Mechanical characteristics of blended Renova®/polyester microfiber double cloth woven fabrics for active sportswear applications

Author:

Yahia Sarah,Seddik Khaled Mohamed

Abstract

Purpose This study aims to accommodate the mechanical characteristics that comply with the spectra of active sportswear by taking the innovative features of double-layered fabric (double cloth) and polyester yarn. The research focused on blending two types of polyester: Renova® and polyester microfiber with different weave structures in both face and back layers for fabricated fabrics. Force resistance was investigated through several properties, the mass per unit area and thickness properties were also considered. Design/methodology/approach The research was divided into two phases. The first phase included three samples with the same double cloth structure and different weft materials to detect the most preferable performance. The second phase included three samples with the same materials and different double cloth structures. Several mechanical properties were tested in accordance with standard test methods, and the results were collected, tabulated and statistically analyzed using a chart line, an ANOVA test with a p-value = 0.05, a calculated least significant difference (value) and a radar chart area. Findings The results assigned that blending Renova®/polyester microfiber develops mechanical properties than using them individually, considering the increase in polyester microfiber ratio. The double cloth with different plain structures has a significantly different effect on the examined properties, except for elongation and thickness. Originality/value According to the radar chart area, the double cloth with a plain rib structure achieved better performance, and in the same vein, the results showed that the plain with a warp rib structure enhanced fabric behavior more than the weft rib.

Publisher

Emerald

Reference29 articles.

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2. Effect of blending cotton/bamboo on UV protection and functional purposes of trilobal polyester microfibers knitted fabrics using different structures;Tekstilec,2023

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4. ASTM-D 4833 (2007), “Standard test method for index puncture resistance of geomembranes and related products”, ASTM International, available at: www.astm.org

5. ASTM-D 5035 (2019), “Standard test methods for breaking force and elongation of textile fabrics (strip method)”, ASTM International, available at: www.astm.org

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