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Published in: Journal of Materials Engineering and Performance 10/2021

01-06-2021

Evolution of Zr-Bearing Dispersoids during Homogenization and Their Effects on Hot Deformation and Recrystallization Resistance in Al-0.8%Mg-1.0%Si Alloy

Authors: A. Elasheri, E. M. Elgallad, N. Parson, X.-G. Chen

Published in: Journal of Materials Engineering and Performance | Issue 10/2021

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Abstract

The precipitation behavior of Zr-bearing dispersoids in an Al-0.8%Mg-1.0%Si alloy was investigated for different homogenization treatments (450-550 °C). The effect on the recrystallization resistance of the alloy was also studied during post-deformation annealing. With an addition of 0.2 wt.% Zr, two different Zr-bearing dispersoids were observed depending on the homogenization conditions. Homogenization at 450 °C for 2 h resulted in the precipitation of fine and dense L12-Al3Zr dispersoids (8-10 nm), which were found to be coherent with the matrix. In contrast, extended homogenization times, such as 12 h at 450 °C, or increasing the homogenization temperature to 500-550 °C produced elongated DO22-(Al,Si)3Zr dispersoids with a larger size. During hot compression testing, the addition of 0.2 wt.% Zr combined with homogenization at 450 °C increased the high-temperature flow stress by 20% relative to the base alloy free of Zr, revealing their potential to inhibit dislocation motion and dynamic recovery. Both dispersoids were found to have positive impact on the retardation of recrystallization during post-deformation annealing, but the fine and coherent Al3Zr dispersoids were more effective than the coarse and incoherent (Al,Si)3Zr dispersoids.

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Literature
1.
go back to reference J. Hirsch, Recent Development in Aluminium for Automotive Applications, Trans. Nonferrous Met. Soc. China, 2014, 24(7), p 1995–2002.CrossRef J. Hirsch, Recent Development in Aluminium for Automotive Applications, Trans. Nonferrous Met. Soc. China, 2014, 24(7), p 1995–2002.CrossRef
2.
go back to reference J. Ren, Z. Chen, J. Peng, W. Ma and S.P. Ringer, An Initial Report on Achieving High Comprehensive Performance in an Al-Mg-Si Alloy via Novel Thermomechanical Processing, J. Alloys Compd., 2018, 764, p 679–683.CrossRef J. Ren, Z. Chen, J. Peng, W. Ma and S.P. Ringer, An Initial Report on Achieving High Comprehensive Performance in an Al-Mg-Si Alloy via Novel Thermomechanical Processing, J. Alloys Compd., 2018, 764, p 679–683.CrossRef
3.
go back to reference R. Guemini, A. Boubertakh and G.W. Lorimer, Study of the Recrystallization Process of AlMgSi Alloys Containing Transition Elements, J. Alloys Compd., 2009, 486(1–2), p 451–457.CrossRef R. Guemini, A. Boubertakh and G.W. Lorimer, Study of the Recrystallization Process of AlMgSi Alloys Containing Transition Elements, J. Alloys Compd., 2009, 486(1–2), p 451–457.CrossRef
4.
go back to reference Q. Dong, A. Howells, M.F. Gallerneault and V. Fallah, Precipitation-Induced Mitigation of Recrystallization in Ultra-Thin, Cold-Rolled AlScZrMn(Mg) Sheets at Brazing Temperatures: The Critical Effect of Alloy Composition and Thermal Processing Route, Acta Mater., 2020, 186, p 308–323.CrossRef Q. Dong, A. Howells, M.F. Gallerneault and V. Fallah, Precipitation-Induced Mitigation of Recrystallization in Ultra-Thin, Cold-Rolled AlScZrMn(Mg) Sheets at Brazing Temperatures: The Critical Effect of Alloy Composition and Thermal Processing Route, Acta Mater., 2020, 186, p 308–323.CrossRef
5.
go back to reference V.V. Zakharov, About Alloying of Aluminum Alloys with Transition Metals, Met. Sci. Heat Treat., 2017, 59(1–2), p 67–71.CrossRef V.V. Zakharov, About Alloying of Aluminum Alloys with Transition Metals, Met. Sci. Heat Treat., 2017, 59(1–2), p 67–71.CrossRef
6.
go back to reference F. Hichem and G. Rebai, Study of Dispersoid Particles in Two Al–Mg–Si Aluminium Alloys and Their Effects on the Recrystallization, Appl. Phys. A, 2015, 119(1), p 285–289.CrossRef F. Hichem and G. Rebai, Study of Dispersoid Particles in Two Al–Mg–Si Aluminium Alloys and Their Effects on the Recrystallization, Appl. Phys. A, 2015, 119(1), p 285–289.CrossRef
7.
go back to reference F. Kahrıman and M. Zeren, The Effect of Zr on Aging Kinetics and Properties of As-Cast AA6082 Alloy, Int. J. Met., 2017, 11(2), p 216–222. F. Kahrıman and M. Zeren, The Effect of Zr on Aging Kinetics and Properties of As-Cast AA6082 Alloy, Int. J. Met., 2017, 11(2), p 216–222.
8.
go back to reference A.V. Mikhaylovskaya, A.G. Mochugovskiy, V.S. Levchenko, N.Y. Tabachkova, W. Mufalo and V.K. Portnoy, Precipitation Behavior of L12 Al3Zr Phase in Al-Mg-Zr Alloy, Mater. Charact., 2018, 139, p 30–37.CrossRef A.V. Mikhaylovskaya, A.G. Mochugovskiy, V.S. Levchenko, N.Y. Tabachkova, W. Mufalo and V.K. Portnoy, Precipitation Behavior of L12 Al3Zr Phase in Al-Mg-Zr Alloy, Mater. Charact., 2018, 139, p 30–37.CrossRef
9.
go back to reference Z. Guo, G. Zhao and X.-G. Chen, Effects of Two-Step Homogenization on Precipitation Behavior of Al3Zr Dispersoids and Recrystallization Resistance in 7150 Aluminum Alloy, Mater. Charact., 2015, 102, p 122–130.CrossRef Z. Guo, G. Zhao and X.-G. Chen, Effects of Two-Step Homogenization on Precipitation Behavior of Al3Zr Dispersoids and Recrystallization Resistance in 7150 Aluminum Alloy, Mater. Charact., 2015, 102, p 122–130.CrossRef
10.
go back to reference A.M. Cassell, J.D. Robson, C.P. Race, A. Eggeman, T. Hashimoto and M. Besel, Dispersoid Composition in Zirconium Containing Al-Zn-Mg-Cu (AA7010) Aluminium Alloy, Acta Mater., 2019, 169, p 135–146.CrossRef A.M. Cassell, J.D. Robson, C.P. Race, A. Eggeman, T. Hashimoto and M. Besel, Dispersoid Composition in Zirconium Containing Al-Zn-Mg-Cu (AA7010) Aluminium Alloy, Acta Mater., 2019, 169, p 135–146.CrossRef
11.
go back to reference C. Shi and X.-G. Chen, Effects of Zr and v Micro-Alloying on Activation Energy During Hot Deformation of 7150 Aluminum Alloys, Light Metals. Wiley, Hoboken NJ USA, 2015, p 163–167 C. Shi and X.-G. Chen, Effects of Zr and v Micro-Alloying on Activation Energy During Hot Deformation of 7150 Aluminum Alloys, Light Metals. Wiley, Hoboken NJ USA, 2015, p 163–167
12.
go back to reference F. Kahrıman and M. Zeren, Microstructural and Mechanical Characterization of Al-0.80Mg-0.85Si-0.3Zr Alloy, Arch. Foundry Eng., 2017, 17(4), p 73–78.CrossRef F. Kahrıman and M. Zeren, Microstructural and Mechanical Characterization of Al-0.80Mg-0.85Si-0.3Zr Alloy, Arch. Foundry Eng., 2017, 17(4), p 73–78.CrossRef
13.
go back to reference L. Lityñska, D. Abou-Ras, G. Kostorz and J. Dutkiewicz, TEM and HREM Study of Al 3 Zr Precipitates in an Al-Mg-Si-Zr Alloy, J. Microsc., 2006, 223(3), p 182–184.CrossRef L. Lityñska, D. Abou-Ras, G. Kostorz and J. Dutkiewicz, TEM and HREM Study of Al 3 Zr Precipitates in an Al-Mg-Si-Zr Alloy, J. Microsc., 2006, 223(3), p 182–184.CrossRef
14.
go back to reference Y. Himuro, K. Koyama and Y. Bekki, Precipitation Behaviour of Zirconium Compounds in Zr-Bearing Al-Mg-Si Alloy, Mater Sci Forum. Trans Tech Publ, Switzerland, 2006, p 501–506 Y. Himuro, K. Koyama and Y. Bekki, Precipitation Behaviour of Zirconium Compounds in Zr-Bearing Al-Mg-Si Alloy, Mater Sci Forum. Trans Tech Publ, Switzerland, 2006, p 501–506
15.
go back to reference F. Kahrıman and M. Zeren, Mechanical and Fractographical Characterization of Extruded Al-Mg-Si-Zr Alloys. In MATEC Web Conf., S. Pantelakis and S. Koubias, Eds., 2018, 188, p 02017. F. Kahrıman and M. Zeren, Mechanical and Fractographical Characterization of Extruded Al-Mg-Si-Zr Alloys. In MATEC Web Conf., S. Pantelakis and S. Koubias, Eds., 2018, 188, p 02017.
16.
go back to reference C. Poletti, M. Rodriguez-Hortalá, M. Hauser and C. Sommitsch, Microstructure Development in Hot Deformed AA6082, Mater. Sci. Eng. A, 2011, 528(6), p 2423–2430.CrossRef C. Poletti, M. Rodriguez-Hortalá, M. Hauser and C. Sommitsch, Microstructure Development in Hot Deformed AA6082, Mater. Sci. Eng. A, 2011, 528(6), p 2423–2430.CrossRef
17.
go back to reference S. Liu, J. Chen, W. Chai, Q. Wang, Z. Yang, L. Ye and J. Tang, Effects of Combined Additions of Mn and Zr on Dispersoid Formation and Recrystallization Behavior in Al-Zn-Mg Alloys, Metall. Mater. Trans. A, 2019, 50(10), p 4877–4890.CrossRef S. Liu, J. Chen, W. Chai, Q. Wang, Z. Yang, L. Ye and J. Tang, Effects of Combined Additions of Mn and Zr on Dispersoid Formation and Recrystallization Behavior in Al-Zn-Mg Alloys, Metall. Mater. Trans. A, 2019, 50(10), p 4877–4890.CrossRef
18.
go back to reference A.R. Eivani, H. Ahmed, J. Zhou and J. Duszczyk, An Experimental and Theoretical Investigation of the Formation of Zr-Containing Dispersoids in Al–4.5Zn–1Mg Aluminum Alloy, Mater. Sci. Eng. A, 2010, 527(9), p 2418–2430.CrossRef A.R. Eivani, H. Ahmed, J. Zhou and J. Duszczyk, An Experimental and Theoretical Investigation of the Formation of Zr-Containing Dispersoids in Al–4.5Zn–1Mg Aluminum Alloy, Mater. Sci. Eng. A, 2010, 527(9), p 2418–2430.CrossRef
19.
go back to reference B. Morere, R. Shahani, C. Maurice and J. Driver, The Influence of Al3Zr Dispersoids on the Recrystallization of Hot-Deformed AA 7010 Alloys, Metall. Mater. Trans. A, 2001, 32(3), p 625–632.CrossRef B. Morere, R. Shahani, C. Maurice and J. Driver, The Influence of Al3Zr Dispersoids on the Recrystallization of Hot-Deformed AA 7010 Alloys, Metall. Mater. Trans. A, 2001, 32(3), p 625–632.CrossRef
20.
go back to reference C. Shi and X.-G. Chen, Effect of Zr Addition on Hot Deformation Behavior and Microstructural Evolution of AA7150 Aluminum Alloy, Mater. Sci. Eng. A, 2014, 596, p 183–193.CrossRef C. Shi and X.-G. Chen, Effect of Zr Addition on Hot Deformation Behavior and Microstructural Evolution of AA7150 Aluminum Alloy, Mater. Sci. Eng. A, 2014, 596, p 183–193.CrossRef
21.
go back to reference H. Li, Z. Gao, H. Yin, H. Jiang, X. Su and J. Bin, Effects of Er and Zr Additions on Precipitation and Recrystallization of Pure Aluminum, Scr. Mater., 2013, 68(1), p 59–62.CrossRef H. Li, Z. Gao, H. Yin, H. Jiang, X. Su and J. Bin, Effects of Er and Zr Additions on Precipitation and Recrystallization of Pure Aluminum, Scr. Mater., 2013, 68(1), p 59–62.CrossRef
22.
go back to reference Y. Meng, Z. Zhao and J. Cui, Effect of Minor Zr and Sc on Microstructures and Mechanical Properties of Al–Mg–Si–Cu–Cr–V Alloys, Trans. Nonferrous Met. Soc. China, 2013, 23(7), p 1882–1889.CrossRef Y. Meng, Z. Zhao and J. Cui, Effect of Minor Zr and Sc on Microstructures and Mechanical Properties of Al–Mg–Si–Cu–Cr–V Alloys, Trans. Nonferrous Met. Soc. China, 2013, 23(7), p 1882–1889.CrossRef
23.
go back to reference L. Zou, Q.-L. Pan, Y.-B. He, W.-J. Liang and C.-Z. Wang, Microstructures and Tensile Properties of Al-Zn-Cu-Mg-Zr Alloys Modified with Scandium, Mater. Sci., 2008, 44(1), p 120.CrossRef L. Zou, Q.-L. Pan, Y.-B. He, W.-J. Liang and C.-Z. Wang, Microstructures and Tensile Properties of Al-Zn-Cu-Mg-Zr Alloys Modified with Scandium, Mater. Sci., 2008, 44(1), p 120.CrossRef
24.
go back to reference Y. Birol, Effect of Cr and Zr on the Grain Structure of Extruded EN AW 6082 Alloy, Met. Mater. Int., 2014, 20(4), p 727–732.CrossRef Y. Birol, Effect of Cr and Zr on the Grain Structure of Extruded EN AW 6082 Alloy, Met. Mater. Int., 2014, 20(4), p 727–732.CrossRef
25.
go back to reference J.M. Cowley, Electron Microdiffraction, Advances in Electronics and Electron Physics, Springer Science & Business Media, 1978, p 1–53. J.M. Cowley, Electron Microdiffraction, Advances in Electronics and Electron Physics, Springer Science & Business Media, 1978, p 1–53.
26.
go back to reference F. Wang, D. Qiu, Z.-L. Liu, J.A. Taylor, M.A. Easton and M.-X. Zhang, The Grain Refinement Mechanism of Cast Aluminium by Zirconium, Acta Mater., 2013, 61(15), p 5636–5645.CrossRef F. Wang, D. Qiu, Z.-L. Liu, J.A. Taylor, M.A. Easton and M.-X. Zhang, The Grain Refinement Mechanism of Cast Aluminium by Zirconium, Acta Mater., 2013, 61(15), p 5636–5645.CrossRef
27.
go back to reference E. Clouet, J.M. Sanchez and C. Sigli, First-Principles Study of the Solubility of Zr in Al, Phys. Rev. B, 2002, 65(9), p 094105.CrossRef E. Clouet, J.M. Sanchez and C. Sigli, First-Principles Study of the Solubility of Zr in Al, Phys. Rev. B, 2002, 65(9), p 094105.CrossRef
28.
go back to reference S.N. Samaras and G.N. Haidemenopoulos, Modelling of Microsegregation and Homogenization of 6061 Extrudable Al-Alloy, J. Mater. Process. Technol., 2007, 194(1–3), p 63–73.CrossRef S.N. Samaras and G.N. Haidemenopoulos, Modelling of Microsegregation and Homogenization of 6061 Extrudable Al-Alloy, J. Mater. Process. Technol., 2007, 194(1–3), p 63–73.CrossRef
29.
go back to reference H. Farh, K. Djemmal, R. Guemini and F. Serradj, Nucleation of Dispersoids Study in Some Al-Mg-Si Alloys, Ann. Chim. Sci. des Matériaux, 2010, 35(5), p 283–289.CrossRef H. Farh, K. Djemmal, R. Guemini and F. Serradj, Nucleation of Dispersoids Study in Some Al-Mg-Si Alloys, Ann. Chim. Sci. des Matériaux, 2010, 35(5), p 283–289.CrossRef
30.
go back to reference T. Sato, A. Kamio and G.W. Lorimer, Effects of Si and Ti Additions on the Nucleation and Phase Stability of the L12-Type Al3Zr Phase in Al-Zr Alloys, Mater. Sci. Forum, 1996, 217–222(2), p 895–900.CrossRef T. Sato, A. Kamio and G.W. Lorimer, Effects of Si and Ti Additions on the Nucleation and Phase Stability of the L12-Type Al3Zr Phase in Al-Zr Alloys, Mater. Sci. Forum, 1996, 217–222(2), p 895–900.CrossRef
31.
go back to reference M.R. Rokni, A. Zarei-Hanzaki, A.A. Roostaei and H.R. Abedi, An Investigation into the Hot Deformation Characteristics of 7075 Aluminum Alloy, Mater. Des., 2011, 32(4), p 2339–2344.CrossRef M.R. Rokni, A. Zarei-Hanzaki, A.A. Roostaei and H.R. Abedi, An Investigation into the Hot Deformation Characteristics of 7075 Aluminum Alloy, Mater. Des., 2011, 32(4), p 2339–2344.CrossRef
32.
go back to reference D. Li, D. Zhang, S. Liu, Z. Shan, X. Zhang, Q. Wang and S. Han, Dynamic Recrystallization Behavior of 7085 Aluminum Alloy during Hot Deformation, Trans. Nonferrous Met. Soc. China, 2016, 26(6), p 1491–1497.CrossRef D. Li, D. Zhang, S. Liu, Z. Shan, X. Zhang, Q. Wang and S. Han, Dynamic Recrystallization Behavior of 7085 Aluminum Alloy during Hot Deformation, Trans. Nonferrous Met. Soc. China, 2016, 26(6), p 1491–1497.CrossRef
33.
go back to reference M. Shakiba, N. Parson and X.-G. Chen, Hot Deformation Behavior and Rate-Controlling Mechanism in Dilute Al–Fe–Si Alloys with Minor Additions of Mn and Cu, Mater. Sci. Eng. A, 2015, 636, p 572–581.CrossRef M. Shakiba, N. Parson and X.-G. Chen, Hot Deformation Behavior and Rate-Controlling Mechanism in Dilute Al–Fe–Si Alloys with Minor Additions of Mn and Cu, Mater. Sci. Eng. A, 2015, 636, p 572–581.CrossRef
34.
go back to reference C. Shi and X.-G. Chen, Effect of Vanadium on Hot Deformation and Microstructural Evolution of 7150 Aluminum Alloy, Mater. Sci. Eng. A, 2014, 613, p 91–102.CrossRef C. Shi and X.-G. Chen, Effect of Vanadium on Hot Deformation and Microstructural Evolution of 7150 Aluminum Alloy, Mater. Sci. Eng. A, 2014, 613, p 91–102.CrossRef
35.
go back to reference Z. Jia, G. Hu, B. Forbord and J.K. Solberg, Effect of Homogenization and Alloying Elements on Recrystallization Resistance of Al–Zr–Mn Alloys, Mater. Sci. Eng. A, 2007, 444(1–2), p 284–290.CrossRef Z. Jia, G. Hu, B. Forbord and J.K. Solberg, Effect of Homogenization and Alloying Elements on Recrystallization Resistance of Al–Zr–Mn Alloys, Mater. Sci. Eng. A, 2007, 444(1–2), p 284–290.CrossRef
36.
go back to reference Y. Wu, C. Liu, H. Liao, J. Jiang and A. Ma, Joint Effect of Micro-Sized Si Particles and Nano-Sized Dispersoids on the Flow Behavior and Dynamic Recrystallization of Near-Eutectic Al–Si Based alloys during Hot Compression, J. Alloys Compd., 2021, 856, p 158072.CrossRef Y. Wu, C. Liu, H. Liao, J. Jiang and A. Ma, Joint Effect of Micro-Sized Si Particles and Nano-Sized Dispersoids on the Flow Behavior and Dynamic Recrystallization of Near-Eutectic Al–Si Based alloys during Hot Compression, J. Alloys Compd., 2021, 856, p 158072.CrossRef
37.
go back to reference J. Lai, C. Shi and X.-G. Chen, Effects of V Addition on Recrystallization Resistance of 7150 Aluminum Alloy after Simulative Hot Deformation, Mater. Charact., 2014, 96, p 126–134.CrossRef J. Lai, C. Shi and X.-G. Chen, Effects of V Addition on Recrystallization Resistance of 7150 Aluminum Alloy after Simulative Hot Deformation, Mater. Charact., 2014, 96, p 126–134.CrossRef
Metadata
Title
Evolution of Zr-Bearing Dispersoids during Homogenization and Their Effects on Hot Deformation and Recrystallization Resistance in Al-0.8%Mg-1.0%Si Alloy
Authors
A. Elasheri
E. M. Elgallad
N. Parson
X.-G. Chen
Publication date
01-06-2021
Publisher
Springer US
Published in
Journal of Materials Engineering and Performance / Issue 10/2021
Print ISSN: 1059-9495
Electronic ISSN: 1544-1024
DOI
https://doi.org/10.1007/s11665-021-05917-8

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