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Evaluation Of Rock Bolt Integrity Using Guided Ultrasonic Waves

机译:超声波引导下的岩壁完整性评估

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Rock bolts play a crucial role in reinforcement support systems for tunnels and rock slopes. In this study documented herein, guided ultrasonic waves are used to evaluate the integrity of rock bolts. The dispersion characteristics of the guided waves are identified by numerical simulations. Experimental studies using the transmission of guided waves are carried out with different defect ratios for grouted nonembedded rock bolts, and for rock bolts embedded into a concrete block and rock mass. Analytical solutions are suggested to estimate the equivalent velocity for both the grouted and the embedment portions. Numerical simulations reveal that the optimal frequency range of guided waves is 20~70 kHz in the first longitudinal mode. Field and laboratory experimental studies and associated analyses show the velocity of guided waves increases as the defect ratio increases. The velocity for the grouted portion in the nonembedded rock bolts is essentially constant. However, the velocity in the embedment portion decreases with increasing embedment length due to the increase in the size of the influence zone. Results suggest that the integrity of rock bolts can be easily evaluated by the transmission method using guided waves.
机译:锚杆在隧道和岩石边坡的加固支撑系统中起着至关重要的作用。在本文中记录的这项研究中,使用引导的超声波来评估锚杆的完整性。导波的色散特性通过数值模拟确定。对于灌浆的无埋层岩栓,埋入混凝土砌块和岩体中的岩栓,以不同的缺陷率进行了使用导波传输的实验研究。建议使用解析解来估计灌浆部分和埋入部分的等效速度。数值模拟表明,在第一纵向模式下,导波的最佳频率范围为20〜70 kHz。现场和实验室实验研究以及相关分析表明,导波的速度随着缺陷率的增加而增加。非埋入式岩石锚杆中灌浆部分的速度基本恒定。然而,由于影响区域的尺寸增加,所以随着嵌入长度的增加,嵌入部分中的速度降低。结果表明,采用导波的传输方法可以很容易地评估锚杆的完整性。

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