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Non-destructive testing of laser welds in tailored blanks using electromagnetic transducers

机译:使用电磁换能器对定制坯料中的激光焊缝进行无损检测

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An ultrasonic system using electromagnetic acoustic transducers has been developed at the Fraunhofer Institute for Non-Destructive Testing (IZFP), in order to test laser welds in tailored blanks. Shear horizontal modes are exploited to detect different types of defects in the laser welds, such as lack of penetration, lack of fusion, mismatch and cracks. In the present work, studies of the discontinuities of the laser weld that affect specularly reflected and non-specularly signals have been carried out on ferritic sheets. Geometric parameters of the laser weld, such as the fusion-zone width and the discontinuities at the weld root, were measured and compared with the amplitude of the reflected signals. Furthermore, X-ray radiographs and metallography were made to obtain additional information on the different defects, which affect the ultrasonic signal. From our results we conclude that under thickness and incomplete penetration at the root, together with the pores of the weld affect the reflected signal more than any other discontinuity.
机译:弗劳恩霍夫无损检测研究所(IZFP)已开发出一种使用电磁声换能器的超声系统,以便在定制的毛坯中测试激光焊接。剪切水平模式被用于检测激光焊缝中的不同类型的缺陷,例如缺乏渗透,缺乏熔合,失配和裂纹。在当前的工作中,已经在铁素体薄板上进行了影响镜面反射和非镜面信号的激光焊接不连续性的研究。测量了激光焊缝的几何参数,例如熔合区宽度和焊缝根部的不连续性,并将其与反射信号的幅度进行比较。此外,还进行了X射线照相和金相照相,以获得有关影响超声信号的不同缺陷的更多信息。根据我们的结果,我们得出结论,在厚度不足和根部不完全渗透以及焊缝孔隙对反射信号的影响比任何其他不连续性都大。

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