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Crack Detection with Wireless Inductively-Coupled Transducers

机译:用无线电感耦合换能器裂纹检测

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In earlier work we developed inductive coupling for surface-mounted Lamb wave transducers operating at relatively low frequencies, such as 300 kHz. We now report on similar inductively-coupled transducers at higher (multiple MHz) frequencies. Our investigation was motivated by a particular application, to examine a box girder top flange, using transducers mounted along the flange edge. We employ a pair of transducers in pitch-catch mode, offset to create a diagonal path, and show that a shadow is detected when the path is intercepted by a through-thickness crack. We compare results obtained using conventionally wired transducers and using inductively-coupled transducers, showing that effective performance can be achieved with wireless (inductively-coupled) operation. Superior performance is obtained if plexiglas wedges are used to direct the beam along the diagonal path. Reflection from the crack is evident, as is the shadow effect along the direct diagonal path.
机译:在早期的工作中,我们开发了在相对低频的频率下操作的表面安装的羊毛波换能器的电感耦合,例如300kHz。我们现在在更高(多MHz)频率下报告类似的电感耦合换能器。我们的调查受到特定应用的动机,以检查箱梁顶部法兰,使用沿着法兰边缘安装的换能器。我们在俯仰捕获模式下采用一对换能器,偏移以创建对角线路径,并显示当路径被通孔裂缝拦截时检测到阴影。我们比较使用传统有线换能器和使用电感耦合换能器获得的结果,示出了通过无线(电感耦合)操作可以实现有效性能。如果使用有机玻璃楔形沿对角线路径引导梁,则获得优异的性能。来自裂缝的反射是显而易见的,因为沿着直接对角线路径的阴影效果也是如此。

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