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A Numerical and Experimental Study on a Pre-Twisted Ring Spinning System

机译:预捻环锭纺系统的数值与实验研究

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摘要

The ring spinning process is the most widely used method in the spinning industry. Nowadays, the labor cost become more and more expensive, and it is essential to improve productivity. For increasing the productivity, a modification of adding a pre-twister and holding roller on the traditional ring spinning system have been discussed in this paper. The computational fluid dynamics (CFD) are introduced to study the effects of pre-twister and spinning tests are implemented for verification. The numerical simulations show that the cavity conical degree and nozzle numbers of the pre-twister are the key parameters which affect the airflow fluctuation in the cavity, and have obvious effects on the resultant yarn twist. By contrast, the axial angle and tangential angle of the nozzle have less effect on the resultant yarn twist. When the fiber bundles pass by the front nip, they are affected by the vortex and result in a partially strengthened and wrapped structure which could be subsequently twisted less by the traveler and ring, so the productivity could be potentially increased. According to the spinning tests, an evident productivity increase by nearly 30% for medium cotton yarns can be achieved, and the yarns have an acceptable reduction in nearly all properties.
机译:环锭纺纱工艺是纺纱行业中使用最广泛的方法。如今,人工成本越来越高,提高生产率至关重要。为了提高生产率,本文讨论了在传统环锭细纱机上增加预捻器和固定罗拉的修改方法。引入计算流体动力学(CFD)来研究预捻试验的效果,并进行纺丝测试以进行验证。数值模拟表明,预捻机的腔锥度和喷嘴数量是影响腔内气流波动的关键参数,对纱线捻度有明显影响。相反,喷嘴的轴向角和切向角对所产生的纱线捻度影响较小。当纤维束通过前压区时,它们会受到涡流的影响,并导致部分增强和包裹的结构,随后可能会被钢丝圈和环扭曲较少,因此可能会提高生产率。根据纺丝试验,中棉纱的生产率可以明显提高近30%,并且纱线的几乎所有性能都有可接受的降低。

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