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Research Article

Mechanical and Vibrational Property Evaluation of Banana Fiber Epoxy Sandwich Composite with Steel Wire Mesh Core

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References

  • Adeniyi, A. G., J. O. Ighalo, and D. V. Onifade. 2019. Banana and plantain fiber-reinforced polymer composites. Journal of Polymer Engineering 39:597–611. doi:10.1515/polyeng-2019-0085.
  • Amir, N., K. A. Z. Abidin, and F. B. M. Shiri. 2017. Effects of fibre configuration on mechanical properties of banana fibre/PP/MAPP natural fibre reinforced polymer composite. Procedia Engineering 184:573–80. doi:10.1016/j.proeng.2017.04.140.
  • Chethan, M. R., P. Sri Naga Venkat, G. S. G. Krishna, R. Chennakesava, and P. Vijay. 2018. Dynamic vibrational analysis on areca sheath fibre reinforced bio composites by fast fourier analysis. Materials Today: Proceedings 5 (9):19330–39. doi:10.1016/j.matpr.2018.06.292.
  • Choudary, M. V., A. Nagaraja, K. O. C. Sai, and M. Balasubramanian. 2020. Characterization of laminate sandwiched with stainless steel and glass fibre. Materials Today: Proceedings 22:847–52. doi:10.1016/j.matpr.2019.11.030.
  • Fu, Y., and P. Sadeghian. 2020. Flexural and shear characteristics of bio-based sandwich beams made of hollow and foam-filled paper honeycomb cores and flax fiber composite skins. Thin-Walled Structures 153:106834. doi:10.1016/j.tws.2020.106834.
  • Hadiji, H., M. Assarar, W. Zouari, F. Pierre, K. Behlouli, B. Zouari, and R. Ayad 2020. Damping analysis of nonwoven natural fibre-reinforced polypropylene composites used in automotive interior parts. Polymer Testing 89:106692. doi:10.1016/j.polymertesting.2020.106692.
  • Hassan, M. Z., S. M. Sapuan, Z. A. Rasid, A. F. M. Nor, R. Dolah, and M. Y. Md Daud. 2020. Impact damage resistance and post-impact tolerance of optimum banana-pseudo-stem-fiber-reinforced epoxy sandwich structures. Applied Sciences 10 (2):684. doi:10.3390/app10020684.
  • Irawan, A. P., and I. W. Sukania. 2015. Tensile strength of banana fiber reinforced epoxy composites materials. Applied Mechanics and Materials 776:260–63. doi:10.4028/.scientific.net/amm.776.260.
  • Kali, N., S. Pathak, and S. Korla. 2020. Effect on vibration characteristics of fiber metal laminates sandwiched with natural fibers. Materials Today: Proceedings 1–5. doi:10.1016/j.matpr.2020.01.088.
  • Karunagaran, N., G. Bharathiraja, A. Muniappan, and K. Yoganandam. 2020. Energy absorption and damage behaviour of surface treated glass fibre/stainless steel wire mesh reinforced hybrid composites. Materials Today: Proceedings 22:1078–84. doi:10.1016/j.matpr.2019.11.305.
  • Karunagaran, N., and A. Rajadurai. 2016. Effect of surface treatment on mechanical properties of glass fiber/stainless steel wire mesh reinforced epoxy hybrid composites. Journal of Mechanical Science and Technology 30 (6):2475–82. doi:10.1007/s12206-016-0507-9.
  • Krishnasamy, P. 2019. Dynamic mechanical characteristics of jute fiber and 304 wire mesh reinforced epoxy composite. Journal of Industrial Textiles 1–19. 10.1177/1528083719883057
  • Krishnasamy, P., G. Rajamurugan, and M. Thirumurugan. 2020. Performance of fiber metal laminate composites embedded with AL and CU wire mesh. Journal of Industrial Textiles 1–18. doi:10.1177/1528083720935570.
  • Kumar, K. V., R. Pavendhan, G. G. R. Subramaniyan, and T. G. Loganathan. 2020. Effect of bio waste (conch shell) particle dispersion on the performance of GFRP composite. Journal of Materials Research and Technology 9 (4):7123–35. doi:10.1016/j.jmrt.2020.04.042.
  • Murugan, M. A., V. Jayaseelan, D. Jayabalakrishnan, T. Maridurai, S. Selva Kumar, G. Ramesh, and V. R. Arun Prakash. 2019. Low velocity impact and mechanical behaviour of shot blasted SiC Wire-Mesh and Silane-treated aloevera/hemp/flax-reinforced SiC Whisker modified epoxy resin composites. Silicon. doi:10.1007/s12633-019-00297-0.
  • Peças, P., H. Carvalho, H. Salman, and M. Leite. 2018. Natural fibre composites and their applications: A review. Journal of Composites Science 2 (4):66. doi:10.3390/jcs2040066.
  • Prabhakaran, S., V. Krishnaraj, M. Senthil Kumar, and R. Zitoune. 2014. Sound and vibration damping properties of flax fiber reinforced composites. Procedia Engineering 97:573–81. doi:10.1016/j.proeng.2014.12.285.
  • Rajesh, M., and J. Pitchaimani. 2017. Experimental investigation on buckling and free vibration behavior of woven natural fiber fabric composite under axial compression. Composite Structures 163:302–11. doi:10.1016/j.compstruct.2016.12.046.
  • Rajesh, M., J. Pitchaimani, and N. Rajini. 2016. Free vibration characteristics of banana/sisal natural fibers reinforced hybrid polymer composite beam. Procedia Engineering 144:1055–59. doi:10.1016/j.proeng.2016.05.056.
  • Rajeshkumar, G., and V. Hariharan. 2014. Free vibration characteristics of phoenix Sp fiber reinforced polymer matrix composite beams. Procedia Engineering 97:687–93. doi:10.1016/j.proeng.2014.12.298.
  • Renugadevi, K., P. K. Devan, and T. Thomas. 2019. Fabrication of Calotropis Gigantea fibre reinforced compression spring for light weight applications. Composites Part B: Engineering 172:281–89. doi:10.1016/j.compositesb.2019.05.037.
  • Sakthivel, M., and S. Vijayakumar. 2017. Influence of stainless-steel wire mesh on the mechanical behaviour in a glass-fibre-reinforced epoxy composite. Materiali in Tehnologije 51 (3):455–61. doi:10.17222/mit.2016.063.
  • Sreenivas, H. T., N. Krishnamurthy, and G. R. Arpitha. 2020. A comprehensive review on light weight kenaf fiber for automobiles. International Journal of Lightweight Materials and Manufacture 3:328–37. doi:10.1016/j.ijlmm.2020.05.003.
  • Srinivasan, T., G. Suresh, K. Santhoshpriya, C. T. Chidambaram, K. R. Vijayakumar, and A. Abdul Munaf. 2020. Experimental analysis on mechanical properties of banana fibre/epoxy (particulate) reinforced composite. Materials Today: Proceedings. doi:10.1016/j.matpr.2020.05.103.
  • Thilagavathi, G., E. Pradeep, T. Kannaian, and L. Sasikala. 2010. Development of natural fiber nonwovens for application as car interiors for noise control. Journal of Industrial Textiles 39 (3):267–78. doi:10.1177/1528083709347124.
  • Thomas, P., M. P. Jenarthanan, and V. M. Sreehari. 2020. Free vibration analysis of a composite reinforced with natural fibers employing finite element and experimental techniques. Journal of Natural Fibers 17 (5):688–99. doi:10.1080/15440478.2018.1525466.
  • Vinoth Kumar, K., T. G. Loganathan, A. Bharath, B. Shyam Sundar, and K. K. Abishek. 2018. Comparative structural vibration analysis of machinery and GFRP with Al7075. MATEC Web of Conferences 144:1–14. doi:10.1051/matecconf/201714401009.

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