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Research Article

Influence of Stacking Sequence and Fiber Content on the Mechanical Properties of Natural and Synthetic Fibers Reinforced Penta-Layered Hybrid Composites

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References

  • Abd El-baky, M. A. 2017. Evaluation of mechanical properties of jute/glass/carbon fibers reinforced hybrid composites. Fibers and Polymers 18 (12):2417–32. doi:10.1007/s12221-017-7682-x.
  • Alamri, H., and I. M. Low. 2012. Mechanical properties and water absorption behaviour of recycled cellulose fibre reinforced epoxy composites. Polymer Testing 31 (5):620–28. doi:10.1016/j.polymertesting.2012.04.002.
  • Angrizani, C. C., M. O. Cioffi, A. J. Zattera, and S. C. Amico. 2014. Analysis of curaua/glass hybrid interlayer laminates. Journal of Reinforced Plastics and Composites 33 (5):472–78. doi:10.1177%2F0731684413517519.
  • Awais, H., Y. Nawab, A. Amjad, A. Anjang, H. M. Akil, and M. S. Abidin. 2019. Effect of comingling techniques on mechanical properties of natural fibre reinforced cross-ply thermoplastic composites. Composites Part B: Engineering 177:107279. doi:10.1016/j.compositesb.2019.107279.
  • Baley, C. 2002. Analysis of the flax fibres tensile behaviour and analysis of the tensile stiffness increase. Composites Part A: Applied Science and Manufacturing 33 (7):939–48. doi:10.1016/S1359-835X(02)00040-4.
  • Bismarck, A., S. Mishra, and T. Lampke. 2005. Plantfibers as reinforcement for green composites. In Naturalfibers, biopolymers, and biocomposites, ed. A. K. Mohanty, M. Misra, and L. T. Drzal, 37–108. Boca Raton: CRCPress.
  • Braga, R. A., and P. A. A. Magalhaes Jr. 2015. Analysis of the mechanical and thermal properties of juteand glassfiber as reinforcement epoxy hybrid composites. Materials Science Engineering C 56:269–73. doi:10.1016/j.msec.2015.06.031.
  • Dabade, B. M., G. R. Reddy, S. Rajesham, and C. U. Kiran. 2006. Effect of fiber length and fiber weight ratio on tensile properties of sun hemp and palmyra fiber reinforced polyester composites. Journal of Reinforced Plastics and Composites 25 (16):1733–38. doi:10.1177%2F0731684406068418.
  • Dalbehera, S., and S. K. Acharya. 2016. Effect of cenosphere addition on the mechanical properties of jute-glass fiber hybrid epoxy composites. Journal of Industrial Textiles 46 (1):177–88. doi:10.1177/15280837155779.
  • Ganesh, B. N., and R. Muralikannan. 2016. Comprehensive characterization of lignocellulosic fruit fibers reinforced hybrid polyester composites. International Journal of Materials Science and Applications 5 (6):302–07. doi:10.11648/j.ijmsa.20160506.21.
  • Ganesh, B. N., and B. Rekha. 2013. A comparative study on tensile behaviour of plant and animal fiber reinforced composites. International Journal of Innovation and Applied Studies 2 (4):645–48.
  • Ismail, M. F., M. T. Sultan, A. Hamdan, A. U. Shah, and M. Jawaid. 2019. Low velocity impact behaviour and post-impact characteristics of kenaf/glass hybrid composites with various weight ratios. Journal of Materials Research and Technology 8 (3):2662–73. doi:10.1016/j.jmrt.2019.04.005.
  • James, D. J. D., S. Manoharan, G. Saikrishnan, and S. Arjun. 2019. Influence of bagasse/sisal fibre stacking sequence on the mechanical characteristics of hybrid-epoxy composites. Journal of Natural Fibers 24:1497–507. doi:10.1080/15440478.2019.1581119.
  • Jawaid, M., H. A. Khalil, A. Hassan, R. Dungani, and A. Hadiyane. 2013. Effect of jute fibre loading on tensile and dynamic mechanical properties of oil palm epoxy composites. Composites Part B: Engineering 45 (1):619–24. doi:10.1016/j.compositesb.2012.04.068.
  • Jawaid, M., S. M. Sapuan, and O. Y. Alothman, editors. 2016. Green biocomposites: Manufacturing and properties. Cham, Switzerland: Springer.
  • Khan, T., M. T. Sultan, A. U. Shah, A. H. Ariffin, and M. Jawaid. 2019. The effects of stacking sequence on the tensile and flexural properties of Kenaf/jute fibre hybrid composites. Journal of Natural Fibers 10:1–12. doi:10.1080/15440478.2019.1629148.
  • NagarajaGanesh, B., P. Ganeshan, P. Ramshankar, and K. Raja. 2019. Assessment of natural cellulosic fibers derived from Senna auriculata for making light weight industrial biocomposites. Industrial Crops and Products 139:111546. doi:10.1016/j.indcrop.2019.111546.
  • NagarajaGanesh, B., and R. Muralikannan. 2016a. Physico-chemical, thermal, and flexural characterization of Cocos nucifera fibers. International Journal of Polymer Analysis and Characterization 21 (3):244–50. doi:10.1080/1023666X.2016.1139359.
  • NagarajaGanesh, B., and R. Muralikannan. 2016b. Extraction and characterization of lignocellulosic fibers from Luffa cylindrica fruit. International Journal of Polymer Analysis and Characterization 21 (3):259–66. doi:10.1080/1023666X.2016.1146849.
  • NagarajaGanesh, B., and B. Rekha. 2019a. Effect of mercerization on the physico-chemical properties of matured and seasoned Cocos nucifera fibers for making sustainable composites. Materials Research Express 6 (12):125102. doi:10.1088/2053-1591/ab5395.
  • NagarajaGanesh, B., and B. Rekha. 2019b. Morphology and damage mechanism of lignocellulosic fruit fibers reinforced polymer composites: A comparative study. SN Applied Sciences 1 (10):1250. doi:10.1007/s42452-019-1286-6.
  • NagarajaGanesh, B., and B. Rekha. 2020. Intrinsic cellulosic fiber architecture and their effect on the mechanical properties of hybrid composites. Archives of Civil and Mechanical Engineering 20 (4):1–12. doi:10.1007/s43452-020-00125-y.
  • NagarajaGanesh, B., P. Sugumaran, and R. Sridhar. 2012. Mechanical properties of rice straw and chicken feather fibers. International Journal of Composite Materials and Manufacturing 2:22–26.
  • Plackett, D., T. Logstrup Andersen, W. Batsberg Pedersen, and L. Nielsen. 2003. Biodegradable composites based on i-polylactide and jute fibres. Composites Science and Technology 63:1287–96. doi:10.1016/S0266-3538(03)00100-3.
  • Ramnath, B. V., S. J. Kokan, R. N. Raja, R. Sathyanarayanan, C. Elanchezhian, A. R. Prasad, and V. M. Manickavasagam. 2013. Evaluation of mechanical properties of abaca–jute–glass fibre reinforced epoxy composite. Materials & Design 51:357–66. doi:10.1016/j.matdes.2013.03.102.
  • Ramnath, B. V., V. M. Manickavasagam, C. Elanchezhian, C. V. Krishna, S. Karthik, and K. Saravanan. 2014. Determination of mechanical properties of intra-layer abaca–jute–glass fiber reinforced composite. Materials & Design 60:643–52. doi:10.1016/j.matdes.2014.03.061.
  • Rekha, B., and B. NagarajaGanesh. 2020. X-ray diffraction: An efficient method to determine the microfibrillar angle of dried and matured cellulosic fibers. Journal of Natural Fibers 1–8. doi:10.1080/15440478.2019.1848720.
  • Ricciardi, M. R., I. Papa, V. Lopresto, A. Langella, and V. Antonucci. 2019. Effect of hybridization on the impact properties of flax/basalt epoxy composites: Influence of the stacking sequence. Composite Structures 214:476–85. doi:10.1016/j.compstruct.2019.01.087.
  • Sarikaya, E., H. Callioglu, and H. Demirel. 2019. Production of epoxy composites reinforced by different natural fibers and their mechanical properties. Composites Part B: Engineering 167:461–66. doi:10.1016/j.compositesb.2019.03.020.
  • Sathishkumar, T. P., P. Navaneethakrishnan, S. Shankar, and J. Kumar. 2013. Mechanical properties of randomly oriented snake grass fiber with banana and coir fiber-reinforced hybrid composites. Journal of Composite Materials 47:2181–91. doi:10.1177%2F0021998312454903.
  • Sathyaseelan, P., P. Sellamuthu, and L. Palanimuthu. 2020. Influence of stacking sequence on mechanical properties of areca-kenaf fiber-reinforced polymer hybrid composite. Journal of Natural Fibers 1–13. doi:10.1080/15440478.2020.1745118.
  • Shahzad, A. 2011. Impact and fatigue properties of hemp-glass fiber hybrid biocomposites. Journal of Reinforced Plastics and Composites 30:1389–98. doi:10.1177%2F0731684411425975.
  • Shahzad, A., and S. U. Nasir. 2017. Mechanical properties of natural fiber/synthetic fiber reinforced polymer hybrid composites. In Green biocomposites, 355–96. Cham: Springer. doi:10.1007/978-3-319-46610-1_15.
  • Subagia, I. A., Y. Kim, L. D. Tijing, C. S. Kim, and H. K. Shon. 2014. Effect of stacking sequence on the flexural properties of hybrid composites reinforced with carbon and basalt fibers. Composites Part B: Engineering 58:251–58. doi:10.1016/j.compositesb.2013.10.027.
  • Thiagamani, S. M., S. Krishnasamy, C. Muthukumar, J. Tengsuthiwat, R. Nagarajan, S. Siengchin, and S. O. Ismail. 2019. Investigation into mechanical, absorption and swelling behaviour of hemp/sisal fibre reinforced bioepoxy hybrid composites: Effects of stacking sequences. International Journal of Biological Macromolecules 140:637–46. doi:10.1016/j.ijbiomac.2019.08.166.
  • Trehan, R., S. Singh, and M. Garg. 2015. Optimization of mechanical properties of polyester hybrid composite laminate using Taguchi methodology–Part 1. Proceedings of the Institution of Mechanical Engineers, Part L: Journal of Materials: Design and Applications 229 (4):263–73. doi:10.1177%2F1464420713509975.
  • Yahaya, R., S. M. Sapuan, M. Jawaid, Z. Leman, and E. S. Zainudin. 2015. Effect of layering sequence and chemical treatment on the mechanical properties of woven kenaf–aramid hybrid laminated composites. Materials & Design 15 (67):173–79. doi:10.1016/j.matdes.2014.11.024.
  • Yoganandam, K., P. Ganeshan, B. NagarajaGanesh, and K. Raja. 2019a. Characterization studies on Calotropis procera fibers and their performance as reinforcements in epoxy matrix. Journal of Natural Fibers 21:1–13. doi:10.1080/15440478.2019.1588831.
  • Yoganandam, K., B. NagarajaGanesh, P. Ganeshan, and K. Raja. 2019b. Thermogravimetric analysis of Calotropis procera fibers and their influence on the thermal conductivity and flammability studies of polymer composites. Materials Research Express 6 (10):105341. doi:10.1088/2053-1591/ab3bbe.

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