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On the development and testing of a guided ultrasonic wave array for structural integrity monitoring

机译:关于用于结构完整性监控的导波阵列的开发和测试

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摘要

The prototype of a guided ultrasonic wave array for the structural integrity monitoring of large, plate-like structures has been designed, built, and tested. The development of suitably small transducers for the excitation and measurement of the first antisymmetric Lamb wave mode A/sub 0/ is described. The array design consists of a ring of 32 transducers, permanently bonded to the structure with a protective membrane, in a compact housing with the necessary multiplexing electronics. Using a phased addition algorithm with dispersion compensation and deconvolution in the wavenumber domain, a good dynamic range can be achieved with a limited number of transducers. Limitations in the transducer design and manufacture restricted the overall dynamic range achieved to 27 dB. Laboratory measurements for a steel plate containing various defects have been performed. The results for standard defects are compared to theoretical predictions and the sensitivity of the array device for defect detection has been established. Simulated corrosion pitting and a defect cut with an angle grinder simulating general corrosion were detected.
机译:设计,建造和测试了用于大型板状结构的结构完整性监控的导波阵列的原型。描述了用于激励和测量第一反对称兰姆波模式A / sub 0 /的小型传感器的开发。阵列设计由一个32个换能器的环组成,并在带有必要的多路复用电子器件的紧凑型外壳中永久地通过保护膜粘结到该结构上。使用在波数域中具有色散补偿和反卷积的分相加法算法,可以在有限数量的换能器中实现良好的动态范围。换能器设计和制造的局限性限制了整体动态范围达到27 dB。已经对含有各种缺陷的钢板进行了实验室测量。将标准缺陷的结果与理论预测值进行比较,并建立了用于缺陷检测的阵列设备的灵敏度。检测到模拟腐蚀点蚀和角磨机模拟一般腐蚀的缺陷。

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