The parameters such as the angle in “V” area in Sirofil spinning system, the tension and torque of the filament and roving with different feeding spacing are theoretically discussed. The optimal strand-spacing of different spinning materials is, thus, recommended. The configuration, strength and elongation, hairiness and evenness of the yarn were studied experimentally. The theoretical results agreed very well with experimental data.
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6.
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7.
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Das, A., Ishtiaque, S.M., and Parida, J.R., Effect of Fiber Friction, Yarn Twist, and Splicing Air Pressure on Yarn Splicing Performance, FibersPolym. 6, 72—78 (2005).
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Koo, H.-J., and Suh, M.W., Effects of Spinning Processes on HVI Fiber Characteristics and Spun Yarn Properties, Fibers andPolymers6(1), 42—48 (2005).
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He, J.H. , Yu, Y.P., Pan, N., Cai, X.-C., Yu, J.-Y., and Wang, S.-Y., Quasistatic Model for Two-strand Yarn Spinning, Mech. Res. Commun.32, 197—200 (2005).
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He, J.H. , Yu, Y.P., Yu, J.Y., Li, W.-R., Wang, S.-Y., and Pan, N., A Linear Dynamic Model for Two-strand Yarn Spinning, Textile Res. J.75, 87—90 (2005).
13.
He, J.H. , Yu, Y.P., Yu, J.Y., Li, W.-R., Wang, S.-Y., and Pan, N., A Nonlinear Dynamic Model for Two-strand Yarn Spinning, Textile Res. J.75, 181—184 (2005).
14.
He, J.-H. , Wan, Y.-Q., and Xu, L., Nano-effects, Quantum-like Properties in Electrospun Nanofibers, Chaos Solitons Fractals33(1), 26—37 (2007 ).
15.
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17.
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18.
Xu, L., He, J.-H., and Liu, Y., Electrospun Nanoporous Spheres with Chinese Drug, International Journal of Nonlinear Sciences and Numerical Simulation8(2), 199—202 (2007).