The effect of joint geometry parameters on ultrasonic weld-guided modes in thick steel plates

Zhenying Xu, Hui-fang Yu, Yun Wang, Huang Liu
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引用次数: 1

Abstract

Ultrasonic guided waves are widely applied in non-destructive testing (NDT) due to its high efficiency, however, the inspection of large areas of complex structures can be challenging. Weld can be taken as a wave-guide because it can concentrate and guide energy of ultrasonic waves to travel along the direction of weld, which shows a potential for rapid NDE of long welds. In this paper, the effect of joint geometry parameters on two ultrasonic weld-guided modes, named the SHw0 and the Sw0 mode, in 10 mm thick steel-AISI-4340 plates has been analyzed through semi-analytical finite element simulations. Results show that the propagation properties of the SHw0 mode is almost stable with different geometry parameters. However, the phase velocity and attenuation of Sw0 will change with the increase of weld width and reinforcing height, which can be taken into consideration when we are choosing a mode as well as frequency in application of weld-guided waves.
厚钢板中接头几何参数对超声导焊模式的影响
超声导波以其高效性在无损检测中得到了广泛的应用,但对于大面积复杂结构的检测具有一定的挑战性。焊缝可以看作是一个波导,它可以集中和引导超声波的能量沿焊缝方向传播,显示出对长焊缝进行快速无损检测的潜力。本文通过半解析有限元模拟,分析了10 mm厚aisi -4340钢板上接头几何参数对两种超声焊导模式(SHw0和Sw0)的影响。结果表明,在不同几何参数下,SHw0模式的传输特性基本稳定。但是,随着焊缝宽度和补强高度的增加,Sw0的相速度和衰减会发生变化,在应用焊导波时选择模式和频率时可以考虑到这一点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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