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Numerical Simulation of Ultrasonic Guided Waves in Welded Joint

机译:焊接接头超声导波的数值模拟

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In order to inspect the long weld efficiently,the weld-guided ultrasonic waves are studied in this paper.By using the finite element method,the propagations of the compression and the shear weld-guided modes are studied and compared.The energy of the two modes along and across the weld are analyzed using Hilbert envelopes.The results show that the shear weld-guided mode decays less than the compression mode along the weld,and the energy of the shear mode is more concentrated in the weld and heat-affected zone compared to the compression mode,which means the shear mode is more suitable for inspecting the weld.The interaction of the shear mode and the damage in the weld and the heat-affected zone is also studied.The results show that the damage reflected signal in the weld can be used as the characteristics signal for detecting the damage.The damage localization capability of the shear weld-guided mode is then verified by a case study.The works in this paper show that the damage in the long weld and its heat-affected zone can be detected and located using the shear weld-guided mode from one single transducer position.
机译:为了有效地检查长焊缝,本文研究了焊缝导引的超声波。通过有限元方法,研究了压缩传播和剪切焊缝导引模式,并比较了两者的能量。使用希尔伯特包络线分析了沿焊缝和沿焊缝的热模态。结果表明,剪切焊缝引导模态的衰减小于沿焊缝的压缩模态,剪切模态的能量更多地集中在焊缝和热影响区相较于压缩模式,这意味着剪切模式更适合于检查焊缝。还研究了剪切模式与焊缝以及热影响区的损伤之间的相互作用。焊缝可以作为检测损伤的特征信号。然后通过案例研究验证了剪切焊接引导模式下的损伤定位能力。焊缝及其受热影响的区域可以通过剪切焊缝引导模式从单个换能器位置进行检测和定位。

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