首页> 外文期刊>The Journal of the Acoustical Society of America >Inspection of plate weldments through an interposed layer of viscoelastic material using an elastic-electromagnetic scanning method
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Inspection of plate weldments through an interposed layer of viscoelastic material using an elastic-electromagnetic scanning method

机译:使用弹性电磁扫描方法检查通过插入粘弹性材料层的板焊接

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摘要

In this article, an elastic-microwave based non-destructive evaluation method is presented to inspect for cracks in weldments and thinning of coated steel plates. The approach uses a microwave interferometer operating at 94GHz to record the total surface displacement of a coated steel plated as it is driven by an incident elastic field. These spatiotemporal data coupled with wavefield processing algorithms provide powerful detection and localization capabilities. From these wavefield data sets, a plate thickness mapping capability has been demonstrated that can detect thickness changes on the order of 0.79mm (1/32 in.). It is also shown that a topological energy analysis of the wavefield data can detect and locate small flaws on the order of 5-10mm (0.19-0.40 in.) in the welded joint. Note, all of these results are obtained through a 50.8mm (2 in.) thick viscoelastic coating without disturbing the coating or the coating bond. At present the algorithm cannot resolve individual flaws within a grid space, just their cumulative effect. Even with the current limitations, this detection approach appears to be a promising alternative to traditional phased array imaging methods where the coating layer must be removed prior to inspection.
机译:在本文中,提出了一种基于弹性微波的非破坏性评估方法,以检查涂层焊接裂缝和涂层钢板的稀疏。该方法使用在94GHz下操作的微波干涉仪,以记录涂覆钢的总表面位移,因为它由入射弹性场驱动。与波场处理算法耦合的这些时空数据提供了强大的检测和本地化功能。从这些波场数据组中,已经证明了板厚度映射能力,可以检测0.79mm(1/32英寸)的厚度变化。还表明,波场数据的拓扑能量分析可以在焊接接头中的5-10mm(0.19-0.40英寸)的顺序检测和定位小缺陷。注意,所有这些结果都是通过50.8mm(2英寸)厚的粘弹性涂层获得,而不会扰乱涂层或涂层粘合剂。目前,算法无法解析网格空间内的各个缺陷,只是它们的累积效果。即使通过当前的限制,这种检测方法似乎是对传统分阶段阵列成像方法的承诺替代,其中必须在检查之前除去涂层。

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