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Airborne non-contact and contact broadband ultrasounds for frequency attenuation profile estimation of cementitious materials

机译:空气传播的非接触和接触宽带超声波,用于静态材料的频率衰减概况

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摘要

In this paper, the study of frequency-dependent ultrasonic attenuation in strongly heterogeneous cementitious materials is addressed. To accurately determine the attenuation over a wide frequency range, it is necessary to have suitable excitation techniques. We have analysed two kinds of ultrasound techniques: contact ultrasound and airborne non-contact ultrasound. The mathematical formulation for frequency-dependent attenuation has been established and it has been revealed that each technique may achieve similar results but requires specific different calibration processes. In particular, the airborne non-contact technique suffers high attenuation due to energy losses at the air-material interfaces. Thus, its bandwidth is limited to low frequencies but it does not require physical contact between transducer and specimen. In contrast, the classical contact technique can manage higher frequencies but the measurement depends on the pressure between the transducer and the specimen.
机译:在本文中,解决了强相异质水泥材料中依赖于频依赖性超声衰减的研究。 为了准确地确定宽频范围内的衰减,有必要具有合适的激励技术。 我们分析了两种超声技术:联系超声波和空气传播的非接触超声波。 已经建立了用于频率相关衰减的数学制剂,并且已经揭示了每种技术可以实现类似的结果,而是需要特定的不同校准过程。 特别地,由于空气材料界面处的能量损失,空气传播的非接触技术遭受了高衰减。 因此,其带宽仅限于低频,但它不需要换能器和样本之间的物理接触。 相反,经典接触技术可以管理更高的频率,但测量取决于换能器和样本之间的压力。

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