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Detecting defects on corrugated plate surfaces using a differential laser triangulation method

机译:使用差分激光三角测量方法检测波纹板表面上的缺陷

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摘要

During corrugated-plate manufacturing and associated service processes, the plates are often prone to suffering from defects such as cracks, holes and thinning. However, traditional inspection methods cannot effectively satisfy real-time requirements owing to the complexities of the examined surfaces. To solve this problem, this study develops a differential laser triangulation method based on online detection of variations in wall thicknesses, to identify surface defects (holes and thinning). This integrated system drives a pair of laser triangulation probes to capture the surface data of the plates. To compensate for the measurement errors of the triangulation probe caused by irregular surface curvatures, an empirical error model based on error evaluation is established. To improve the precision of the cross-sectional contour reconstruction, the corrected point data are segmented according to the geometrical characteristics of the examined plates, and the analytical model of the contour data in each subsection is modeled using the least-squares method. The wall thickness of each point can then be calculated using its normal equation, to characterize the surface defects. Experiments on a 203 mm x 176 mm workpiece demonstrate that the developed method not only analyzes the object dimensions, but also provides a non-destructive means to effectively detect defects on the surface of a corrugated plate.
机译:在波纹板制造和相关的服务过程中,平板通常易于患有裂缝,孔和稀疏的缺陷。然而,由于所检查表面的复杂性,传统的检查方法无法有效地满足实时要求。为了解决这个问题,本研究基于在线检测壁厚的差异的差分激光三角测量方法,以识别表面缺陷(孔和细化)。该集成系统驱动一对激光三角测量探针以捕获板的表面数据。为了补偿由不规则表面曲率引起的三角测量探针的测量误差,建立了基于误差评估的经验误差模型。为了提高横截面轮廓重建的精度,根据所检查板的几何特性进行校正的点数据,并且每个子部分中的轮廓数据的分析模型使用最小二乘法进行建模。然后可以使用其正常方程计算每个点的壁厚,以表征表面缺陷。在203mm×176mm工件上的实验表明,显影方法不仅分析物体尺寸,还提供了非破坏性装置,以有效地检测波纹板表面上的缺陷。

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