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Smart Sensing Using Electromagnetic Waves for Inspection of Defects in Rock Bolts

机译:利用电磁波智能检测岩石螺栓中的缺陷

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摘要

The stability of tunnels and rock slopes is adversely affected by defects in rock bolts. This study investigates the suitability of the smart sensing method using electromagnetic waves for inspecting defects in rock bolts. Experiments were performed with one fully grouted and eight defective rock bolts, out of which five have non-grouted parts at the ends with different non-grouted ratios, and three have different types of voids. Electromagnetic waves were generated and detected using a time domain reflectometer by configuring two-conductor transmission lines in the rock bolts. Results show that electromagnetic waves are reflected both at defects and ends of rock bolts. The electromagnetic wave velocity increases with an increase in the non-grouted ratio and decreases when rock bolts are embedded in a concrete block simulating rock mass. The estimated locations of defects found by electromagnetic waves are in good agreement with actual defect locations. This study demonstrates that smart sensing using electromagnetic waves is an effective method for inspecting and determining defect locations and the non-grouted ratio of rock bolts.
机译:隧道和岩石边坡的稳定性受到锚杆缺陷的不利影响。这项研究调查了使用电磁波检查岩石螺栓缺陷的智能传感方法的适用性。用一个完全灌浆和八个有缺陷的锚杆进行了试验,其中五个锚固端部的非灌浆部分具有不同的非灌浆比例,并且三个具有不同类型的空隙。通过在岩栓中配置两导体传输线,使用时域反射计生成和检测电磁波。结果表明,电磁波会在锚杆的缺陷和末端反射。电磁波速度随非灌浆比的增加而增加,而当将锚杆埋入模拟岩体的混凝土砌块中时,电磁波速度会降低。通过电磁波发现的缺陷的估计位置与实际缺陷位置非常吻合。这项研究表明,使用电磁波进行智能传感是检查和确定缺陷位置和锚杆非注浆比的有效方法。

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