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首页> 外文期刊>Journal of Engineering Mechanics >Effect of aggregate size on attenuation of Rayleigh surface waves in cement-based materials
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Effect of aggregate size on attenuation of Rayleigh surface waves in cement-based materials

机译:骨料尺寸对水泥基材料瑞利表面波衰减的影响

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This research uses laser ultrasonic techniques to study the effect of aggregate size on the attenuation of Rayleigh surface waves in cement-based materials. The random, multiphase, and heterogeneous nature of cement-based materials causes a high degree: of material attenuation in the ultrasonic waves that propagate in these materials. Physically, these attenuation losses are due to a combination of absorption and the scattering losses due to material heterogeneity. Laser ultrasonics is an ideal methodology to measure attenuation in these materials because of its high fidelity, large frequency bandwidth, and absolute, noncontact nature. To investigate the effect of aggregate size on attenuation, this research uses a dual-probe, heterodyne interferometer to experimentally measure attenuation losses las a function of frequency) in five different material systems teach with a different microstructure). These experimental results show that absorption, not scattering from the aggregate, is the dominant attenuation mechanism present in cement-based materials. As a result, aggregate size does not dominate attenuation. [References: 9]
机译:这项研究使用激光超声技术来研究骨料尺寸对水泥基材料中瑞利表面波衰减的影响。水泥基材料的随机,多相和非均质性质会在这些材料中传播的超声波中引起高度的材料衰减。从物理上讲,这些衰减损耗是由于吸收和由于材料异质性造成的散射损耗的结合。激光超声波具有高保真度,较大的频率带宽以及绝对的非接触特性,因此是测量这些材料中衰减的理想方法。为了研究聚集体尺寸对衰减的影响,本研究使用双探针外差干涉仪在具有不同微观结构的五种不同材料系统中实验测量衰减损耗(与频率成函数关系)。这些实验结果表明,吸收而不是从骨料中散射是水泥基材料中存在的主要衰减机制。结果,聚集体的大小并不主导衰减。 [参考:9]

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