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Part B: Condensed Matter Physics

On the intermetallic constituents in the sodium-induced edge cracking of hot-rolled AA5182 aluminum alloys

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Pages 1849-1870 | Received 12 Feb 2021, Accepted 25 May 2021, Published online: 14 Jun 2021

References

  • J. Hirsch, Recent development in aluminium for automotive applications. Trans. Nonferrous Met. Soc. China (English Ed.) 24 (2014), pp. 1995–2002.
  • W.S. Miller, L. Zhuang, J. Bottema, A.J. Wittebrood, P. De Smet, A. Haszler, et al., Recent development in aluminium alloys for the automotive industry. Mater. Sci. Eng. A 280 (2000), pp. 37–49.
  • J. Hirsch, Aluminium in innovative light-weight Car design. Mater. Trans 52 (2011), pp. 818–824.
  • P. Thomson and N. Burman, Edge cracking in hot-rolled Al-Mg alloys. Mater. Sci. Eng 45 (1980), pp. 95–107.
  • N.M. Burman and P.F. Thomson, Edge cracking and profile of hot rolled aluminum slabs. J. Mech. Work. Technol 13 (1986), pp. 205–217.
  • H. Riedel, F. Andrieux, T. Walde and K. Karhausen, The formation of edge cracks during rolling of metal sheet. Steel Res. Int 78 (2007), pp. 818–824.
  • D.G. Eskin and L. Katgerman, Macrosegregation mechanisms in direct-chill casting of aluminium alloys. Mater. Sci. Forum 630 (2010), pp. 193–199.
  • R. Nadella, D.G. Eskin, Q. Du and L. Katgerman, Macrosegregation in direct-chill casting of aluminium alloys. Prog. Mater. Sci 53 (2008), pp. 421–480.
  • J.F. Grandfield and P.T. McGlade, DC casting of aluminium: process behaviour and technology. Mater. Forum 20 (1996), pp. 29–51.
  • N. Bayat and T. Carlberg, Surface structure formation in direct chill (DC) casting of al alloys. Jom 66 (2014), pp. 700–710.
  • C.E. Ransley and D.E.J. Talbot, The embrittlement of aluminium magnesium alloys by sodium. J. Inst. Met 88 (1959), pp. 150–158.
  • G.H. Lu, Y. Zhang, S. Deng, T. Wang, M. Kohyama, R. Yamamoto, et al., Origin of intergranular embrittlement of Al alloys induced by Na and Ca segregation: grain boundary weakening. Phys. Rev. B - Condens. Matter Mater. Phys 73 (2006), pp. 1–5.
  • H. Yamada, K. Horikawa and H. Kobayashi, Effect of trace sodium on high temperature embrittlement in quasi-static and impact deformation of Al–5 mass% Mg alloys. J. Japan Inst. Light Met 60 (2010), pp. 31–35.
  • S. Zhang, O.Y. Kontsevoi, A.J. Freeman and G.B. Olson, Sodium-induced embrittlement of an aluminum grain boundary. Phys. Rev. B - Condens. Matter Mater. Phys 82 (2010), pp. 224107-1-224107-16. doi:10.1103/PhysRevB.82.224107.
  • S. Zhang, O.Y. Kontsevoi, A.J. Freeman and G.B. Olson, Aluminum grain boundary decohesion by dense sodium segregation. Phys. Rev. B - Condens. Matter Mater. Phys 85 (2012), pp. 1–8.
  • K. Horikawa, S. Kuramoto and M. Kanno, Intergranular fracture caused by trace impurities in an Al–5.5 mol % Mg alloy. Acta Mater. 49 (2001), pp. 3981–3989.
  • S.P. Lynch, Comments on intergranular fracture caused by trace impurities in an Al-5.5 mol% Mg alloy. Acta Mater. 47 (2002), pp. 125–129.
  • C.J. Simensen and U. Södervall, Investigation of trace elements in an Al-4.8 wt.% Mg-0.3 wt.% Mn alloy. Surf. Interface Anal. 30 (2000), pp. 309–314.
  • S. Zhang, Q. Han and Z.K. Liu, Fundamental understanding of Na-induced high temperature embrittlement in Al-Mg alloys. Philos. Mag 87 (2007), pp. 147–157.
  • H. Hosokawa, H. Iwasaki, T. Mori, M. Mabuchi, T. Tagata and K. Higashi, Effects of Si on deformation behavior and cavitation of coarse-grained Al-4.5Mg alloys exhibiting large elongation. Acta Mater. 47 (1999), pp. 1859–1867.
  • O. Engler and S. Miller-Jupp, Control of second-phase particles in the Al-Mg-Mn alloy AA 5083. J. Alloys Compd 689 (2016), pp. 998–1010.
  • O. Engler and J. Hirsch, Control of recrystallisation texture and texture-related properties in industrial production of aluminium sheet. Int. J. Mat. Res 100 (2009), pp. 564–575.
  • Y.J. Li and L. Arnberg, A eutectoid phase transformation for the primary intermetallic particle from Alm(Fe,Mn) to Al3(Fe,Mn) in AA5182 alloy. Acta Mater. 52 (2004), pp. 2945–2952.
  • Y.J. Li and L. Arnberg, Solidification structures and phase selection of iron-bearing eutectic particles in a DC-cast AA5182 alloy. Acta Mater. 52 (2004), pp. 2673–2681.
  • G. Yi, B. Sun, J.D. Poplawsky, Y. Zhu and M.L. Free, Investigation of pre-existing particles in Al 5083 alloys. J. Alloys Compd 740 (2018), pp. 461–469.
  • A. Poznak, D. Freiberg and P. Sanders, Automotive Wrought Aluminium Alloys, In the book: Fundamentals of Aluminium Metallurgy, Woodhead Publishing Series in Metals and Surface Engineering, 2018, pp. 333-386. doi:10.1016/B978-0-08-102063-0.00010-2.
  • M.A. Moustafa, F.H. Samuel and H.W. Doty, Effect of solution heat treatment and additives on the microstructure of Al-Si (A413.1) automotive alloys. J. Mater. Sci 38 (2003), pp. 4507–4522.
  • T. Radetić, M. Popović and E. Romhanji, Microstructure evolution of a modified AA5083 aluminum alloy during a multistage homogenization treatment. Mater. Charact 65 (2012), pp. 16–27.
  • L.S. Bayoumi, Edge stresses in wide strip hot rolling. Int. J. Mech. Sci 39 (1997), pp. 397–408.

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