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Original Articles

Evaluation of Structural, Tensile and Thermal Properties of Banana Fibers

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Pages 485-497 | Published online: 29 Dec 2016

References

  • Abernethy, R.B. (Ed. & Publisher), 2006. The New Weibull Handbook Fifth Edition, Reliability and Statistical Analysis for Predicting Life, Safety, Supportability, Risk, Cost and Warranty Claims. 5th Edition. The New Weibull Handbook. Florida, USA. ISBN 0-9653062-3-2.
  • Alwani, M. S., H. P. S. Abdul Khali, O. Sulaiman, M. N. Islam, and R. Dungani. 2014. An approach to using agricultural waste fibers in biocomposites application: Thermogravimentric analysis and activation energy study. Bioresources 9 (1):218–230.
  • Andersons, J., E. Sparnins, R. Joffe, and L. Wallstrom. 2005. Strength distribution of elementary flax fibres. Composites Science and Technology 65(3––4):693–702. doi:10.1016/j.compscitech.2004.10.001.
  • Barreto, A. C. H., M. M. Costa, A. S. B. Sombra, D. S. Rosa, R. F. Nascimento, S. E. Mazzetto, and P. B. A. Fechine. 2010. Chemically modified banana fiber: Structure, dielectrical properties and biodegradability. Journal of Polymer & Environment 18:523–531. doi:10.1007/s10924-010-0216-x.
  • Becker, H., R. F. De Matos, J. De Souza, D. De. Lima, F. T. De Souza, and E. Longhinotti. 2013. Pseudo-stem banana fibers: Characterization and chromium removal. Orbital: The Electronic Journal of Chemistry, Special Issue, 5(3):164–170.
  • Bilba, K., M. A. Arsene, and A. Ouensanga. 2007. Study of banana and coconut fibers botanical composition, thermal degradation and textural observations. Bioresources Technology 98(1):58–68. doi:10.1016/j.biortech.2005.11.030.
  • Brindha, B., Vinodhini, S., Alarmelumangai, K., and Malathy, N.S. 2012. Physico-Chemical Properties of Fibers from Banana Varieties after Scouring. Indian Journal of Fundamental and Applied Life Sciences, 2(1):217–221.
  • Deepa, B., E. Abraham, B. M. Cherian, A. Bismarck, J. J. Blaker, L. A. Pothan, A. L. Leao, S. F. De Souza, and M. Kottaisamy. 2011. Structure, morphology and thermal characteristics of banana nanofibers obtained by steam explosion. Bioresources Technology 102:1988–97. doi:10.1016/j.biortech.2010.09.030.
  • Ganan, P., R. Zuluaga, J. M. Velez, and I. Mondragon. 2004. Biological natural retting for determining the hierarchical structuration of banana fibres. Macromolecular Bioscience 4:978–983. doi:10.1002/mabi.200400041.
  • Guimarães, J. L., E. Frollini, C. Da Silva, F. Wypych, and K. G. Satyanarayana. 2009. Characterization of banana, sugarcane bagasse and sponge gourd fibers of Brazil. Industrial Crops and Products 30:407–415. doi:10.1016/j.indcrop.2009.07.013.
  • Guimarães, J. L., A. C. Trindade Cursino, C. K. Saul, M. R. Sierrakowski, L. P. Ramos, F. Wypych, and K. G. Satyanarayana. 2014. Effect of processing conditions on tensile properties of green composites of castor oil cake starch-plant fibers. Journal of Bioprocesses and Biotechniques 5:198. doi:10.4172/2155-9821.1000198
  • Guimarães, J. L., F. Wypych, C. K. Saul, L. P. Ramos, and K. G. Satyanarayana. 2010. Studies of the processing and characterization of corn starch and its composites with banana and sugarcane fibers from Brazil. Carbohydrate Polymers 80:130–138. doi:10.1016/j.carbpol.2009.11.002.
  • Ibrahim, M. M., A. Dufresne, W. K. El-Zawawy, and F. A. Agblevor. 2010. Banana fibers and micro fibrils as lignocellulosic reinforcements in polymer composites. Carbohydrate Polymers 81(4):811–819. doi:10.1016/j.carbpol.2010.03.057.
  • Indira, K. N., J. Parameswaranpillai, and S. Thomas 2013a. Mechanical properties and failure topography of banana fiber PF Macro composites fabricated by RTM and CM techniques, ISRN Polymer Science 2013: Article ID 936048, 8 pages. http://dx.doi.org/10.1155/2013/936048
  • Indira, K. N., S. Thomas, and P. Jyotishkumar. 2013b. Characteristics of banana fibers and banana fiber reinforced phenol formaldehyde composites-macroscale to nanoscale. Journal of Applied Polymer Science 130(2):1239–1246. doi:10.1002/app.39220.
  • Joseph, S., M. S. Sreekala, P. Koshy, Z. Oommen, and S. Thomas. 2002. A comparison of the mechanical properties of phenol formaldehyde composites reinforced with banana fibers and glass fibers. Composites Science and Technology 62(14):1857–1868. doi:10.1016/S0266-3538(02)00098-2.
  • Justicz-Smith, N. G., G. Juniur Virgo, and V. E. Buchanan. 2008. Potential of Jamaican banana, coconut, coir and bagasse fibres as composites materials. Material Characterization 59 (9):1273–1278. doi:10.1016/j.matchar.2007.10.011.
  • Klaine, C. 2009. Characteristic strength, Weibull modulus, and failure probability of fused silica galss. Optical Engineering 48(11):113401 (pages: 1-10).
  • Kulkarni, A.G., Satyanarayana, K.G., Rohatgi, P.K., and Kalyani, Vijayan 1983. Mechanical Properties of Banana Fibers. Journal of Materials Science 18:2290–2296.
  • Kulkarni, A. G., K. G. Satyanarayana, K. Sukumaran, and P. K. Rohatgi. 1981. Mechanical behaviour of coir fibre under tensile load. Journal of Materials Science 16:905–914. doi:10.1007/BF00542734.
  • Kumar, R., V. Choudary, S. Mishra, and I. K. Varma. 2008. Banana fiber reinforced biodegradable soy protein composites. Frontiers of Chemistry in China 3(3):243–250. doi:10.1007/s11458-008-0069-1.
  • Manilal, V. B., and J. Sony. 2011. Banana pseudostem characterization and its fiber property evaluation on physical and bioextraction. Journal of Natural Fibers 8:1–12.
  • Merlini, C., S. D. A. S. Ramoa, and G. M. O. Barra. 2013. Conducting polypyrrole-coated banana fiber composites: Preparation and characterization. Polymer Composites 34(4):537–543. doi:10.1002/pc.22448.
  • Mohapatra, D., S. Mishra, and N. Sutar. 2010. Banana and its by-products utilization: An overview. Journal of Scientific and Industrial Research (JSIR) 69:323–329.
  • Monteiro, S. N., K. G. Satyanarayana, A. Ferreira, D. Nascimento, F. Lopes, I. Silva, A. Bevitori, A. Inacio, J. Bravo Neto, and T. Portela. 2011. Selection of high strength natural fibers. Revista Materia 15(4):488–505. doi:10.1590/S1517-70762010000400002.
  • Mukhopadhyay, S., R. Fangueiro, Y. Arpaç, and S. Şentürk. 2008. Banana fibers-variability and fracture behaviour. Journal of Engineering Fibers and Fabrics 3(2):39–45.
  • Mustafa, M. M., and M. Mayil Vaganan 2009. In Production, processing and utilization of banana fibres. Proceedings of the International Conference on Emerging Trends in Production, Processing and Utilization of Natural Fibres, Mumbai, India, 544–550, April 16–18.
  • Nayak, R., I. L. Kyratzis, Y. B. Truong, R. Padhye, L. Arnold, G. Peeters, M. O’shea, and L. Nichols. 2013. Fabrication and characterisation of polypropylene nanofibres by meltblowing process using different fluids. Journal of Materials Science 48:273–281. doi:10.1007/s10853-012-6742-2.
  • Oliveira, F. R., L. Erkens, R. Fangueiro, and A. P. Souto. 2012. Surface modification of banana fibers by DDBD plasma treatment. Plasma Chemistry and Plasma Processing 32(2):259–273. doi:10.1007/s11090-012-9354-3.
  • Oliveira, L., N. Cordeiro, D. V. Evtuguin, I. C. Torres, and A. J. D. Silvestre. 2007. Chemical composition of different morphological parts from “Dwarfs Cavendish” banana plant and their potential as a nonwood renewable sources of natural products. Industrial Crops and Products 26:163–172. doi:10.1016/j.indcrop.2007.03.002.
  • Omotoso, M. A., and B. O. Ougunsile. 2009. Fibre and chemical properties of some Nigerian grown Muse species for pulp production. Asian Journal of Material Science 1:14–21. doi:10.3923/ajmskr.2009.14.21.
  • Paiva, J. M. F., W. G. Trindade, E. Frollini, and L. C. Pardini. 2004. Carbon fiber reinforced carbon composites from renewable sources. Polymers-Plastics Technology and Engineering 43(4):1187–1211. doi:10.1081/PPT-200030076.
  • Pereira, P. H. F., K. C. Cristina, C. C. Benini, C. Y. Watashi, H. J. C. Voorwald, and M. O. H. Cioffi. 2013. Characterization of high density polyethylene (HDPE) reinformced with banana peel fibers. BioResources 8(2):2351–2365. doi:10.15376/biores.8.2.2351-2365.
  • Pothan, L. A., F. Simon, S. Spange, and S. Thomas. 2006a. XPS studies of chemically modified banana fibres. Biomacromolecules 7:892–898. doi:10.1021/bm050462a.
  • Pothan, L. A., S. Thomas, and G. Groeninckx. 2006b. The role of fiber/matrix interaction on the dynamic mechanical properties of chemically modified banana fiber/polyester composites. Composites Part A 37(9):1260–1269. doi:10.1016/j.compositesa.2005.09.001.
  • Satyanarayana, K. G., G. C. A. Gregorio, and F. Wypych. 2009. Biodegradable composites based on lignocellulosic fibers: An overview. Progress in Polymer Science 34:982–1021. doi:10.1016/j.progpolymsci.2008.12.002.
  • Satyanarayana, K. G., L. P. Ramos, and F. Wypych. 2008. Comparative study of Brazilian natural fibers and their composites with others. In Natural fiber reinforced polymer composites, Eds S. Thomas, and L. A. Pothan, 473–522. Philadelphia, PA, United States: Old City Publishing Inc. ISBN 978-1-933153-09-4.
  • Satyanarayana, K. G., and F. Wypych. 2007. Characterization of natural fibers. In Engineering biopolymers: Homopolymers, blends and composites, eds S. Fakirov, and D. Bhattacharyya, Vol. 1, 3–47. Auckland, New Zealand, Munich: Hanser Publishers. ISBN No: 978-3-446-40591-2.
  • Singh, V. K., P. C. Gope, C. Sakshi, and B. D. Singh. 2012. Mechanical behaviour of banana fiber based hybrid bio composites. Journal of Materials and Environment Science 3(1):185–194.
  • Thakur, V. K., M. K. Thakur, and R. K. Gupta. 2014a. 16. Review: Raw natural fiber-based polymer composites. International Journal of Polymers and Analysis and Characterization 19:256–271. doi:10.1080/1023666X.2014.880016.
  • Van De Velde, K., and P. Kiekens. 2001. Thermoplastics pultrusion of natural fiber reinforced composites. Composite Structures 54:355–360. doi:10.1016/S0263-8223(01)00110-6.
  • Venkateshwaran, N., A. Elaya Perumal, and R. H. Arwin Raj. 2012. Mechanical and dynamic mechanical analysis of woven banana/epoxy composite. Journal Polymer Environment 20:565–572. doi:10.1007/s10924-011-0410-5.
  • Website: BANANA: National Horticulture Board. http://nhb.gov.in/report_files/banana/BANANA.htm ( accessed July 10, 2015).

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