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Ultrasound diffusion for crack depth determination in concrete

机译:超声扩散法测定混凝土裂缝深度

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摘要

The determination of the depth of surface-breaking cracks in concrete specimens using an ultrasound diffusion technique is discussed. Experiments were carried out on precracked concrete specimens of varying crack depths (0%–40% of the specimen thickness). Contact transducers were placed at the specimen surface with source and receiver separated by the crack. Tone-burst excitations over a frequency range of 400–600 kHz were used. At these frequencies, ultrasound is scattered considerably by the heterogeneities in the concrete. In the limit of many scattering events, the evolution of energy may be modeled as a diffusion process. The arrival of the peak diffuse energy at the receiver is delayed due to the presence of crack. This delay is the prime indicator used for determining crack depth. Numerical and analytical analyses were also used for comparison. These results are in basic agreement with the experiments. In addition, these analyses are used to study the limits of this technique. In particular, it is shown that this technique is applicable to cracks greater than the scattering mean-free path, which is estimated at about 1 cm for these specimens. Aspects of practical implementation are also discussed.
机译:讨论了使用超声扩散技术确定混凝土试件表面裂纹的深度。实验是在不同裂缝深度(试样厚度的0%–40%)的预开裂混凝土试样上进行的。将接触式换能器放置在样品表面,使源和接收器之间的裂缝分开。使用了在400–600 kHz频率范围内的音突发激励。在这些频率下,超声波由于混凝土中的异质性而被大量散射。在许多散射事件的限制下,可以将能量的演化建模为扩散过程。由于裂纹的存在,峰值散射能量到达接收器的时间延迟了。该延迟是用于确定裂纹深度的主要指标。数值和分析分析也用于比较。这些结果与实验基本吻合。此外,这些分析还用于研究该技术的局限性。特别地,表明该技术适用于大于散射均值-自由程的裂纹,对于这些样本,该均值估计约为1 cm。还讨论了实际实施方面。

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