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Modelling yarn balloon motion in ring spinning

机译:在环锭纺中模拟纱线气球运动

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Air-drag on a ballooning yarn and balloon shape affect the yarn tension and ends-down (yarn breakage), which in turn affects energy consumption and yarn productivity in ring spinning. In this article, a mathematical model of yarn ballooning motion in ring spinning is established. The model can be used to generate balloon shape and predict tension in the ballooning yarn under given spinning conditions. Yarn tension was measured using a computer data acquisition system and the balloon shapes were captured using a digital camera with video capability during the experiments using cotton and wool yarns at various balloon-heights and with varying yarn-length in the balloon. The air-drag coefficients on ballooning cotton and wool yarns in ring spinning were estimated by making a "best fit" between the theoretical and experimental turning points. The theoretical results were verified with experimental data. The effects of air-drag and balloon shape on yarn tension are discussed.
机译:气球上的空气拖曳和气球形状会影响纱线的张力和断头率(断纱),进而影响环锭纺纱中的能耗和纱线生产率。在本文中,建立了环锭纺纱中纱线膨胀运动的数学模型。该模型可用于在给定的纺丝条件下产生气球形状并预测气球纱线中的张力。使用计算机数据采集系统测量纱线张力,并在实验过程中使用具有视频功能的数码相机捕获气球形状,使用具有不同气球高度的棉线和羊毛纱线,并在气球中改变纱线长度。通过在理论转折点和实验转折点之间建立“最佳拟合”,可以估算环锭纺中的棉线和羊毛线膨胀时的气阻系数。理论结果得到了实验数据的验证。讨论了空气阻力和气球形状对纱线张力的影响。

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