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首页> 外文期刊>Advances in Applied Sciences >Investigating the Interactive Effect of Card Cylinder Speed and Roller Gauge Settings of Breaker Drawing on Combed Yarn Evenness and Imperfections
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Investigating the Interactive Effect of Card Cylinder Speed and Roller Gauge Settings of Breaker Drawing on Combed Yarn Evenness and Imperfections

机译:研究梳棉机的梳棉机转速和辊规设置对精梳纱均匀度和不均匀度的交互影响

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This project work deals to investigate the interactive impact of cylinder speed and roller gauge setting of breaker drawing frame on ring spun combed yarn evenness and imperfections. In this work, carded slivers were produced by keeping cylinder rpm of 750 rpm, 800 rpm and 850 rpm while subsequent roller gauge settings (front zone/ back zone) in drawing frame were selected at three levels (i.e., F38mm/B42 mm, F40mm/B44 mmandF42mm/B46 mm) for each cylinder rpm. Cotton combed yarns of 32 Ne and 36 Ne from roving hank of 0.76 Ne have been produced for each combination of cylinder rpm and roller setting gauge. However, results show that best combination of cylinder rpm and roller gauge settings is found 800 rpm and F40/B44 respectively in terms of yarn evenness and imperfections for both types of yarn count. Moreover, roller gauge settings should be kept somewhat narrower (i.e., Front 38 mm/ Back 42 mm) for carded slivers produced at higher cylinder speed (i.e., 850 rpm), otherwise it is observed that short fiber percentage and CV_(1m)% of combed sliver have been increased for the combination of higher cylinder speed with wider roller gauge settings. As a result, final yarn evenness and imperfections results also have been deteriorated. On the other hand, for comparatively lower level of cylinder speed (i.e., 750 rpm) little wider roller gauge settings of subsequent drawing frame improves evenness and decreases SFC% of combed sliver and finally it has contributed to improve the combed yarn quality as well. Simultaneously it is also noticeable that comparatively wider roller setting (i.e., F42mm/B46 mm) gives poor results for all three level of cylinder speed. However, for both types of yarn count, results show similar trend in terms of evenness and imperfections but finer yarn count reacts more intensively in comparison with coarser count.
机译:该项目的工作旨在研究滚筒速度和破碎机并条机的辊距设置对环锭纺精梳纱均匀度和缺陷的交互影响。在这项工作中,通过保持750 rpm,800 rpm和850 rpm的滚筒rpm来生产粗梳棉条,同时在并条机中的后续辊规设置(前区/后区)选择为三个级别(即F38mm / B42 mm,F40mm) / B44 mm和F42mm / B46 mm)。对于每分钟滚筒转数和罗拉定规,分别生产了由0.76 Ne的粗纱制成的32 Ne和36 Ne的精梳棉纱。但是,结果表明,就两种类型的纱线支数的纱线均匀度和瑕疵而言,分别将滚筒rpm和罗拉计设置的最佳组合分别设为800 rpm和F40 / B44。此外,对于以较高滚筒速度(即850 rpm)生产的粗梳棉条,应将辊规的设置保持较窄(前38毫米/后42毫米),否则观察到短纤维百分比和CV_(1m)%由于较高的气缸速度和较宽的辊规设置,精梳棉条的数量有所增加。结果,最终的纱线均匀度和不完美的结果也已经恶化。另一方面,对于相对较低的滚筒速度水平(即750 rpm),后续并条机的较宽辊距设置可以提高均匀度,并减少精梳棉条的SFC%,最后也有助于改善精梳纱的质量。同时,还值得注意的是,相对较宽的滚轮设置(即F42mm / B46 mm)在所有三个水平的气缸速度下均给出较差的结果。但是,对于两种类型的支数,结果在均匀度和不完美度方面都显示出相似的趋势,但是与较粗支数相比,细支数的反应更强烈。

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