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Comprehensive Assessment of the Properties of Cotton Single Jersey Knitted Fabrics Produced From Different Lycra States

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This research aims to evaluate the properties of cotton single jersey knitted fabrics (SJKF) produced from cotton/spandex yarns at different Lycra states. So, four different SJKF were produced, namely 100% cotton, cotton with additional Lycra (full-platted), core, and dual-core-spun (DCS) yarns with the same loop length. The thermal comfort properties, fabric recovery, total hand value (THV), moisture management parameters, and air permeability were measured. The experimental results showed that the use of DCS yarns in the SJKF improves the fabric elastic recovery by 100%. The obtained values of air permeability, THV, and overall moisture management capacity of stretched SJKF are lower than 100% cotton fabric sample. Thermal absorptivity of core and dual-core samples increased by 27% and the water vapor permeability decreased by 18% compared to 100% cotton fabric sample.
Rocznik
Strony
71--78
Opis fizyczny
Bibliogr. 22 poz.
Twórcy
autor
  • Textile Evaluation Department, Technical University of Liberec 46117, Liberec, Czechia
  • Textile Engineering Department, Mansoura University, Mansoura 35516, Egypt
  • Textile Evaluation Department, Technical University of Liberec 46117, Liberec, Czechia
  • Textile Engineering Department, Mansoura University, Mansoura 35516, Egypt
Bibliografia
  • [1] Sinha, S. K., Bansal, P., Maity, S. (2017). Tensile and elastic performance of cotton/lycra core spun denim yarn. Journal of the Institution of Engineers (India): Series E, 98(1), 71–78.
  • [2] Ertaş, O. G., Zervent Ünal, B., Çelik, N. (2016). Analyzing the effect of the elastane-containing dual-core weft yarn density on the denim fabric performance properties. Journal of The Textile Institute, 107(1), 116–126.
  • [3] Herath, C. N., Kang, B. C., Jeon, H. Y. (2007). Dimensional stability of cotton-spandex interlock structures under relaxation. Fibers and Polymers, 8(1), 105.
  • [4] Fatkić, E., Geršak, J., Ujević, D. (2011). Influence of knitting parameters on the mechanical properties of plain jersey weft knitted fabrics. Fibres & Textiles in Eastern Europe, 19(5), 88.
  • [5] Abdessalem, S. B., Abdelkader, Y. B., Mokhtar, S., Elmarzougui, S. (2009). Influence of elastane consumption on plated plain knitted fabric characteristics. Journal of Engineered Fibers and Fabrics, 4(4), 155892500900400411.
  • [6] Marmarali, A. B. (2003). Dimensional and physical properties of cotton/spandex single jersey fabrics. Textile Research Journal, 73(1), 11–14.
  • [7] Sitotaw, D. B. (2018). Dimensional characteristics of knitted fabrics made from 100% cotton and cotton/elastane yarns. Journal of Engineering, 2018(1), 1–9.
  • [8] Prakash, C. (2018). Investigation on geometric and dimensional properties of cotton sheath elastomeric core spun yarn single jersey and popcorn jersey fabric structures. Latest Trends in Textile and Fashion Designing, 2(1), 136–142.
  • [9] Aboalasaad, A. R., Sirková, B. K., Tešinová, P., Khalil, A. (2019). Guidelines for measuring thermal resistance on thermal Foot Manikin. Materials Today: Proceedings. Published online 26 November 2019. https://doi.org/10.1016/j.matpr.2019.11.068
  • [10] Sadek, R., El-Hossini, A. M., Eldeeb, A. S., Yassen, A. A. (2012). Effect of lycra extension percent on single jersey knitted fabric properties. Journal of Engineered Fibers and Fabrics, 7(2), 155892501200700203.
  • [11] Fouda, A., Eldeeb, A. S. (2018). Properties of weft knitted fabrics made from dual core-spun yarns. 8th International İstanbul Textile Conference - Evolution Technical Textile (ETT2018), April 14–16, 2018, İstanbul, Turkey, 2018, pp. 1–7.
  • [12] ASTM D3107: 2004. (2004). Stretch properties of woven fabrics. Modified 2004, pp. 1–3.
  • [13] Salama, A. A., El-Deeb, A. S., El-Shahat, I. M. (2015). Evaluation of bed cover properties produced from double fabric based on honeycomb. Journal of Textiles, 2015, 7.
  • [14] Raja, D., Prakash, C., Gunasekaran, G., Koushik, C. V. (2015). A study on thermal properties of single-jersey knitted fabrics produced from ring and compact folded yarns. The Journal of The Textile Institute, 106(4), 359–365.
  • [15] Ramakrishnan, G., Umapathy, P., Prakash, C. (2015). Comfort properties of bamboo/cotton blended knitted fabrics produced from rotor spun yarns. The Journal of The Textile Institute, 106(12), 1371–1376.
  • [16] Aboalasaad, A. R., Skenderi, Z., Brigita, K. S., Khalil, A. A. (2019). Analysis of factors affecting thermal comfort properties of woven compression bandages. Autex Research Journal. doi: 10.2478/aut-2019-0028.
  • [17] Oğlakcioğlu, N., Marmarali, A. (2007). Thermal comfort properties of some knitted structures. Fibres & Textiles in Eastern Europe, 15(5–6), 64–65.
  • [18] Hes, L., De Araujo, M., Djulay, V. V. (1996). Effect of mutual bonding of textile layers on thermal insulation and thermal contact properties of fabric assemblies. Textile Research Journal, 66(4), 245–250.
  • [19] Hu, J., Li, Y., Yeung, K. W., Wong, A. S., Xu, W. (2005). Moisture management tester: a method to characterize fabric liquid moisture management properties. Textile Research Journal, 75(1), 57–62.
  • [20] Supuren, G., Oglakcioglu, N., Ozdil, N., Marmarali, A. (2011). Moisture management and thermal absorptivity properties of double-face knitted fabrics. Textile Research Journal, 81(13), 1320–1330.
  • [21] Achour, N. S., Hamdaoui, M., Nasrallah, S. B., Perwuelz, A. (2015). Investigation of moisture management properties of cotton and blended knitted fabrics. International Journal of Chemical, Molecular, Nuclear, Materials and Metallurgical Engineering, 9(7), 879–883.
  • [22] Behera, B. K., Hari, P. K. (1994). Fabric quality evaluation by objective measurement. Indian Journal of Fibre & Textile Research, 19, 168–171.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2021).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-2f877184-3a8d-4bf9-aa2d-28793c18cb25
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