37
Views
0
CrossRef citations to date
0
Altmetric
Research Article

Response surface methodology based evaluation of S-glass fibre composite reinforced with aluminium oxide/pearlite hybrid nano particles

, ORCID Icon &
Pages 438-452 | Accepted 08 Feb 2023, Published online: 19 Feb 2023

References

  • Soutis CA. Fiber-reinforced composites in aircraft construction. Prog Aerosp Sci. 2005;41:143–151.
  • Qeshta IMI, Shafigh P, Zamin M, et al. The use of wire mesh – epoxy composite for enhancing the flexural performance of concrete beams. J Mater Des. 2014;60:250–259.
  • Chavhan GR, Chilbule PV, Burande SW, et al. Manufacturing and analysis of mono leaf spring using composite. Glob J Eng Sci. 2018;5:285–290.
  • Burande SW, Chavhan GR, Dhole LP. Analysis of leaf springs in light automotive vehicles by experimental and finite element. Int J Adv Eng Res Sci. 2014;4:15–16.
  • Feraboli P, Masini A. Development of carbon/epoxy structural components for a high-performance vehicle, Compos. B Eng. 2004;35:323–330.
  • Chavhan GR, Wankhade LN. Improvement of the mechanical properties of hybrid composites prepared by fibers, fiber metals, and nano-filler particles – a review. Mater Today Proc. 2020;27(1):72–82.
  • Kiran MD, Govindaraju HK, Jayaraju T. Evaluation of mechanical properties of glass fiber reinforced epoxy polymer composites with alumina, titanium dioxide, and silicon carbide fillers. Mater Today Proc. 2018;5(3):22355–22361.
  • Soundhar A, Rajesh M, Jayakrishna K, et al. Investigation on mechanical properties of polyurethane hybrid nanocomposite foams reinforced with roselle fibers and silica nanoparticles. Nanocomposites. 2019;5(1):1–12.
  • Rasana N, Jayanarayanan K, Ramachandran KI. Experimental, analytical, and finite element studies on nano (MWCNT) and hybrid (MWCNT/glass fiber) filler reinforced polypropylene composites. Iran Polym J. 2020;29:1071–1085.
  • Guru Mahesh G, Jayakrishna K. Evaluation of mechanical properties of nano filled glass fiber reinforced composites. Mater Today Proc. 2020;22(4):3305–3311.
  • Nayak R, Mahato Routara KK, Chandra Ray B. Evaluation of mechanical properties of Al2O3 and TiO2 nano filled enhanced glass fiber reinforced polymer composites. J Appl Polym Sci. 2016;133. DOI:10.1002/app.44274
  • Weiwen L, Chunyang J, Zhu H, et al. Experimental investigation on the durability of glass fiber-reinforced polymer composites containing nanocomposite. J Nanomater. 2013;2013:1–11.
  • Atmakuri A, Palevicius A, Andrius vilkauskas and giedrius janusas. Review of hybrid fiber-based composites with nanoparticles— Material Properties and applications, natural fibres and their composites II, Polymers, 2020;12(9),2088.
  • Mohapatra S, Mantry S, Singh SK. Performance evaluation of glass-Epoxy-TiC hybrid composites using design of experiment. J Compos Sci. 2014;2014:1–9.
  • Thipperudrappa S, Ullal Kini A, Hiremat A. An experimental study to evaluate the effect of TiO2 nanoparticles on the strength and stability of unidirectional glass fiber reinforced epoxy composites. Mater Res Express. 2019;6:115347.
  • Ferreira FV, Cividanes LS, Gouveia RF, et al. An overview of properties and applications of poly (butylene adipate-co-terephthalate)-PBAT based composites. Polym Eng Sci. 2017;59:7–15.
  • Dufresne A. Nanocellulose processing properties and potential applications. Curr for Rep. 2019;5:76–89.
  • Habibi Y, Lucia LA, Rojas OJ. Cellulose nanocrystals: chemistry, self-assembly and applications. Chem Rev. 2010;110:3479–3500.
  • Ferreira F, Pinheiro I, de Souza S, et al. Polymer composites reinforced with natural fibers and nanocellulose automotive industry: a short review. J Compos Sci. 2019;3(2):51.
  • Zia KM, Bhatti HN, Bhatti IA. Methods for polyurethane and polyurethane composites, recycling and recovery: a review. React Funct Polym. 2007;8(67):675–692.
  • Hussain F, Hojjati M, Okamoto M, et al. Review article: polymer-matrix nanocomposites, processing, manufacturing, and application: an overview. J Compos Mater. 2006;40(17):1511–1575.
  • Verdejo R, Stämpfli R, Alvarez Lainez M, et al. Enhanced acoustic damping in flexible polyurethane foams filled with carbon nanotubes. Compos Sci Technol. 2009;69(10):1564–1569.
  • Ashori A. Wood-plastic composites as promising green-composites for automotive industries. Biores Technol. 2008;99(11):4661–4667.
  • Tak Lau K, Yan Hung P, Hao Zhu M, et al. Properties of natural fiber composites for structural engineering applications. Composites. 2018;136:222–233.
  • Govindaraju R, Jagannathan S, Chinnasamy M, et al. Optimization of process parameters for fabrication of wool fiber-reinforced polypropylene composites concerning mechanical properties. J Eng Fibers Fabr. 2014;3(9):126–133.
  • Faruk KCB, Agnelli O, Leao JAM, et al. Optimization of injection moulding parameters using Taguchi method for reducing shrinkage. Compos Part A Appl Sci. 2015;83. 152–159.
  • Houdart P, Fujii T, Okubo K. Optimization of manufacturing process of glass fibers/phenol composites. effects of solidification conditions, fiber length, and additional materials on their mechanical properties. SAE Trans. 2020;112:613–623.
  • Chang SH, Hwang JR, Doong JL. Manufacturing process optimization of short glass fiber reinforced polycarbonate composites in injection molding. J Reinf Plast Compos. 2000;19(4):301–321.
  • Alshaer W, Nada SA, Mohamed R. Le Bot cedric & palomo del barrio elena. Numerical investigations of using carbon foam/PCM/nanocarbon tubes composites in thermal management of electronic equipment. Energy Convers Manag. 2015;89:873–884.
  • Mohamad A, Ahmet E. Effect of perlite particle contents on the delamination toughness of S-glass fiber reinforced epoxy matrix composites. Composites. 2018;141:141.
  • Praveena B, Balachandra A, Shetty P, et al. Mechanical properties and water absorption behaviour of pineapple leaf fibre reinforced polymer composites. Adv Mater Process Technol. 2020;8:1336–1351.
  • Oluwaseyi A, Johnson OA, Oke SA. A grey relational analytical approach to orange peel filler particulates for tapped density experiments of green composite reinforcements. KKU Eng J. 2016;43(3):108–119.
  • Kumar K, Balaji D, Wankhade L. Determination of prediction model and optimization of process parameters for fabrication of Al-SiC composite using response surface methodology. Adv Mater Process Technol. 2022;8(4):1983–1999.

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.