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Non-destructive inspection on anchorage defect of hollow grouted rock bolt using wavelet transform analysis

机译:采用小波变换分析的空心灌浆岩锚锚固缺陷的无损检测

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Abstract Hollow grouted rock bolts are widely used in deep soft rock roadways. The density of grout has a significant influence on the anchorage quality. However, there is still a lack of effective methods to detect the grouting quality fast, accurately, and extensively. Based on the wave velocity and the law of stress wave transmission and reflection in the impedance mismatch, non-destructive experiment focused on the defect in the anchorage was conducted. The wavelet transform was used to analyze the test signals. The test results show that the free length of hollow grouted rock bolt could be accurately detected through the analysis of the stress wave signal by using the low-pass filter in the wavelet toolbox. The grouted length, defect length, and specific position of the anchorage section can be accurately detected through the analysis of the stress wave signal by using the high-pass filter in the wavelet toolbox. The research can provide experiment foundation for further study of grouting quality based on the non-destructive methods.
机译:抽象的空心灌浆岩螺栓广泛用于深软岩路。灌浆的密度对锚固质量有显着影响。然而,仍然缺乏有效的方法,可以快速,准确,广泛地检测灌浆质量。基于波速度和应力波传输的定律和阻抗失配的反射,对锚固缺陷的非破坏性实验进行了。小波变换用于分析测试信号。测试结果表明,通过使用小波工具箱中的低通滤波器,可以通过分析应力波信号来精确地检测空心灌浆岩螺栓的自由长度。通过使用小波工具箱中的高通滤波器,可以通过分析应力波信号来精确地检测锚固长度,缺陷长度和特定位置。该研究可以基于非破坏性方法进一步研究灌浆质量的实验基础。

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