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Fast ultrasonic phased array inspection of complex geometries delivered through robotic manipulators and high speed data acquisition instrumentation

机译:通过机器人操纵器和高速数据采集仪器对复杂几何形状进行快速超声相控阵检查

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摘要

Performance of modern robotic manipulators has enabled research and development of fast automated non-destructive testing (NDT) systems for complex geometries. This paper presents recent outcomes of work aimed at removing the bottleneck due to data acquisition rates, to fully exploit the scanning speed of modern 6-DoF manipulators. State of the art ultrasonic instrumentation has been integrated into a large robot cell to enable fast data acquisition, high scan resolutions and accurate positional encoding. A fibre optic connection between the ultrasonic instrument and the server computer enables data transfer rates up to 1.6GB/s. Multiple data collection methods are compared. Performance of the integrated system allows traditional ultrasonic phased array scanning as well as full matrix capture (FMC). In FMC configuration, linear scan speeds up to 156mm/s with 64 pulses per frame are achieved - this speed is only constrained by the acoustic wave propagation in the component. An 8x increase of the speed (up to 1.25m/s) can be achieved using multiple transmission elements, reaching the physical limits for acceptable acoustic alignment of transmission and reception paths. Scan results, relative to a 1.2m x 3m carbon fibre sample, are presented.
机译:现代机器人操纵器的性能使人们能够研究和开发用于复杂几何形状的快速自动无损检测(NDT)系统。本文介绍了旨在消除数据采集速率瓶颈的工作的最新成果,以充分利用现代6自由度机械臂的扫描速度。先进的超声仪器已集成到大型机器人单元中,以实现快速数据采集,高扫描分辨率和精确的位置编码。超声波仪器和服务器计算机之间的光纤连接可实现高达1.6GB / s的数据传输速率。比较了多种数据收集方法。集成系统的性能允许传统的超声相控阵扫描以及全矩阵捕获(FMC)。在FMC配置中,可以实现每帧64个脉冲的高达156mm / s的线性扫描速度-该速度仅受组件中声波传播的约束。使用多个传输元件可以达到8倍的速度提高(最高1.25m / s),达到了物理极限,可以实现可接受的传输和接收路径声学对准。给出了相对于1.2m x 3m碳纤维样品的扫描结果。

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