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PAUT inspection of complex shaped composite materials through 6 DOFs robotic manipulators

机译:通过6个自由度机器人操纵器对复杂形状的复合材料进行PAUT检查

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摘要

The requirement to increase inspection speeds for the non-destructive testing (NDT) of composite aerospace parts is common to many manufacturers. The prevalence of complex curved surfaces in the industry provides significant motivation for the use of six-axis robots for the deployment of NDT probes in these inspections. The IntACom project, developed by TWI Technology Centre (Wales) and supported by a number of major aerospace partners and the Welsh government, has produced a prototype robotic NDT system. The prototype system is capable of inspecting complex-geometry composite components with great time savings. Two six-axis robotic arms deploy end effectors carrying phased array ultrasonic testing (PAUT) probes. A simple-to-use graphical user interface (GUI) has been developed to control all aspects of the robotic inspection, from initial loading of part data, through scanning of the part to data analysis. The collaboration between TWI and the University of Strathclyde has boosted the establishment of new approaches for robotic tool-path generation, targeted to NDT inspections. Many unique features, such as the real-time B-scan for optimisation of PAUT settings and the external control of the robotic manipulators to allow returning to points of interest, increase the usefulness of the inspection process. This paper presents an overview of the project and of the research outcomes.
机译:许多制造商普遍要求提高复合材料航空零件的无损检测(NDT)检查速度。在行业中,复杂曲面的普及为在这些检查中使用六轴机器人部署NDT探头提供了重要动力。由TWI技术中心(威尔士)开发,并得到了许多主要航空航天合作伙伴和威尔士政府的支持的IntACom项目已经生产出了原型机器人NDT系统。该原型系统能够检查复杂几何形状的复合零件,从而节省大量时间。两个六轴机械臂部署带有相控阵超声测试(PAUT)探针的末端执行器。已经开发了一种易于使用的图形用户界面(GUI),用于控制机器人检查的各个方面,从零件数据的初始加载,零件扫描到数据分析。 TWI和Strathclyde大学之间的合作促进了针对无损检测检查的机器人工具路径生成新方法的建立。许多独特的功能,例如用于优化PAUT设置的实时B扫描以及用于允许返回兴趣点的机械手的外部控制,都增加了检查过程的实用性。本文概述了该项目和研究成果。

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