233
Views
22
CrossRef citations to date
0
Altmetric
Original Articles

Lengthwise jute fibre properties variation and its effect on jute–polyester composite

, , &
Pages 1695-1702 | Received 25 Jun 2018, Accepted 25 Apr 2019, Published online: 24 May 2019

References

  • Akil, H. M., Cheng, L. W., Mohd Ishak, Z. A., Abu Bakar, A., & Abd Rahman, M. A. (2009). Water absorption study on pultruded jute fibre reinforced unsaturated polyester composites. Composites Science and Technology, 69(11–12), 1942–1948. doi:10.1016/j.compscitech.2009.04.014
  • Bledzki, A. (1999). Composites reinforced with cellulose based fibres. Progress in Polymer Science, 24(2), 221–274. doi:10.1016/S0079-6700(98)00018-5
  • Bodirlau, R., & Teaca, C. A. (2009). Fourier transform infrared spectroscopy and thermal analysis of lignocellulose fillers treated with organic anhydrides. Romanian Journal of Physics, 54, 93–104.
  • Cai, M., Takagi, H., Nakagaito, A. N., Katoh, M., Ueki, T., Waterhouse, G. I. N., & Li, Y. (2015). Influence of alkali treatment on internal microstructure and tensile properties of abaca fibers. Industrial Crops and Products, 65, 27–35. doi:10.1016/j.indcrop.2014.11.048
  • Das, S. (2017a). Mechanical properties of waste paper/jute fabric reinforced polyester resin matrix hybrid composites. Carbohydrate Polymers, 172, 60–67. doi:10.1016/j.carbpol.2017.05.036
  • Das, S. (2017b). Mechanical and water swelling properties of waste paper reinforced unsaturated polyester composites. Construction and Building Materials, 138, 469–478. doi:10.1016/j.conbuildmat.2017.02.041
  • Das, S., Basak, S., Bhowmick, M., Chattopadhyay, S. K., & Ambare, M. G. (2016). Waste paper as a cheap source of natural fibre to reinforce polyester resin in production of bio-composites. Journal of Polymer Engineering, 36, 441–447. doi:10.1515/polyeng-2015-0263AQ23
  • Das, S., & Bhowmick, M. (2015). Mechanical Properties of Unidirectional Jute-Polyester Composite. Journal of Textile Science & Engineering, 5. doi:10.4172/2165-8064.1000207AQ24
  • Das, S., Bhowmick, M., Chattopadhyay, S. K., & Basak, S. (2015). Application of biomimicry in textiles. Current Science, 109(5), 893. doi:10.18520/v109/i5/893-901
  • Das, S., Shanmugam, N., Kumar, A., & Jose, S. (2017). Review: Potential of biomimicry in the field of textile technology. Bioinspired, Biomimetic and Nanobiomaterials, 6, 1–12. doi:10.1680/jbibn.16.00048
  • Dash, B. N., Rana, A. K., Mishra, H. K., Nayak, S. K., Mishra, S. C., & Tripathy, S. S. (1999). Novel, low-cost jute-polyester composites. Part 1: Processing, mechanical properties, and SEM analysis. Polymer Composites, 20(1), 62–71. doi:10.1002/pc.10335
  • De Rosa, I. M., Kenny, J. M., Puglia, D., Santulli, C., & Sarasini, F. (2010). Morphological, thermal and mechanical characterization of okra (Abelmoschus esculentus) fibres as potential reinforcement in polymer composites. Composites Science and Technology, 70(1), 116–122. doi:10.1016/j.compscitech.2009.09.013
  • del Río, J. C., Rencoret, J., Marques, G., Li, J., Gellerstedt, G., Jiménez-Barbero, J., … Gutiérrez, A., (2009). Structural characterization of the lignin from jute (Corchorus capsularis) fibers. Journal of Agricultural and Food Chemistry, 57(21), 10271–10281. doi:10.1021/jf900815x
  • Doan, T.-T.-L., Brodowsky, H., & Mäder, E. (2012). Jute fibre/epoxy composites: Surface properties and interfacial adhesion. Composites Science and Technology, 72(10), 1160–1166. doi:10.1016/j.compscitech.2012.03.025
  • Fan, M., Dai, D., & Huang, B. (2012). Fourier transform infrared spectroscopy for natural fibres. In S. Salih (Ed.), Fourier transform – Materials analysis. London: InTech.AQ25
  • French, A. D. (2014). Idealized powder diffraction patterns for cellulose polymorphs. Cellulose, 21(2), 885–896. doi:10.1007/s10570-013-0030-4
  • Gassan, J., & Bledzki, A. K. (1999b). Alkali treatment of jute fibers: Relationship between structure and mechanical properties. Journal of Applied Polymer Science, 71(4), 623–629. doi:10.1002/(SICI)1097-4628(19990124)71:4 < 623::AID-APP14 > 3.0.CO;2-K
  • Ghosh, P., Samanta, A. K., & Basu, G. (2004). Effect of selective chemical treatments of jute fibre on textile-related properties and processibility. Indian Journal of Fibre & Textile Research, 29, 85–99.
  • Ghosh, R. K., Sreewongchai, T., Nakasathien, S., & Phumichai, C. (2013). Phenotypic variation and the relationships among jute (Corchorus species) genotypes using morpho-agronomic traits and multivariate analysis. Australian Journal of Crop Science, 7, 830–842.
  • Gowda, T. M., Naidu, A. C. B., & Chhaya, R. (1999). Some mechanical properties of untreated jute fabric-reinforced polyester composites. Composites Part A: Applied Science and Manufacturing, 30, 277–284. doi:10.1016/S1359-835X(98)00157-2
  • Guo, Z., Fu, T., & Fu, H. (2000). Crystal orientation measured by XRD and annotation of the butterfly diagram. Materials Characterization, 44(4–5), 431–434. doi:10.1016/S1044-5803(00)00084-X
  • Jahan, M. S., Kanna, G. H., Mun, S. P., & Chowdhury, D. N. (2008). Variations in chemical characteristics and pulpability within jute plant (Chorcorus capsularis). Industrial Crops and Products, 28(2), 199–205. doi:10.1016/j.indcrop.2008.02.013
  • Jawaid, M., Khalil, H. A., Bakar, A. A., Hassan, A., & Dungani, R. (2013). Effect of jute fibre loading on the mechanical and thermal properties of oil palm–epoxy composites. Journal of Composite Materials, 47(13), 1633–1641. doi:10.1177/0021998312450305
  • Joshi, S., Drzal, L., Mohanty, A., & Arora, S. (2004). Are natural fiber composites environmentally superior to glass fiber reinforced composites? Composites Part A: Applied Science and Manufacturing, 35(3), 371–376. doi:10.1016/j.compositesa.2003.09.016
  • Júnior, O. H. L., Zattera, A. J., & Amico, S. C. (2014). Thermal behavior and the compensation effect of vegetal fibers. Cellulose, 21, 189–201. doi:10.1007/s10570-013-0126-x
  • Kamal, T., Ul-Islam, M., Khan, S. B., & Asiri, A. M. (2015). Adsorption and photocatalyst assisted dye removal and bactericidal performance of ZnO/chitosan coating layer. International Journal of Biological Macromolecules, 81, 584–590. doi:10.1016/j.ijbiomac.2015.08.060
  • Keten, S., Xu, Z., Ihle, B., & Buehler, M. J. (2010). Nanoconfinement controls stiffness, strength and mechanical toughness of β-sheet crystals in silk. Nature Materials, 9(4), 359–367. doi:10.1038/nmat2704
  • Kumar, V. P. K., Singh, A. S., Dudhane, D. K., & Satya, P. (2014). Anatomical and morphological characteristics of nine jute genotypes. Journal of Crop and Weed, 10, 334–339.
  • Mukherjee, A., Ganguly, P. K., & Sur, D. (1993). Structural Mechanics of jute: The effects of hemicellulose or lignin removal. The Journal of the Textile Institute, 84(3), 348–353. doi:10.1080/00405009308658967
  • Mwaikambo, L. Y. (2009). Tensile properties of alkalised jute fibres. BioResources, 4, 566–588.
  • Poletto, M., Ornaghi, H., & Zattera, A. (2014). Native cellulose: Structure, characterization and thermal properties. Materials, 7(9), 6105–6119. doi:10.3390/ma7096105
  • Pope, C. G. (1997). X-ray diffraction and the Bragg equation. Journal of Chemical Education, 74(1), 129. doi:10.1021/ed074p129
  • Ramnath, BV, Elanchezhian, C., Nirmal, P. V., Kumar, GPrem., Kumar, VSanthosh., Karthick, S., … Suresh, K. (2014). Experimental investigation of mechanical behavior of jute-flax based glass fiber reinforced composite. Fibers and Polymers, 15(6), 1251–1262. doi:10.1007/s12221-014-1251-3
  • Roe, P. J., & Ansell, M. P. (1985). Jute-reinforced polyester composites. Journal of Materials Science, 20(11), 4015–4020. doi:10.1007/BF00552393
  • Saha, P., Manna, S., Chowdhury, S. R., Sen, R., Roy, D., & Adhikari, B. (2010). Enhancement of tensile strength of lignocellulosic jute fibers by alkali-steam treatment. Bioresource Technology, 101(9), 3182–3187. doi:10.1016/j.biortech.2009.12.010
  • Sen, R. K., & Chowdhury, S. K. (1957). The crystallite orientation in different varieties of jute fibers of known strength. Textile Research Journal, 27(3), 193–195. doi:10.1177/004051755702700303
  • Sever, K., Sarikanat, M., Seki, Y., Erkan, G., Erdoğan, Ü. H., & Erden, S. (2012). Surface treatments of jute fabric: The influence of surface characteristics on jute fabrics and mechanical properties of jute/polyester composites. Industrial Crops and Products, 35(1), 22–30. doi:10.1016/j.indcrop.2011.05.020
  • Sinha, N. G., & Bandyopadhyay, S. B. (1968). 13 – An air-flow method for the determination of the fibre fineness of jute and mesta. Journal of the Textile Institute, 59(3), 148–156. doi:10.1080/00405006808659974
  • Steinmann, W., & Saelhoff, A.-K. (2016). Essential properties of fibres for composite applications. In S. Rana & R. Fangueiro (Eds.), Fibrous and textile materials for composite applications (pp. 39–73). Singapore: Springer Singapore.
  • Thakur, V. K., Thakur, M. K., & Gupta, R. K. (2014). Review: Raw natural fiber-based polymer composites. International Journal of Polymer Analysis and Characterization, 19(3), 256–271. doi:10.1080/1023666X.2014.880016

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.