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Development of twin-illumination and subtraction technique for detection of concave and convex defects on steel surfaces

机译:钢表面检测凹凸缺陷的双照射和减法技术的研制

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Optical surface inspection of steel mill products such as pipes, plates and slabs usually has the problem of overdetection, which is caused by signals from harmless parts such as scale and surface texture. The authors propose a new inspection technique based on the experience that most harmful defects on these products have a concave or convex shape, whereas most harmless parts that might be overdetected have flat shapes. The proposed technique is called the 'twin-illumination and subtraction technique'. In this technique, firstly, two images of the target area on a steel surface illuminated from the two sides are captured, respectively. A subtraction image is then calculated from these images. Comparing the images illuminated from the different sides, the images from concave or convex defects look different due to their different shadows, while images from harmless flat parts look the same because illumination does not cause any shadow. As a result, two images with the same appearances from a harmless part are canceled by subtraction, and two images with different appearances from a concave or convex defect remain even after subtraction. Finally, it is possible to detect only concave or convex defects without overdetecting flat patterns. In this manuscript, first, we explain the proposed technique and confirmation experiments in the laboratory. We also explain a new optical inspection system based on the concept described above and its application to moving hot pipes in a steel manufacturing plant to prove the effectiveness of the technique. We concluded that the inspection system has sufficient performance for use as a practical system.
机译:钢厂产品如管道,板材和板坯等光学表面检测通常具有过度数据的问题,这是由来自无害零件(如尺度和表面纹理)的信号引起的。作者提出了一种新的检查技术,基于这些产品的经验,这些经验具有凹形或凸形的凹形或凸形,而最无害的部件可能被覆盖的扁平形状。所提出的技术称为“双照明和减法技术”。在该技术中,首先,分别捕获从两侧照射的钢表面上的目标区域的两个图像被捕获。然后从这些图像计算减法图像。将图像从不同的侧面照射的图像进行比较,由于其不同的阴影,凹面或凸缺陷的图像看起来不同,而来自无害扁平部件的图像看起来相同,因为照明不会导致任何阴影。结果,通过减法消除具有来自无害部分的相同外观的两个图像,并且即使在减法之后,也仍然是来自凹面或凸缺陷的不同出差的两个图像。最后,可以仅检测凹形或凸缺陷而不会过度地覆盖平面图案。在本手稿中,首先,我们解释了实验室中提出的技术和确认实验。我们还通过上述概念解释了一种新的光学检测系统及其在钢制制造工厂中移动热管以证明该技术的有效性。我们得出结论,检查系统具有足够的性能作为实际系统。

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