388
Views
1
CrossRef citations to date
0
Altmetric
Research Article

Synthesis of graphene–aluminium matrix nanocomposites: mechanical and tribological properties

&
Pages 467-477 | Received 02 Feb 2021, Accepted 08 Apr 2021, Published online: 23 Apr 2021

References

  • Suthar J, Patel KM. Processing issues, machining, and applications of aluminum metal matrix composites. Mater Manuf Process. 2018;33(5):499–527.
  • Gao X, Yue H, Guo E, et al. Preparation and tribological properties of homogeneously dispersed graphene-reinforced aluminium matrix composites. Mater Sci Technol. 2018;34(11):1316–1322.
  • Turan ME, Aydin F. Improved elevated temperature mechanical properties of graphene-reinforced pure aluminium matrix composites. Mater Sci Technol. 2020;36(10):1092–1103.
  • Chak V, Chattopadhyay H, Dora TL. A review on fabrication methods, reinforcements and mechanical properties of aluminum matrix composites. J Manuf Process. 2020;56:1059–1074.
  • Agarwal J, Sahoo S, Mohanty S, et al. Progress of novel techniques for lightweight automobile applications through innovative eco-friendly composite materials: a review. J Thermoplastic Compos Mater. 2020;33(7):978–1013.
  • Tekkaya AE, Khalifa NB, Grzancic G, et al. Forming of lightweight metal components: need for new technologies. Procedia Eng. 2014;81:28–37.
  • Zhang X, Chen Y, Hu J. Recent advances in the development of aerospace materials. Prog Aerosp Sci. 2018;97:22–34.
  • Rawal SP. Metal-matrix composites for space applications. JOM. 2001;53(4):14–17.
  • Vartak DA, Satyanarayana B, Munjal BS, et al. Potential applications of advanced nanocomposite materials for space payload. Australian J Mech Eng. 2020:1–9. https://doi.org/10.1080/14484846.2020.1733176.
  • Camargo PH, Satyanarayana KG, Wypych F. Nanocomposites: synthesis, structure, properties and new application opportunities. Mater Res. 2009;12(1):1–39.
  • Sharma P, Sharma S, Khanduja D. A study on microstructure of aluminium matrix composites. J Asian Ceram Soc. 2015;3(3):240–244.
  • Christy TV, Murugan N, Kumar SA. A comparative study on the microstructures and mechanical properties of Al 6061 alloy and the MMC Al 6061/TiB2/12p. J Miner Mater Charact Eng. 2010;9(1):57–65.
  • Naher S, Brabazon D, Looney L. Simulation of the stir casting process. J Mater Process Technol. 2003;143–144:567–571.
  • Sajjadi SA, Ezatpour HR, Parizi MT. Comparison of microstructure and mechanical properties of A356 aluminum alloy/Al2O3 composites fabricated by stir and compo-casting processes. Mater Des. 2012;34:106–111.
  • Hashim J, Looney L, Hashmi MS. Metal matrix composites: production by the stir casting method. J Mater Process Technol. 1999;92–93:1–7.
  • Manivannan A, Sasikumar R. Exemplary encapsulate feeding in stir casting for quality composites. Mater Manuf Process. 2019;34(6):689–694.
  • Lu Y, Li J, Yang J, et al. The fabrication and properties of the squeeze-cast tin/Al composites. Mater Manuf Process. 2016;31(10):1306–1310.
  • Asano K. Thermal conductivity and mechanical properties of pitch-based carbon fibre reinforced aluminium composites fabricated by squeeze casting. Int J Cast Met Res. 2018;31(1):29–36.
  • Li M, Gao H, Liang J, et al. Microstructure evolution and properties of graphene nanoplatelets reinforced aluminum matrix composites. Mater Charact. 2018;140:172–178.
  • Narayan S, Rajeshkannan A. Workability behavior of powder metallurgy carbide reinforced aluminum composites during hot forging. Mater Manuf Process. 2015;30(10):1196–1201.
  • Şenel MC, Gürbüz M, Koç E. Mechanical and tribological behaviors of aluminium matrix composites reinforced by graphene nanoplatelets. Mater Sci Technol. 2018;34(16):1980–1989.
  • Bharti S, Ghetiya ND, Patel KM. A review on manufacturing the surface composites by friction stir processing. Mater Manuf Process. 2021;36(2):135–70. https://doi.org/10.1080/10426914.2020.1813897.
  • Boostani AF, Tahamtan S, Jiang ZY, et al. Enhanced tensile properties of aluminium matrix composites reinforced with graphene encapsulated SiC nanoparticles. Compos Part A Appl Sci Manuf. 2015;68:155–163.
  • Prabu SB, Karunamoorthy L, Kathiresan S, et al. Influence of stirring speed and stirring time on distribution of particles in cast metal matrix composite. J Mater Process Technol. 2006;171(2):268–273.
  • Aybarc U, Yavuz H, Dispinar D, et al. The use of stirring methods for the production of SiC-reinforced aluminum matrix composite and validation via simulation studies. Int J Met. 2019;13(1):190–200.
  • Chak V, Chattopadhyay H. Fabrication and heat treatment of graphene nanoplatelets reinforced aluminium nanocomposites. Mater Sci Eng A. 2020;791:139657.
  • Tee K, Lu L, Lai MO. In situ processing of Al–TiB2 composite by the stir-casting technique. J Mater Process Technol. 1999;89–90:513–519.
  • Boostani AF, Yazdani S, Mousavian RT, et al. Strengthening mechanisms of graphene sheets in aluminium matrix nanocomposites. Mater Des. 2015;88:983–989.
  • Shin SE, Choi HJ, Shin JH. Strengthening behavior of few-layered graphene/aluminum composites. Carbon. 2015;82:143–151.
  • Khodabakhshi F, Nosko M, Gerlich AP. Effects of graphene nanoplatelets (GNPs) on the microstructural characteristics and textural development of an Al-Mg alloy during friction-stir processing. Surf Coat Technol. 2018;335:288–305.
  • Naseer A, Ahmad F, Aslam M, et al. A review of processing techniques for graphene-reinforced metal matrix composites. Mater Manuf Process. 2019;34(9):957–985.
  • Moghadam AD, Omrani E, Menezes PL, et al. Mechanical and tribological properties of self-lubricating metal matrix nanocomposites reinforced by carbon nanotubes (CNTs) and graphene – a review. Compos Eng. 2015;77:402–420.
  • Tabandeh-Khorshid M, Omrani E, Menezes PL. Tribological performance of self-lubricating aluminum matrix nanocomposites: role of graphene nanoplatelets. Eng Sci Technol Int J. 2016;19(1):463–469.
  • Geim AK, Novoselov KS. (2007). The rise of graphene. Nature Mater.; 6:183–191. https://doi.org/10.1038/nmat1849.
  • Pérez-Bustamante R, Bolaños-Morales D, Bonilla-Martínez J, et al. Microstructural and hardness behavior of graphene-nanoplatelets/aluminum composites synthesized by mechanical alloying. J Alloy Compd. 2014;615:S578–S582.
  • Khodabakhshi F, Arab SM, Švec P, et al. Fabrication of a new Al-Mg/graphene nanocomposite by multi-pass friction-stir processing: dispersion, microstructure, stability, and strengthening. Mater Charact. 2017;132:92–107.
  • Wang J, Li Z, Fan G. Reinforcement with graphene nanosheets in aluminum matrix composites. Scr Mater. 2012;66(8):594–597.
  • Li W, Liu Y, Wu G. Preparation of graphite flakes/Al with preferred orientation and high thermal conductivity by squeeze casting. Carbon. 2015;95:545–551.
  • Tjong SC. Recent progress in the development and properties of novel metal matrix nanocomposites reinforced with carbon nanotubes and graphene nanosheets. Mater Sci Eng R. 2013;74(10):281–350.
  • Archard JF. Contact and rubbing of flat surfaces. J Appl Phys. 1953;24(8):981–988.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.