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Research Article

The Effect of Alkaline Treatment to Pseudo-Stem Banana Fibers on the Performance of Polylactic Acid/ Banana Fiber Composite

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References

  • Ali, M. E., C. K. Yong, Y. C. Ching, C. H. Chuah, and N. S. Liou. 2015. Com effect of single and double stage chemically treated kenaf fibers on mechanical properties of polyvinyl alcohol film. BioResources 10 (1):822–13.
  • Almeida, J. H. S., C. C. Angrizani, E. C. Botelho, and S. C. Amico. 2015. Effect of fiber orientation on the shear behavior of glass fiber/epoxy composites. Materials & Design 65 (January):789–95. doi:10.1016/J.MATDES.2014.10.003.
  • Ariawan, D., E. Surojo, and J. Triyono. 2018. Effect of fiber orientation on tensile and impact properties of zalacca midrib fiber-HDPE composites by compression molding articles you may be interested in. doi:10.1063/1.5024119.
  • Dong, Y., A. Ghataura, H. Takagi, H. J. Haroosh, A. N. Nakagaito, and K. Tak Lau. 2014. Polylactic acid (PLA) biocomposites reinforced with coir fibres: Evaluation of mechanical performance and multifunctional properties. Composites Part A, Applied Science and Manufacturing 63 (August):76–84. doi:10.1016/J.COMPOSITESA.2014.04.003.
  • Hashim, M. Y., A. Mohd Amin, O. Mohd, F. Marwah, H. Othman, M. Radzi, M. Yunus, and N. Chuan Huat. 2017. The effect of alkali treatment under various conditions on physical properties of kenaf fiber. IOP Publishing IOP Conference of Series: Journal of Physics: Conference of Series 914:12030. doi:10.1088/1742-6596/914/1/012030.
  • Heena, A., S. A. Nur, M. Soleiman Barre, F. B. Ali, and H. Anuar. 2019. Degradation properties of biodegradable polymers. Journal of Wastes and Biomass Management 1 (2):05–08. doi:10.26480/jwbm.02.2019.05.08.
  • Kabir, M. M., H. Wang, K. T. Lau, and F. Cardona. 2012. Chemical treatments on plant-based natural fibre reinforced polymer composites: An overview. Composites Part B: Engineering 43 (7):2883–92. doi:10.1016/J.COMPOSITESB.2012.04.053.
  • Komal, U. K., M. K. Lila, and I. Singh. 2020. PLA/banana fiber based sustainable biocomposites: A manufacturing perspective. Composites Part B: Engineering 180 (January):107535. doi:10.1016/J.COMPOSITESB.2019.107535.
  • Lee, C. H., A. Khalina, and S. H. Lee. 2021. Importance of interfacial adhesion condition on characterization of plant-fiber-reinforced polymer composites: A review. Polymers 13 (3):1–22. doi:10.3390/polym13030438.
  • Li, D., S. Song, D. Zuo, and W. Wu. 2020. Effect of pore defects on mechanical properties of graphene reinforced aluminum nanocomposites. Metals 10 (4):1–9. doi:10.3390/met10040468.
  • Pandele, A. M., A. Constantinescu, I. C. Radu, F. Miculescu, S. Ioan Voicu, and L. T. Ciocan. 2020. Synthesis and characterization of PLA-micro-structured hydroxyapatite composite films. Materials 13 (2):1–13. doi:10.3390/ma13020274.
  • Parre, A., B. Karthikeyan, A. Balaji, and R. Udhayasankar. 2020. Investigation of chemical, thermal and morphological properties of untreated and NaOH treated banana fiber. Materials Today: Proceedings 22:347–52. doi:10.1016/J.MATPR.2019.06.655.
  • Patel, J. P., and P. H. Parsania. 2017. Characterization, testing, and reinforcing materials of biodegradable composites. In Biodegradable and biocompatible polymer composites: Processing, properties and applications. Elsevier Ltd. doi:10.1016/B978-0-08-100970-3.00003-1.
  • Santulli, C., F. Sarasini, D. Puglia, and J. M. Kenny. 2017. 8 injection moulding of plant fibre composites. Advanced Composite Materials: Properties and Applications August:420–39. doi:10.1515/9783110574432-008.
  • Shah, H., B. Srinivasulu, and S. C. Shit. 2013. Influence of Banana Fibre Chemical Modification on the Mechanical and Morphological Properties of Woven Banana Fabric/Unsaturated Polyester Resin Composites. Polymers from Renewable Resources 4 (2):61–84. doi:10.1177/204124791300400202.
  • Shankaran, D. R. 2018. Cellulose nanocrystals for health care applications. Applications of Nanomaterials 415–59. doi:10.1016/B978-0-08-101971-9.00015-6.
  • Shesan, J., A. C. Owonubi, A. G. Chioma, R. Neerish, and S. E. Rotimi. 2019. Fiber-matrix relationship for composites preparation. In Renewable and sustainable composites. IntechOpen. doi:10.5772/intechopen.84753.
  • Wei, Y., and Z. Liu. 2015. Recent progress in mesostructured materials. Recent Progress in Mesostructured Materials 165.
  • Zhao, X., K. Li, Y. Wang, H. Tekinalp, G. Larsen, D. Rasmussen, R. S. Ginder, L. Wang, D. J. Gardner, M. Tajvidi, et al. 2020. High-strength polylactic acid (PLA) biocomposites reinforced by epoxy-modified pine fibers. ACS Sustainable Chemistry & Engineering 8 (35):13236–47. doi:10.1021/ACSSUSCHEMENG.0C03463.
  • Zhou, Y., M. Fan, and L. Chen. 2016. Interface and bonding mechanisms of plant fibre composites: An overview. Composites Part B: Engineering 101 (September):31–45. doi:10.1016/J.COMPOSITESB.2016.06.055.