Interrelation Between Tensile Properties of Yarns and Woven Fabrics with These Yarns

Author:

Kumpikaitė Eglė1,Tautkutė-Stankuvienė Indrė1,Redeckienė Dovilė1

Affiliation:

1. Department of Production Engineering , Kaunas University of Technology , Studentų Street 56, LT-51424 Kaunas , Lithuania , tel.: +370 37 353862

Abstract

Abstract The main parameters of tensile tests for fabrics and yarns are the breaking force and the elongation at break. The aim of this investigation was to find the relation between the tensile properties of yarns and woven fabrics for different natural raw materials. Manmade bamboo, natural single flax, blended plied flax and natural silk yarns, plied combed cotton yarns, blended plied cotton, and polyester yarns were used for the research. The warp of almost all fabrics, except of one fabric, was from flax. This fabric was woven using blended flax and silk yarns in the warp. Weft yarns were more various – yarns of one kind were used in the weft for certain fabrics; yarns of two kinds were used in 1:1 repeats in other fabrics. It was established that the breaking force for both woven fabrics and yarns increases when the elongation at break increases. The relationships between the tensile parameters of yarns and woven fabrics were established. The results showed weak dependence between the tensile parameters of yarns and fabrics because the coefficients of determination of the dependences are small.

Publisher

Walter de Gruyter GmbH

Subject

General Materials Science

Reference19 articles.

1. [1] Kumpikaitė, E., Sviderskytė, A. (2006). The influence of woven fabric structure on the woven fabric strength. Materials Science (Medžiagotyra), 12(2), 162-166.

2. [2] Kumpikaitė, E. (2007a). Analysis of dependencies of woven fabric’s breaking force and elongation at break on its structure parameters. Fibres & Textiles in Eastern Europe, 1(60), 35-38.

3. [3] Kumpikaitė, E. (2007b). The fabric weave’s influence on the character of fabric break. Materials Science (Medžiagotyra), 3, 245-248.

4. [4] Kumpikaitė, E. (2008). Influence of fabric structure on the character of fabric breakage. Fibres & Textiles in Eastern Europe, 3(68), 44-46.

5. [5] Rathod, A., Kolhatkar, A. (2014). Analysis of physical characteristics of bamboo fabrics. International Journal of Research in Engineering and Technology, 8, 21-25.

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