An Investigation of Ultrasonic Transducer Loading on a Workpiece

M. Zennaro, A. Haig, D. O'Boy, S. Walsh
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引用次数: 1

Abstract

Arrays of dry-coupled thickness-shear transducers are often employed in the guided wave sector to inspect pipelines and plate-like structure. The dry coupling permits to dismiss any coupling material between the transducer and the waveguide, but as a drawback a preload must be applied on the transducers to guarantee an effective coupling between the two surfaces. Although the influence of the preload on the natural frequencies is studied in the literature, the frequency response function of a transducer relating the input voltage to the displacement output is not present in the literature. Moreover, the distribution of force on the backing mass and the effect of the preload on the uniformity of vibration of the transducers are still missing. A natural frequency analysis and a forced analysis are then computed numerically with finite element analysis to quantify the influence of the preload on a thickness-shear transducer. Furthermore, these results are compared with experimental results obtained with a Laser Vibrometer. It is then shown how the geometrical layout of the transducer coupled with the preload influences the vibration of the transducer.
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超声换能器在工件上加载的研究
干耦合厚度-剪切换能器阵列常用于导波扇形检测管道和板状结构。干耦合允许消除传感器和波导之间的任何耦合材料,但作为一个缺点,必须在传感器上施加预负载,以保证两个表面之间的有效耦合。虽然在文献中研究了预载荷对固有频率的影响,但在文献中没有出现与输入电压与位移输出相关的换能器的频率响应函数。此外,对支承质量上的力分布和预紧力对换能器振动均匀性的影响尚不清楚。然后用有限元方法对固有频率分析和受力分析进行了数值计算,量化了预载荷对厚度-剪切传感器的影响。并与激光测振仪的实验结果进行了比较。然后显示了传感器的几何布局与预紧力耦合如何影响传感器的振动。
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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