Effect of elastane and thread density on mechanical attributes of stretch woven fabric

Siddiqa, F, Smriti, SA, Haque, MM, Farzana, N and Haque, Abu Naser Md Ahsanul 2020, Effect of elastane and thread density on mechanical attributes of stretch woven fabric, AATCC Journal of Research, vol. 7, no. 1, January-February, pp. 21-30, doi: 10.14504/ajr.7.1.3.

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Title Effect of elastane and thread density on mechanical attributes of stretch woven fabric
Author(s) Siddiqa, F
Smriti, SA
Haque, MM
Farzana, N
Haque, Abu Naser Md Ahsanul
Journal name AATCC Journal of Research
Volume number 7
Issue number 1
Season January-February
Start page 21
End page 30
Total pages 10
Publisher American Association of Textile Chemists and Colorists
Place of publication Raleigh Triangle Park, N.C.
Publication date 2020-01
ISSN 2330-5517
2330-5517
Keyword(s) Cotton
Elastane
Elongation
Fabric Growth
LINEAR DENSITY
Materials Science
Materials Science, Textiles
PERFORMANCE
PHYSICAL-PROPERTIES
RATIO
Recovery
Science & Technology
Shrinkage
Spandex
Stretch Woven Fabric
Tearing Strength
Technology
Tensile Strength
Thread Density
YARNS
Summary Stretch woven fabrics continue to grow in popularity, offering superior elastic properties and comfort. However, there are a number of factors (e.g., elongation, recovery, growth, tensile strength, tearing strength, and shrinkage) that can affect the attributes and performance of stretch woven fabric. These were investigated in the present study in relation to different elastane content and thread density. Blended cotton woven fabrics containing an increased elastane content gave enhanced elongation and recovery, despite a decrease in thread density. The tensile strength, tearing strength, shrinkage, and fabric growth decreased when the elastane ratio increased, regardless of the decline in warp thread density.
Language eng
DOI 10.14504/ajr.7.1.3
Indigenous content off
HERDC Research category C1.1 Refereed article in a scholarly journal
Persistent URL http://hdl.handle.net/10536/DRO/DU:30152118

Document type: Journal Article
Collections: Institute for Frontier Materials
GTP Research
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