合成纤维长丝卷绕机旋转翼叶片轮廓的改进设计:分析与实验

Qinglong Liu, Shujia Li, Jincan Wang, Zihang Chen, Yongxing Wang, Hongbo Shan, KeHan Wu
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引用次数: 0

摘要

合成长丝卷绕机通过带旋转翼的横动机构带动长丝,使其在连续卷绕时完成横向往复运动,实现在圆柱形包材上的螺旋分布。现有的横动机构在牵引长丝时,长丝在包材两端反转过程中容易摆动,脱离旋转翼的控制,直接影响长丝在包材上的成型。在本研究中,首先从带旋转翼的横移机构的引丝原理出发,分析了引丝过程,确定了轮廓的关键点。其次,对关键点进行参数约束,开发出既能满足灯丝反转需求,又能通过曲线拟合改善上述异常现象的叶片轮廓,使叶片在反转过程中能持续稳定地引出和控制灯丝。最后,通过实际卷绕实验,对比了原叶片与改进叶片的引丝过程状态,验证了改进效果。本研究为实现长丝与叶片之间平滑稳定的接力提供了设计依据和优化参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improvement design of blade profile on rotary wings of winder for synthetic filament: Analysis and experiment
The synthetic filament winder drives the filament through the traverse mechanism with rotary wings so that it can complete the transverse reciprocating motion when it is continuously wound and achieve the spiral distribution on the cylindrical package. When the existing traverse mechanism leads the filament, the filament is easy to oscillate and breaks away from the control of the rotary blade during the reversing process at both ends of the package, which directly affects its forming on the package. In this study, firstly, the filament leading process is analyzed from the filament leading principle of the traverse mechanism with rotary wings and the key points of the profile are identified. Secondly, we applied parameter constraints of key points and developed a blade profile that can not only meet the demand of filament reversing but also improve the above abnormal phenomena by curve-fitting, so that the blade can continuously and stably lead and control the filament during the reversing process. Finally, through the actual winding experiment, we contrasted the state of the filament leading process of the original blades with the improved blades, and verified the improvement effect. This study provides a design basis and optimization reference for realizing a smooth and stable relay between the filament and blades.
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