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High precision X-ray stereo for automated 3D CAD-based inspection

机译:高精度X射线立体影像,用于基于3D CAD的自动检查

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摘要

An important challenge in industrial metrology is to provide rapid measurement of critical 3D internal object geometry for either inspecting high volume parts or controlling a machining process. Existing metrological techniques are typically too slow to meet this need or can not measure small features with high precision. In this paper, we present a new method that achieves fast, accurate, internal 3D geometry measurement based on 3D reconstruction from a few X-ray views of a part. Our approach utilizes an accurate camera model for the X-ray sensor, calibration using in situ ground truth and geometry-guided X-ray feature extraction to achieve this goal and has been fully implemented in a prototype 3D measurement system. We describe a novel application of the system to CAD-based verification of drilled hole positioning. Experimental results are given to illustrate the precision of the system and 3D measurement on real industrial parts.
机译:工业计量学中的一个重要挑战是提供快速的关键3D内部对象几何形状测量,以检查大量零件或控制加工过程。现有的计量技术通常太慢而无法满足此需求,或者无法高精度地测量小的特征。在本文中,我们提出了一种新方法,该方法可从零件的一些X射线视图基于3D重构实现快速,准确的内部3D几何测量。我们的方法利用了用于X射线传感器的精确相机模型,使用原位地面真相进行校准以及通过几何引导的X射线特征提取来实现这一目标,并且已在3D测量原型系统中得到了全面实施。我们描述了该系统在基于CAD的钻孔定位验证中的新颖应用。实验结果说明了该系统的精度以及在实际工业零件上的3D测量。

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