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Innovative concept and application of EC probe for inspection of friction stir welds

机译:EC探针在搅拌摩擦焊缝检测中的创新理念和应用

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This paper addresses a new non-destructive testing (NDT) system composed by a planar eddy currents (EC) probe (ionic probe), electronic devices for signal generation, conditioning and conversion, automated mechanised scanning, and analysis software. The ionic probe allows a 3D-induced current in the material and an easy interpretation of the signal based on a comprehensible perturbation of the signal. This provides enhanced lift-off immunity and improved sensitivity. The ionic system was developed focussing micro-defects detection on aluminium alloys processed by FSW. The experimental results in AA2024 welded by FSW clearly show that this system is able to detect imperfections around 50 μm, which contribute to increasing the reliability on NDT of micro-imperfections. EC conventional probes are also applied as material characterisation technique. Results are compared to micro-structural analysis, and hardness measurements show that EC can map the different zones, providing a deeper understanding on precipitate dispersion and grain shape and size.
机译:本文介绍了一种新的无损检测(NDT)系统,该系统由平面涡流(EC)探针(离子探针),用于信号生成,调节和转换的电子设备,自动机械化扫描和分析软件组成。离子探针允许在材料中产生3D感应电流,并基于可理解的信号扰动来轻松解释信号。这提供了增强的抗剥离能力和改进的灵敏度。开发了离子系统,着重于通过FSW处理的铝合金的微缺陷检测。 FSW焊接的AA2024的实验结果清楚地表明,该系统能够检测大约50μm的缺陷,这有助于提高微缺陷在NDT上的可靠性。 EC常规探头也可用作材料表征技术。将结果与微观结构分析进行比较,硬度测量结果表明EC可以绘制出不同区域的图,从而可以更深入地了解沉淀物的分散性,晶粒形状和大小。

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