
By Polona Dobnik-Dubrovski
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Extra resources for Wowen fabric and ultraviolet protection
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Example of calculated and measured fabric stress at break. 4. Measuring of rupture properties Experiments always mean some scale of unification and simplification in comparison with fabric real loading at the use. To simulate real practical situations is not possible – it would result in too many different experimental methods. ). Nevertheless uniaxial and biaxial stresses are the most important forms of load for investigation of textile fabrics rupture properties. ) seldom result in fabric break.
1–13 Pan, N. & Yoon, M. Y. (1996). Structural Anisotropy, Failure Criterion, and Shear Strength of Woven Fabrics. Textile Res. J. 66 (4), 238-244 Pan, N. & Yoon, M. Y. (1993). Behavior of Yarn Pullout from Woven Fabrics: Theoretical and Experimental. Textile Res. J. 63 (1), 629-637 Pan, N. (1996 b). Analysis of Woven Fabric Strength: Prediction of Fabric Strength Under Uniaxial and Biaxial Extension, Composites Scence and Technology 56 311-327 Peng, X. Q. and Cao, J. (2004). A continuum mechanics-based non-orthogonal constitutive model for woven composite fabrics.
30 Woven Fabric Engineering Our research is also based on the investigation of the physical and mechanical properties of woven fabrics with different yarns used in weft. 1 Tensile properties of fabrics For designing apparel as well as for other uses, the knowledge about the tensile properties of woven fabrics is important. Strength and elongation are the most important performance properties of fabrics governing the fabric performance in use. Their study involves many difficulties due to a great degree of bulkiness in the fabric structure and strain variation during deformation.