261
Views
12
CrossRef citations to date
0
Altmetric
Research Article

Mechanical and Sound Absorption Behavior of Sisal and Palm Fiber Reinforced Hybrid Composites

& ORCID Icon

References

  • Abdullah, A. H. 2015. Sound absorption coefficient of natural fibres hybrid reinforced polyestercomposites. Jurnal Teknologi Sciences & Engineering 76 (9):31–36. doi:10.11113/jt.v76.5643.
  • Bakri, M. K. B., E. Jayamani, S. K. Heng, S. Hamdan, and A. Kakar. 2017. An experimental and simulation studies on sound absorption coefficients of banana fibers and their reinforced composites. Nano Hybrids and Composites 12:9–20. d oi:1 0.4028/ w ww.s cientific.net/nhc.12.9.
  • Berardi, U., and G. Iannace. 2015. Acoustic characterization of natural fibers for sound absorption applications. Building and Environment 94:840–52. doi:10.1016/j.buildenv.2015.05.029.
  • Berardi, U., G. Iannaceb, and M. Di Gabriele. 2017. TheAcoustic characterization of broom fibers. Journal of Natural Fibers 14 (6):858–63. doi:10.1080/15440478.2017.1279995.
  • Bin Bakri, M. K., E. Jayamani, S. K. Heng, S. Hamdan, and A. Kakar. 2016. An experimental and simulation studies on sound absorption coefficients of banana fibers and their reinforced composites. In Nano hybrids and composites, Vol. 12, edited by S. H. Nandyala, 9–20. Switzerland: Trans Tech Publications.
  • Boopathi. 2008. Acoustical properties of multi-layer coir fibres sound absorption panel. European Journal of Scientific Research 8 (20):3709–14. doi:10.3923/jas.2008.3709.3714.
  • Chellam,B., Rajini, N., Siva, I., Winowlin Jappes, J. T., & Amico, S. C. (2015). Effect of curing temperature and layering pattern on performance studies: a novel hybrid composite. Journal of Polymer Engineering 35 (2). doi:10.1515/polyeng-2014-0099.
  • Crocker, M. J. 1981.The use of surface and acoustic intensity techniques to identify noise sources on machines. Proc. International Congress on Recent Developments in Acoustic Intensity, France, 127–35. doi:10.1121/1.2026268.
  • Gopinath, A., M. Senthil Kumar, and A. Elayaperumal. 2014. Experimental investigation on mechanical properties of jute fiber reinforced composites with polyester and epoxy matrice. Procedia Engineering 97:2052–67. doi:10.1016/j.proeng.2014.12.448.
  • Herrera Franco, P. J., and A. Valadez Gonzalez. 2005. A study of the mechanical properties of short natural fiber reinforced composites. Composites: Part B 36:597–608. doi:10.1016/j.compositesb.2005.04.001.
  • Islam, M. R., M. D. Beg, and A. Gupta. 2013. Characterization of laccase-treated kenaf fibre reinforced recycled poly -propylene composites. BioResources 8:3753–70. doi:10.15376/biores.8.3.3753-3770.
  • Jaballi, S., I. Miraoui, and H. Hassis. 2016. Long-unidirectional palm and sisal fibers reinforced composite: An experimental investigation. Journal of Natural Fibers. doi:10.1080/15440478.2016.1212758.
  • James, J. D. 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. doi:10.1080/15440478.2019.1581119.
  • Jawaid, M., H. P. S. Abdul 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 45:619–24. doi:10.1016/j.compositesb.2012.04.068.
  • Kabir, M. M., H. Wang, K. T. Lau, and F. Cardona. 2013. Tensile properties of chemically treated hemp fibres as reinforcement for composites. Composites Part B: Engineering 53:362–68. doi:10.1016/j.compositesb.2011.06.003.
  • Khedari, J., N. Nankongnab, J. Hirunlabh, and S. Teekasap. 2004. New low-cost insulation particleboards from mixture of durian peel and coconut coir. Building and Environment 39:59–65. doi:10.1016/j.buildenv.2003.08.001.
  • Marwa, L., A. Rim Ben, F. Magali, I. Laurent, and G. Achraf. 2019. Investigation of fiber surface treatment effect on thermal, mechanical and acoustical properties of date palm fiber-reinforced cementitious composites. Waste and Biomass Valorization 10 (12):1–15. doi:10.1007/s12649-019-00745-3.
  • Meddahi, A., K. Ait Tahar, and M. Bibi. 2008. Studies of sisal fiber-containing composites. Journal of Natural Fibers 14 (1):26–39. doi:10.1080/15440470801901399.
  • Melkamu, A., M. B. Kahsay, and A. G. Tesfay. 2018. Agave sisalana-reinforced polyester composite. Journal of Natural Fibers. doi:10.1080/15440478.2018.
  • Mochane, M. J., T. C. Mokhena, T. H. Mokhothu, A. Mtibe, R. Sadiku, S. S. Ray, I. D. Ibrahim, and O. O. Daramola. 2019. Recent progress on natural fiber hybrid composites for advanced applications: A review. eXPRESS Polymer Letters 13 (2):159–98. doi:10.3144/expresspolymlett.2019.15.
  • Naidu, A. L., and S. Kona. 2018. Experimental study of the mechanical properties of banana fiber and groundnut shell ash reinforced epoxy hybrid composite. International Journal of Engineering 31:659–65. doi:10.5829/ije.2018.31.04a.1.
  • Omrani, E., L. P. Menezes, and K. P. Rohatgi. 2016. State of the art on tribological behaviour of polymer matrix composites reinforced with natural fibers in the green materials wood. Engineering Science and Technology 19:717–36. doi:10.1016/j.jestch.2015.
  • Prabhakaran, S., V. Krishnaraj, and R. Zitoune. 2014. Sound and vibration damping properties of flax fiber reinforced composites. Procedia Engineering 97:545–54. doi:10.1016/j.proeng.2014.12.285.
  • Ramesh, M., K. Palanikumar, and K. H. Reddy. 2013. Comparative evaluation on properties of hybrid glass fiber-sisal/jute reinforced epoxy composites. Procedia Engineering 51:745–50. doi:10.1016/j.proeng.2013.01.106.
  • Soundhar, A., and J. Kandasamy. 2019. Mechanical, chemical and morphological analysis of crab shell/sisal natural fiber hybrid composites. Journal of Natural Fibers 1–15. doi:10.1080/15440478.2019.1691127.
  • Taban, E., P. Soltani, U. Berardi, A. Putra, S. M. Mousavi, M. Faridan, S. E. Samaei, and A. Khavanin. 2020. Measurement, modeling, and optimization of sound absorption performance of Kenaf fibers for building applications. Building and Environment 180:107087. doi:10.1016/buildenv.2020.107087.
  • Tan, Y., X. Zhang, and J. P. Qu. 2018. Preparation and characterization of poly (lactic acid)/sisal fiber bio-composites under continuous elongation flow. Journal of Polymer Engineering 39 (1):76–84. doi:10.1515/polyeng-2018-0075.
  • Venkateshwaran, N., A. Elayaperumal, and G. K. Sathiya. 2012. Prediction of tensile properties of hybrid-naturalfibercomposites. Composites: Part B 43:793–96. doi:10.1016/j.compositesb.2011.08.023.
  • Zhang, S., Y. Li, and Z. Zheng. 2018. Effect of physiochemical structure on energy absorption properties of plant fibers reinforced composites: Dielectric, thermal insulation,and sound absorption properties. Composites Communications 10:163–67. doi:10.1016/j.coco.2018.09.006.

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.