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首页> 外文期刊>Textile Research Journal >Computational Two-Phase Air/Fiber Flow Within Transfer Channels of Rotor Spinning Machines
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Computational Two-Phase Air/Fiber Flow Within Transfer Channels of Rotor Spinning Machines

机译:转子纺丝机传输通道内的计算两相空气/纤维流

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摘要

The pneumatic conveyance of fibers within confined channels is particularly relevant to textile engineering, with applications such as transporting individual fibers within rotor spinning machines. The channels of converging shape within these machines are designed to help straighten the orientation of the fibers that have escaped from the opening roller. This allows a satisfactory configuration of fibers to be presented to the spinning rotor surface, which in turn improves yarn and subsequent fabric properties. In this study, a new air/fiber two-phase model is developed to simulate fiber movement within confined channels. The computation is based on the results from single-phase air flow simulations in a one-way coupling Lagrangian strategy for predicting fiber trajectories. Initial fiber position and the underlying air flow pattern are demonstrated to be critical to the final fiber configuration at the exit of the channel. A streamwise straight fiber tends to generate a leading hook, while a cross fiber is subject to bending. The aerodynamic forces very nearly retain the fiber configuration adopted at the channel inlet without significant improvement of fiber straightness, since hooks are simultaneously generated and eliminated during transport. Fiber opening and fiber detachment from the opening roller are identified as the two critical factors in obtaining straight fibers at the channel inlet and their transport to the spinning zone.
机译:密闭通道内纤维的气动输送与纺织工程特别相关,其应用包括在转杯纺纱机内输送单根纤维。这些机器中会聚形状的通道设计用于帮助拉直从打开辊中逸出的纤维的方向。这允许将令人满意的纤维构造呈现给纺纱的转杯表面,进而改善纱线和随后的织物性能。在这项研究中,开发了一种新的空气/纤维两相模型来模拟纤维在受限通道内的运动。该计算基于单相气流模拟的结果,该结果是在单向耦合拉格朗日策略中预测纤维轨迹的。最初的纤维位置和下面的空气流动模式对通道出口处的最终纤维构型至关重要。流向的直纤维倾向于产生前钩,而交叉纤维容易弯曲。由于在运输过程中同时产生并消除了钩子,因此空气动力几乎可以保持通道入口处采用的纤维结构,而不会显着改善纤维的笔直度。在通道入口处获得直纤维以及将其传输到纺丝区中的两个关键因素是,纤维的打开和纤维从打开罗拉的脱离。

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