Lamb wave-based corrosion source location on a plate of magnesium alloy WZ73 using the acoustic emission technique

Marcel Mandel , Marco Fritzsche , Sebastian Henschel , Lutz Krüger
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Abstract

Corrosion on a plate of magnesium alloy WZ73 in contact with 0.001 mol/L NaCl solution was analysed by long-range testing using the acoustic emission (AE) technique. At a distance d = 1.66 m to the source, the Lamb wave propagation of resulting AE events was examined and used for corrosion source location. As a first step, pencil lead break test was carried out and corresponding Lamb wave analysis served as reference to the varying corrosion signals of lower intensity. Additionally, the plate was excited by a piezo transducer for imitating a selected corrosion event. For analysis of the propagating wave field, the plate surface was measured by a scanning laser Doppler vibrometer (SLDV), allowing a high-resolution corrosion signal reconstruction and path tracking of direct and reflected Lamb wave packets. Based on the SLDV results, a deeper understanding of the complex wave field propagation during the sensor-based corrosion analysis was achieved.

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利用声发射技术对镁合金 WZ73 板材进行基于 Lamb 波的腐蚀源定位
利用声发射(AE)技术,通过远距离测试分析了与 0.001 mol/L NaCl 溶液接触的镁合金 WZ73 板上的腐蚀情况。在距离声源 d = 1.66 m 的地方,对所产生的 AE 事件的 Lamb 波传播进行了检查,并将其用于腐蚀源定位。第一步是进行铅笔断裂测试,相应的 Lamb 波分析可作为强度较低的不同腐蚀信号的参考。此外,还通过压电传感器对平板进行激励,以模仿选定的腐蚀事件。为了分析传播的波场,使用扫描激光多普勒测振仪(SLDV)测量板表面,从而可以重建高分辨率腐蚀信号,并对直接和反射的 Lamb 波包进行路径跟踪。基于 SLDV 的结果,对传感器腐蚀分析过程中复杂的波场传播有了更深入的了解。
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