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Reverse engineering stiffened plates using guided wave-based nondestructive testing methods

机译:使用导向波的无损检测方法逆向工程加强板

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For the purpose of nondestructive testing (NDT), guided waves can be transmitted into a structure, and any defects or anomalies in the waves' path modify the measured waves. Signal processing methods can be used to extract information about these features. In this work, an NDT method is demonstrated based on laboratory experiments for the case of a flat, rectangular, aluminum plate, which has a stiffener mounted underneath along the middle axis, such that the stiffener cannot be seen from the upper "outside" surface. Piezoelectric transducers are set up in a pitch-catch arrangement on this surface with the assumption that the location of the stiffener is unknown. When guided waves are induced in the plate by one of the transducers, the waves that are received by the other carry the information of the stiffener, as well as any defects in or boundaries of the structure. By transmitting from different points on a grid on the plate, the location and size of any geometry or material discontinuities can be identified. Hence, the developed algorithm reverse engineers the plate by mapping its edges and identifying the region of the stiffener.
机译:无损检测(NDT)的目的,导波可以被传输到一个结构,而在波浪路径中的任何缺陷或异常修改所测量的波。信号处理方法可以被用于提取关于这些功能的信息。在这项工作中,一个NDT方法是基于实验室实验用于使一个扁平的,矩形的,铝基板,其具有一个加强件安装下方沿中间轴,使得所述加强件不能从上部“外部”可以看到表面的情况下表现出。压电换能器被设置在一发一收配置在该表面上,并假设加强件的位置是未知的。当导波是由换能器之一中的感应板,其由其它进接收的加强件的信息的电波,以及所述结构的任何缺陷或边界。通过从不同的点上的板,任何几何形状或材料不连续的位置和大小的网格传输可以被识别。因此,通过映射其边缘和识别所述加强件的区域开发的算法反向工程师板。

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