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Development of a Flexible Broadband Rayleigh Waves Comb Transducer with Nonequidistant Comb Interval for Defect Detection of Thick-Walled Pipelines

机译:具有非等距梳齿间隔的挠性宽带瑞利波梳子传感器的开发用于厚壁管道的缺陷检测

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摘要

It is necessary to develop a transducer that can quickly detect the inner and outer wall defects of thick-walled pipes, in order to ensure the safety of such pipes. In this paper, a flexible broadband Rayleigh-waves comb transducer based on PZT (lead zirconate titanate) for defect detection of thick-walled pipes is studied. The multiple resonant coupling theory is used to expand the transducer broadband and the FEA (Finite Element Analysis) method is used to optimize transducer array element parameters. Optimization results show that the best array element parameters of the transducer are when the transducer array element length is 30 mm, the thickness is 1.2 mm, the width of one end of is 1.5 mm, and the other end is 3 mm. Based on the optimization results, such a transducer was fabricated and its performance was tested. The test results were consistent with the finite-element simulation results, and the −3 dB bandwidth of the transducer reached 417 kHz. Transducer directivity test results show that the Θ−3dB beam width was equal to 10 °, to meet the defect detection requirements. Finally, defects of thick-walled pipes were detected using the transducer. The results showed that the transducer could detect the inner and outer wall defects of thick-walled pipes within the bandwidth.
机译:有必要开发一种能够快速检测厚壁管的内壁和外壁缺陷的传感器,以确保这种管的安全性。本文研究了一种基于PZT(钛酸锆钛酸铅)的柔性宽带瑞利波梳换能器,用于厚壁管的缺陷检测。多重共振耦合理论用于扩展换能器宽带,而FEA(有限元分析)方法用于优化换能器阵列元件参数。优化结果表明,换能器的最佳阵列元件参数是:换能器阵列元件的长度为30mm,厚度为1.2mm,一端的宽度为1.5mm,另一端的宽度为3mm。根据优化结果,制造了这种换能器并测试了其性能。测试结果与有限元仿真结果一致,换能器的-3 dB带宽达到417 kHz。换能器方向性测试结果表明,Θ-3dB波束宽度等于10°,可以满足缺陷检测要求。最后,使用换能器检测出厚壁管的缺陷。结果表明,该换能器可以检测带宽内厚壁管的内,外壁缺陷。

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