239
Views
11
CrossRef citations to date
0
Altmetric
Research Article

Mechanical Properties Evaluation of Sugarcane Bagasse-Glass/ Polyester Composites

, , &

References

  • Abd El-baky, M. A. 2017. Evaluation of mechanical properties of jute/glass/carbon fibers reinforced hybrid composites. Fibers and Polymers 18 (12):2417–32. doi:10.1007/s12221-017-7682-x.
  • Abd El-baky, M. A. 2018. Impact performance of hybrid laminated composites with statistical analysis. Iranian Polymer Journal 27 (7):445–59. doi:10.1007/s13726-018-0622-9.
  • Abd El-baky, M. A. 2019. Experimental investigation on impact performance of glass–Polypropylene hybrid composites: Effect of water aging. Journal of Thermoplastic Composite Materials 32 (5):657–72. doi:10.1177/0892705718772876.
  • Abd El-baky, M. A., and M. A. Attia. 2019a. Water absorption effect on the in-plane shear properties of jute–Glass–Carbon-reinforced composites using Iosipescu test. Journal of Composite Materials 53 (21):3033–45. doi:10.1177/0021998318809525.
  • Abd El-baky, M. A., and M. A. Attia. 2019b. Flexural fatigue performance of hybrid composite laminates based on E-glass and polypropylene fibers. Journal of Thermoplastic Composite Materials 32 (2):228–47. doi:10.1177/0892705717751020.
  • Abd El-baky, M. A., M. A. Attia, and M. Kamel. 2018. Flexural fatigue and failure probability analysis of polypropylene-glass hybrid fibres reinforced epoxy composite laminates. Plastics, Rubber and Composites 47 (2):47–64. doi:10.1080/14658011.2017.1397252.
  • Ahmed, K. S., and S. Vijayarangan. 2008. Tensile, flexural and interlaminar shear properties of woven jute and jute-glass fabric reinforced polyester composites. Journal of Materials Processing Technology 207 (1–3):330–35. doi:10.1016/j.jmatprotec.2008.06.038.
  • Amico, S. C., C. C. Angrizani, and M. L. Drummond. 2010. Influence of the stacking sequence on the mechanical properties of glass/sisal hybrid composites. Journal of Reinforced Plastics and Composites 29 (2):179–89. doi:10.1177/0731684408096430.
  • Amiri, A., Z. Triplett, A. Moreira, N. Brezinka, M. Alcock, and C. A. Ulven. 2017. Standard density measurement method development for flax fiber. Industrial Crops and Products 96:196–202. doi:10.1016/j.indcrop.2016.11.060.
  • ASTM D 2734. 2009. Standard test methods for void content of reinforced plastics. West Conshohocken, PA: ASTM International. www.astm.org
  • ASTM D 3039. 2000. Standard test method for tensile properties of polymer matrix composite materials. West Conshohocken, PA: ASTM International. www.astm.org
  • ASTM D2344. 1984. Standard test method for apparent interlaminar shear strength of parallel fiber composites by short-beam method. West Conshohocken, PA: ASTM International. www.astm.org
  • ASTM D792. 2013. Standard test methods for density and specific gravity (Relative Density) of plastics by displacement. West Conshohocken, PA: ASTM International. Retrieved from www.astm.org
  • Attia, M. A., M. A. Abd El-baky, and A. E. Alshorbagy. 2017. Mechanical performance of intraply and inter-intraply hybrid composites based on e-glass and polypropylene unidirectional fibers. Journal of Composite Materials 51 (3):381–94. doi:10.1177/0021998316644972.
  • Attia, M. A., M. A. Abd El-Baky, M. A. Hassan, T. A. Sebaey, and E. Mahdi. 2018. Crashworthiness characteristics of carbon–Jute–Glass reinforced epoxy composite circular tubes. Polymer Composites 39 (S4):E2245–61. doi:10.1002/pc.v39.S4.
  • Berns, J., and C. Caesar (2000). Practical experiences in the production of panels using agricultural-based fibers. Proceedings No 7259, The Use of Agricultural-based fibers in the Manufacture of Composite Panels, Winnipeg, Manitoba, Forest Products Society, 7–20.
  • Bharath, K. N., M. R. Sanjay, M. Jawaid, B. S. Harisha, and S. Siengchin. 2018. Effect of stacking sequence on properties of coconut leaf sheath/jute/E-glass reinforced phenol formaldehyde hybrid composites. Journal of Industrial Textiles 2018:1528083718769926.
  • Bisanda, E. T., and M. P. Ansell. 1991. The effect of silane treatment on the mechanical and physical properties of sisal-epoxy composites. Composites Science and Technology 41 (2):165–78. doi:10.1016/0266-3538(91)90026-L.
  • Cao, Y., S. Shibata, and I. Fukumoto. 2006. Mechanical properties of biodegradable composites reinforced with bagasse fibre before and after alkali treatments. Composites Part A: Applied Science and Manufacturing 37 (3):423–29. doi:10.1016/j.compositesa.2005.05.045.
  • De Albuquerque, A. C., K. Joseph, L. H. de Carvalho, and J. R. d’Almeida. 2000. Effect of wettability and ageing conditions on the physical and mechanical properties of uniaxially oriented jute-roving-reinforced polyester composites. Composites Science and Technology 60 (6):833–44. doi:10.1016/S0266-3538(99)00188-8.
  • de Sausa, M. V., S. N. Monteiro, and J. R. M. d’Almeida. 2004. Evaluation of pre-treatment, size and molding pressure on flexural mechanical behavior of chopped bagasse–Polyester composites. Polymer Testing 23 (3):253–58. doi:10.1016/j.polymertesting.2003.09.002.
  • El-Tayeb, N. 2008. Abrasive wear performance of untreated SCF reinforced polymer composite. Journal of Materials Processing Technology 206 (1–3):305–14. doi:10.1016/j.jmatprotec.2007.12.028.
  • Herández-Salas, J. M., M. S. Villa-Ramίrez, N. J. S. Veloz-Rendό, K. N. Rivera-Hernández, R. A. González-César, M. A. Plascencia-Espinosa, and S. R. Trejo-Estrada. 2009. Comparative hydrolysis and fermentation of sugarcane and agave bagasse. Bioresource Technology 100 (3):1238–45. doi:10.1016/j.biortech.2006.09.062.
  • JIS K. 7055. 1987. Testing method for flexural properties of glass fiber reinforced plastics. Japan: Japanese Standards Association.
  • Lagace, P. A. 1986. Notch sensitivity and stacking sequence of laminated composites. In Composite materials: Testing and design (Seventh Conference), Vol. 893., 161–67. ASTM International. doi:10.1520/STP35347S.
  • Latha, P. S., M. V. Rao, V. K. Kumar, G. Raghavendra, S. Ojha, and R. Inala. 2106. Evaluation of mechanical and tribological properties of bamboo–Glass hybrid fiber reinforced polymer composite. Journal of Industrial Textiles 46 (1):3–18. doi:10.1177/1528083715569376.
  • Le Gall, M., P. Davies, N. Martin, and C. Baley. 2018. Recommended flax fibre density values for composite property predictions. Industrial Crops and Products 114:52–58. doi:10.1016/j.indcrop.2018.01.065.
  • Lee, S. C., and M. Mariatti. 2008. The effect of bagasse fibers obtained (from rind and pith component) on the properties of unsaturated polyester composites. Materials Letters 62 (15):2253–56. doi:10.1016/j.matlet.2007.11.097.
  • Loh, Y. R., D. Sujan, M. E. Rahman, and C. A. Das. 2013. Sugarcane bagasse-the future composite material: A literature review. Resources, Conservation and Recycling 75:14–22. doi:10.1016/j.resconrec.2013.03.002.
  • Marom, G., S. Fischer, F. R. Tuler, and H. D. Wagner. 1978. Hybrid effects in composites: Conditions for positive or negative effects versus rule of mixtures behavior. Journal of Materials Science 13 (7):1419–26. doi:10.1007/BF00553194.
  • Mittal, V., and S. Sinha. 2015. Effect of chemical treatment on the mechanical and water absorption properties of bagasse fiber-reinforced epoxy composites. Journal of Polymer Engineering 35 (6):545–50. doi:10.1515/polyeng-2014-0270.
  • Monteiro, S. N., R. J. S. Rodriquez, M. V. D. Souza, and J. R. M. d’Almedia. 1998. Sugar cane bagasse waste as reinforcement in low cost composites. Advanced Performance Materials 5 (3):183–91. doi:10.1023/A:1008678314233.
  • Mulinari, D. R., H. J. C. Voorwald, M. O. H. Cioffi, M. L. C. P. D. Silva, T. G. D. Cruz, and C. Saron. 2009. Sugarcane bagasse cellulose/HDPE composites obtained by extrusion. Composites Science and Technology 69 (2):214–19.
  • Oladele, I. O. 2014. Effect of bagasse fibre reinforcement on the mechanical properties of polyester composites. Journal Of The Association Of Professional Engineers Of Trinidad & Tobago 42 (1):12–15.
  • Otto, G. P., M. P. Moisés, G. Carvalho, A. W. Rinaldi, J. C. Garcia, E. Radovanovic, and S. L. Fávaro. 2017. Mechanical properties of a polyurethane hybrid composite with natural lignocellulosic fibers. Composites Part B: Engineering 110:459–65. doi:10.1016/j.compositesb.2016.11.035.
  • Pandey, A., C. R. Soccol, P. Nigam, and V. T. Soccol. 2000. Biotechnological potential of agro-industrial residues. I: Sugarcane bagasse. Bioresource Technology 74 (1):69–80. doi:10.1016/S0960-8524(99)00142-X.
  • Rajasekaran, T., and K. Gokul. 2016. Evaluation of mechanical characteristics of treated and untreated sugarcane fiber composites. Journal of Chemical and Pharmaceutical Sciences 9 (1):652–56.
  • Ray, D., and B. K. Sarkar. 2001. Characterization of alkali-treated jute fibers for physical and mechanical properties. Journal of Applied Polymer Science 80 (7):1013–20. doi:10.1002/(ISSN)1097-4628.
  • Ray, D., B. K. Sarkar, A. K. Rana, and N. R. Bose. 2001. The mechanical properties of vinylester resin matrix composites reinforced with alkali-treated jute fibres. Composites Part A: Applied Science and Manufacturing 32 (1):119–27. doi:10.1016/S1359-835X(00)00101-9.
  • Ray, D., B. K. Sarkar, and N. R. Bose. 2002. Impact fatigue behaviour of vinyl ester resin matrix composites reinforced with alkali treated jute fibres. Composites Part A: Applied Science and Manufacturing 33 (2):233–41. doi:10.1016/S1359-835X(01)00096-3.
  • Rokbi, M., H. Osmani, A. Imad, and N. Benseddiq. 2011. Effect of chemical treatment on lexure properties of natural fiber-reinforced polyester composite. Procedia Engineering 10:2092–97. doi:10.1016/j.proeng.2011.04.346.
  • Saini, G., A. K. Narula, V. Choudhary, and R. Bhardwaj. 2010. Effect of particle size and alkali treatment of sugarcane bagasse on thermal, mechanical, and morphological properties of PVC-bagasse composites. Journal of Reinforced Plastics and Composites 29 (5):731–40. doi:10.1177/0731684408100693.
  • Saw, S. K., G. Sarkhe, and A. Choudhury. 2011. Dynamic mechanical analysis of randomly oriented short bagasse/coir hybrid fibre-reinforced epoxy novolac composites. Fibers and Polymers 12 (4):506. doi:10.1007/s12221-011-0506-5.
  • Saw, S. K., G. Sarkhe, and A. Choudhury. 2012. Effect of layering pattern on the physical, mechanical, and thermal properties of jute/bagasse hybrid fiber-reinforced epoxy novolac composites. Polymer Composites 33 (10):1824–31. doi:10.1002/pc.v33.10.
  • Selmy, A. I., A. R. Elsesi, N. A. Azab, and M. A. Abd El-baky. 2011. Monotonic properties of unidirectional glass fiber (U)/random glass fiber (R)/epoxy hybrid composites. Materials & Design 32 (2):743–49. doi:10.1016/j.matdes.2010.07.031.
  • Selmy, A. I., A. R. Elsesi, N. A. Azab, and M. A. Abd El-baky. 2012. In-plane shear properties of unidirectional glass fiber (U)/random glass fiber (R)/epoxy hybrid and non-hybrid composites. Composites Part B: Engineering 43 (2):431–38. doi:10.1016/j.compositesb.2011.06.001.
  • Selmy, A. I., M. A. Abd El-baky, and D. A. Hegazy. 2019. Mechanical properties of inter-ply hybrid composites reinforced with glass and polyamide fibers. Journal of Thermoplastic Composite Materials 32 (2):267–93. doi:10.1177/0892705717751022.
  • Selmy, A. I., M. A. Abd El-baky, M. R. Ghazy, and M. Kamel. 2015. In-plane shear characteristics of unidirectional glass fiber/epoxy functionally graded (FG) and nonfunctionally graded (NFG) composite laminates with statistical analysis. Journal of Composite Materials 49 (27):3347–58. doi:10.1177/0021998314561898.
  • Selmy, A. I., M. A. Abd El-baky, M. R. Ghazy, and M. Kamel. 2017. Flexural fatigue performance of glass fiber/epoxy step-wise functionally and non-functionally graded composites of different structures. International Polymer Processing 32 (3):298–307. doi:10.3139/217.3297.
  • Selmy, A. I., M. A. Abd El-baky, and N. A. Azab. 2013. Experimental study on flexural fatigue behavior of glass fibers/epoxy hybrid composites with statistical analysis. Journal of Reinforced Plastics and Composites 32 (23):1821–34. doi:10.1177/0731684413496879.
  • Selmy, A. I., N. A. Azab, and M. A. Abd El-baky. 2014. Statistical analysis of monotonic mechanical properties for unidirectional glass fiber (U)/random glass fiber (R)/epoxy hybrid and non-hybrid polymeric composites. Journal of Composite Materials 48 (4):455–69. doi:10.1177/0021998312474046.
  • Shibata, S., Y. Cao, and I. Fukumoto. 2005. Effect of bagasse fiber on the flexural properties of biodegradable composites. Journal of Polymer Composites 26 (5):689–94. doi:10.1002/(ISSN)1548-0569.
  • Subagia, I. A., Y. Kim, L. D. Tijing, and C. S. Kim. 2014. Effect of stacking sequence on the flexural properties of hybrid composites reinforced with carbon and basalt fibers. Composites Part B: Engineering 58:251–58. doi:10.1016/j.compositesb.2013.10.027.
  • Tewari, M., V. K. Singh, P. C. Gope, and A. K. Chaudhary. 2012. Evaluation of mechanical properties of bagasse-glass fiber reinforced composite. Journal of Materials and Environmental Science 3 (1):171–84.
  • Vazquez, A., V. A. Dominguez, and J. M. Kenny. 1999. Bagasse fiber-polypropylene based composites. Journal of Thermoplastic Composite Materials 12 (6):477–97. doi:10.1177/089270579901200604.
  • Vilay, V., M. Mariatti, R. M. Taib, and M. Todo. 2008. Effect of fiber surface treatment and fiber loading on the properties of bagasse fiber–Reinforced unsaturated polyester composites. Composites Science and Technology 68 (3–4):631–38. doi:10.1016/j.compscitech.2007.10.005.
  • Wirawan, R., S. M. Sapuan, R. Yunus, and K. Abdan. 2011. Properties of sugarcane bagasse/poly (vinyl chloride) composites after various treatments. Journal of Composite Materials 45 (16):1667–74. doi:10.1177/0021998310385030.
  • Yahaya, R., S. M. Sapuan, M. Jawaid, Z. Leman, and E. S. Zainudin. 2015. Effect of layering sequence and chemical treatment on the mechanical properties of woven kenaf–Aramid hybrid laminated composites. Materials & Design 15 (67):173–79. doi:10.1016/j.matdes.2014.11.024.
  • Zheng, Y. T., D. R. Cao, D. S. Wang, and J. J. Chen. 2007. Study on the interface modification of bagasse fibre and the mechanical properties of its composite with PVC. Composites Part A: Applied Science and Manufacturing 38 (1):20–25. doi:10.1016/j.compositesa.2006.01.023.

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.