Yin R, Tao X M, Xu B G
Institute of Textiles and Clothing, The Hong Kong Polytechnic University, Hong Kong, China.
Sci Rep. 2016 Apr 15;6:24432. doi: 10.1038/srep24432.
Twisting is an important process to form a continuous yarn from short fibres and to determine the structure and properties of the resultant yarn. This paper proposes a new theoretical model of yarn dynamics in a generalized twisting system, which deals with two important phenomena simultaneously, that is, twist generation and twist propagation. Equations of yarn motion are established and the boundary value problems are numerically solved by Newton-Raphson method. The simulation results are validated by experiments and a good agreement has been demonstrated for the system with a moving rigid cylinder as the twisting element. For the first time, influences of several parameters on the twisting process have been revealed in terms of twist efficiency of the moving rigid cylinder, propagation coefficients of twist trapping and congestion. It was found that the wrap angle and yarn tension have large influence on the twisting process, and the yarn torsional rigidity varies with the twisting parameters.
加捻是将短纤维制成连续纱线并确定所得纱线结构和性能的重要过程。本文提出了一种广义加捻系统中纱线动力学的新理论模型,该模型同时处理两个重要现象,即捻度产生和捻度传播。建立了纱线运动方程,并采用牛顿-拉夫逊方法对边值问题进行了数值求解。通过实验验证了模拟结果,对于以移动刚性圆柱体为加捻元件的系统,已证明两者具有良好的一致性。首次从移动刚性圆柱体的捻度效率、捻度捕获和拥堵的传播系数方面揭示了几个参数对加捻过程的影响。研究发现,包角和纱线张力对加捻过程有很大影响,纱线扭转刚度随加捻参数而变化。