Effects of structural parameters on air consumption and mechanical energy characteristics of airflow in the vortex spinning nozzle

Chuanzhi Xi, Jiayuan Wang, Yongzhi Wang, Ge Chen, Z. Pei
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引用次数: 1

Abstract

Reducing energy consumption during textile production processes has currently become one of the key concerns. In order to design the nozzle of the vortex spinning machine with reduced air consumption, numerical simulation of the airflow in the nozzle is performed to investigate the effect of the length and the inlet diameter of the conical chamber in the intermediate section of the vortex tube on the air consumption and the mechanical energy characteristics of the airflow. A spinning experiment conducted to measure the flow rate and yarn tenacity is adopted to verify the numerical simulation results. The simulation results show that the air consumption of the nozzle is insignificantly affected as the length increases from 7.3 mm to 7.7 mm, while a decreasing trend has been found as the length increases from 7.7 mm to 8.1 mm. As the inlet diameter increases from 4.6 mm to 5.0 mm, the air consumption of the nozzle increases monotonically. The mechanical energy of airflow in the nozzle exhibits a minor difference between cases of lengths of 7.3 mm, 7.5 mm, and 7.7 mm, while it decreases significantly in cases of lengths of 7.9 mm and 8.1 mm. The mechanical energy of airflow in the vortex chamber increases as the inlet diameter increases. The experimental results are consistent with the numerical predictions. This work is expected to provide a reference for the design of the vortex spinning nozzle and an approach to reducing the energy consumption in the yarn production process.
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结构参数对涡流纺丝喷嘴气流耗气量和机械能特性的影响
降低纺织生产过程中的能耗已成为当前关注的重点之一。为了设计出减少空气消耗量的涡流纺纱机喷嘴,我们对喷嘴中的气流进行了数值模拟,研究了涡流管中间部分锥形腔的长度和入口直径对空气消耗量和气流机械能特性的影响。为验证数值模拟结果,还进行了纺纱实验来测量流速和纱线韧性。模拟结果表明,当长度从 7.3 毫米增加到 7.7 毫米时,喷嘴的耗气量受影响不大,而当长度从 7.7 毫米增加到 8.1 毫米时,耗气量呈下降趋势。当入口直径从 4.6 毫米增加到 5.0 毫米时,喷嘴的空气消耗量单调增加。喷嘴中气流的机械能在长度为 7.3 毫米、7.5 毫米和 7.7 毫米时差别不大,而在长度为 7.9 毫米和 8.1 毫米时则明显下降。涡流室中气流的机械能随着入口直径的增加而增加。实验结果与数值预测结果一致。这项工作有望为涡流纺喷嘴的设计提供参考,并为降低纱线生产过程中的能耗提供一种方法。
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