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Numerical simulation of flow field in complete condensing spinning: effects of suction unit and guiding device

机译:完全凝结纺丝过程中流场的数值模拟:抽吸单元和导向装置的作用

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Complete condensing spinning (CCS) is one kind of pneumatic compact spinning. A kind of hollow roller with strip groove structure on the surface is used to condense the fiber bundle and improve the yarn qualities. In this paper, the numerical simulation of flow field in CCS is studied using fluent software. Using AutoCAD Software, according to the physical parameters of the practical system, a three-dimensional (3D) model of the condensing zone is established firstly. Then, the numerical simulations of the flow field in CCS were presented. Three kinds of suction units, straight-type, long-skewed, and short-skewed, and three kinds of guiding devices, A-type, B-type, and C-type, were discussed. Corresponding simulations in the front, middle, and back condensing zone and arc line along the front roller surface direction were given and analyzed comparatively. It is shown that the flow field distribution in CCS is stable and can condense the fibers well. The shape of suction unit may mainly influence the output of fiber strand in the condensing zone and affect the yarn evenness. When compared with the long-skewed and short-skewed suction units, the straight-type suction unit is beneficial for the fiber strand output leading to better yarn evenness possibly. However, the distribution ranges of flow field in CCS with both long-skewed and short-skewed suction units are larger than that of the straight-type suction unit. Furthermore, comparing with that of without a guiding device, the direct transverse air condensing force in CCS using a guiding device is greatly larger, which is beneficial for reducing the yarn hairiness. However, the assisted condensing forces are smaller and make the yarn evenness possibly worse. Finally, the obtained numerical results are illustrated by spinning experiments.
机译:完全冷凝纺丝(CCS)是一种气动紧密纺。一种在表面具有带槽结构的空心罗拉用于凝结纤维束,提高纱线质量。本文利用Fluent软件研究了CCS中流场的数值模拟。利用AutoCAD软件,根据实际系统的物理参数,首先建立了冷凝区的三维(3D)模型。然后,对CCS中的流场进行了数值模拟。讨论了三种类型的抽吸单元:直型,长型和短型,以及三种引导装置,A型,B型和C型。给出了在前,中,后冷凝区和沿前辊表面方向的弧线的相应模拟,并进行了比较分析。结果表明,CCS中的流场分布稳定,可以很好地凝结纤维。抽吸单元的形状可能主要影响纤维束在冷凝区的输出并影响纱线的均匀性。与长歪斜和短歪斜的抽吸单元相比,直线型抽吸单元有利于纤维束的输出,并可能带来更好的纱线均匀度。但是,长形和短形吸入单元在CCS中的流场分布范围都比直型吸入单元大。此外,与没有引导装置的情况相比,使用引导装置的CCS中的直接横向空气冷凝力大得多,这有利于减少纱线的毛羽。但是,辅助的凝结力较小,可能使纱线均匀度变差。最后,通过旋转实验说明了获得的数值结果。

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