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Warp breaks detection in jacquard weaving using MEMS.

机译:使用MEMS进行提花编织中的经纱断裂检测。

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摘要

Microelectromechanical systems or MEMS technology has gone from an interesting academic exercise to an integral part of many applications in several industries. However, little work has been done in researching applications for MEMS in textiles.; Research related to warp breaks has been limited to monitoring break frequency and the reason associated with breaks in order to improve warp yarn quality. While this approach led to improvement in weaving efficiency, warp breaks still represent a major problem, especially for today's high-speed weaving machines. Researchers have been trying to develop commercial automated systems to repair warp breaks with no success. The goal of this study is to explore inexpensive methods to detect warp breaks using nontraditional technique that would pave the way to automate warp break repair. To achieve the goal, a system that can detect warp breaks using MEMS accelerometers as sensors was developed for Jacquard weaving. The MEMS accelerometers were mounted on harness cords of a Jacquard tie.; MEMS output acceleration signals components in the vertical and horizontal directions were analyzed using time and frequency domains. The signals were acquired while warp ends are running and at the moment of intentional breaks. The analysis led to a successful detection of warp breaks especially using the horizontal acceleration component that is mainly due to harness cord vibration.; Three experimental designs were conducted to investigate the effect of weave design, warp yarn type, and warp yarn tension on the output signal strength which is measured by amplitude in time domain. It was found that warp break for weave with longer floats showed (shedding motion operates in open shed principal) stronger output signal as compared to plain weave. Increasing warp tension caused an increase of the output signal strength. The output signal increased with increase in yarn modulus.
机译:微机电系统或MEMS技术已经从一个有趣的学术活动变成了多个行业中许多应用程序的组成部分。但是,在研究MEMS在纺织品中的应用方面,工作还很少。与经纱断裂有关的研究仅限于监测断裂频率和与断裂有关的原因,以提高经纱质量。尽管这种方法可以提高织造效率,但经纱断裂仍然是一个主要问题,尤其是对于当今的高速织机而言。研究人员一直在尝试开发商业自动化系统来修复翘曲断裂,但没有成功。这项研究的目的是探索使用非传统技术检测翘曲断裂的廉价方法,这将为自动化翘曲断裂修复铺平道路。为了实现这一目标,开发了一种可将MEMS加速度计用作传感器来检测经纱断裂的系统,用于提花机织造。 MEMS加速度计安装在提花扎带的线束上。使用时域和频域分析了垂直和水平方向上的MEMS输出加速度信号分量。在经纱末端运行时和有意中断的时刻获取信号。该分析成功地检测了翘曲断裂,尤其是使用水平加速分量的情况下,该翘曲主要是由于线束绳索振动引起的。进行了三个实验设计,以研究编织设计,经纱类型和经纱张力对输出信号强度的影响,该输出信号强度通过时域中的幅度进行测量。结果发现,与平纹编织相比,具有较长浮漂的织物的经纱折断表现出(脱落运动在敞开的梭织原理中),输出信号更强。弯曲张力的增加导致输出信号强度的增加。输出信号随着纱线模量的增加而增加。

著录项

  • 作者

    Lee, Jin Ho.;

  • 作者单位

    North Carolina State University.;

  • 授予单位 North Carolina State University.;
  • 学科 Textile Technology.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 207 p.
  • 总页数 207
  • 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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