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Novel method for detection of void defects under track slabs using air-coupled ultrasonic sensors

机译:使用空气耦合超声传感器检测轨道板下空隙缺陷的新方法

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Void defects under track slabs are the main danger affecting the safe operation of high-speed railways. In the short high-speed railway maintenance periods, China’s high-speed railway line maintenance operations must quickly and dynamically determine void defects under track slabs that are in service without contact. However, the detection of void defects under track slabs still mainly relies on the manual inspection and flaw detection by railway workers during the railway maintenance period. If the defects are not quickly identified, the consequences could be disastrous. This article presents a new method for the non-contact dynamic detection of void defects under track slabs. The method involves the use of air-coupled ultrasonic sensors to generate and receive ultrasonic guided waves in the track slab to quantitatively represent the size of the void defect according to the principle of energy leakage of guided waves in the propagation process. The characteristics of the position-amplitude curve, taking the position of the beam axis as the abscissa and the amplitude of the time domain signal as the ordinate, were numerically calculated and analyzed. The quantitative relationship between the convex interval of the position-amplitude curve and the size of the void defect was obtained, and an imaging method of the void defects based on x, y two-dimensional line scanning data fusion is proposed. The excitation and reception methods of air-coupled ultrasonic guided waves were studied, and a 1:1 model of the track structure was built in the laboratory to verify the method and detect the void defect under the track slab. The experimental results show that ultrasonic guided waves can be excited and received in the track slab by air-coupled ultrasonic sensors. Based on the guided wave energy leakage principle, the quantitative characterization and imaging of the void defect under track slabs can be realized.
机译:轨道板下的空隙缺陷是影响高速铁路安全运行的主要危险。在短路高速铁路维护期间,中国的高速铁路线维护操作必须快速,动态地确定在不接触的轨道板上的轨道板下的空隙缺陷。然而,在铁路工人在铁路维护期间,轨道板下的空隙缺陷的检测仍然主要依赖于铁路工人的手动检查和缺陷。如果不迅速识别出缺陷,后果可能是灾难性的。本文介绍了轨道板下的空隙缺陷的非接触动态检测的新方法。该方法涉及使用空气耦合超声传感器在轨道板中产生和接收超声波引导波,以根据传播过程中引导波的能量泄漏原理来定量地表示空隙缺陷的尺寸。在数值计算和分析了位置幅度曲线的特性,以横梁作为横坐标的位置和时域信号的幅度和时域信号的幅度。获得了位置幅度曲线的凸间间隔与空隙缺陷的尺寸之间的定量关系,以及基于 x,y二维线扫描数据融合的空隙缺陷的成像方法。研究了空气耦合超声波引导波的激励和接收方法,在实验室中建立了1:1的轨道结构模型,以验证该方法并检测轨道板下的空隙缺陷。实验结果表明,通过空气耦合超声传感器可以在轨道板中激发和接收超声波引导波。基于引导波能量泄漏原理,可以实现轨道板下的空隙缺陷的定量表征和成像。

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