Performance Evaluation of Upholstery Fabric Developed from Recycled Fibres

Author:

Jamshaid Hafsa1,Zahid Bilal2,Rajput Abdul Waqar3,Hussain Sajid4,Hussain Uzair1

Affiliation:

1. Pakistan, Faisalabad, National Textile University, Faculty of Engineering & Technology, Protective Textile Group

2. Pakistan, Karachi, NED University of Engineering and Technology, Textile Engineering Department

3. Pakistan, Multan, BZU College of Textile Engineering, Technical Textile Research Group

4. Czech Republic, Technical University of Liberec, Faculty of Textile Engineering

Abstract

The aim of this work was to investigate the properties of upholstery fabric produced from recycled hard waste of coloured fabric clippings. Mélange yarns were formed with the combination of red, green, black and yellow in different ratios. Five yarn samples of 5 Nec linear density were produced from each blend ratio using the rotor spinning technique. These yarns were used to develop fabric samples in a satin weave. These yarn and fabric samples were investigated for different quality parameters, especially the abrasion resistance, pilling resistance, absorbency and light fastness of the fabrics as per standard test methods. The abrasion test is important for the durability and longer-lasting performance of upholstery fabric. From the analysis of test results, it is concluded that all the serviceability properties are in a good range, and these fabrics can be used for waiting room area upholstery fabric

Publisher

Walter de Gruyter GmbH

Subject

Industrial and Manufacturing Engineering,General Environmental Science,Materials Science (miscellaneous),Business and International Management

Reference16 articles.

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3. Lou C-W, Lin J-H, Su K-H. Recycling Polyester and Polypropylene Nonwoven Selvagesto Produce Functional Sound Absorption Composites. Textile Research Journal 2005;75(5): 390-4.

4. Vadicherla T, Saravanan D. Thermal Comfort Properties of Single Jersey Fabrics madefrom Recycled Polyester and Cotton Blended Yarns. Indian Journal of Fibre & TextileResearch (IJFTR) 2017; 42 (3): 318-324.

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