An improved dynamic model and numerical simulation of yarn in the ring spinning system

Author:

Liu Yang1,Feng Zhihua1,Lv Fan1,Wang Gang1ORCID

Affiliation:

1. School of Mechanical and Electric Engineering, Soochow University, China

Abstract

The nonlinear dynamic behavior of ballooning yarn in the ring spinning system is investigated. An improved dynamic model of ballooning yarn with axial conveying speed is established. Based on Hamilton’s law of variation principle, the three-dimensional dynamic differential equations are derived. Then, the shooting method is employed to solve the two-point boundary value problem of ordinary differential equations. The numerical results of balloon profiles and distribution tension curves of ballooning yarns are discussed. The numerical results imply that with the increase of Ω, the yarn conveying speed increases, the minimum tension at the guide eye increases, and the helical loops of the balloon profile decrease. It is also found that as Ω increases, the spatial area of the guide eye tension [Formula: see text] that forms the dynamic balloon decreases. When the yarn conveying speed is medium or high, under different tensions at the guide eye, the yarn tensions along the height direction of the balloon change in the same trend, and the tensions of the ballooning yarn at the same height are very close. In addition, with the increase of Ω, the distribution tension of the ballooning yarn changes significantly under the same guide eye tension.

Publisher

SAGE Publications

Subject

Polymers and Plastics,Chemical Engineering (miscellaneous)

Reference27 articles.

1. Yin R, Liu Y and Gu HB. The effect of ring spinning process parameters: result from theoretical model. In: the second international conference on advanced textile material & manufacturing technology, Hangzhou (China), 20–24, October 2010, pp.530–534. Zhejiang University Press.

2. THEORY OF THE SPINNING BALLOON

3. 10—The Rôle of Air Drag in Ring Spinning

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