Publication Cover
Materials Technology
Advanced Performance Materials
Volume 39, 2024 - Issue 1
258
Views
0
CrossRef citations to date
0
Altmetric
Research Article

Understanding the weakening of texture in multiaxial forged ultrafine-grained strong and ductile Mg-2Zn-2Gd alloy

Article: 2321411 | Received 07 Feb 2024, Accepted 16 Feb 2024, Published online: 25 Feb 2024

References

  • Moreno IP, Nandy TK, Jones JW, et al. Microstructural characterization of a die-cast magnesium-rare earth alloy. Scripta Materialia. 2001;45(12):1423–6. doi: 10.1016/S1359-6462(01)01179-4
  • Tsuji N, Saito Y, Utsunomiya H, et al. Ultra-fine grained bulk steel produced by accumulative roll-bonding (ARB) process. Scripta Materialia. 1999;40(7):795–800. doi: 10.1016/S1359-6462(99)00015-9
  • Maier HJ, Gabor P, Gupta N, et al. Cyclic stress–strain response of ultrafine grained copper. Int J Fatigue. 2006;28(3):243–250. doi: 10.1016/j.ijfatigue.2005.05.004
  • Griffiths D. Explaining texture weakening and improved formability in magnesium rare earth alloys. Mater Sci Technol. 2015;31(1):10. doi: 10.1179/1743284714Y.0000000632
  • Polmear IJ. Light alloys: metallurgy of the light metals. Oxford, UK and Burlington, MA: Butterworth Heinemann; 1989.
  • Misra RDK. Strong and ductile texture-free ultrafine-grained magnesium alloy via three-axial forging. Materials Letters. 2023;31:133443. doi: 10.1016/j.matlet.2022.133443
  • Misra RDK. Enabling manufacturing of multi-axial forging-induced ultrafine-grained strong and ductile magnesium alloys: a perspective of process-structure-property paradigm. Mater Technol. 2023;38(1):2189769. doi: 10.1080/10667857.2023.2189769
  • Weaver MR, Maldonado AJ, Banuelos JL, et al. On precipitation hardening behaviour in a triaxial forged mg-2Zn-2Gd alloy and relationship to mechanical properties. Mater Technol. 2023;38(1):2215038. doi: 10.1080/10667857.2023.2215038
  • Trivedi P, Nune KC, Misra RDK. Grain refinement to submicron regime in multiaxial forged Mg-2Zn-2Gd alloy and relationship to mechanical properties. Mater Sci Eng A. 2016;668:59–65. doi: 10.1016/j.msea.2016.05.050
  • Li K, Injeti VSY, Trivedi P, et al. Nanoscale deformation of multiaxially forged ultrafine-grained Mg-2Zn-2Gd alloy with high strength-high ductility combination and comparison with the coarse-grained counterpart. J Mater Sci Technol. 2018;34(2):311–316. doi: 10.1016/j.jmst.2017.07.023
  • Guo L, Su X, Dai L, et al. Strain ageing embrittlement behaviour of X80 self-shielded flux-cored girth weld metal. Mater Technol Adv Perform Mater. 2023;38(1):2164978. doi: 10.1080/10667857.2023.2164978
  • Yang C, Xu H, Wang Y, et al. Hot tearing analysis and process optimisation of the fire face of al-cu alloy cylinder head based on MAGMA numerical simulation. Mater Technol Adv Perform Mater. 2023;38(1):2165245. doi: 10.1080/10667857.2023.2165245
  • Li Q, Zuo H, Feng J, et al. Strain rate and temperature sensitivity on the flow behaviour of a duplex stainless steel during hot deformation. Mater Technol Adv Perform Mater. 2023;38(1):2166216. doi: 10.1080/10667857.2023.2166216
  • Li SF, Misra RDK, Liu ZQ. Towards strength-ductility synergy in nanosheets strengthened titanium matrix composites through laser power bed fusion of MXene/Ti composite powder. Mater Technol Adv Perform Mater. 2023;38(1):2181680. doi: 10.1080/10667857.2023.2181680
  • Niu G, Zurpb H, Guyuen M, et al. Superior fracture toughness in a high-strength austenitic steel with heterogeneous lamellar microstructure. Acta Materialia. 2022;226:117462. doi: 10.1016/j.actamat.2022.117642
  • Misra RDK, Challa VSA, Injeti YS. Phase reversion-induced nanostructured austenitic alloys: an overview. Mater Technol Adv Perform Mater. 2022;37(7):437–449. doi: 10.1080/10667857.2022.2065621
  • Wang Y, Huang JC. Texture analysis in hexagonal materials. Materials Chemistry & Physics. 2003;81(1):11–26. doi: 10.1016/S0254-0584(03)00168-8
  • Agnew SR, Nie J. Preface to the viewpoint set on: the current state of magnesium alloy science and technology. Scripta Materialia. 2010;63(7):671–673. doi: 10.1016/j.scriptamat.2010.06.029
  • Bohlen J, Nurnberg MR, Senn JW, et al. The texture and anisotropy of magnesium–zinc–rare earth alloy sheets. Acta Materialia. 2007;55(6):2101–2112. doi: 10.1016/j.actamat.2006.11.013
  • Stanford N, Atwell D, Beer A, et al. Effect of microalloying with rare-earth elements on the texture of extruded magnesium-based alloys. Scripta Materialia. 2008;59(7):772–775. doi: 10.1016/j.scriptamat.2008.06.008
  • Al-Samman T, Li X. Sheet texture modification in magnesium-based alloys by selective rare earth alloying. Mater Sci Eng A. 2011;528(10–11):3809–3822. doi: 10.1016/j.msea.2011.01.080
  • Agnew SR, Duygulu O. Plastic anisotropy and the role of non-basal slip in magnesium alloy AZ31B. Int J Plast. 2005;21(6):1161–1193. doi: 10.1016/j.ijplas.2004.05.018
  • Farzadfar A, Martin E, Sanjari M, et al. On the deformation, recrystallization and texture of hot-rolled Mg–2.9Y and Mg–2.9Zn solid solution alloys—A comparative study. Mater Sci Eng A. 2012;534:209–219. doi: 10.1016/j.msea.2011.11.061
  • Hantzsche K, Bohlen J, Wendt J, et al. Effect of rare earth additions on microstructure and texture development of magnesium alloy sheets. Scripta Materialia. 2010;63(7):725–730. doi: 10.1016/j.scriptamat.2009.12.033
  • Stanford N. Micro-alloying mg with Y, ce, Gd and La for texture modification—A comparative study. Mater Sci Eng A. 2010;527(10–11):2669–2677. doi: 10.1016/j.msea.2009.12.036
  • Hadorn J, Hantzsche K, Yi S, et al. Role of solute in the texture modification during hot deformation of mg-rare earth alloys. Metall Mater Trans A. 2012;43(4):1347–1362. doi: 10.1007/s11661-011-0923-5
  • Stanford N. The effect of rare earth elements on the behaviour of magnesium-based alloys: part 2 – recrystallisation and texture development. Mater Sci Eng A. 2013;565:469–475. doi: 10.1016/j.msea.2012.10.084
  • Farzadfar SA, Martin E, Sanjari M, et al. Texture weakening and static recrystallization in rolled Mg–2.9Y and Mg–2.9Zn solid solution alloys. J Mater Sci. 2012;47(14):5488. doi: 10.1007/s10853-012-6440-0
  • Cottam R, Robson J, Lorimer G, et al. Dynamic recrystallization of mg and mg–Y alloys: crystallographic texture development. Mater Sci Eng A. 2008;485(1–2):375–382. doi: 10.1016/j.msea.2007.08.016
  • Stanford N, Barnett MR. Effect of composition on the texture and deformation behaviour of wrought mg alloys. Scripta Materialia. 2008;58(3):179–182. doi: 10.1016/j.scriptamat.2007.09.054
  • Humphreys FJ, Hatherly M. Recrystallization and related annealing phenomena. Oxford: Elsevier; 1995.
  • Galiyev A, Kaibyshev R, Gottstein G. Correlation of plastic deformation and dynamic recrystallization in magnesium alloy ZK60. Acta Materialia. 2001;49(7):1199–1207. doi: 10.1016/S1359-6454(01)00020-9
  • Ion S, Humphreys FJ, White S. Dynamic recrystallisation and the development of microstructure during the high temperature deformation of magnesium. Acta Metall. 1982;30(10):1909–1919. doi: 10.1016/0001-6160(82)90031-1