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Ultrasonic wave propagation in heterogeneous solid media: Theoretical analysis and experimental validation

机译:超声波在异质固体介质中的传播:理论分析和实验验证

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摘要

This research deals with the ultrasonic characterization of thermal damage in concrete. This damage leads to the appearance of microcracks which then evolve in terms of volume rate and size in the material. The scattering of ultrasonic waves from the inclusions is present in this type of medium. The propagation of the longitudinal wave in the heterogeneous media is studied via a homogenization model that integrates the multiple scattering of waves. The model allows us to determine the phase velocity and the attenuation according to the elements which make the medium. Simulations adapted to the concrete are developed in order to test the responses of the model. These behaviors are validated by an experimental study: the measurements of phase velocity and attenuation are performed in immersion, with a comparison method, on a frequency domain which ranges from 160 kHz to 1.3 MHz. The analysis of different theoretical and experimental results obtained on cement-based media leads to the model validation, on the phase velocity behavior, ill the case of a damage simulated by expanded polystyrene spheres in granular media. The application to the case of a thermally damaged concrete shows a good qualitative agreement for the changes in velocity and attenuation. (c) 2005 Elsevier B.V. All rights reserved.
机译:这项研究涉及混凝土热损伤的超声表征。这种损坏导致出现微裂纹,然后在材料的体积率和尺寸方面不断发展。在这种类型的介质中存在来自夹杂物的超声波散射。通过整合波的多次散射的均化模型研究纵波在非均质介质中的传播。该模型使我们能够根据构成介质的元素确定相速度和衰减。为了测试模型的响应,开发了适合于混凝土的仿真。这些行为已通过一项实验研究得到验证:相速度和衰减的测量是使用比较方法在频率范围为160 kHz至1.3 MHz的浸入式中进行的。在水泥基介质上获得的不同理论和实验结果的分析导致在相速度行为方面进行模型验证,以防颗粒介质中膨胀的聚苯乙烯球体模拟损坏的情况。在热损伤混凝土的情况下的应用在速度和衰减方面显示出良好的定性一致性。 (c)2005 Elsevier B.V.保留所有权利。

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