448
Views
54
CrossRef citations to date
0
Altmetric
Research Article

Characterization of Natural Fibers from Cortaderia Selloana Grass (Pampas) as Reinforcement Material for the Production of the Composites

ORCID Icon, , , ORCID Icon, ORCID Icon, , & show all

References

  • Alotaibi, M. D., B. A. Alshammari, N. Saba, O. Y. Alothman, M. R. Sanjay, Z. Almutairi, and M. Jawaid. 2019. Characterization of natural fiber obtained from different parts of date palm tree (Phoenix dactylifera L.). International Journal of Biological Macromolecules 135:69–76. doi:10.1016/j.ijbiomac.2019.05.102.
  • Alshammari, B. A., M. D. Alotaibi, O. Y. Alothman, M. R. Sanjay, L. K. Kian, Z. Almutairi, and M. Jawaid. 2019. A new study on characterization and properties of natural fibers obtained from Olive Tree (Olea europaea L.) Residues. Journal of Polymers and the Environment 27 (11):2334–40. doi:10.1007/s10924-019-01526-8.
  • Arthanarieswaran, V. P., A. Kumaravel, and S. S. Saravanakumar. 2015. Physico-chemical properties of Alkali-Treated Acacia leucophloea fibers. International Journal of Polymer Analysis and Characterization 20 (8):704–13. doi:10.1080/1023666X.2015.1081133.
  • Chandrasekar, M., M. R. Ishak, S. M. 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.
  • Fiore, V., T. Scalici, and A. Valenza. 2014. Characterization of a new natural fiber from Arundo donax L. as potential reinforcement of polymer composites. Carbohydrate Polymers 106:77–83. doi:10.1016/j.carbpol.2014.02.016.
  • Girijappa, Y. G. T., S. M. Rangappa, J. Parameswaranpillai, and S. Siengchin. 2018. Natural fibers as sustainable and renewable resource for development of eco-friendly composites: A comprehensive. Frontiers in Materials 6:226. doi:10.3389/fmats.2019.00226.
  • Hyness, N. R. J., N. J. Vignesh, P. Senthamaraikannan, S. S. Saravanakumar, and M. R. Sanjay. 2018. Characterization of new natural cellulosic fiber from heteropogon contortus plant. Journal of Natural Fibers 15 (1):146–53. doi:10.1080/15440478.2017.1321516.
  • Jayaramudu, J., B. R. Guduri, and A. V. Rajulu. 2010. Characterization of new natural cellulosic fabric Grewia tilifolia. Carbohydrate Polymers 79 (4):847–51. doi:10.1016/j.carbpol.2009.10.046.
  • Khan, A., R. Vijay, D. L. Singaravelu, M. R. Sanjay, S. Siengchin, F. Verpoort, K. A. Alamry, and A. M. Asiri. 2019. Extraction and characterization of natural fiber from eleusine indica grass as reinforcement of sustainable fiber-reinforced polymer composites. Journal Of Natural Fibers:1–9. doi: 10.1080/15440478.2019.1697993.
  • Madhu, P., M. R. Sanjay, P. Senthamaraikannan, S. Pradeep, S. Siengchin, M. Jawaid, and M. Kathiresan. 2018. Effect of various chemical treatments of Prosopis juliflora fibers as composite reinforcement: Physicochemical, thermal, mechanical, and morphological properties. Journal of Natural Fibers 1–12. doi:10.1080/15440478.2018.1534191.
  • Madhu, P., M. R. Sanjay, P. Senthamaraikannan, S. Pradeep, S. S. Saravanakumar, and B. Yogesha. 2019. A review on synthesis and characterization of commercially available natural fibers: part ii. Journal Of Natural Fibers 16:1–12. doi: 10.1080/15440478.2017.1379045.
  • Madhu, P., M. R. Sanjay, S. Pradeep, K. S. Bhat, B. Yogesha, and S. Siengchin. 2019. Characterization of cellulosic fibre from Phoenix pusilla leaves as potential reinforcement for polymeric composites. Journal of Materials Research and Technology 8 (3):2597–604. doi:10.1016/j.jmrt.2019.03.006.
  • Maepa, C. E., J. Jayaramudu, J. O. Okonkwo, S. S. Ray, E. R. Sadiku, and J. Ramontja. 2015. Extraction and characterization of natural cellulose fibers from maize tassel. International Journal of Polymer Analysis and Characterization 20 (2):99–109. doi:10.1080/1023666X.2014.961118.
  • Manimaran, P., M. R. Sanjay, P. Senthamaraikannan, M. Jawaid, S. S. Saravanakumar, and R. George. 2019. Synthesis and characterization of cellulosic fiber from red banana peduncle as reinforcement for potential applications. Journal Of Natural Fibers 16:1–13. doi: 10.1080/15440478.2018.1434851.
  • Manimaran, P., M. R. Sanjay, P. Senthamaraikannan, S. S. Saravanakumar, S. Siengchin, G. Pitchayyapillai, and A. Khan. 2019b. Physico-chemical properties of fiber extracted from the Flower of Celosia Argentea plant. Journal of Natural Fibers:1–10. doi: 10.1080/15440478.2019.1629149
  • Manimaran, P., P. Senthamaraikannan, M. R. Sanjay, M. K. Marichelvam, and M. Jawaid. 2018b. Fiber characterization of furcraea foetida natural fiber as potential reinforcement of bio-composite. Carbohydrate Polymers 181:650–58. doi:10.1016/j.carbpol.2017.11.099.
  • Manimaran, P., S. P. Saravanan, M. R. Sanjay, S. Siengchin, M. Jawaid, and A. Khan. 2019a. Characterization of new cellulosic fiber: Dracaena reflexa as a reinforcement for polymer composite structures. Journal of Materials Research and Technology 8 (2):1952–63. doi:10.1016/j.jmrt.2018.12.015.
  • Mayandi, K., N. Rajini, P. Pitchipoo, J. T. Winowlin.. Jappes, and A.V Rajulu. 2016. Extraction and characterization of new natural lignocellulosic fiber cyperus pangorei. International Journal Of Polymer Analysis and Characterization 21 (2):pp.175–183. doi:10.1080/1023666X.2016.1132064.
  • Premalatha, N., S. S. Saravanakumar, M. R. Sanjay, S. Siengchin, and A. Khan. 2019. Structural and thermal properties of chemically modified Luffa Cylindrica fibers. Journal of Natural Fibers 1–7. doi:10.1080/15440478.2019.1678546.
  • Puttegowda, M., S. M. Rangappa, M. Jawaid, P. Shivanna, Y. Basavegowda, N. Saba, and Mohammad Jawaid Thariq, In Sustainable Composites for Aerospace Rangappa, 2018, pp.315-351. doi: 10.1016/B978-0-08-102131-6.00021-9 Woodhead Publishing.
  • Ramanaiah, K., A. V. R. Prasad, and K. H. C. Reddy. 2012a. Thermo physical properties of elephant grass fiber-reinforced polyester composites. Materials Letter 89:156–58. doi:10.1016/j.matlet.2012.08.070.
  • Ramanaiah, K., A. V. R. Prasad, and K. H. C. Reddy. 2012b. Thermal and mechanical properties of waste grass broom fiber-reinforced polyester composites. Materials and Design 40:103–08. doi:10.1016/j.matdes.2012.03.034.
  • Reddy, K. O., C. U. Maheswari, D. P. J. Reddy, and A. V. Rajulu. 2009. Thermal properties of Napier grass fibers. Materials Letters 63:2390–92. doi:10.1016/j.matlet.2009.08.035.
  • Rwawiire, S., and B. Tomkova. 2015. Morphological, thermal, and mechanical characterization of sansevieria trifasciata fibers. Journal of Natural Fibers 12:201–10. doi:10.1080/15440478.2014.914006.
  • Sanjay, M. R., P. Madhu, M. Jawaid, S. Pradeep, P. Senthamaraikannan, and S. Senthil. 2018. Characterization and properties of natural fiber polymer composites: A comprehensive review. Journal of Cleaner Production 172:566–81. doi:10.1016/j.jclepro.2017.10.101.
  • Sanjay, M. R., S. Siengchin, J. Parameswaranpillai, M. Jawaid, C. I. Pruncu, and A. Khan. 2019. A comprehensive review of techniques for natural fibers as reinforcement in composites: Preparation, processing and characterization. Carbohydrate Polymers 207:108–21. doi:10.1016/j.carbpol.2018.11.083.
  • Saravanakumar, S. S., A. Kumaravel, T. Nagarajan, and I. G. Moorthy. 2014. Investigation of physico-chemical properties of Alkali-treated Prosopis juliflora fibers. International Journal of Polymer Analysis and Characterization 19 (4):309–17. doi:10.1080/1023666X.2014.902527.
  • Senthamaraikannan, P., M. R. Sanjay, K. S. Bhat, N. H. Padmaraj, and M. Jawaid. 2019b. Characterization of natural cellulosic fiber from bark of Albizia amara. Journal of Natural Fibers 16 (8):1124–31. doi:10.1080/15440478.2018.1453432.
  • Senthamaraikannan, P., S. S. Saravanakumar, M. R. Sanjay, M. Jawaid, and S. Siengchin. 2019a. Physico-chemical and thermal properties of untreated and treated Acacia planifrons bark fibers for composite reinforcement. Materials Letters 240:221–24. doi:10.1016/j.matlet.2019.01.024.
  • Senthamaraikannan, P., S. S. Saravanakumar, and V. P. Arthanarieswaran. 2016. Physicochemical properties of new cellulosic fibers from bark of Acacia Planifrons. International Journal of Polymer Analysis and Characterization 21 (3):207–13. doi:10.1080/1023666X.2016.1133138.
  • Suryanto, H., E. Marsyahyo, Y. S. Irawan, and R. Soenoko. 2014. Morphology, structure, and mechanical properties of natural cellulose fiber from mendong grass (Fimbristylis globulosa). Journal of Natural Fibers 1:333–51. doi:10.1080/15440478.2013.879087.
  • Vijay, R., D. Lenin Singaravelu, A. Vinod, I. D. Franklin.. Paul Raj, M. R. Sanjay, and S. Siengchin. 2019a. Characterization of novel natural fiber from saccharum bengalense grass (sarkanda). Journal Of Natural Fibers:1–9. doi: 10.1080/15440478.2019.1598914.
  • Vijay, R., D. L. Singaravelu, A. Vinod, M. R. Sanjay, and S. Siengchin. 2019c. Characterization of alkali-treated and untreated natural fibers from the stem of parthenium hysterophorus. Journal Of Natural Fibers:1–11. doi: 10.1080/15440478.2019.1612308.
  • Vijay, R., D. L. Singaravelu, A. Vinod, M. R. Sanjay, S. Siengchin, M. Jawaid, A. Khan, and J. Parameswaranpillai. 2019b. Characterization of raw and alkali treated new natural cellulosic fibers from Tridax procumbens. International Journal of Biological Macromolecules 125:99–108. doi:10.1016/j.ijbiomac.2018.12.056.
  • Vinod, A., R. Vijay, D. L. Singaravelu, M. R. Sanjay, S. Siengchin, Y. Yagnaraj, and S. Khan. 2019. Extraction and characterization of natural fiber from stem of Cardiospermum Halicababum. Journal of Natural Fibers 1–11. doi:10.1080/15440478.2019.1669514.

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.