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Research Article

Production of Biocomposites Using Different Pre-treated Cut Jute Fibre and Polylactic Acid Matrix and Their Properties

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References

  • Ahmed, A. S., S. Islam, A. Hassan, M. K. M. Haafiz, N. Islam, and R. Arjmandi. 2014. Impact of succinic anhydride on the properties of jute fiber/polypropylene biocomposites. Fibers and Polymers 15 (2):307–14. doi:10.1007/s12221-014-0307-8.
  • Álvarez-Chávez, C. R., D. L. Sánchez-Acosta, J. C. Encinas-Encinas, J. Esquer, P. Quintana-Owen, and T. J. Madera-Santana. 2017. Characterization of extruded poly (lactic acid)/pecan nutshell biocomposites. International Journal of Polymer Science Online publication. doi:10.1155/2017/3264098.
  • Anastas, P. T., and J. C. Warner. 2000. Green chemistry: Theory and practice, 135. UK: Oxford University Press.
  • Burrola-Núñez, H., P. J. Herrera-Franco, D. E. Rodríguez-Félix, H. Soto-Valdez, and T. J. Madera-Santana. 2018. Surface modification and performance of jute fibers as reinforcement on polymer matrix: An overview. Journal of Natural Fibers. doi:10.1080/15440478.2018.1441093.
  • Chand, N., and M. Fahim. 2008. Jute reinforced polymers composites. In Tribology of natural fiber polymer composites, eds. N. Chand and M. Fahim, 108–28. Cambridge, England: Woodhead Publishing Limited.
  • De Rosa, I. M., A. Iannoni, J. M. Kenny, D. Puglia, C. Santulli, F. Sarasini, and A. Terenzi. 2011. Poly (lactic acid)/phormium tenax composites: Morphology and thermo-mechanical behaviour. Polymer Composites 32:1362–68. doi:10.1002/pc.21159.
  • Doan, T., S. Gao, and E. Mader. 2006. Jute/polypropylene composites I: Effect of matrix modification. Composites Science and Technology 66:952–63. doi:10.1016/j.compscitech.2005.08.009.
  • Dong, A., Y. Yu, J. Yuan, Q. Wang, and X. Fan. 2014. Hydrophobic modification of jute fiber used for composite reinforcement via laccase-mediated grafting. Applied Surface Science 301:418–27. doi:10.1016/j.apsusc.2014.02.092.
  • Goriparthi, B. K., K. N. S. Suman, and N. M. Rao. 2012. Effect of fiber surface treatments on mechanical and abrasive wear performance of polylactide/jute composites. Composites: Part A 43:1800–08. doi:10.1016/j.compositesa.2012.05.007.
  • Haydaruzzaman, R., A. Khan, M. Khan, A. H. Khan, and M. A. Hossain. 2009. Effect of gamma radiation on the performance of jute fabrics-reinforced polypropylene composites. Radiation Physics and Chemistry 78:986–93. doi:10.1016/j.radphyschem.2009.06.011.
  • Hong, C. K., N. Kim, S. L. Kang, C. Nah, Y.-S. Lee, B.-H. Cho, and J.-H. Ahn. 2008. Mechanical properties of maleic anhydride treated jute fibre/polypropylene composites. Plastics, Rubber and Composites 37:325–30. doi:10.1179/174328908X314334.
  • Islam, T., R. A. Khan, M. A. Khan, M. A. Rahman, M. Fernandez-Lahore, Q. M. I. Huque, and R. Islam. 2009. Physico-mechanical and degradation properties of gamma-irradiated biocomposites of jute fabric-reinforced poly (caprolactone). Polymer-plastics Technology and Engineering 48:1203–10. doi:10.1080/03602550903149169.
  • Khan, F., S. R. Ahmad, and E. Kronfli. 2006. γ-Radiation induced changes in the physical and chemical properties of lignocellulose. Biomacromolecules 7:2303–09. doi:10.1021/bm060168y.
  • Kim, J., C. Park, Y. Choi, H. Lee, and G. Song. 2012. An investigation of mechanical properties of jute fiber-reinforced concrete. In High performance fiber reinforced cement composites, ed. G. T. Parra-Montesinos, H. W. Reinhardt, and A. E. Naaman, 75–82. Dordrecht: Springer.
  • Lee, S. H., I. Y. Kim, and W. S. Song. 2014. Biodegradation of polylactic acid (PLA) fibers using different enzymes. Macromolecular Research 22:657–63. doi:10.1007/s13233-014-2107-9.
  • Luan, L., W. Wu, M. H. Wagner, and M. Mueller. 2010. Seaweed as novel biofiller in polypropylene composites. Journal of Applied Polymer Science 118:997–1005.
  • Lucas, N., C. Bienaime, C. Belloy, M. Queneudec, F. Silvestre, and J. E. Nava-Saucedo. 2008. Polymer biodegradation: Mechanisms and estimation techniques. Chemosphere 73:429–42. doi:10.1016/j.chemosphere.2008.06.064.
  • Madera-Santana, T. J., H. Soto-Valdez, and M. O. W. Richardson. 2013. Influence of surface treatments on the physicochemical properties of short sisal fibers: Ethylene vinyl acetate composites. Polymer Engineering and Science 53:59–68. doi:10.1002/pen.23232.
  • Monterio, S. N., V. Calado, F. M. Margem, and R. J. S. Rodríguez. 2012. Thermogravimetric stability behavior of less common lignocellulosic fibers - a review. Journal of Materials Research and Technology 1:189–99. doi:10.1016/S2238-7854(12)70032-7.
  • Mwaikambo, L. Y., and M. P. Ansell. 2002. Chemical modification of hemp, sisal, jute, and kapok fibers by alkalization. Journal of Applied Polymer Science 84:2222–34. doi:10.1002/(ISSN)1097-4628.
  • Nayak, L., and A. Roy. 2011. Utilisation of jute by-products: A review. Agricultural Research Comunication Centre 32:63–69.
  • Ray, D., B. K. Sarkar, A. K. Rana, and N. R. Bose. 2001. Mechanical properties of vinylester resin matrix composites reinforced with alkali-treated jute fibres. Composites Part A: Applied Science and Manufacturing 32:119–27. doi:10.1016/S1359-835X(00)00101-9.
  • Saaidia, A., A. Bezazi, A. Belbah, H. Bouchelaghem, F. Scarpa, and S. Amirouche. 2017. Mechano-physical properties and statistical desing of jute yarns. Measurement 111:284–94. doi:10.1016/j.measurement.2017.07.054.
  • Saheb, D., and J. P. Jog. 1999. Natural fiber polymer composites: A review. Advances in Polymer Technology 18:351–63. doi:10.1002/(SICI)1098-2329(199924)18:4<>1.0.CO;2-Q.
  • Tripathi, P., V. K. Gupta, A. Dixit, R. K. Mishra, and S. Sharma. 2018. Development and characterization of low cost jute, bagasse and glass fiber reinforced advanced hybrid epoxy composites. AIMS Materials Science 5 (2):320–37. doi:10.3934/matersci.2018.2.320.
  • Wang, W. M., Z. S. Cai, J. Y. Yu, and Z. P. Xia. 2009. Changes in composition, structure, and properties of jute fibers after chemical treatments. Fibers and Polymers 10:776–80. doi:10.1007/s12221-009-0776-3.

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