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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >A Numerical and Experimental Study on the Effect of the Cone Angle of the Spindle in Murata Vortex Spinning Machine
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A Numerical and Experimental Study on the Effect of the Cone Angle of the Spindle in Murata Vortex Spinning Machine

机译:村田涡旋纺丝机主轴锥角影响的数值和实验研究

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摘要

To study the effect of the cone angle of the hollow spindle in the nozzle of Murata vortex spinning (MVS) on yarn properties, the k-epsilon turbulence model is employed to simulate the airflow patterns inside the different nozzles with different spindle cone angles. A set of corresponding spinning experiments is designed to verify numerical predictions. The simulation results show that some factors, such as the counter-rotating vortex pair (CVP) over the spindle, high supersonic zone in the inlet of the swirling chamber, and the distribution of wall shear stress (WSS) along the outer wall of the spindle caused by variation of the cone angle of the spindle, are significantly related to fluid flow, and consequently to MVS yarn properties. A rational cone angle (Case 2) can form an axisymmetric CVP and high WSS, which can ensure sufficient twisting of the yarn and produce high quality yarn. The experimental results, which yarn properties spun using 100percent cotton, 100percent polyester, and polyester 70/cotton 30 blends with different nozzles, are well consistent with the numerical study.
机译:为了研究村田涡旋纺丝(MVS)喷嘴中空心纺锤的锥角对纱线性能的影响,采用k-ε湍流模型模拟了不同纺锤在不同纺锤锥角下的气流模式。设计了一组相应的旋转实验以验证数值预测。仿真结果表明,一些因素,例如主轴上的反向旋转涡流对(CVP),旋流室进口处的高超音速区以及沿外壁的壁面剪应力(WSS)的分布。由锭子的锥角的变化引起的锭子与流体流动显着相关,因此与MVS纱线性能显着相关。合理的锥角(情况2)可以形成轴对称CVP和高WSS,从而可以确保纱线充分捻合并生产出高质量的纱线。使用100%棉,100%聚酯纤维和聚酯70 /棉30混纺纱和不同喷嘴纺制的纱线性能的实验结果与数值研究非常吻合。

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