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Computer-Aided Tool Path Generation for Robotic Non-Destructive Inspection

机译:计算机辅助工具路径生成机器人无损检测

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Compared to manual Non-Destructive Testing (NDT) for inspection of engineering components, automated robotic deployment of the same NDT techniques offers an increase in accuracy, precision and speed of inspection while reducing production time and associated labour costs. Traditionally, the robot tool path is either taught or programmed manually. Automation of NDT tool path generation, as presented in this paper, offers further significant time reduction, and an increase in the flexibility of inspection planning compared to manual robot teaching and programming. Moreover, such a solution helps to maintain a controlled probe orientation with respect to the scanned surface, and thus which can dramatically reducing lift-off noise. In this work we present the reverse engineering of complex shape test-pieces which have no CAD documentation, and the computer-aided tool scan path generation of such test-pieces as deployed by means of six-axis KUKA robotic arms. Both the use of commercial software and a custom MATLAB toolbox are explored. The tool-paths generated by commercial software are used for robotic scanning of a titanium fan blade by means of Swept Frequency Eddy Current (SFEC) method. Investigations for the future potential for integrating robotic NDT and in-line metrology are also presented.
机译:与手动非破坏性测试(NDT)相比,用于检测工程部件,相同的NDT技术的自动机器人部署提供了准确性,精度和检测速度的增加,同时降低了生产时间和相关的劳动力成本。传统上,机器人刀具路径由手动教导或编程。本文介绍的NDT工具路径的自动化提供了进一步的减少时间,以及与手动机器人教学和编程相比的检查计划灵活性增加。此外,这种溶液有助于相对于扫描表面保持受控的探针取向,从而可以显着降低剥离噪声。在这项工作中,我们介绍了没有CAD文档的复杂形状试验片的逆向工程,以及通过六轴Kuka机械臂部署的这种测试件的计算机辅助工具扫描路径生成。探索了商业软件和自定义MATLAB工具箱的使用。通过扫描频率涡流(SFEC)方法,商业软件产生的工具路用于钛风扇叶片的机器人扫描。还提出了对整合机器人NDT和在线计量的未来潜力的调查。

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