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A novel imaging-enhancement-based inspection method for transparent aesthetic defects in a polymeric polarizer

机译:一种新型成像 - 增强基于聚合物偏振器透明美学缺陷的检查方法

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摘要

The transparent aesthetic defects of polymeric polarizers are difficult to image and characterize using conventional illumination. To inspect such special defects, an automated inspection method was studied that employs the structured lighting technique to markedly enhance defect imaging. The defect was modelled as a microscale piano-convex lens, which has a slight difference in refractive index within its normal region. The imaging enhancement mechanism of the defect was simulated with a model in which the binary stripe patterns of the structured-light source are equivalent to a one-dimensional diaphragm. The experimental results were in agreement with the simulation, suggesting that the model and mechanism are feasible. A novel spatial texture filtering algorithm with higher speed and higher accuracy is proposed to process the structured light images. Approximately 200 samples with defects were successfully imaged, processed and characterized. This inspection method was verified by the final experimental results and has potential for real-time and in situ testing of defects in other polymer films and products. (C) 2017 Published by Elsevier Ltd.
机译:聚合物偏振器的透明美学缺陷难以使用常规照明的图像和表征。为了检查这种特殊缺陷,研究了自动检查方法,用于显着增强缺陷成像。缺陷被建模为微尺寸钢琴凸透镜,其在其正常区域内具有轻微的折射率差异。用模型模拟缺陷的成像增强机构,其中结构光源的二元条带图案等同于一维隔膜。实验结果与模拟一致,表明模型和机制是可行的。提出了一种具有更高速度和更高精度的新型空间纹理滤波算法来处理结构化光像。成功成功地成像,处理和表征了大约200个具有缺陷的样本。通过最终的实验结果验证了该检查方法,并且具有实时和原位测试其他聚合物膜和产品的缺陷。 (c)2017年由elestvier有限公司出版

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