基于特征导波混频的焊接接头波传播研究

Jaesun Lee, Aslam Mohammed
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引用次数: 0

摘要

波能集中在某些特征周围,如弯曲、加强筋和板状结构的焊缝,被认为是特征引导波(FGW)。在实践中,这些特性对于评估其内部或附近的缺陷是有用的。FGW沿焊接接头等特征的传播特性已经得到了广泛的研究。然而,它们大多是基于材料的线性声学响应,通常会导致输入信号的幅度和相位变化。与线性方法相比,非线性超声技术在表征工程材料微观结构变化方面表现出了较好的效果。本文采用混频法研究了电弧枪在焊接接头中传播的非线性声响应。利用有限元方法对无界焊接板进行了特征频率分析,揭示了焊导模的频散特性。通过三维有限元仿真研究了FWGs的非线性响应。确定了一对不同频率的焊导模,并允许其在焊接接头内混合以产生二阶谐波。目前的研究表明,fgw的混合可以有效地用于焊接接头材料非线性的评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A study on the wave propagation on weld joints by the use of feature-guided wave mixing
The concentration of the wave energy around certain features such as bends, stiffeners, and welds in plate-like structures has been identified as feature-guided waves (FGW). In practice, these features can be useful for assessing defects in or near them. The propagation characteristics of FGW propagating along a feature such as a welded joint have been extensively studied. However, most of them are based on the linear acoustic response of materials that generally results in the amplitude and phase variations of the input signal. Compared to linear methods, nonlinear ultrasonic techniques have shown to be effective in characterizing the microstructural changes in engineering materials. In this paper, a wave mixing method is employed to investigate the nonlinear acoustic response of FGWs propagating in a welded joint. The dispersion characteristics of weldguided modes are first revealed via the eigenfrequency analysis of an unbounded welded plate by using the finite element method. The nonlinear response of FWGs is studied through 3D finite element (FE) simulations. A pair of a weld-guided modes of different frequencies are identified and allowed to mix within the welded joint to generate second-order harmonic waves. The current study reveals that the mixing of FGWs could be effectively used for the evaluation of material nonlinearity in welded joints.
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