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Quality testing of staple yarn by an instrument with dual sensing and its comparative study with capacitive sensing

机译:双重传感仪器对短纤纱的质量测试及其与电容传感的对比研究

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摘要

An instrument employing both image processing and optical sensing in a single run has been developed to evaluate yarn quality parameters such as irregularity, imperfections and hairiness. Dedicated software, inbuilt within the system, is also developed, which measures the attributes from both the sensors, and a best fit representation is made. The irregularity and imperfections obtained from proposed instrument are compared with those obtained from universally accepted capacitive sensing Uster tester, whereas hairs/meter are compared with Zweigle tester. The cotton, cotton-polyester blended and jute yarns have been tested in all the systems. The repeatability and reliability of results in both image processing and optical sensing are found insignificant in 5% confidence level. It is observed that the yarns with diameter value up to 0.65 mm can be evaluated by optical sensor, but above this threshold, image processing may be done successfully. Uster tester result mostly corroborates with image processing. Optical sensor shows higher values than image processing.
机译:已经开发出一种在一次运行中同时使用图像处理和光学传感的仪器,以评估纱线质量参数,例如不规则度,瑕疵和毛羽。还开发了内置于系统中的专用软件,该软件可同时测量两个传感器的属性,并做出最佳拟合表示。将从拟议仪器中获得的不规则性和瑕疵与从普遍接受的电容式传感乌斯特测试仪中获得的不规则性和瑕疵进行比较,而将毛发/米具与Zweigle测试仪进行比较。棉,棉-聚酯混纺纱和黄麻纱已经在所有系统中进行了测试。发现图像处理和光学传感中结果的可重复性和可靠性在5%置信度水平中均无关紧要。观察到直径值最大为0.65 mm的纱线可以通过光学传感器进行评估,但是在此阈值之上,可以成功完成图像处理。乌斯特测试仪的结果大部分与图像处理相符。光学传感器显示出比图像处理更高的值。

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