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Research Article

Thermo-physiological comfort of half bleached woven fabrics made from different cotton yarns parameters

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References

  • Aruchamy, K., S. P. Subramani, S. K. Palaniappan, S. K. Pal, B. Mylsamy, and V. Chinnasamy. 2020. Effect of blend ratio on the thermal comfort characteristics of cotton/bamboo blended fabrics. Journal of Natural Fibers 1–10. doi:10.1080/15440478.2020.1731903.
  • Atalie, D., and R. Gideon. 2020. Prediction of psychological comfort properties of 100% cotton plain woven fabrics made from yarns with different parameters. Tekstilec 63 (1):60–67. doi:10.14502/Tekstilec2020.63.60-67.
  • Atalie, D., R. K. Gideon, A. Ferede, P. Tesinova, and I. Lenfeldova. 2019. Tactile comfort and low-stress mechanical properties of half-bleached knitted fabrics made from cotton yarns with different parameters. Journal of Natural Fibers 1–3. doi:10.1080/15440478.2019.1697989.
  • Atalie, D., and G. K. Rotich. 2020. Impact of cotton parameters on sensorial comfort of woven fabrics. Research Journal of Textile and Apparel 24 (3):281–302. doi:10.1108/RJTA-01-2020-0004.
  • Atalie, D., A. F. Tesema, and G. K. Rotich. 2018. Effect of weft yarn twist level on thermal comfort of 100 per cent cotton woven fabrics. Research Journal of Textile and Apparel 22 (3):180–94. doi:10.1108/RJTA-11-2017-0049.
  • Behera, B. K., S. M. Ishtiaque, and S. Chand. 1997. Comfort properties of fabrics woven from ring-, rotor-, and friction-spun yarns. Journal of the Textile Institute 88 (3):255–64. doi:10.1080/00405009708658549.
  • Chen, Q., K.-P. M. Tang, P. Ma, G. Jiang, and C. Xu. 2017. Thermophysiological comfort properties of polyester weft-knitted fabrics for sports T-shirt. The Journal of the Textile Institute 108 (8):1421–29. doi:10.1080/00405000.2016.1255122.
  • Classen, E. 2018. Comfort testing of textiles. In Advanced characterization and testing of textiles, 59–69. Elsevier.
  • Dalbaşı, E. S., G. S. Mengüç, A. T. Özgüney, and N. Özdil. 2020. The effect of softeners on thermal comfort and wetting properties of bamboo viscose and bamboo/cotton blended fabrics. Journal of Natural Fibers 1–15. doi:10.1080/15440478.2020.1788480.
  • Das, A., S. M. Ishtiaque, and R. P. Singh. 2009. Packing of micro-porous yarns. Part II: Optimization of fabric characteristics. The Journal of the Textile Institute 100 (3):207–17. doi:10.1080/00405000701559917.
  • Das, A., V. K. Kothari, and M. Balaji. 2007. Studies on cotton–acrylic bulked yarns and fabrics. Part I: Yarn characteristics. Journal of the Textile Institute 98 (3):261–67. doi:10.1080/00405000701550163.
  • Das, B., A. Das, V. K. Kothari, R. Fanguiero, and M. D. Araújo. 2008. Effect of fibre diameter and cross-sectional shape on moisture transmission through fabrics. Fibers and Polymers 9 (2):225–26. doi:10.1007/s12221-008-0036-y.
  • Ghosh, A., P. Mal, A. Majumdar, and D. Banerjee. 2016. Analysis of knitting process variables and yarn count influencing the thermo-physiological comfort properties of single jersey and rib fabrics. Journal of the Institution of Engineers 97 (2):89–98. doi:10.1007/s40034-016-0079-3.
  • Hussainn, S., V. Glombikova, N. Akhtar, A. Mazari, T. Mansoor, and K. A. H. Khan. 2019. Liquid moisture transportation properties of functional underwears: Part 1. Autex Research Journal 19 (2):97–103. doi:10.1515/aut-2018-0030.
  • Iftikhar, F., T. Hussain, Z. Ali, A. Nazir, C. Dominique, and L. Schacher. 2019. Investigation of thermo-physiological comfort and mechanical properties of fine cotton fabrics for ladies ’ summer apparel investigation of thermo-physiological comfort and mechanical properties of fine cotton fabrics for ladies ’ summer apparel. Journal of Natural Fibers 1–11. doi:10.1080/15440478.2019.1588185.
  • Ito, H., and Y. Muraoka. 1993. Water transport along textile fibers as measured by an electrical capacitance technique. Textile Research Journal 63 (7):414–20. doi:10.1177/004051759306300706.
  • Jhanji, Y., D. Gupta, and V. K. Kothari. 2015. Thermo-physiological properties of polyester–cotton plated fabrics in relation to fibre linear density and yarn type. Fashion and Textiles 2 (1):1–14. doi:10.1186/s40691-015-0041-x.
  • Nyoni, A. B., and D. Brook. 2006. Wicking mechanisms in yarns—the key to fabric wicking performance. Journal of the Textile Institute 97 (2):119–28. doi:10.1533/joti.2005.0128.
  • Onofrei, E., A. M. Rocha, and A. Catarino. 2011. The influence of knitted fabrics’ structure on the thermal and moisture management properties. Journal of Engineered Fibers and Fabrics 6 (4):155892501100600403. doi:10.1177/155892501100600403.
  • Özdil, N., A. Marmarali, and S. D. Kretzschmar. 2007. Effect of yarn properties on thermal comfort of knitted fabrics. International Journal of Thermal Sciences 46 (12):1318–22. doi:10.1016/j.ijthermalsci.2006.12.002.
  • Pac, M. J., M.-A. Bueno, M. Renner, and S. E. Kasmi. 2001. Warm-cool feeling relative to tribological properties of fabrics. Textile Research Journal 71 (9):806–12. doi:10.1177/004051750107100910.
  • Ramesh, B., V. C. V. Koushik, C. B. Lakshmikantha, and V. Subramaniam. 2011. Influence of the weave factor on the character of fabric wicking measured by a multiple probe vertical wicking tester. Fibres and Textiles in Eastern Europe 88 (5):60–63.
  • Saricam, C., and F. Kalaoglu. 2014. Investigation of the wicking and drying behaviour of polyester woven fabrics. fibres & textiles in eastern. Fibres & Textiles in Eastern Europe 22 (3):73–78.
  • Wang, F., D. Lai, W. Shi, and M. Fu. 2017a. Effects of fabric thickness and material on apparent ‘wet’ conductive thermal resistance of knitted fabric ‘skin’ on sweating manikins. Journal of Thermal Biology 70 (2016):69–76. doi:10.1016/j.jtherbio.2017.03.004.
  • Yoon, H. N., and A. Buckley. 1984. Improved comfort polyester: Part I: Transport properties and thermal comfort of polyester/cotton blend fabrics. Textile Research Journal 54 (5):289–98. doi:10.1177/004051758405400502.

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