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Influence of carding and drawing processes on orientation of fibers in slivers

机译:梳理和牵伸工艺对条中纤维取向的影响

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摘要

The orientation of fibers is known to play a very important role in determining the quality of the carded and drawn slivers as well as the quality of the ultimate yarns produced from those slivers. Also, the orientation of fibers is considered to be a very useful parameter for evaluating the effectiveness of the carding and drawing processes in aligning the fibers. In addition, the orientation of fibers is known to determine the length utilization of the fibers in the slivers. This article reports on the influence of carding and drawing processes on the orientation of fibers in the carded and drawn slivers. A series of carded and drawn slivers were prepared by using polyester staple fibers and making various changes in the carding and drawing processes and the orientation of fibers in the slivers was evaluated based on Lindsley's methodology in conjunction with a mathematical model of fiber orientation in slivers. It was observed that the increase in cylinder speed and the decrease in doffcr speed resulted in more anisotropic fiber orientation distribution in the carded slivers and the degree of anisotropy was found to be more in the forward direction as compared to the backward direction of the carded slivers. The higher draft and doubling in the drawframe resulted in higher anisotropy in the orientation of fibers in the drawn slivers and the drawn slivers displayed more anisotropy in the backward direction as compared to the forward direction. The higher delivery speed of the drawframe resulted in higher anisotropy in fiber orientation in the drawn slivers and the drawn slivers exhibited more anisolropy in the backward direction as compared to the forward direction. The results of fiber orientation in the carded and drawn slivers obtained by using the mathematical model were compared to the fiber orientation parameters suggested by earlier researchers and a satisfactory correlation between them was observed.
机译:已知纤维的取向在确定粗梳和拉伸条的质量以及由这些条生产的最终纱线的质量方面起着非常重要的作用。同样,纤维的取向被认为是用于评估梳理和拉伸过程在对准纤维中的有效性的非常有用的参数。另外,已知纤维的取向确定条子中纤维的长度利用率。本文报告了梳理和牵伸过程对梳理和拉伸生条中纤维取向的影响。通过使用涤纶短纤维并在梳理和拉伸过程中进行各种更改,制备了一系列梳理和拉伸的条子,并根据Lindsley的方法结合条子中纤维取向的数学模型对条子中纤维的取向进行了评估。观察到,圆筒速度的增加和落纱速度的降低导致梳理棉条中的各向异性纤维取向分布更多,并且与梳理棉条的后向方向相比,各向异性程度更大。 。并条机中较高的牵伸和加倍导致拉伸条中纤维取向的各向异性更高,并且与正向相比,拉伸条在向后方向上显示出更大的各向异性。并条机的较高输送速度导致在拉伸的条中纤维取向方面的各向异性更高,并且与向前的方向相比,拉伸的条在向后的方向上表现出更多的各向异性。使用数学模型获得的粗梳棉条和拉伸条中纤维取向的结果与早期研究人员建议的纤维取向参数进行了比较,并观察到令人满意的相关性。

著录项

  • 来源
    《The Journal of the Textile Institute》 |2012年第6期|p.676-686|共11页
  • 作者单位

    Department of Textile Technology, Indian Institute of Technology Delhi, Hauz Khas, New Delhi 110016, India;

    Department of Textile Technology, Indian Institute of Technology Delhi, Hauz Khas, New Delhi 110016, India;

    Department of Textile Technology, Indian Institute of Technology Delhi, Hauz Khas, New Delhi 110016, India;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    fiber; orientation; carding; drawing; sliver;

    机译:纤维;取向;梳理画画;条子;

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