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Research Article

Effect of Weave Parameters on the Tear Strength of Woven Fabrics

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References

  • Behera, B. K., and P. K. Hari. 2010. Friction and other aspects of the surface behavior of woven fabrics. Cambridge, UK: Woodhead Publishing.
  • Brierley, S. 1952. Cloth settings reconsidered. The Textile Manufacturer 79:349–51.
  • Eryuruk, S. H., and F. Kalaoğlu. 2015. The effect of weave construction on tear strength of woven fabrics. Autex Research Journal 15 (3):207–14. doi:10.1515/aut-2015-0004.
  • Galceran, V. 1961. Technologia del Tejido. Terrasa, Spain: Technical University of Catalonia.
  • Hamilton, J. B. 1964. A general system of woven fabric geometry. Journal of the Textile Institute 55 (1):66–82. doi:10.1080/19447026408660209.
  • Hearle, J., P. Grosberg, and S. Backer. 1969. Structural mechanics of yarns and fabrics. New York: Wiley-Interscience.
  • Hu, J., and Y. F. Chan. 1998. Effect of fabric mechanical properties on drape. Textile Research Journal 68 (1):57–64. doi:10.1177/004051759806800107.
  • Kumpikaite, E. 2007. The fabric weave’s influence on the character of fabric break. Materials Science 13 (3):245–48.
  • Matusiak, M., and K. Sikorski. 2011. Influence of the structure of woven fabrics on their thermal insulation properties. Fibres & Textiles in Eastern Europe 19 (5):46–53.
  • Milašius, A., and V. Milašius. 2008. New representation of the fabric weave factor. Fibres & Textiles in Eastern Europe 16 (4):48–51.
  • Milašius, V. 2000a. An integrated structure factor for woven fabrics, Part I: Estimation of the weave. Journal of the Textile Institute 91 (2):268–76. doi:10.1080/00405000008659505.
  • Milašius, V. 2000b. An integrated structure factor for woven fabrics Part II: The fabric-firmness factor. Journal of the Textile Institute 91 (2):277–84. doi:10.1080/00405000008659506.
  • Morino, H., M. Matsudaira, and M. Furutani. 2005. Predicting mechanical properties and hand values from the parameters of weave structures. Textile Research Journal 75 (3):252–57. doi:10.1177/004051750507500311.
  • Morton, W. E. 1934. Some observation on fabric strength in relation to yarn properties and density of structure. Journal of the Textile Institute 25 (6):262–65. doi:10.1080/19447013408663446.
  • Morton, W. E., and J. W. S. Hearle. 1975. Physical properties of textile. London: William Heinemann Ltd.
  • Nikolic, M., T. Michailovic, and L. Simovic. 2000. Real value of weave binding coefficient as a factor of woven fabrics strength. Fibres and Textile in Eastern Europe 11 (4):74–78.
  • Ogawa, Y. 1967. Applied clothing materials— consumption performance Koseikan. Japan.
  • Peerzada, M. H., S. A. Abbasi, and A. Khatri. 2012. Effect of weave strucrure on tensile strength and yarn crimp of three-dimensional fibre woven fabric. Science International 24 (1):47–50.
  • Peirce, F. T. 1937. The geometry of cloth structure. Journal of the Textile Institute 28:45–196. doi:10.1080/19447023708658809.
  • Rukuizienė, Z., and R. Milasius. 2006. Influence of reed on fabric inequality in width. Fibres & Textiles in Eastern Europe 14 (4):44–47.
  • Taylor, H. M. 1999. Tensile and tearing strength of cotton cloths. Journal of the Textile Institute 50:161–88. doi:10.1080/19447025908662490.

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