Rapid metrology of precision-machined parts via robotic automation

Kramer Lindell
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Abstract

Precision-machined parts in aviation, automotive, and manufacturing industries have tightly controlled tolerances for the dozens of small geometries spread throughout a single part. These parts can also have stringent specifications for any defects along the surface. The sheer number of measurements needed on each part paired with the volume of parts demands the ability to take not only one measurement quickly, but dozens in a rapid process. Coupling a polarized structured light technique with robotic automation allows for accurate measurements at volume. This paper will discuss automated optical measurements of stationary parts, parts moving on a production line, and rotationally symmetric parts on a rotary stage. The paper will also look at ongoing projects combining the automated polarized structured light method with bright field techniques to accomplish automatic defect identification and inspection.
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通过机器人自动化对精密加工零件进行快速计量
航空、汽车和制造业中的精密加工零件对分布在单个零件中的数十个小几何形状有严格控制的公差。这些零件也可以有严格的规格,沿表面的任何缺陷。每个零件所需的测量数量与零件的体积相匹配,要求不仅能够快速进行一次测量,而且能够在快速过程中进行数十次测量。将偏振结构光技术与机器人自动化相结合,可以对体积进行精确测量。本文将讨论固定零件的自动光学测量,在生产线上移动的零件,以及旋转舞台上的旋转对称零件。本文还将着眼于正在进行的将自动偏振光结构光方法与明场技术相结合以实现缺陷自动识别和检测的项目。
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Front Matter: Volume 11817 Rapid metrology of precision-machined parts via robotic automation Range selectable frequency-space low-coherence Interferometer: comparison of the theory and measured performance Metrological aspects of holographic microscopy and tomography
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