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Research Article

Analyzing the dyeing behaviour of easy dyeable and regular polyester by the influence of different heat-setting temperature

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Received 06 Jan 2024, Accepted 03 Jul 2024, Published online: 15 Jul 2024

References

  • Aharon, S. M. (1997). Increased glass transition in motionally constrained semicrystalline polymers. Polymer for Advanced Technologies, 9, 169–201.
  • Atav, R., & Abbas, Y. (2011). Low temperature dyeing of plasma treated luxury fibres. Part I: results for mohair (angora goat). Fibres & Textiles in Eastern Europe, 19(2), 84–89.
  • Ayomi, H. A., Perera, E., & Lanarolle, W. D. G. (2020). Thermal behaviour of heat treated polyester knitted fabrics. Research Journal of Textile & Apparel, 24(4 .DOI 10.1108/RJTA-10-2019-0049
  • Barni, R., Riccardi, C., Selli, E., Massafra, M. R., Marcandalli, B., Orsini, F., Poletti, G., & Meda, L. (2005). Wettability and dyeability modulation of poly(ethylene terephthalate) fibers through cold SF6 plasma treatment. Plasma Processes and Polymers, 2(1), 64–72. https://doi.org/10.1002/ppap.200400054
  • Besler, N., Gloyl, Y. S., & Gries, T. (2016). Analysis of heat setting process. Materials Science and Engineering, 141. https://doi.org/10.1088/1757-899X/141/1/012018
  • Bhat, N. V., Kale, M. J., & Gore, A. V. (2009). Microwave radiations for heat-setting of polyester fibers. Journal of Engineered Fibers and Fabrics, 4(4), 155892500900400. https://doi.org/10.1177/155892500900400402
  • Chen, S. L., Rohner, R. M., & Zollinger, H. (1988). Influence of dye size and fiber porosity on the dyeing kinetics and time lags in the uptake of cationic dyes on acrylic fibers. Textile Research Journal, 58(5), 247–254. https://doi.org/10.1177/004051758805800501
  • Codoul, A., Moncell, M., Berkell, J., Guigol, N., & Sbirrazzuolil, N. (2010). Glass transition dynamics and cooperativity length of poly(ethylene 2,5-furandicarboxylate) compared to poly(ethylene terephthalate). Macromolecules, 43, 7689–7694.
  • Cullerton, D. L., Ellison, M. S., & Aspland, J. R. (1990). Effects of commercial heat setting on the structure and properties of polyester carpet yarn. Textile Research Journal, 60(10), 594–606. https://doi.org/10.1177/004051759006001007
  • Dumbleton, J. H., & Buchanan, D. R. (1968). Annealing experiments on drawn nylon 66 fibers. Journal of Polymer Science Part A-2: Polymer Physics, 6(8), 1527–1533. https://doi.org/10.1002/pol.1968.160060809
  • Furvika, N. B., Bernskiölda, A., & Gralén, N. (1955). 49-heat-setting of nylon fabrics. Journal of The Textile Institute Transactions, 46, 10.
  • Gacén, J., Canal, J. M., Maillo, J., Cayuela, D., & Gacén, I. (2004). Dyeing behaviour of polyester heat-set at different temperatures: Separate and competitive dyeing’s. Coloration Technology, 120(3), 97–100. https://doi.org/10.1111/j.1478-4408.2004.tb00213.x
  • Gacén, J., Cayuela, D., Maillo, J., Canal, J. M., & Gacén, I. (2003). Modification of the fine structure of heat-set polyester on dyeing at high temperature. Coloration Technology, 119(4), 191–197. https://doi.org/10.1111/j.1478-4408.2003.tb00171.x
  • Gouveia, I. C., Antunes, L. C., & Gomes, A. P. (2011). Low-pressure plasma treatment for hydrophilization of poly(ethylene terephthalate) fabrics. Journal of the Textile Institute, 102(3), 203–213. https://doi.org/10.1080/00405001003616777
  • Gupta, V. B. (1995). The nature of coupling between the crystalline and amorphous phase and its effect on the properties of heat-set poly (ethylene terephthalate) fibres. The Journal of the Textile Institute, 86(2), 299–313. https://doi.org/10.1080/00405009508631335
  • Hossein, H., Ozan, A., & Akbar, K. (2017). Effects of different production processing stages on mechanical and surface characteristics of polylactic acid and PET fibre fabrics. I. J. F. T. R 42(1).
  • Iskender, M. A., Becerir, B., & Koruyucu, A. (2005). Carrier dyeing of different energy level disperse dyes on polyester fabric. Textile Research Journal, 75(6), 462–465. https://doi.org/10.1177/0040517505053875
  • Islam, S. (2019). Attaining optimum strength of cotton-spandex woven fabric by apposite heat-setting temperature. Journal of The Institution of Engineers (India): Series C, 100(4), 601–606. https://doi.org/10.1007/s40032-018-0478-y
  • Kale, M. J., & Bhat, N. V. (2011). Effect of microwave pretreatment on the dyeing behaviour of polyester fabric. Coloration Technology, 127(6), 365–371. https://doi.org/10.1111/j.1478-4408.2011.00332.x
  • Kale, R. D., Banerjee, A., & Katre, G. (2015). Dyeing of polyester and polyamide at low temperature using solvent crazing technique. Fibers and Polymers, 16(1), 54–61. https://doi.org/10.1007/s12221-015-0054-5
  • Karmakar, S. R. (1999). Chemical technology in the pre-treatment processes of textiles. Textile Science and Technology, 12, 259.
  • Kelly, S. E., Nicholls, C. H., & Pailthorpe, M. T. (1982). Temperature dependence of the fading of basic dyes on acrylic and nylon substrates. Polymer Photochemistry, 2(5), 321–329. https://doi.org/10.1016/0144-2880(82)90009-4
  • Kerkeni, A., Behary, N., Perwuelz, A., & Gupta, D. (2012). Dyeing of woven polyester fabric with curcumin: Effect of dye concentrations and surface pre-activation using air atmospheric plasma and ultraviolet excimer treatment. Coloration Technology, 128(3), 223–229. https://doi.org/10.1111/j.1478-4408.2012.00367.x
  • Kwak, W. G., Cha, J. R., & Gong, M. S. (2016). Surface modification of polyester fibers by thermal treatment reduction with silver carbamate complexes. Fibers and Polymers, 17(8), 1146–1153. https://doi.org/10.1007/s12221-016-5786-3
  • Lima, C. N., Silva, K. K. O. S., Nascimento, J. H. O., Rossi, C. G. F. T., Granato, M. A., & Oliveira, F. R. (2021). Optimization of the polyester fabric dyeing process using coumarin as a green carrier. Textile Research Journal, 92(19-20), 3875–3888. https://doi.org/10.1177/00405175211026539
  • Lorenzo, M. L. D., Righetti, M. C., Cocca, M., & Wunderlich, B. (2010). Coupling between crystal melting and rigid amorphous fraction mobilization. Macromolecules, 43(18), 7689–7694. https://doi.org/10.1021/ma101035h
  • Marvin, D. N. (1954). The heat setting of terylene polyester filament in relation to dyeing and finishing. Journal of the Society of Dyers and Colourists, 70(1), 16–21. https://doi.org/10.1111/j.1478-4408.1954.tb01999.x
  • Nazir, A., Hussain, T., Rehman, A., & Abid, A. (2015). Modelling heat-setting of cotton/elastane knitted fabrics for optimum dimensional. Stability Journal of Textile and Apparel Technology and Management, 9(2).
  • Parish, G. J., & Reed, C. M. (1980). Energy consumption and energy saving in the heat-setting and dye-fixation of textile fabrics on stenters. In New ways to save energy (pp. 712–721). https://doi.org/10.1007/978-94-009-8990-0_75
  • Phillips, D., Suesat, J., Wilding, M., Farrington, D., Sandukas, S., Bone, J., & Dervan, S. (2003). Effect of heat setting on dimensional stability and dyeing properties of poly (lactic acid). Coloration Technology, 119(3), 128–133. https://doi.org/10.1111/j.1478-4408.2003.tb00162.x
  • Radhakrishnan, J., Kanitkar, U. P., & Gupta, V. B. (1997). Dependence of disperse dye diffusion on the structure and morphology of oriented heat-set polyester fibers. Journal of the Society of Dyers and Colourists, 113(2), 59–63. https://doi.org/10.1111/j.1478-4408.1997.tb01869.x
  • Schiraldi, D. A., & Martin, D. L. (2002). A combinatorial method for developing deep dye polyesters. Textile Research Journal, 72(2), 153–155. https://doi.org/10.1177/004051750207200211
  • Shah, R. C., & Thakore, K. A. (1980). Effect of heat setting temperature on dye ability of some disperse dyes on polyester. Colourage, 27, 3–7.
  • Skelton, J. (1970). The effect of heat setting on the bending behavior of woven fabrics. Textile Research Journal, 40(12), 1115–1121. https://doi.org/10.1177/004051757004001211
  • Teli, M. D., & Rao, B. R. (1996). The effect of heat setting on the dyeability of differentially dyeable polyester fibres. Journal of the Society of Dyers and Colourists, 112(9), 239–241. https://doi.org/10.1111/j.1478-4408.1996.tb01830.x
  • Teli, M. D., Samanta, K. K., Pandit, P., Basak, S., & Chattopadhyay, S. K. (2015). Low-temperature dyeing of silk fabric using atmospheric pressure helium/nitrogen plasma. Fibers and Polymers, 16(11), 2375–2383. https://doi.org/10.1007/s12221-015-5166-4
  • Tsuruta, M., & Koshimo, A. (1965). Steam and heat setting of nylon 6 fiber on dyeability and fine structure. Journal of Applied Polymer Science, 9(1), 11–23. https://doi.org/10.1002/app.1965.070090103
  • Wang, H. H., & Hu, J. J. (1997). Effects of on-line heat treatment during high-speed spinning of polyester filaments on dye uptake. Textile Research Journal, 67(6), 428–435. https://doi.org/10.1177/004051759706700607
  • Zaman, M., Liu, H., Xiao, H., Chibante, F., & Ni, Y. (2013). Hydrophilic modification of polyester fabric by applying nanocrystalline cellulose containing surface finish. Carbohydrate Polymers, 91(2), 560–567. https://doi.org/10.1016/j.carbpol.2012.08.070

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