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Dynamic lighting system for specular surface inspection

机译:用于镜面检测的动态照明系统

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Specular surfaces inspection is a problem met frequently within the automatic control of metallic products. A tried technique to reveal the aspect defects is the imaging of the reflection of a structured lighting as Dark Field Illumination through the surface. In order to inspect the whole surface, an element of the lighting structure has to scan every part of the surface. In the case of important surface curvature gradients, entire scanning is not ensured if the object is moving in front of the static lighting. To overcome this limitation, an inverse process is proposed: the lighting structure is dynamic while the object is static. The scanning of the surface by the various lighting configurations enables the aspect control. A modeling of the surface to be inspected and defects to be detected is made. Inverse ray tracing is used to analyze the reflection of the lighting through the surface. This modeling enables to ensure the revealing of defects by respecting the chosen criteria of detection. A relation binding the physical size of defects and its size on the image is established. A metrological approach of the problem is then performed.
机译:镜面检查是一个问题经常在金属产品的自动控制内遇到。用于揭示方面缺陷的验证技术是通过表面的暗场照明的结构照明的反射的成像。为了检查整个表面,照明结构的元素必须扫描表面的每一部分。在重要的表面曲率梯度的情况下,如果物体在静态照明前移动,则不确保整个扫描。为了克服这种限制,提出了一种逆过程:在物体是静态的同时,照明结构是动态的。通过各种照明配置扫描表面可以实现方面控制。制造要检查的表面和待检测缺陷的建模。逆射线跟踪用于分析光线通过表面的反射。该建模可以通过尊重所选择的检测标准来确保缺陷。建立了绑定缺陷物理尺寸及其在图像上的尺寸的关系。然后进行问题的计量方法。

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