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Optimization of process variables in rotor spinning for the production of cotton/milkweed blended yarns

机译:用于生产棉/马利筋混纺纱的转杯纺工艺参数的优化

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Cotton/milkweed (60/40) blended yarn of 29.5 tex has been produced on rotor spinning system. The influence of fibre friction, opening roller speed and sliver linear density on rotor yarn properties has been studied using Box and Behnken factorial design and the optimum conditions within the processing limits of the machines are established. The results show that fibre friction is the dominant factor in determining the tensile properties and other properties of rotor-spun yarn. It is observed that a higher fibre friction gives higher yarn tenacity, and lower yarn unevenness, imperfection and hairiness. The opening roller speed also has a greater influence on rotor yarn properties. With an increase in opening roller speed, the number of points per fibre increases, which results in better fibre separation and improvement in yarn properties. But very high opening roller speed deteriorates the yarn properties and increases the end breakage rate mainly due to fibre breakage and low fibre straightness. Generally, heavier sliver weight leads to higher spinning draft which deteriorates the yarn properties.
机译:在转杯纺纱系统上生产了29.5 tex的棉/乳草(60/40)混纺纱。使用Box和Behnken因子设计研究了纤维摩擦,开罗辊速度和条子线密度对转杯纱性能的影响,并确定了机器加工范围内的最佳条件。结果表明,纤维摩擦是决定转杯纺纱拉伸性能和其他性能的主要因素。观察到较高的纤维摩擦力使纱线具有更高的韧性,并降低了纱线的不均匀度,瑕疵和毛羽。开启罗拉速度对转杯纱的性能也有较大的影响。随着打开罗拉速度的增加,每根纤维的点数增加,这导致更好的纤维分离和纱线性能的改善。但是很高的开松罗拉速度会降低纱线性能,并增加最终断头率,这主要是由于纤维断头和纤维直度低所致。通常,较重的条子重量会导致较高的纺丝牵伸度,从而降低纱线性能。

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