Study on the Trajectory of Free-End Fiber in Jet Vortex Spinning Based on the Elastic Thin-Rod Finite Element Model of Flexible Fiber

Author:

Han Chenchen1,Gao Weidong1,Chen Lifen2

Affiliation:

1. School of Textile and Clothing , Jiangnan University , Wuxi , Jiangsu 214122 , China

2. Jiangsu Sunshine Group Co., Ltd. , Jiangyin , Jiangsu 214426 , People’s Republic of China

Abstract

Abstract During the air flow twisting process of jet vortex spinning, the moving characteristics of flexible free-end fiber are complex. In this paper, the finite element model of the fiber is established based on elastic thin rod element. According to the air pressure and velocity distribution in the airflow twisting chamber of jet vortex spinning, this paper analyzes the undetermined coefficients of the finite element kinetic differential equation of the free-end fiber following the principle of mechanical equilibrium, energy conservation, mass conservation and momentum conservation. Based on numerical simulation, this paper gets the trajectory of the free-end fiber. Finally, the theoretical result of the free-end fiber trajectory by finite element simulating is tested by an experimental method. This paper has proposed a new method to study the movement of the fiber and learn about the process and principle of jet vortex spinning.

Publisher

Walter de Gruyter GmbH

Subject

General Materials Science

Reference14 articles.

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2. [2] Basal, G., Oxenham, W. (2006). Effects of some process parameters on the structure and properties of vortex spun yarn. Textile Research Journal, 76(6), 492-499.10.1177/0040517506064253

3. [3] Tyagi, G. K., Sharma, D., Salhotra, K. R. (2004). Process-structure-property relationship of polyester-cotton MVS yarns: part i - influence of processing variables on yarn structural parameters. Indian Journal of Fibre & Textile Research, 29(4), 419-428.

4. [4] Li, Y. X., (2005). Jet vortex spinning exploration. China Textile Leader, (8), 69-67.

5. [5] Yuan, L. C., Li, X. R., Guo, Z., Jiang, X. M. (2018). Research progress in influence of vortex spinning nozzle on flow field. Journal of Textile Research, 39(1), 169-178.

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