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Numerical study of the three-dimensional preliminary flow field in the ring spinning triangle

机译:环锭纺三角三维预流场的数值研究

摘要

The spinning triangle is a critical region in ring spinning. To understand the formation principle of the triangle zone, a dynamic mesh model with SIMPLEC algorithm is employed to study airflow around the rotating front roller-pair. The effects of both the top roller offset and the drafting inclination angle are also discussed. The bubble-type vortex breakdown and vortices around two cylinders are observed. The bubble-type vortices will help the edge fibers to converge to the center. A contour line with special value is defined to describe the spinning triangle. A dynamic triangle zone is also observed with time. As the forward offset of the top roller increases, the velocities in the stream-wise (x- and y-) directions decrease and the maximum values of the skin friction deflect gradually towards the apex of the roller. However, the z-velocity for the 3 mm top roller offset is the largest and results in a good converging for fibers and, consequently, increases the yarn tension. With increasing the inclination angle, the velocities increase while both the defined triangle zones and the maximum values of the friction coefficients decrease, thus speeding up the fibers transportation. The simulation results agree well with the theory analysis and experiments of spinning.
机译:旋转三角形是环锭纺中的关键区域。为了理解三角形区域的形成原理,采用带有SIMPLEC算法的动态网格模型来研究旋转前辊对周围的气流。还讨论了上罗拉偏移量和牵伸倾斜角的影响。观察到气泡型涡旋破裂和两个圆柱体周围的涡旋。气泡型涡流将帮助边缘纤维汇聚到中心。定义具有特殊值的轮廓线来描述旋转三角形。随着时间也观察到动态三角形区域。随着上罗拉的前向偏移的增加,流向(x和y)方向的速度降低,皮肤摩擦力的最大值逐渐向罗拉的顶点偏斜。但是,3毫米上罗拉偏移的z速度最大,并导致纤维良好的会聚,因此增加了纱线张力。随着倾斜角度的增加,速度会增加,同时定义的三角形区域和摩擦系数的最大值都会减小,从而加快了纤维的传输速度。仿真结果与纺丝理论分析和实验吻合良好。

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