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首页> 外文期刊>Sensors >Measurement of the Length of Installed Rock Bolt Based on Stress Wave Reflection by Using a Giant Magnetostrictive (GMS) Actuator and a PZT Sensor
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Measurement of the Length of Installed Rock Bolt Based on Stress Wave Reflection by Using a Giant Magnetostrictive (GMS) Actuator and a PZT Sensor

机译:巨磁致伸缩(GMS)驱动器和PZT传感器根据应力波反射测量安装的岩壁螺栓的长度

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摘要

Rock bolts, as a type of reinforcing element, are widely adopted in underground excavations and civil engineering structures. Given the importance of rock bolts, the research outlined in this paper attempts to develop a portable non-destructive evaluation method for assessing the length of installed rock bolts for inspection purposes. Traditionally, piezoelectric elements or hammer impacts were used to perform non-destructive evaluation of rock bolts. However, such methods suffered from many major issues, such as the weak energy generated and the requirement for permanent installation for piezoelectric elements, and the inconsistency of wave generation for hammer impact. In this paper, we proposed a portable device for the non-destructive evaluation of rock bolt conditions based on a giant magnetostrictive (GMS) actuator. The GMS actuator generates enough energy to ensure multiple reflections of the stress waves along the rock bolt and a lead zirconate titantate (PZT) sensor is used to detect the reflected waves. A new integrated procedure that involves correlation analysis, wavelet denoising, and Hilbert transform was proposed to process the multiple reflection signals to determine the length of an installed rock bolt. The experimental results from a lab test and field tests showed that, by analyzing the instant phase of the periodic reflections of the stress wave generated by the GMS transducer, the length of an embedded rock bolt can be accurately determined.
机译:锚杆作为一种增强元件,已广泛用于地下挖掘和土木工程结构中。考虑到锚杆的重要性,本文概述的研究试图开发一种便携式无损评估方法,用于评估安装的锚杆长度以进行检查。传统上,压电元件或锤击被用于执行锚杆的无损评估。但是,这种方法受到许多主要问题的困扰,例如产生的能量较弱,需要永久安装压电元件,以及由于锤击而产生的波形不一致。在本文中,我们提出了一种基于巨型磁致伸缩(GMS)驱动器的岩石锚杆状况无损评估便携式设备。 GMS执行器产生足够的能量,以确保应力波沿着锚杆多次反射,并使用锆钛酸铅(PZT)传感器检测反射波。提出了一种涉及相关分析,小波去噪和希尔伯特变换的新集成过程,以处理多个反射信号以确定已安装的锚杆的长度。实验室测试和现场测试的实验结果表明,通过分析GMS传感器产生的应力波的周期性反射的瞬时相位,可以准确确定嵌入式岩石锚杆的长度。

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