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Study on Spinning Triangles in the Common Ring Spinning and Super Draft Ring Spinning Systems

机译:普通环锭纺和超牵伸锭纺系统中纺三角的研究。

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In the paper, one kind of super draft ring spinning frame with four drafting rollers and corresponding three drafting zones were introduced. The yarn qualities spun by the super draft ring spinning frame were analyzed by studying the shape of spinning triangles. Using the high speed camera system OLYMPUS i-speed3 and one kind of transparent front top roller, the spinning triangles were captured, and the geometry size of spinning triangle were measured. Then, according to the theoretical model of fiber tension in the spinning triangle, fiber tension distributions in the spinning triangles were presented by using Matlab software. Using the combed roving of 350 tex as raw material, three kinds of cotton yarns, 27.8 tex (21(s)), 18.2 tex (32(s)) and 14.6 tex (40(s)), were spun in the common ring spinning frame with three different suitable spindle speeds, travelers and twist factors. Using the combed roving of 350 tex and 500 tex as raw material, 14.6 tex cotton yarns were spun in the super draft ring spinning frame with three different drafting ratios at back zone. It is shown that with the increasing of spindle speed, a more asymmetric shape of spinning triangle would be produced, and lead to worsen yarn evenness. With the decreasing of traveler weight, the height and horizontal deviation of the spinning triangle is decreased, and may lead to better yarn evenness and less long hairiness. By taking suitable large yarn twist factors, the comprehensive qualities can be improved. Comparing with the common ring spinning, the spinning triangle is larger in the super draft ring spinning. That is, in the super draft ring spinning, the fibers in the strand in the front roller nip are more dispersed, and not benefit for yarn qualities. Therefore, the compact device was introduced into the super draft ring spinning, and the cotton pure yarns and blend yarns were spun, and the yarn qualities were measured and analyzed.
机译:本文介绍了一种具有四个牵伸罗拉和相应三个牵伸区的超级牵伸环锭细纱机。通过研究纺纱三角形的形状,分析了超级牵伸环纺纱机纺出的纱线质量。使用高速相机系统OLYMPUS i-speed3和一种透明的前上罗拉,捕获旋转三角形,并测量旋转三角形的几何尺寸。然后,根据纺丝三角中纤维张力的理论模型,利用Matlab软件给出了纺丝三角中纤维张力的分布。以350 tex的精梳粗纱为原料,在普通圈中纺出27.8 tex(21(s)),18.2 tex(32(s))和14.6 tex(40(s))三种棉纱具有三种不同的合适主轴转速,行程和扭曲系数的旋转机架。以350 tex和500 tex的精梳粗纱为原料,在超级牵伸环锭细纱机的后区以三种不同的牵伸比纺制14.6 tex棉纱。结果表明,随着锭子转速的提高,纺纱三角的形状将更加不对称,并导致纱线均匀度变差。随着钢丝圈重量的减小,纺纱三角形的高度和水平偏差减小,从而可能导致更好的纱线均匀度和更少的长毛羽。通过采用适当的大纱线捻度因子,可以提高综合质量。与普通环锭纺相比,超级牵伸环锭纺中的纺纱三角形更大。即,在超级牵伸环纺中,前罗拉压区中的股线中的纤维更加分散,并且不利于纱线质量。因此,将紧凑型装置引入到超级牵伸环锭纺中,纺出纯棉纱和混纺纱,并测量和分析了纱线的质量。

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