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Original Article

Material properties of long term naturally aged die cast Al–Si–Cu alloys

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Pages 286-298 | Received 23 Dec 2009, Accepted 10 Jan 2011, Published online: 12 Nov 2013

References

  • Mae H, Teng X, Bai Y, Wiezbicki T: ‘Comparison of ductile fracture properties of aluminum castings: sand mold vs. metal mold’, Int. J. Solids Struct., 2008, 45, 1430–1444.
  • Callister WD: ‘Materials science and engineering’, 7th edn, 403–405; 2007, New York, John Wiley & Sons, Inc.
  • Sigworth GK, Howell J, Rios O, Kaufman MJ: ‘Heat treatment of natural aging aluminum casting alloys’, Int. J. Cast Met. Res., 2006, 19, 123–129.
  • Kojima Y, Takahashi T, Kubo M, Morinaga T: ‘Decrease of ductility in Al–10 Pct Mg alloys during long-term natural aging’, Metall. Trans. A, 1981, 12A, 1113–1117.
  • Zhen L, Kang SB, Kim HW: ‘Effect of natural aging and presaging on subsequent precipitation process of an Al–Mg–Si alloy with high excess silicon’, Mater. Sci. Technol., 1997, 13, 905–910.
  • Quainoo GK, Yannacopoulos S: ‘The effect of prestrain on the natural aging and fracture behaviour of AA6111 aluminum’, J. Mater. Sci., 2004, 39, 4841–4847.
  • Janudom S, Rattanochaikul T, Burapa R, Wisutmethangoon S, Wannasin J: ‘Feasibility of semi-solid die casting of ADC12 aluminum alloy’, Trans. Nonferrous Met. Soc. China, 2010, 20, 1756–1762.
  • Berruti T, Ubertalli G: ‘Influence of cutting parameters on residual stresses induced by milling in pressure die-cast aluminum alloy components’, ASME J. Manuf. Sci. Eng., 2001, 123, 547–551.
  • Dutta I, Bourell DL: ‘A theoretical and experimental study of aluminum alloy 6061-SiC metal matrix composite to identify the operative mechanism for accelerated aging’, Mater. Sci. Eng. A, 1989, A112, 67–77.
  • Isobe T: ‘Study of mechanical properties of aluminum alloy diecast products’, 82, 97; 1997, Tokyo, Japan Diecast Association.
  • Randle V: ‘Microtexture determination and its applications’, 2nd edn; 2003, London, Maney.
  • ‘Annual book of ASTM standards’, Vol. 03.01, 497–529, ASTM E399, American Society for Testing and Materials, West Conshohocken, PA, USA, 2008.
  • Lee CD: ‘Variability in the tensile properties of squeeze-cast Al–Si–Cu–Mg alloy’, Mater. Sci. Eng. A, 2008, A488, 296–302.
  • Egashira H, Niinomi M, Kobayashi T, Kohmura S: ‘Effects of metallurgical factors on the fatigue crack propagation characteristics in high-purity Al–Si casting alloys’, J. Light Met., 1989, 39, 878–885.
  • Puchi-Cabrera ES, Staia MH, Quinto DT, Villalobos-Gutiérres C, Ochoa-Pérez E: ‘Fatigue properties of a SAE4340 steel coated with TiCN by PAPVD’, Int. J. Fatigue, 2007, 29, 471–480.
  • Hertzberg RW: ‘Deformation and fracture mechanics of engineering materials’, 4th edn, 563, 246–247; 1996, New York, John Wiley & Sons, Inc.
  • Sadeler R: ‘Effect of a commercial hard anodizing on the fatigue property of a 2014-T6 aluminum alloy’, J. Mater. Sci., 2006, 41, 5803–5809.
  • Kumai S, Hu J, Higo Y, Nunomura S: ‘Effects of dendrite cell size and particle distribution on the near-threshold fatigue crack growth behaviour of cast Al–SiCp composites’, Acta Mater., 1996, 44, 2249–2257.
  • Suresh S: ‘Fatigue of materials’, 1st edn, 505–506; 1991, Cambridge, Cambridge University Press.
  • Kanazawa K, Kubota H, Nakamura K, Hirano K: ‘Fracture toughness and fatigue crack growth characteristics of aluminum alloy die castings’, Trans. J. Soc. Mech. Eng., 1996, 62, 379–386.
  • Yu Y, Kim S, Lee Y, Lee J: ‘Phenomenological observations on mechanical and corrosion properties of thixoformed 357 alloys: a comparison with permanent mold cast 357 alloys’, Metall. Mater. Trans. A, 2002, 33A, 1399–1412.
  • Okayasu M, Wang Z, Chen D: ‘Experimental study of the effect of loading condition on fracture surface contact features and crack closure behavior in a carbon steel’, Eng. Fract. Mech., 2006, 73, 1117–1132.
  • Callister WD: ‘Materials science and engineering’, 7th edn, 404–405; 2007, New York, John Wiley & Sons, Inc.
  • Murayama M, Hono K: ‘Pre-precipitate clusters and precipitation processes in Al–Mg–Si alloys’, Acta Mater., 1999, 47, 1537–1548.
  • Hertzberg RW: ‘Deformation and fracture mechanics of engineering materials’, 4th edn, 137–148; 1996, New York, John Wiley & Sons, Inc.
  • Kobayashi T, Ito T, Kim H, Kitaoka S: ‘Fatigue properties and microstructure of Al–Si–Cu system casting alloys’, J. Light Met., 1996, 46, 437–443.
  • Li JCM: ‘Possibility of subgrain rotation during recrystallization’, J. Appl. Phys., 1962, 33, 2958–2965.

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