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A noncontact NDE method using a laser generated focused-Lamb wave with enhanced defect-detection ability and spatial resolution

机译:使用激光生成的聚焦兰姆波的非接触式NDE方法,具有增强的缺陷检测能力和空间分辨率

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摘要

The laser generation method of a focused Lamb wave is expected to have high defect-detection abilities and spatial resolution, with the added advantage of noncontact testing. In this method, the laser beam is illuminated on the surface of an object through an arrayed arc slit. The energy of the generated Lamb wave is then concentrated at a focus of an arc. This focusing effect improves the NDE (nondestructive evaluation) performance, which is dependent on the geometries of an arrayed arc slit. In this paper, the relationships between the parameters determining the slit geometry and the focusing effect of the generated Lamb wave was investigated using a parametric study, and appropriate values of the parameters were obtained to maximize the focusing ability. In order to validate the performance of this method, an NDE system was constructed and experiments were performed to detect through-hole defects in a plate. The results showed that the proposed system could clearly detect defects as small as 0.3 mm in diameter, while the conventional line array method failed to detect defects smaller than 1 mm in diameter. Moreover, this method showed possible detection of defects much smaller than 0.3 mm, and great improvements in the spatial resolution as compared with the line array method.
机译:聚焦兰姆波的激光产生方法有望具有较高的缺陷检测能力和空间分辨率,并具有非接触测试的额外优势。在这种方法中,激光束通过排列的电弧缝隙照射在物体的表面上。然后,所产生的兰姆波的能量集中在电弧的焦点处。这种聚焦效果提高了NDE(非破坏性评估)性能,该性能取决于阵列弧缝的几何形状。在本文中,通过参数研究研究了确定狭缝几何形状的参数与所产生的兰姆波的聚焦效果之间的关系,并获得了适当的参数值以最大化聚焦能力。为了验证该方法的性能,构建了一个NDE系统,并进行了实验以检测板上的通孔缺陷。结果表明,提出的系统可以清楚地检测出直径小于0.3毫米的缺陷,而传统的线阵列方法无法检测到直径小于1毫米的缺陷。此外,与线阵列方法相比,该方法显示出可能检测到小于0.3 mm的缺陷,并大大提高了空间分辨率。

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