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Effects of splicing on some mechanical properties of short staple cotton ring spun yarn.

机译:拼接对短绒棉环锭纺纱某些力学性能的影响。

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摘要

Pneumatic splicing is one of the most important splicing methods adopted in the textile industry. However, most of the research works that have been done are mainly focused on the tensile properties of the splices. Seldom have the researchers put their concern on other physical properties of the splices. In order to study/investigate the actual performance of the spliced yarn properties apart from the tensile properties, research work is therefore done to study the tensile, bending, appearance and abrasion properties of the yarns spliced under different splicing conditions.; In order to provide for the industry to have a clear concept on the overall properties of the spliced yarn, excluding the single spliced yarn property, both the regression and neural network models have been set up to demonstrate the overall performance of the tested splicing yarn properties by combining the results obtained from each of the spliced yarn performance tests.; The mechanism of pneumatic splicing is also studied by using a high-speed camera and a regular camera to capture/record the splicing process with the help of the transparent splicing chamber specially designed for the research work. With the help of the captured movie/photographs, the mechanism of the pneumatic splicing is therefore presented to the public for the first time.; According to the experimental data obtained and the help of regression analysis and Neural Network analysis, the most important factors that affect the spliced yarn properties are “Yarn Linear Density-Tex” and “Ends retraction-L”. According to the photos obtained from Scanning Electron Microscopy, the physical properties of a spliced yarn are mainly depending on the fiber arrangement of the joint during and after splicing. The higher the degree of fiber intermingling and entanglement, the better the tensile and abrasion properties of the yarn but the lower the bending property. As a result, in order to obtain a spliced yarn with a good quality in all the physical properties, the time, volume, rotary angle and speed of the compressed air inside the splicing chamber must be carefully monitored.
机译:气动拼接是纺织工业中最重要的拼接方法之一。但是,已经完成的大多数研究工作主要集中在接头的拉伸性能上。研究人员很少关注接头的其他物理性质。为了研究/研究除了拉伸性能以外的接续纱线性能的实际性能,因此进行了研究工作以研究在不同的接续条件下接续的纱线的拉伸,弯曲,外观和磨损性能。为了使工业界对接头纱的整体性能有一个清晰的概念,但不包括单条接头纱的性能,已经建立了回归模型和神经网络模型来证明所测试的接头纱性能的总体性能结合从每个拼接纱线性能测试中获得的结果。借助专门为研究工作而设计的透明拼接室,还通过使用高速相机和常规相机来捕获/记录拼接过程,从而研究了气动拼接的机理。因此,借助所拍摄的电影/照片,气动拼接的机制首次向公众展示。根据获得的实验数据以及回归分析和神经网络分析的帮助,影响拼接纱线性能的最重要因素是“纱线线密度-Tex”和“端头回缩-L”。根据从扫描电子显微镜获得的照片,拼接纱线的物理性能主要取决于拼接过程中和拼接后接头的纤维排列。纤维混杂和缠结的程度越高,纱线的拉伸和磨损性能越好,但弯曲性能越低。结果,为了获得在所有物理性质上具有良好质量的接续纱,必须仔细监控接续室内部的压缩空气的时间,体积,旋转角度和速度。

著录项

  • 作者

    Lam, Hiu Ling Ivan.;

  • 作者单位

    Hong Kong Polytechnic (People's Republic of China).;

  • 授予单位 Hong Kong Polytechnic (People's Republic of China).;
  • 学科 Textile Technology.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 229 p.
  • 总页数 229
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 轻工业、手工业;
  • 关键词

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