p 280–289CrossRef W. Song, J. Ning, X. Mao, and H. Tang, A Modified Johnson-Cook Model for Titanium Matrix Composites Reinforced with Titanium Carbide Particles at Elevated Temperatures, Mater. Sci. Eng. A, 2013, 576, p 280–289CrossRef
12.
go back to reference Q.Y. Hou and J.T. Wang, A Modified Johnson-Cook Constitutive Model for Mg-Gd-Y Alloy Extended to a Wide Range of Temperatures, Comput. Mater. Sci., 2010, 50, p 147–152CrossRef Q.Y. Hou and J.T. Wang, A Modified Johnson-Cook Constitutive Model for Mg-Gd-Y Alloy Extended to a Wide Range of Temperatures, Comput. Mater. Sci., 2010, 50, p 147–152CrossRef
13.
go back to reference Y.C. Lin and X.M. Chen, A Combined Johnson-Cook and Zerilli-Armstrong Model for Hot Compressed Typical High-Strength Alloy Steel, Comput. Mater. Sci., 2010, 49, p 628–633CrossRef Y.C. Lin and X.M. Chen, A Combined Johnson-Cook and Zerilli-Armstrong Model for Hot Compressed Typical High-Strength Alloy Steel, Comput. Mater. Sci., 2010, 49, p 628–633CrossRef
14.
go back to reference Z. Wang, W. Fu, S. Sun, D. Zhao, G. Zhang, W. Zhang, and Q. Mingg, Effect of Hot Deformation on the Nitride Precipitation Behavior in High Nitrogen Austenitic Steel, J. Mater. Eng. Per., 2010, 19, p 951–954CrossRef Z. Wang, W. Fu, S. Sun, D. Zhao, G. Zhang, W. Zhang, and Q. Mingg, Effect of Hot Deformation on the Nitride Precipitation Behavior in High Nitrogen Austenitic Steel, J. Mater. Eng. Per., 2010, 19, p 951–954CrossRef
15.
go back to reference B. Guo, H. Ji, X. Liu, L. Gao, R. Dong, M. Jin, and Q. Zhang, Research on Flow Stress During Hot Deformation Process and Processing Map for 316LN Austenitic Stainless Steel, J. Mater. Eng. Perform., 2012, 21, p 1455–1461CrossRef B. Guo, H. Ji, X. Liu, L. Gao, R. Dong, M. Jin, and Q. Zhang, Research on Flow Stress During Hot Deformation Process and Processing Map for 316LN Austenitic Stainless Steel, J. Mater. Eng. Perform., 2012, 21, p 1455–1461CrossRef
16.
go back to reference A. Marchattiwar, A. Sarkar, J.K. Chakravartty, and B.P. Kashyap, Research on Flow Stress During, Dynamic Recrystallization During Hot Deformation of 304 Austenitic Stainless Steel, J. Mater. Eng. Perform., 2013, 22, p 2168–2175 A. Marchattiwar, A. Sarkar, J.K. Chakravartty, and B.P. Kashyap, Research on Flow Stress During, Dynamic Recrystallization During Hot Deformation of 304 Austenitic Stainless Steel, J. Mater. Eng. Perform., 2013, 22, p 2168–2175
17.
go back to reference Z. Yuan, F. Li, H. Qiao, and G. Ji, Constitutive Flow Behavior and Hot Workability of AerMet100 at Elevated Temperatures, J. Mater. Eng. Perform., 2014, 23, p 1981–1999CrossRef Z. Yuan, F. Li, H. Qiao, and G. Ji, Constitutive Flow Behavior and Hot Workability of AerMet100 at Elevated Temperatures, J. Mater. Eng. Perform., 2014, 23, p 1981–1999CrossRef
18.
go back to reference A. Mirzaei, A. Zarei-Hanzaki, M.H. Pishbin, A. Imandoust, and Sh Khoddam, Evaluating the Hot Deformation Behavior of Super-Austenitic Steel Through Microstructural and Neural Network Analysis, J. Mater. Eng. Perform., 2015, 24, p 2412–2421CrossRef A. Mirzaei, A. Zarei-Hanzaki, M.H. Pishbin, A. Imandoust, and Sh Khoddam, Evaluating the Hot Deformation Behavior of Super-Austenitic Steel Through Microstructural and Neural Network Analysis, J. Mater. Eng. Perform., 2015, 24, p 2412–2421CrossRef
19.
go back to reference G.R. Johnson and W.H. Cook, Fracture Characteristics of Three Metals Subjected to Various Strains, Strain Rates, Temperatures and Pressures, Eng. Fract. Mech., 1985, 21, p 31–48CrossRef G.R. Johnson and W.H. Cook, Fracture Characteristics of Three Metals Subjected to Various Strains, Strain Rates, Temperatures and Pressures, Eng. Fract. Mech., 1985, 21, p 31–48CrossRef
20.
go back to reference G.R. Johnson and W.H. Cook, A Constitutive Model and Data for Metals Subjected to Large Strains, High Strain Rates, and High Temperatures, Proceedings of the 7th International Symposium on Ballistics, Division for Military Engineering, The Royal Institution of Engineers in the Netherlands, The Hague, 1983, p 541–547. G.R. Johnson and W.H. Cook, A Constitutive Model and Data for Metals Subjected to Large Strains, High Strain Rates, and High Temperatures, Proceedings of the 7th International Symposium on Ballistics, Division for Military Engineering, The Royal Institution of Engineers in the Netherlands, The Hague, 1983, p 541–547.
Metadata
Title
Constitutive Modeling of Hot Deformation Behavior of High-Strength Armor Steel
Authors
Ravindranadh Bobbili
Vemuri Madhu
Publication date
17-03-2016
Publisher
Springer US
Published in
Journal of Materials Engineering and Performance / Issue 5/2016
Print ISSN: 1059-9495
Electronic ISSN: 1544-1024
DOI
https://doi.org/10.1007/s11665-016-2001-z

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