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Research Article

Thermogravimetric and dynamic mechanical analysis of woven glass/kenaf/epoxy hybrid nanocomposite filled with clay

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Pages 166-179 | Accepted 09 Apr 2020, Published online: 27 Apr 2020

References

  • Lau K, Hung P, Zhu M, et al. Properties of natural fibre composites for structural engineering applications. Compos Part B Eng. 2018;136:222–233.
  • Karthik T, Gopalakrishnan D. Impact of textile on environmental issues, part-II. Asian Dyer. 2012;9:45–51.
  • Hossain MM, Ahmad Khan M, Khan R, et al. 2015. Carbon/Kevlar reinforced hybrid composite: impact of matrix variation. Conference: 3rd International Conference on Mechanical Engineering and Renewable Energy. Chittagong: CUET.
  • Randjbaran E, Zahari R, Abdul Jalil NA, et al. Hybrid composite laminates reinforced with Kevlar/carbon/glass woven fabrics for ballistic impact testing. Sci World J. 2014;2014:1–7.
  • Dickson AN, Barry JN, McDonnell KA, et al. Fabrication of continuous carbon, glass and Kevlar fibre reinforced polymer composites using additive manufacturing. Addit Manuf. 2017;16:146–152.
  • Hung P, Lau K, Cheng L, et al. Impact response of hybrid carbon/glass fibre reinforced polymer composites designed for engineering applications. Composites Part B: Eng. 2018;133:86–90.
  • Hossain MS, Hossain MS, Rahman MM, et al. Fabrication and characterization of Kevlar fiber reinforced polypropylene based composite for civil applications. Adv Mater. 2018;7(4):105–110.
  • Mastura MT, Sapuan SM, Mansor MR, et al. Materials selection of thermoplastic matrices for natural fibre composites for automotive anti-roll particular emphasis on the environment. International Journal of Precision Engineering and Manufacturing-Green Technology. 2018;5(1):111–119.
  • Sayem A, Haider J. An overview on the development of natural renewable materials for textile applications. Encyclopedia of Renewable and Sustainable Materials. 2020;2(2020):822-838.
  • Nishino T, Hirao K, Kotera M, et al. Kenaf reinforced biodegradable composite. Compos Sci Technol. 2003;63(9):1281–1286.
  • Salim MS, Ariawan D, Ahmad Rasyid MF, et al. Effect of fibre surface treatment on interfacial and mechanical properties of non-woven kenaf fibre reinforced acrylic based polyester composites. Polym Composites. 2017;40(S1):E214–E226.
  • Razak Z, Sulong AB, Muhamad N, et al. Effects of thermal cycling on physical and tensile properties of injection moulded kenaf/carbon nanotubes/polypropylene hybrid composites. Compos Part B Eng. 2019;168:159–165.
  • Yousif BF, Shalwan A, Chin CW, et al. Flexural properties of treated and untreated kenaf/epoxy composites. Mater Des. 2012;40:378–385.
  • Jawaid M, Khalil HPSA, Alattas OS. Woven hybrid biocomposites: dynamic mechanical and thermal properties. Compos Part A Appl Sci Manuf. 2012;43(2):288–293.
  • Islam MR, Beg MDH. Effects of reinforcing arrangement of kenaf fibres into unsaturated polyester for improved properties. J Mech Eng Sci (JMES). 2016;10(2):2020–2030.
  • Fiore V, Di Bella G, Valenza A. The effect of alkaline treatment on mechanical properties of kenaf fibers and their epoxy composites. Compos Part B Eng. 2015;68:14–21.
  • Banothu S, Gurudu K, Ramesh M, et al. Flexural properties of a kenaf fiber reinforced in polypropylene resin. Int J Inf Res Rev. 2015;2(12):1533–1537.
  • Ren Z, Wang C, Zuo Q, et al. Effect of alkali treatment on interfacial and mechanical properties of kenaf fibre reinforced epoxy unidirectional composites. Sains Malaya. 2019;48(1):173–181.
  • Fragassa C, Paola DS, Minak G, 2013. Improving mechanical properties of green composites by hybridization. Conference: Proceedings of the 4th Conference on Natural Fibre Composites for Industrial Applications. Italy: Rome.
  • Agubra V, Owuor PS, Hosur M. Influence of nanoclay dispersion methods on the mechanical behaviour of e-glass/epoxy nanocomposite. Nanomaterials. 2013;3(3):550–563.
  • Akpan EI, Shen X, Wetzel B, et al. Polymer composites with functionalized nanoparticles. Synthesis, properties and applications. 1st ed. Amsterdam (Netherlands): Elsevier Academic Press; 2019. Chapter 2, Design and synthesis of polymer nanocomposites;p. 47-83.
  • Bajuri F, Mazlan N, Ishak MR. Effect of silica nanoparticles in kenaf reinforced epoxy: flexural and compressive properties. Sci Technol. 2017;25(3):1029–1038.
  • El-Shekeil YA, Sapuan SM, Zainudin ES, et al. Effect of alkali treatment on mechanical and thermal properties of kenaf fiber-reinforced thermoplastic polyurethane composite. J Therm Anal Calorim. 2012 September;109(3):1435–1443.
  • Rowlinson JS. The Maxwell-Boltzmann distribution. Mol Phys. 2005;103(21-23):1–6.
  • Azwa ZN, Yousif BF, 2013. Thermal degradation study of kenaf fibre/epoxy composites using thermo gravimetric analysis. 3rd Malaysian Postgraduates Conference. Sydney:Australia
  • Beg MDH, Pickering KL. Accelerated weathering of unbleached and bleached Kraft wood fibre reinforced polypropylene composites. Polymer Degradation and Stability. 2008;93(10):1939–1946.
  • Hwang S, Liu S, Hsu PP, et al. Effect of organoclay on the mechanical/thermal properties of microcellular injection molded PBT-clay nanocomposites. Int J Heat Mass Transf. 2010;37(8):1036–1043.
  • Alamri H, Low M, Alothman Z. Mechanical, thermal and microstructural characteristics of cellulose fibre reinforced epoxy/organoclay nanocomposites. Compos Part B Eng. 2012;43(7):2762–2771.
  • Upadhyaya P, Garg M, Kumar V, et al. The effect of water absorption on mechanical properties of wood flour/wheat husk polypropylene hybrid composites. Materials Sciences and Applications. 2012;3(May):317–325.
  • Madaleno L, Schjødt-thomsen J, Cruz J. Morphology, thermal and mechanical properties of PVC/MMT nanocomposites prepared by solution blending and solution blending + melt compounding. Compos Sci Technol. 2010;70(5):804–814.
  • Morgan AB, Harris RH Jr., Kashiwagi T, et al. Flammability of polystyrene layered silicate (clay) nanocomposites: carbonaceous char formation. Fire Mater. 2002;26(6):247–253.
  • Hamdani S, Longuet C, Perrin D, et al. Flame retardancy of silicone-based materials. Polym Degrad Stab. 2009;94(4):465–495.
  • Lauter U, Kantor SW, Schmidt-Rorh K, et al. Vinyl-substituted silphenylene siloxane copolymers: novel high-temperature elastomers. Macromolecules. 1999;32(10):3426–3431.
  • Miyagawa H, Drzal LT. Thermo-physical and impact properties of epoxy nanocomposites reinforced by single-wall carbon nanotubes. Polymer. 2004;45(15):5163–5170.
  • Ismail H, Pasbakhsh P, Ahmad Fauzi MN, et al. Morphological, thermal and tensile properties of halloysite nanotubes filled ethylene propylene diene monomer (EPDM) nanocomposite. Polym Test. 2008;27(7):841–850.
  • Yeh J, Huang H, Chen C, et al. Siloxane-modified epoxy resin-clay nanocomposite coatings with advanced anticorrosive properties prepared by a solution dispersion approach. Surf Coat Technol. 2006;200(8):2753–2763.
  • Lin L, Deng C, Lin G, et al. Mechanical properties, heat resistance and flame retardancy of glass fiber-reinforced PLA-PC alloys based on aluminium hypophosphite. Polym-Plast Technol Eng. 2014;53(6):613–625.
  • Methacanon P, Weerawatsophon U, Sumransin N, et al. Properties and potential application of the selected natural fibers as limited life geotextiles. Carbohydr Polym. 2010;82(4):1090–1096.
  • Asumani OML, Robert GR, Ratnam P. The effects of alkali-silane treatment on the tensile and flexural properties of short fibre non-woven kenaf reinforced polypropylene composites. Compos Part A Appl Sci Manuf. 2012;43(9):1431–1440.
  • Rout J, Misra M, Tripathy SS, et al. The influence of fibre treatment on the performance of coir-polyester composites. Compos Sci Technol. 2001;61(9):1303–1310.
  • Azwa Z., Yousif BF. Characteristics of kenaf fibre/epoxy composites subjected to thermal degradation. Polym Degrad Stab. 2013;98(12):2752–2759.
  • Saba N. Dynamic mechanical properties of oil palm nano filler/kenaf/epoxy hybrid nanocomposites. Constr Build Mater. 2016;124(July):133–138.
  • Ku H, Wang H, Pattarachaiyakoop N, et al. A review on the tensile properties of natural fiber reinforced polymer composites. Compos Part B Eng. 2011;42(4):856–873.
  • Wacker, 2014. GENIOPERL ® P52 Product Description-MSDS.
  • Vijay V, Mariatti M. Effect of fiber surface treatment and fiber loading on the properties of bagasse fiber-reinforced unsaturated polyester composites. Compos Sci Technol. 2008;68:631–638.
  • Aziz SH, Ansell MP. The effect of alkalization and fibre alignment on the mechanical and thermal properties of kenaf and hemp bast fibre composites: part 1-polyester resin matrix. Compos Sci Technol. 2004;64(9):1219–1230.
  • Cao Y, Sakamoto S, Goda K, 2007. Effects of heat and alkaline treatments on mechanical properties of kenaf fiber. 16th International Conference on Composite Materials. Kyoto: Japan
  • Li X, Sun C, Zhou B, et al. Determination of hemicellulose, cellulose and lignin in moso bamboo by near infrared spectroscopy. Sci Rep. 2015;5(1):17210.
  • Saba N, Jawaid N, Alothman OY, et al. A review on dynamic mechanical properties of natural fibre reinforced poymer composites. Constr Build Mater. 2016;106:149–159.
  • Zaidi MGH, Joshi SK, Kumar M, et al. Modifications of mechanical, thermal and electrical characteristics of epoxy through dispersion of multi-walled carbon nanotubes in supercritical carbon dioxide. Carbon Lett. 2013;14(4):218–227.
  • Portella EH, Romanzin D, Angrizani CC, et al. Influence of stacking sequence on the mechanical and dynamic mechanical properties of cotton/glass fiber reinforced polyester composites. Mater Res. 2016;19(3):542–547.
  • Raijini N, Winowlin JJT, Pitchaimani J, et al. Effect of montmorillonite nanoclay on temperature dependence mechanical properties of naturally woven coconut sheath/polyester composite. J Reinf Compos. 2013;32(11):811–822.
  • Ranjini N, Winowlin Jappes JT, Rajakarunakaran SJeyaraj P. 2012. Dynamic mechanical analysis and free vibration behavior in chemical modifications of coconut sheath/nano-clay reinforced hybrid polyester composite. J Compos Mater 47 (24):3105-260.
  • Aziz SH, Ansell MP, Clarke SJ, et al. Modified polyester resins for natural fibre composites. Compos Sci Technol. 2004;65(2005):525–535.

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