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Research and Development of Intelligent On-Line Real-time Defect Inspection System for Polymer Polarizer

机译:聚合物偏振片智能在线实时缺陷检测系统的研究与开发

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This paper aimed at developing a set of on-line real-time defect inspection system for Polymer polarizer. It intended to help producers make different improvements for the spot or line defects in manufacturing on-line polarizer. This paper used line-scan charged couple device (CCD) to capture the defect images of polarizer: firstly, to scale down the captured images by 64 times with downsampling compression; then, we utilized Laplace operator to find out the edges of defects and the shield with isotropic results for 45° and 90° incremental rotation. Subsequently, we used the statistical decision method of threshold value to divide up the edges of defects that were discovered with Laplace operator from the image. Eventually, we differentiated the spot defects, like dust, foreign objects, scars of hit and air bubbles in the production process from the line defects, like scratches in the follow-up handling process with the straight line detection characteristic of Hough Transform. This paper captured 200 pieces of defect images of polarizer samples in all and then input them to the inspection system developed by ourselves for test. The differentiation rate of defects amounted to 98%, which proved that we had successfully developed a set of on-line real time automatic optical inspection (AOI) system suitable to be applied to polymer polarizer.
机译:本文旨在开发一套用于聚合物偏振片的在线实时缺陷检测系统。它旨在帮助生产商对在线偏振片的斑点或线条缺陷进行不同的改进。本文采用线扫描电荷耦合器件(CCD)来捕获偏振片的缺陷图像:首先,通过下采样压缩将捕获的图像按比例缩小64倍。然后,我们利用Laplace算子找出缺陷的边缘和45°和90°增量旋转的各向同性结果的屏蔽。随后,我们使用阈值的统计决策方法来划分由Laplace算子从图像中发现的缺陷的边缘。最终,我们利用Hough Transform的直线检测特性将生产过程中的斑点缺陷(例如灰尘,异物,撞击痕迹和气泡)与生产线缺陷(例如后续处理过程中的划痕)区别开来。本文共拍摄了200张偏振片样品的缺陷图像,然后将其输入到我们自己开发的检测系统中进行测试。缺陷的鉴别率达到98%,证明我们已经成功开发了一套适用于聚合物偏振片的在线实时自动光学检查(AOI)系统。

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  • 来源
    《Polymer-Plastics Technology and Engineering》 |2009年第2期|p.185-192|共8页
  • 作者

  • 作者单位

    Department of Polymer Engineering, National Taiwan University of Science and Technology, Taipei, Taiwan, Republic of China;

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  • 正文语种 eng
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  • 入库时间 2022-08-18 00:58:04

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