154
Views
5
CrossRef citations to date
0
Altmetric
Research Article

Comparative Study of Mechanical Properties of Chemically Treated and Untreated Cyrtostachys Renda Fibers

ORCID Icon, , , ORCID Icon & ORCID Icon

References

  • Ali, A., K. Shaker, Y. Nawab, M. Jabbar, T. Hussain, J. Militky, and V. Baheti. 2018. Hydrophobic treatment of natural fibers and their composites—a review. Journal of Industrial Textiles 47 (8):2153–83. doi:10.1177/1528083716654468.
  • Aruan Efendy, M. G., and K. L. Pickering, 2014. Comparison of harakeke with hemp fibre as a potential reinforcement in composites. Composites. Part A, Applied Science and Manufacturing 67:259–67. doi:10.1016/j.compositesa.2014.08.023
  • Asim, M., M. Jawaid, K. Abdan, and M. R. Ishak. 2016. Effect of alkali and silane treatments on mechanical and fibre-matrix bond strength of kenaf and pineapple leaf fibres. Journal of Bionic Engineering 13 (3):426–35. doi:10.1016/S1672-6529(16)60315-3.
  • Bachtiar, D., S. Sapuan, and M. Hamdan. 2008. The effect of alkaline treatment on tensile properties of sugar palm fibre reinforced epoxy composites. Materials & Design 29 (7):1285–90. doi:10.1016/j.matdes.2007.09.006.
  • Barreto, A. C. H., M. A. Esmeraldo, D. S. Rosa, P. B. A. Fechine, and S. E. Mazzetto. 2010. Cardanol biocomposites reinforced with jute fiber: Microstructure, biodegradability, and mechanical properties. Polymer Composites 31 (11):1928–37. doi:10.1002/pc.20990.
  • Benyahia, A., A. Merrouche, M. Rokbi, and Z. Kouadri. 2013. Study the effect of alkali treatment of natural fibers on the mechanical behavior of the composite unsaturated polyester-fiber alfa. composites 2:3.
  • Cai, M., H. Takagi, A. N. Nakagaito, Y. Li, and G. I. Waterhouse. 2016. Effect of alkali treatment on interfacial bonding in abaca fiber-reinforced composites. Composites. Part A, Applied Science and Manufacturing 90:589–97. doi:10.1016/j.compositesa.2016.08.025
  • Cai, M., H. Takagi, A. N. Nakagaito, M. Katoh, T. Ueki, G. I. N. Waterhouse, and Y. Li. 2015. Influence of alkali treatment on internal microstructure and tensile properties of abaca fibers. Industrial Crops and Products 65:27–35. doi:10.1016/j.indcrop.2014.11.048.
  • Chandrasekar, M., M. Ishak, S. Sapuan, Z. Leman, and M. Jawaid. 2017. A review on the characterisation of natural fibres and their composites after alkali treatment and water absorption. Plastics, Rubber and Composites 46 (3):119–36. doi:10.1080/14658011.2017.1298550.
  • Chen, H., Y. Yu, T. Zhong, Y. Wu, Y. Li, Z. Wu, and B. Fei. 2017. Effect of alkali treatment on microstructure and mechanical properties of individual bamboo fibers. Cellulose 24 (1):333–47. doi:10.1007/s10570-016-1116-6.
  • Cheng, L., T. Zhang, M. Guo, and X. Li. 2014. Structural characteristics and properties of windmill palm leaf sheath fiber. Wood and Fiber Science 46 (2):270–79.
  • Dahham, O.S., N. Noriman, R. Hamzah, M.N. Al-Samarrai, S. Syed, Z. Idrus, T. Adam and M. Mohammed. 2018. The influences naoh treatment on polypropylene/cyperus odoratus (pp/cy) composites: Tensile and morphology. In J Phys Conf Ser, 012057. 1st International Conference on Green and Sustainable Computing (ICoGeS) 2017 25–27 November 2017, Kuching, Sarawak, Malaysia: IOP Publishing. doi:10.1088/1742-6596/1019/1/012057
  • Dicker, M. P. M., P. F. Duckworth, A. B. Baker, G. Francois, M. K. Hazzard, and P. M. Weaver. 2014. Green composites: A review of material attributes and complementary applications. Composites. Part A, Applied Science and Manufacturing 56:280–89. doi:10.1016/j.compositesa.2013.10.014.
  • Hamidon, M. H., M. T. H. Sultan, A. H. Ariffin, and A. U. M. Shah. 2019. Effects of fibre treatment on mechanical properties of kenaf fibre reinforced composites: A review. Journal of Materials Research and Technology 8 (3):3327–37. doi:10.1016/j.jmrt.2019.04.012.
  • Herlina Sari, N., I. N. G. Wardana, Y. S. Irawan, and E. Siswanto. 2018. Characterization of the chemical, physical, and mechanical properties of NaOH-treated natural cellulosic fibers from corn husks. Journal of Natural Fibers 15 (4):545–58. doi:10.1080/15440478.2017.1349707.
  • Hosur, M., H. Maroju, and S. Jeelani. 2015. Comparison of effects of alkali treatment on flax fibre reinforced polyester and polyester-biopolymer blend resins. Polymers and Polymer Composites 23 (4):229–42. doi:10.1177/096739111502300404.
  • Islam, M., K. Pickering, and N. Foreman. 2010. Influence of alkali treatment on the interfacial and physico-mechanical properties of industrial hemp fibre reinforced polylactic acid composites. Composites. Part A, Applied Science and Manufacturing 41 (5):596–603. doi:10.1016/j.compositesa.2010.01.006.
  • Lai, W. L., M. Mariatti, and M. Jani. 2008. The properties of woven kenaf and betel palm (areca catechu) reinforced unsaturated polyester composites. Polymer-Plastics Technology and Engineering 47 (12):1193–99. doi:10.1080/03602550802392035.
  • Loganathan, T. M., M. T. H. Sultan, M. Jawaid, Q. Ahsan, J. Naveen, and V. Perumal. 2020b. Characterization of new cellulosic cyrtostachys renda and ptychosperma macarthurii fibers from landscaping plants. Journal of Natural Fibers 1–16.
  • Loganathan, T. M., M. T. H. Sultan, Q. Ahsan, M. Jawaid, J. Naveen, A. U. M. Shah, and L. S. Hua. 2020a. Characterization of alkali treated new cellulosic fibre from cyrtostachys renda. Journal of Materials Research and Technology 9 (3):3537–46. doi:10.1016/j.jmrt.2020.01.091.
  • Lomonaco, D., G. Mele, and S. E. Mazzetto. 2017. Cashew nutshell liquid (cnsl): From an agro-industrial waste to a sustainable alternative to petrochemical resources. In Cashew nut shell liquid, 19–38. New York, NY: Springer.
  • Madhu, P., M. Sanjay, P. Senthamaraikannan, S. Pradeep, S. Saravanakumar, and B. Yogesha. 2019. A review on synthesis and characterization of commercially available natural fibers: Part ii. Journal of Natural Fibers 16 (1):25–36. doi:10.1080/15440478.2017.1379045.
  • Mwaikambo, L. Y., and M. P. Ansell, 2002. Chemical modification of hemp, sisal, jute, and kapok fibers by alkalization. Journal of Applied Polymer Science 84 (12):2222–34. doi:10.1002/app.10460
  • Mwaikambo, L. Y., and M. P. Ansell, 2006. Mechanical properties of alkali treated plant fibres and their potential as reinforcement materials. I. Hemp fibres. Journal of Materials Science 41 (8):2483–96. doi:10.1007/s10853-006-5098-x
  • Najeeb, M., M. Sultan, Y. Andou, A. Shah, K. Eksiler, M. Jawaid, and A. Ariffin. 2020. Characterization of lignocellulosic biomass from Malaysian’s yankee pineapple ac6 toward composite application. Journal of Natural Fibers (1–13):1–13. doi:10.1080/15440478.2019.1710655.
  • Ouajai, S., and R. Shanks. 2005. Composition, structure and thermal degradation of hemp cellulose after chemical treatments. Polymer Degradation and Stability 89 (2):327–35. doi:10.1016/j.polymdegradstab.2005.01.016.
  • Oushabi, A., S. Sair, F. O. Hassani, Y. Abboud, O. Tanane, and A. El Bouari. 2017. The effect of alkali treatment on mechanical, morphological and thermal properties of date palm fibers (dpfs): Study of the interface of dpf–polyurethane composite. South African Journal of Chemical Engineering 23:116–23. doi:10.1016/j.sajce.2017.04.005.
  • Pelaez-Samaniego, M. R., V. Yadama, E. Lowell, T. E. Amidon, and T. L. Chaffee. 2013. Hot water extracted wood fiber for production of wood plastic composites (wpcs). Holzforschung 67 (2):193–200. doi:10.1515/hf-2012-0071.
  • Pickering, K. L., M. G. A. Efendy, and T. M. Le. 2016. A review of recent developments in natural fibre composites and their mechanical performance. Composites. Part A, Applied Science and Manufacturing 83:98–112. doi:10.1016/j.compositesa.2015.08.038.
  • Ridzuan, M. J. M., M. S. Abdul Majid, M. Afendi, S. N. Aqmariah Kanafiah, J. M. Zahri, and A. G. Gibson. 2016. Characterisation of natural cellulosic fibre from pennisetum purpureum stem as potential reinforcement of polymer composites. Materials & Design 89:839–47. doi:10.1016/j.matdes.2015.10.052.
  • Testing, A.S.F. and Materials. 2007. Astm d3822-07 standard test method for tensile properties of single textile fibers: ASTM.
  • Thygesen, A., A. B. Thomsen, G. Daniel, and H. Lilholt. 2007. Comparison of composites made from fungal defibrated hemp with composites of traditional hemp yarn. Industrial Crops and Products 25 (2):147–59. doi:10.1016/j.indcrop.2006.08.002.
  • Tran, L., X. Yuan, D. Bhattacharyya, C. Fuentes, A. W. Van Vuure, and I. Verpoest. 2015. Fiber-matrix interfacial adhesion in natural fiber composites. International Journal of Modern Physics. B n11. 29 (10):1540018. doi:10.1142/S0217979215400184.
  • Van De Weyenberg, I., J. Ivens, A. De Coster, B. Kino, E. Baetens and I. Verpoest. 2003. Influence of processing and chemical treatment of flax fibres on their composites. Composites Science and Technology 63, no 9: 1241–46. doi:10.1016/S0266-3538(03)00093-9
  • Vilaseca, F., F. Serra-Parareda, E. Espinosa, A. Rodríguez, P. Mutjé, and M. Delgado-Aguilar. 2020. Valorization of hemp core residues: Impact of NaOH treatment on the flexural strength of pp composites and intrinsic flexural strength of hemp core fibers. Biomolecules 10 (6):823. doi:10.3390/biom10060823.
  • Wong, Y. and Low. 2010. The effects of alkali treatment on the interfacial adhesion of bamboo fibres. Proceedings of the Institution of Mechanical Engineers, Part L: Journal of Materials: Design and Applications 224, no 3: 139–48.
  • Xia, L., C. Zhang, A. Wang, Y. Wang, and W. Xu. 2020. Morphologies and properties of juncus effusus fiber after alkali treatment. Cellulose 27 (4):1909–20. doi:10.1007/s10570-019-02933-9.
  • Yang, Y., R. Boom, B. Irion, D.-J. Van Heerden, P. Kuiper, and H. De Wit. 2012. Recycling of composite materials. Chemical Engineering and Processing: Process Intensification 51:53–68. doi:10.1016/j.cep.2011.09.007.

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.