Gachagan A, Hayward G, McNab A, Reynolds P, Pierce S G, Philp W R, Culshaw B
Department of Electronic and Electrical Engineering, University of Strathclyde, Glasgow, G1 lXW, Scotland.
IEEE Trans Ultrason Ferroelectr Freq Control. 1999;46(1):72-81. doi: 10.1109/58.741426.
A condition monitoring nondestructive evaluation (NDE) system, combining the generation of ultrasonic Lamb waves in thin composite plates and their subsequent detection using an embedded optical fiber system is described. The acoustic source is of low profile with respect to the composite plate thickness, surface conformable, and able to efficiently launch a known Lamb wave mode, at operating frequencies between 100 and 500 kHz, over typical propagation distances of 100 to 500 mm. It incorporates both piezocomposite technology and interdigital design techniques to generate the fundamental symmetrical Lamb wave mode in both metallic and carbon-fiber composite plates. Linear systems and finite element modeling techniques have been used to evaluate the operation of the transducer structure, and this is supplemented by experimental verification of the simulated data. An optical fiber, either bonded to the surface or embedded across the length of the composite plate samples, is used to detect the propagating ultrasonic Lamb waves. Single mode silica fiber has been used in conjunction with a portable 633 nm Mach-Zehnder interferometer for signal demodulation and subsequent data acquisition. This hybrid system is shown to generate and detect the fundamental symmetrical Lamb wave (s(0)) in both carbon-fiber and glass-fiber reinforced composite plates. Importantly, the system signal-to-noise ratio (SNR) associated with the acoustic source compares favorably with s(0) Lamb wave generation using a conventional transducer and angled perspex wedge arrangement.
本文描述了一种状态监测无损评估(NDE)系统,该系统结合了在薄复合板中产生超声兰姆波以及随后使用嵌入式光纤系统进行检测的功能。相对于复合板厚度而言,声源外形低矮,能与表面贴合,并且能够在100至500kHz的工作频率下,在100至500mm的典型传播距离上有效地激发已知的兰姆波模式。它结合了压电复合材料技术和叉指设计技术,以在金属板和碳纤维复合板中产生基本对称的兰姆波模式。线性系统和有限元建模技术已用于评估换能器结构的运行情况,并通过对模拟数据的实验验证进行补充。一根粘结在复合板样品表面或沿其长度方向嵌入的光纤,用于检测传播的超声兰姆波。单模石英光纤已与便携式633nm马赫曾德干涉仪结合使用,用于信号解调及后续数据采集。结果表明,该混合系统能够在碳纤维和玻璃纤维增强复合板中产生并检测到基本对称的兰姆波(s(0))。重要的是,与声源相关的系统信噪比(SNR)与使用传统换能器和倾斜有机玻璃楔块装置产生s(0)兰姆波相比具有优势。