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Articles

Mechanical Properties of Pineapple Leaf Fiber Reinforced Epoxy Infused with Silicon Carbide Micro Particles

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References

  • Aji, I., E. Zainudin, K. Abdan, S. Sapuan, and M. Khairul. 2012. Mechanical properties and water absorption behavior of hybridized kenaf/pineapple leaf fibre-reinforced high-density polyethylene composite. Journal of Composite Materials 47 (8):979–90. doi:10.1177/0021998312444147.
  • Aji, I. S., E. S. Zainudin, A. Khalina, S. M. Sapuan, and M. D. Khairul. 2011. Studying the effect of fiber size and fiber loading on the mechanical properties of hybridized kenaf/PALF-reinforced HDPE composite. Journal of Reinforced Plastics and Composites 30 (6):546–53. doi:10.1177/0731684411399141.
  • Arib, R. M. N., S. M. Sapuan, M. M. H. M. Ahmad, M. T. Paridah, and H. M. D. Khairul Zaman. 2006. Mechanical properties of pineapple leaf fibre reinforced polypropylene composites. Materials and Design 27 (5):391–96. doi:10.1016/j.matdes.2004.11.009.
  • Asi, O. 2008. Mechanical properties of glass-fiber reinforced epoxy composites filled with Al 2O3 particles. Journal of Reinforced Plastics and Composites 28 (23):2861–67. doi:10.1177/0731684408093975.
  • Bhowmick, M., S. Mukhopadhyay, and R. Alagirusamy. 2012. Mechanical properties of natural fibre- reinforced composites. Textile Progress 44 (May 2013):85–140.
  • Cao, Y., W. Wang, and Q. Wang. 2014. Application of mechanical model for natural fibre reinforced polymer composites. Materials Research Innovations 18 (S2):S2–354. doi:10.1179/1432891714Z.000000000431.
  • Fu, S. Y., X. Q. Feng, B. Lauke, and Y. W. Mai. 2008. Effects of particle size, particle/matrix interface adhesion and particle loading on mechanical properties of particulate-polymer composites. Composites Particle B: Engineering 39 (6):933–61. doi:10.1016/j.compositesb.2008.01.002.
  • Genin, G. M., and V. Birman. 2009. Micromechanics and structural response of functionally graded, particulate-matrix, fiber-reinforced composites. International Journal of Solids and Structures 46 (10):2136–50. doi:10.1016/j.ijsolstr.2008.08.010.
  • George, J., S. S. Bhagawan, and S. Thomas. 1998. Low-density polyethylene composites reinforced with pineapple-leaf fibre. Composites Science and Technology 58 (9):1471–85.
  • Kiaei, M., B. Kord, and R. Vaysi. 2014. Influence of residual lignin content on physical and mechanical properties of kraft Pulp/Pp composites. Maderas. Ciencia y tecnología 16 (4):495–503. doi:10.4067/S0718-221X2014005000040.
  • Kim, H. J., C. C. Swan, and R. S. Lakes. 2002. Computational studies on high-stiffness, high-damping SiC-InSn particulate reinforced composites. International Journal of Solids and Structures 39 (23):5799–812. doi:10.1016/S0020-7683(02)00404-3.
  • Leao, A. L., S. F. Souza, B. M. Cherian, E. Frollini, and S. Thomas. 2010a. Agro-based biocomposites for industrial applications. Molecular Crystals and Liquid Crystals 522 (1) May 2010:18–27. doi:10.1080/15421401003719852
  • Leao, A. L., S. F. Souza, B. M. Cherian, E. Frollini, and S. Thomas. 2010b. Pineapple leaf fibers for composites and cellulose. Molecular Crystals and Liquid Crystals May 2010:36–41. doi:10.1080/15421401003722930
  • Lloyd, D. J. 1994. Particle reinforced aluminium and magnesium matrix composites. International Materials Reviews 39 (1):1–23. doi:10.1179/095066094790150982.
  • Mishra, S., A. K. Mohanty, L. T. Drzal, M. Misra, and G. Hinrichsen. 2004. A review on pineapple leaf fibers, sisal fibers and their biocomposites. Macromolecular Materials and Engineering. doi:10.1002/mame.200400132.
  • Potluri, R., A. E. Kumar, K. Navuri, M. Nagaraju, and D. M. Rao. 2016. Buckling analysis of a ring stiffened hybrid composite cylinder. IOP Conference Series: Materials Science and Engineering 149: 12148. doi:10.1088/1757-899X/149/1/012148.
  • Scarber, P., Jr, and G. M. Janowski. 2001. Finite element analysis of reinforcement particle cracking in AlSiCp composites. Materials Science and Technology 17 (11):1339–46. doi:10.1179/026708301101509539.
  • Scarponi, C. 2015. Hemp fiber composites for the design of a Naca cowling for ultra-light aviation. Composites Particle B: Engineering 81:53–63. doi:10.1016/j.compositesb.2015.06.001.
  • Scarponi, C., and M. Messano. 2015. Comparative evaluation between E-glass and hemp fiber composites application in rotorcraft interiors. Composites Particle B: Engineering 69:542–49. doi:10.1016/j.compositesb.2014.09.010.
  • Sena Neto, A. R., M. A. M. Araujo, F. V. D. Souza, L. H. C. Mattoso, and J. M. Marconcini. 2013. Characterization and comparative evaluation of thermal, structural, chemical, mechanical and morphological properties of six pineapple leaf fiber varieties for use in composites. Industrial Crops and Products 43 (1):529–37. doi:10.1016/j.indcrop.2012.08.001.
  • Uma Devi, L., S. S. Bhagawan, and S. Thomas. 2012. Polyester composites of short pineapple fiber and glass fiber: tensile and impact properties. Polymer Composites 33 (7):1064–70. doi:10.1002/pc.22217.

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