853
Views
20
CrossRef citations to date
0
Altmetric
Articles

Investigation on thermo-physiological and compression characteristics of weft-knitted 3D spacer fabrics

, , &
Pages 1095-1105 | Received 10 Sep 2015, Accepted 30 Jul 2016, Published online: 12 Aug 2016

References

  • Abramaviciute, J., Mikucioninene, D., & Ciukas, R. (2011). Structure properties of knits from natural yarns and their combination with elastane and polyamide threads. Materials Science, 17, 43–46.
  • Ajayi, J. O., & Elder, H. M. (1997). Fabric friction, handle and compression. The Journal of The Textile Institute, 88, 232–241.
  • Akgun, M. (2015). Effect of yarn filament fineness on the surface roughness of polyester Woven fabrics. Journal of Engineered Fibers and Fabrics, 10, 121–128.
  • Aliouche, D., & Viallter, P. (2000). Mechanical and tactile compression of fabrics: Influence on handle. Textile Research Journal, 70, 939–944.
  • Anand, S., & Rebenciuc, C. (2003). Elaboration of a prediction method of the values for some characteristics of the weft knitted fabrics. In 5th international conference TEXSCI 2003 proceedings, Liberec, Czech Republic.
  • Arumugam, V., Mishra, R., Militky, J., & Novak, J. (2015). Thermo-acoustic behavior of 3D knitted spacer fabrics. Fibers and Polymers, 16, 2467–2476.
  • Arumugam, V., Mishra, R., Militky, J., & Tunak, M. (2015). In-plane shear behavior of 3D knitted spacer fabrics. Journal of Industrial Textiles. doi:10.1177/1528083715601509
  • Barker, R. L., & Heniford, R. C. (2011). Factors affecting the thermal insulation and abrasion resistance of heat resistant hydro-entangled nonwoven batting materials for use in firefighter turnout suit thermal liner systems. Journal of Engineered Fiber and Fabric, 6, 1–10.
  • Bruer, S. H., Powel, N., & Smith, G. (2005). Three dimensionally knit spacer fabrics: A review of production techniques and applications. Journal of Textile and Apparel Technology Management, 4, 1–31.
  • Cha, J., Seo, J., & Kim, S. (2012). Building materials thermal conductivity measurement and correlation with heat flow meter, laser flash analysis and TCi. Journal of Thermal Analysis and Calorimetric, 109, 295–300.
  • Crina, B., Blaga, M., Luminita, V., & Mishra, R. (2013). Comfort properties of functional weft knitted spacer fabrics. TekstiL Ve Konfeksiyon, 23, 220–227.
  • Das, B., Das, A., Kothari, V. K., Fangueiro, R., & Araujo, M. (2007). Moisture transmission through textiles, part 1: Processes involved in moisture transmission and the factors at play. Autex Research Journal, 7, 100–110.
  • Dias, T., Monaragala, R., Needham, P., & Lay, E. (2007). Analysis of sound absorption of tuck spacer fabrics to reduce automotive noise. Measurement Science and Technology, 18, 2657–2666.
  • Frydrych, I., Dziworska, G., & Bilska, J. (2002). Comparative analysis of the thermal insulation properties of fabrics made of natural and man-made cellulose fibres. Fibres and Textiles in Eastern Europe, 10, 40–44.
  • Gross, D. (2003). 3D spacer knit fabrics for medical applications. Journal of Textile and Apparel Management, 4, 26–28.
  • Gurumurthy, B. R. (2007). Prediction of fabric compressive properties using artificial neural networks. AUTEX Research Journal, 7, 19–31.
  • Harris, A. (2008). Measuring thermal conductivity (Ceramic Industry-Special Report). New Brunswick: BNP Media publisher.
  • Hasan, M. M. B., Calvimontes, A., Synytska, A., & Dutschk, V. (2008). Effects of topographic structure on wettability of differently woven fabrics. Textile Research Journal, 78, 996–1003.
  • Hes, L. (2005). Permetest instrument. Liberec: Sensora Instruments & Consulting.
  • Hes, L., & Dolezal, I. (2003). A new portable computer-controlled skin model for fast determination of water vapor and thermal resistance of fabrics, Asian Textile Conference, New Delhi.
  • Hu, J., Li, Y., Yeung, K., Wong, A. S. W., & Xu, W. (2005). Moisture management tester: a method to characterize fabric liquid moisture management properties. Textile Research Journal, 75, 57–62.
  • Jhanji, Y., Gupta, D., & Kothari, V. K. (2015). Thermo-physiological properties of polyester–cotton plated fabrics in relation to fibre linear density and yarn type. Fashion and Textiles, 2, 16–29.
  • Kawabata, S. & Niwa, M. (1996). Modern textile characterization methods. New York, NY: CRC Press.
  • Kuvandykova, D. (2010). A new transient method to measure thermal conductivity of asphalt. C-Therm Technologies, 7, 1–10.
  • Majumdar, A., Mukhopadhyay, S., & Yadav, R. (2010). Thermal properties of knitted fabrics made from cotton and regenerated bamboo cellulosic fibres. International Journal of Thermal Science, 40, 2042–2048.
  • Mao, N., & Russell, S. J. (2007). The thermal insulation properties of spacer fabrics with a mechanically integrated wool fiber surface. Textile Research Journal, 77, 914–922.
  • Mecit Armakan, D., & Roye, A. (2009). A study on the compression behaviour of spacer fabrics designed for concrete applications. Fibers and Polymers, 10, 116–123.
  • Michalak, M., Felczak, M., & Wiecek, B. (2009). Evaluation of the thermal parameters of textile materials using the thermographic method. Fibres and Textiles in Eastern Europe, 17, 84–89.
  • Mukhopadhyay, A., Kaushik, R. C. D., & Kothari, V. K. (2003). Bulk characteristics of air-jet textured yarn knitted fabrics. Indian Journal of Fibre & Textile Research, 28, 36–41.
  • Oglakcioclu, N., & Marmarali, A. (2007). Thermal comfort properties of some knitted structures. Fibres & Textiles in Eastern Europe, 15, 64–65.
  • Oglakcioglu, N., & Marmarali, A. (2007). Thermal comfort properties of some knitted structures. Fibres and Textiles in Eastern Europe, 15, 64–65.
  • Oner, E., Atasagun, H. G., Okur, A., Beden, A. R., & Durur, G. (2013). Evaluatio n o f moisture management properties on knitted fabrics. The Journal of The Textile Institute, 104, 699–707.
  • Pause, B. (2002). Studies of the thermo-physiological comfort provided by knitted spacer fabrics. Melliand International, 8, 57–60.
  • Petrulyte, S., & Baltakyte, R. (2008). An investigation into air permeability of terry fabrics regarding the processes of finishing. Tekstil, 57, 15–19.
  • Postle, R. (1974). A geometrical assessment of the thickness and bulk density of weft knitted fabrics. The Journal of The Textile Institute, 65, 155–163.
  • Saravanan, K., & Prakash, C. (2007). Bamboo fibres and their application in textiles. The Indian Textile Journal, 7, 33–36.
  • Skenderi, Z., Cubric, I. S., & Srdjak, M. (2009). Water vapor resistance of knitted fabrics under environmental conditions. Fibres & Textiles in Eastern Europe, 73, 72–75.
  • Soe, A. K., Matsuo, T., Takahashi, M., & Nakajima, M. (2003). Compression of plain knitted fabrics predicted from yarn properties and fabric geometry. Textile Research Journal, 73, 861–866.
  • Taylor, P. M., & Pollet, D. M. (2002). Static low-load lateral compression of fabrics. Textile Research Journal, 72, 983–990.
  • Ucar, N., & Yilmaz, T. (2004). Thermal properties of 1x1, 2x2, 3x3 Rib knit fabrics. Fibres & Textiles in Eastern Europe, 3, 34–38.
  • Wang, F., Zhou, X., & Wang, S. (2009). Development processes and property measurement of moisture absorption and quick dry fabrics. Fibres & Textiles in Eastern Europe, 73, 46–49.
  • Xu-hong, M., & Ming-qiao, G., (2009). The compression behaviour of warp knitted spacer fabric. Fibers and Textiles in Eastern Europe, 16, 90–92.
  • Yip, J., & Ng, S. (2008). Study of three-dimensional spacer fabrics: Physical and mechanical properties. Journal of Material Processing Technology, 206, 359–364.
  • Zhang, Z., Wang, Y., & Li, J. (2010). Mathematical simulation and experimental measurement of clothing surface temperature under different sized air gaps. Fibers and Polymers, 11, 911–916.

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.