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Research Article

Mechanical and Morphological Characterization Analysis on Aegle marmelos Dispersed Fiber-Reinforced Polymer Composite

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References

  • Ahmad, F., H. S. Choi, and M. K. Park. 2015. A review: Natural fiber composites selection in view of mechanical, light weight, and economic properties. Macromolecular Materials and Engineering 300 (1):10–17. doi:10.1002/mame.201400089.
  • Arul Jeya Kumar, A., and M. Prakash. 2020. Mechanical and morphological characterization of Basalt/Cissus quadrangularis hybrid fiber reinforced polylactic acid composites. Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science 234 (14):2895–907. doi:10.1177/0954406220911072.
  • Arul Jeya Kumar, A., A. Soundarapandian, and R. Kumar. 2021. Dynamic mechanical behavior of Basalt/aramid hybrid fiber reinforced uhmwpe light weight composite. Journal of Natural Fibers 1–13. doi: 10.1080/15440478.2021.1964141.
  • Ashik, K. P., and R. S. Sharma. 2015. A review on mechanical properties of natural fiber reinforced hybrid polymer composites. Journal of Minerals and Materials Characterization and Engineering 3 (05):420. doi:10.4236/jmmce.2015.35044.
  • Azammi, A. N., R. A. Ilyas, S. M. Sapuan, R. Ibrahim, M. S. N. Atikah, M. Asrofi, and A. Atiqah. 2020. Characterization studies of biopolymeric matrix and cellulose fibres based composites related to functionalized fibre-matrix interface. In Interfaces in particle and fibre reinforced composites, Woodhead Publishing, 29–93. doi: 10.1016/B978-0-08-102665-6.00003-0.
  • Bapat, U. C., S. H. Gaurea, A. Bapat, and S. Gaurea. 2016. Evaluation of antioxidant activity of resins of Boswellia serrata Roxb. ex Colebr., Commiphora mukul (Hooks ex Stocks) Engl., Gardenia resinifera Roth. and Shorea robusta Gaertn. European Journal of Pharmaceutical and Medical Research 3:416–21.
  • Chandrika, V. S., A. Anamika, C. Jeeva, B. Perumal, S. S. Kumar, J. F. Roseline, and I. K. Raghavan. 2022. Natural fiber incorporated polymer matrix composites for electronic circuit board applications. Advances in Materials Science and Engineering 2022:9. doi:10.1155/2022/3035169.
  • Codispoti, R., D. V. Oliveira, R. S. Olivito, P. B. Lourenço, and R. Fangueiro. 2015. Mechanical performance of natural fiber-reinforced composites for the strengthening of masonry. Composites Part B: Engineering 77:74–83. doi:10.1016/j.compositesb.2015.03.021.
  • Das, G., and S. Biswas. 2016. Effect of fiber parameters on physical, mechanical and water absorption behaviour of coir fiber–epoxy composites. Journal of Reinforced Plastics and Composites 35 (8):644–53. doi:10.1177/0731684415626594.
  • Deokar, T. G., S. S. Pawar, and M. G. Jadhav. 2017. FESEM and FTIR spectroscopic characterization of Aegle marmelos (L.) unripe fruit. International Research Journal of Biological Sciences 6 (1):34–39.
  • Fiore, V., G. Di Bella, and A. Valenza. 2015. The effect of alkaline treatment on mechanical properties of kenaf fibers and their epoxy composites. Composites Part B: Engineering 1 (68):14–21. doi:10.1016/j.compositesb.2014.08.025.
  • Ganesh, S., Y. Gunda, S. R. J. Mohan, V. Raghunathan, and J. D. J. Dhilip. 2022. Influence of stacking sequence on the mechanical and water absorption characteristics of areca sheath-palm leaf sheath fibers reinforced epoxy composites. Journal of Natural Fibers 19 (5):1670–80. doi:10.1080/15440478.2020.1787921.
  • Gholampour, A., and T. Ozbakkaloglu. 2020. A review of natural fiber composites: Properties, modification and processing techniques, characterization, applications. JOURNAL OF MATERIALS SCIENCE 55 (3):829–92. doi:10.1007/s10853-019-03990-y.
  • Hou, X., S. Lv, Z. Chen, and F. Xiao. 2018. Applications of Fourier transform infrared spectroscopy technologies on asphalt materials. Measurement 121:304–16. doi:10.1016/j.measurement.2018.03.001.
  • Karuppannan Gopalraj, S., and T. Kärki. 2020. A review on the recycling of waste carbon fibre/glass fibre-reinforced composites: Fibre recovery, properties and life-cycle analysis. SN Applied Sciences 2 (3):1–21. doi:10.1007/s42452-020-2195-4.
  • Li, J., and Y. F. Zhang. 2010. The impact properties of a polyamide 6–polytetrafluoroethylene composite. Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science 224 (1):13–17. doi:10.1243/09544062JMES1571.
  • Mahesh, V., S. Joladarashi, and S. M. Kulkarni. 2021. Development and mechanical characterization of novel polymer-based flexible composite and optimization of stacking sequences using VIKOR and PSI techniques. Journal of Thermoplastic Composite Materials 34 (8):1080–102. doi:10.1177/0892705719864619.
  • Mishra, V., and A. Srivastava. 2014. Epoxy/Wood apple shell particulate composite with improved mechanical properties. International Journal of Applied Engineering Research 4 (8):142–45. doi: 10.17762/ijritcc.v4i5.2210.
  • Mohamed, B., and K. Kalaichelvan. 2016. Experiment study on the mechanical characterization of glass-Basalt fiber reinforced polymer composites. International Journal of Material Science and Engineering 4 (1):46–53. doi: 10.17706/ijmse.2016.4.1.46-53.
  • Mora, A. S., R. Tayouo, B. Boutevin, G. David, and S. Caillol. 2020. A perspective approach on the amine reactivity and the hydrogen bonds effect on epoxy-amine systems. European Polymer Journal 15 123:109460. doi:10.1016/j.eurpolymj.2019.109460.
  • Oladele, I. O., T. F. Omotosho, and A. A. Adediran. 2020. Polymer-based composites: An indispensable material for present and future applications. International Journal of Polymer Science 2020:1–12. doi:10.1155/2020/8834518.
  • Patil, S. R., R. Sivaraj, P. Rajiv, R. Venckatesh, and R. Seenivasan. 2015. Green synthesis of silver nanoparticle from leaf extract of Aegle marmelos and evaluation of its antibacterial activity. International Journal of Pharmaceutical Sciences 7 (6):169–73.
  • Premnath, A. A. 2018. Impact of surface treatment on the mechanical properties of sisal and jute reinforced with epoxy resin natural fiber hybrid composites. Journal of Natural Fibers January 1–11. doi:10.1080/15440478.2018.1432002.
  • Prolongo, S. G., G. Del Rosario, and A. Ureña. 2006. Comparative study on the adhesive properties of different Epoxy resins. International Journal of Adhesion and Adhesives 26 (3):125–32. doi:10.1016/j.ijadhadh.2005.02.004.
  • Rahman, M. M., S. Zainuddin, M. V. Hosur, C. J. Robertson, A. Kumar, J. Trovillion, and S. Jeelani. 2013. Effect of NH2-MWCNTs on crosslink density of Epoxy matrix and ILSS properties of e-glass/epoxy composites. Composite Structures 95:213–21. doi:10.1016/j.compstruct.2012.07.019.
  • Rajak, D. K., D. D. Pagar, P. L. Menezes, and E. Linul. 2019. Fiber-reinforced polymer composites: Manufacturing, properties, and applications. Polymers 11 (10):1667. doi:10.3390/polym11101667.
  • Rangappa, S. M., S. Siengchin, J. Parameswaranpillai, M. Jawaid, and T. Ozbakkaloglu. 2022. Lignocellulosic fiber reinforced composites: Progress, performance, properties, applications, and future perspectives. Polymer Composites 43 (2):645–91. doi:10.1002/pc.26413.
  • Sandeep, N. C., H. R. Rao, and K. H. Reddy. 2017. Extraction and characterization of physicochemical and tensile properties of Aegle marmelos fiber. Materials Today: Proceedings 4 (2):3158–65. doi:10.1016/j.matpr.2017.02.200.
  • Sanjay, M. R., P. Madhu, M. Jawaid, P. Senthamaraikannan, S. Senthil, and S. Pradeep. 2018. Characterization and properties of natural fiber polymer composites: A comprehensive review. Journal of Cleaner Production 20 (172):566–81. doi:10.1016/j.jclepro.2017.10.101.
  • Sarikaya, E., H. Çallioğlu, 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.
  • Sastry, M. N. P., K. D. Devi, and D. Bandhu. 2016. Characterization of Aegle Marmelos fiber reinforced composite. International Journal of Engineering Research 5 (SP 2):345–49. doi:10.17950/ijer/v5i2/009.
  • Shakuntala, O., G. Raghavendra, and A. Samir Kumar. 2014. Effect of filler loading on mechanical and tribological properties of wood apple shell reinforced Epoxy composite. Advances in Materials Science and Engineering 2014:1–9. doi:10.1155/2014/538651.
  • Ulus, H. 2022. An experimental assessment of hybrid bolted/bonded basalt fiber reinforced polymer composite joints’ temperature-dependent mechanical performances by static and dynamic mechanical analyses. International Journal of Adhesion and Adhesives 114:103120. doi:10.1016/j.ijadhadh.2022.103120.
  • Yahaya, R., S. M. Sapuan, M. Jawaid, Z. Leman, and E. S. Zainudin. 2016. Measurement of ballistic impact properties of woven kenaf–aramid hybrid composites. Measurement 77:335–43. doi:10.1016/j.measurement.2015.09.016.
  • Yashas Gowda, T. G., M. R. Sanjay, K. Subrahmanya Bhat, P. Madhu, P. Senthamaraikannan, and B. Yogesha. 2018. Polymer matrix-natural fiber composites: An overview. Cogent Engineering 5 (1):1446667. doi:10.1080/23311916.2018.1446667.
  • Yorseng, K., S. M. Rangappa, J. Parameswaranpillai, and S. Siengchin. 2022. Towards green composites: Bioepoxy composites reinforced with bamboo/basalt/carbon fabrics. Journal of Cleaner Production 363:132314. doi:10.1016/j.jclepro.2022.132314.
  • Zhang, Y., C. Yu, and P. Chu. 2012. Mechanical and thermal properties of Basalt fiber reinforced poly (butylene succinate) composites. Materials Chemistry and Physics 133 (2–3):845–49. doi:10.1016/j.matchemphys.2012.01.105.