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Applied Polymer Science, 120(1), 305–310. [10] Su, X., Gao, W., Liu, X., Xie, C., & Xu, B. (2015). Research on the compact-siro spun yarn structure. Fibres & Textiles in Eastern Europe, 23(3(111)), 54-57. [11] Taheri,M., Vadood,M., Johari,M. S.(2013). Investigating the Effect of Yarn Count and Twist Factor on the Packing Density and Wicking Height of Lyocell Ring-spun Yarns. Fibers and Polymers. 14(9), 1548-1555. [12] Tyagi, G. K., Krishna, G., Bhatlacharya, S., Kumar, P. (2009). Comfort aspects of finished polyester-cotton and polyester-viscose ring and mjs yarn

References [1] Xie C.P., Yang L.L., Su X.Z., Feng J. (2007). Analysis of compact effect and yarn structure of compact Siro spinning. Journal of Textile Research, 28(3), 9-12. [2] Cheng K.P.S, Yu C. (2003). A study of compact spun yarns. Textile Research Journal, 73(4), 345-349. [3] Qin Z.J., (2006). The technology of spinning elitist ply yarn. Shandong Textile Science & Technology, (1), 7-10. [4] Wang W.Y., Zou Z.Y., Hua Z.H., Zhu Y.D., Cheng L.D. (2009). Simulation and analysis of trajectory of fiber in condensing zone of compact spinning with lattice apron

Eastern Europe, 19, 6 (89), 75-79. [13] Pusch, T., Wünsch, I., Offermann, P. (2000). Dynamics of yarn tension on knitting machines. Autex Research Journal, 1, 2, 55-63. [14] Bedez Ute, T. (2016). A comparative study between the dynamic friction characteristics of compact and siro yarns. Tekstil ve Konfeksiyon, 26(1), 55-63. [15] Svetnickienė, V., Čiukas, R. (2009) Investigation of friction properties of yarns from natural fibres. Mechanika, 1(75), 73-77. [16] Zajączkowski, J. (2017). Vibrations of elastically supported masses separated by a textile layer. Fibres