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Research Article

Development of cast aluminium alloys for plastic moulding

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Pages 121-129 | Received 13 Dec 2021, Accepted 15 Aug 2022, Published online: 18 Aug 2022

References

  • Romero de la Mora MA. Rotational molding method and apparatus. US 9,533,435 B2, 2017.
  • García-García G, Espinoza-Cuadra J, Mancha-Molinar H. Cooper content and cooling rate effects over second phase particles behavior in industrial aluminum-silicon alloy 319. Mat Des. 2007;28:428–433.
  • Sjolander E, Seifeddine S. Artificial ageing of Al-Si-Cu-Mg casting alloys. Mat Sci Eng. 2011;528:7402–7409.
  • Spinelli JE, Cheung N, Goulart PR, et al. Design of mechanical properties of Al-alloys chill castings based on the metal/mold interfacial heat transfer coefficient. Int J Therm Sci. 2012;51:145–154.
  • Dons AL, Heiberg G, Voje J, et al. On the effect of additions of Cu and Mg on the ductility of AlSi foundry alloys cast with a cooling rate of approximately 3 K/s. The effects of cooling rate and heat treatment on mechanical and thermal characteristics of Al-Si-Cu-Mg foundry alloys. Mat Sci Eng A. 2005;413-414:561–566.
  • Aksoz S, Ocak Y, Marasli N, et al. Dependency of the thermal and electrical conductivity on the temperature and composition of Cu in the Al based Al-Cu alloys. Exp Therm Fluid Sci. 2010;34:1507–1516.
  • Choi SW, Kim YM, Lee KM, et al. The effects of cooling rate and heat treatment on mechanical and thermal characteristics of Al-Si-Cu-Mg foundry alloys. J Alloys Comp. 2014;617:654–659.
  • Sjolander E, Seifeddine S. Optimisation of solution treatment of cast Al-Si-Cu alloys. Mat Des. 2010;31:S44–S49.
  • Yang Y, Yu K, Li Y, et al. Evolution of nickel-rich phases in Al-Si-Cu-Ni-Mg piston alloys with different Cu additions. Mat Des. 2012;33:220–225.
  • Farkoosh AR, Javidani M, Hoseini M, et al. Phase formation in as-solidified and heat-treated Al-Si-Cu-Mg-Ni alloys: thermodynamic assessment and experimental investigation for alloys design. J Alloys Comp. 2013;551:596–606.
  • Stadler F, Antrekowitsch H, Fragner W, et al. The effect of main alloying elements on the physical properties of Al-Si foundry alloys. Mat Sci Eng A. 2013;560:481–491.
  • Mohamed AMA, Samuel FH, Al Kahtani S. Microstructure, tensile properties and fracture behavior of high temperature Al-Si-Mg-Cu cast alloys. Mat Sci Eng A. 2013;577:64–72.
  • Malgorzata W. Chemical composition of the Ni-containing intermetallic phases in the multicomponent Al alloys. J Alloys Comp. 2014;604:245–252.
  • Esmeralda AG, Arenas-García H, Rodríguez AF, et al. Thermal diffusivity of Al-Si cast alloys for internal combustion engines. Thermoch Acta. 2019;675:172–179.
  • Esmeralda AG, Rodríguez AF, Talamantes-Silva J, et al. Thermal diffusivity of cast Al-Cu alloys. Thermoch Acta. 2020;683:178444.
  • Argo D, Gruzleski JE. Porosity in modified aluminum alloy castings. Trans AFS. 1988;96:65–74.
  • Abdollahi A. Effect of Ca as a modifier in hypoeutectic Al-Si alloys. M. Eng. Thesis, McGill University, 1998.
  • Bruna M, Sládek A, Kucharcik L. Formation of porosity in Al-Si alloys. Arch Found Eng. 2012;12:5–8.
  • Canales AA, Talamantes-Silva J, Gloria D, et al. Thermal analysis during the solidification of cast Al-Si alloys. Therm Acta. 2010;510:82–87. http://www.sentesoftware.co.uk/jmatpro.aspxZ
  • Vander Voort G. Introduction to quantitative metallography. Lake Bluff IL: Buelher; 1997. Tech-notes1 (5).
  • Lide DR, Ed. CRC handbook of chemistry and physics. 90th ed. Boca Raton Florida: CRC Press; 2009.
  • Parker WJ, Jenkins RJ, Butler CP, et al. Flash method of determining thermal diffusivity, heat capacity, and thermal conductivity. J Appl Phys. 1961;32:1679–1684.
  • Baba T, Ono A. Improvement of the laser flash method to reduce uncertainty in thermal diffusivity measurements. Meas Sci Technol. 2001;12:2046–2057.
  • Akoshima M, Hay B, Grelard M. Experimental verification to obtain intrinsic thermal diffusivity by laser-flash method. Int J Thermophys. 2013;34:778–791.
  • Gunderson AW. Elevated temperature mechanical properties of two cast aluminum alloys. Air Force Materials Lab Wright-Patterson AFB OH. 1969: AFML-TR-69-100
  • Robinson JS, Cudd RL, Evans JT. Creep resistant aluminium alloys and their applications Mat. Sci Techn. 2003;19:143–155.
  • Vázquez-López C, Calderón A, Rodríguez ME, et al. Influence of dendrite arm spacing on the thermal conductivity of an aluminum-silicon casting alloy. J Mat Res. 2000;15:85–91.

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