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The influence of surface opening cracks on the ultrasonic waves near the surface in concrete members

机译:表面开裂裂纹对混凝土构件表面附近超声波的影响

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Based on the velocities of waves near the surface in concrete, the propagation path and travel time of different waves were calculated, and the influence of crack on these waves was analyzed. Some theoretical conclusions were verified by FEM. The ultrasonic waves were received by array transducers and the velocities of different waves were calculated and distinguished according to wave velocity in the simulation. Simulation results show that when sound wave propagates through the crack, longitudinal waves will arrive at the receiving arrays, and the crack will diffract transverse wave to generate new longitudinal wave and transverse wave by mode conversion, and Rayleigh wave will propagate along the surface (including the crack side wall). Finally, it is found that the relationship between crack depth and amplitude and energy is approximately linearly monotone decreasing by studying the waves near surface with different crack depths.
机译:根据混凝土表面附近波浪的速度,计算出不同波浪的传播路径和传播时间,并分析了裂纹对这些波浪的影响。有限元验证了一些理论结论。通过阵列换能器接收超声波,并在仿真中根据波速计算并区分不同波的速度。仿真结果表明,当声波传播通过裂纹时,纵波将到达接收阵列,裂纹将通过模式转换使横波衍射产生新的纵波和横波,并且瑞利波将沿着表面(包括裂纹侧壁)。最后,通过研究具有不同裂纹深度的表面附近的波,发现裂纹深度与振幅和能量之间的关系近似线性单调递减。

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