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Detection of crack in thin cylindrical pipes using piezo-actuated Lamb waves

机译:使用压电致动羊波检测薄圆柱管中的裂缝

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The detection of cracks in beams and plates using piezo-actuated Lamb waves has been presented in the last SPIE Symposium. This paper is an extension of the technique to pipes. It has been shown that for a thin-walled pipe, the assumption of Lamb wave propagation is valid. Such waves can be efficiently excited using piezoceramic transducers (PZT) with good control on the pulse characteristics to assess the health of structural components, such as the presence of cracks. In this paper, a systematic methodology to detect and locate cracks in homogenous cylinder/pipe based on the time-of-flight and strength analysis of propagating Lamb wave is proposed. By observing the attenuation in strength of the direct wave incidence at the sensor, the presence of a crack along the propagation path can be determined. At least four actuation positions, two on each end of the pipe segment of interest, are needed to exhaustively interrogate for the presence of cracks. The detailed procedure for locating and tracing the geometry of the crack(s) is described. It is shown experimentally that the detection using circular PZT actuator and sensor, with dimensions of 5.0 mm diameter and 0.5 mm thick, is possible for an aluminum pipe segment of up to at least 4.0 m in length. The proposed methodology is also explored for the aluminum pipe under more practical situations, such as burying it in sand with only the actuator and sensor positions exposed. Experimental results obtained showed the feasibility of detecting the 'concealed' crack on the pipe buried in sand.
机译:使用压电致动羊波的梁和板中的裂缝检测在最后的间隔研讨会中。本文是对管道技术的延伸。已经表明,对于薄壁管道,兰姆波传播的假设是有效的。使用压电陶瓷换能器(PZT)可以有效地激发这种波,在脉冲特性上具有良好的控制,以评估结构部件的健康,例如裂缝的存在。在本文中,提出了一种系统方法,以基于飞行时间和强度分析的均匀圆筒/管道中检测和定位裂缝的系统方法。通过观察传感器在传感器的直接波入射的强度的衰减,可以确定沿着传播路径的裂缝的存在。需要至少四个致动位置,两个致动位置在感兴趣的管道区段的每一端上,需要彻底地询问裂缝。描述了用于定位和追踪裂缝的几何形状的详细过程。实验示出了使用圆形PZT致动器和传感器的检测,尺寸为5.0mm直径和0.5mm厚,长度为至少4.0μm的铝管段可以。在更实际的情况下,也探索了所提出的方法,例如将其埋在砂中,只有致动器和传感器位置暴露在砂中。获得的实验结果表明,检测埋在沙子中的管道上的“隐藏”裂缝的可行性。

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