Use of Taguchi Method and Grey Relational Analysis to Optimize Multiple Yarn Characteristics in Open-End Rotor Spinning

Author:

Hussain Tanveer1,Arain Farooq Ahmed2,Malik Zulfiqar Ali1

Affiliation:

1. Faculty of Engineering & Technology, National Textile University Faisalabad (37610) Pakistan

2. Department of Textile Engineering, Mehran University of Engineering & Technology, Jamshoro Pakistan

Abstract

Abstract Rotor speed and twist per metres (tpm) are two key parameters in open-end rotor spinning of cotton yarns. High spinning productivity can be obtained by keeping the rotor speed high and twist level as low as possible. However, too high rotor speed may result in yarn imperfections and too low twist level may result in lower tenacity yarns. This study aimed at optimising the multiple yarn characteristics in open-end rotor spinning using the Taguchi method and the grey relational analysis. Cotton yarn samples of 30 tex were produced on rotor spinning machine with different twist levels (i.e. 500, 550, 600 and 700 tpm) at different rotor speeds (i.e. 70,000, 80,000, 90,000 and 100,000 rpm) according to the Taguchi design of experiment. Optimal spinning process parameters were determined using the grey relational grade as the performance index. It was concluded that for the cotton fibres and yarn count used in this study, optimum properties of the yarns could be obtained at 90,000 rpm rotor speed and 700 tpm.

Publisher

Walter de Gruyter GmbH

Subject

General Materials Science

Reference20 articles.

1. [1] Padamanabhan, A.R.: A Comparative Study of the Properties of Cotton Yarns Spun on the DREF-3 and Ring- and Rotor-spinning Systems, Journal of Textile Institute, Vol. 80, No. 4, p. 555-562, 1989.

2. [2] Ozipek, B.: International Textile Workshop, December 2003, Textile Engineering Department, Istanbul Technical University, Istanbul-Turkey.

3. [3] Jackowski, T.; Chylewska, B.; and Cyniak, D.: Influence of spinning process parameters on strength characteristics of cotton yarn, Fibers & Textiles in Eastern Europe, V. p.27-31, July/September 2002.

4. [4] Lord, P. R.; and Grady, P. L.: The Twist Structure of Open-end Yarns, Textile Research Journal, V. p. 123, 1976.

5. [5] Lawrence, C. A.; and Finikopulos, E.: Factor Effecting Changes in the Structure and Properties of Open-end Rotor Yarns, Indian Journal of Fibres &Textile Research, V.17, p. 201 - 208, Dec., 1992.

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