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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Time-resolved line focus acoustic microscopy of layered anisotropic media: application to composites
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Time-resolved line focus acoustic microscopy of layered anisotropic media: application to composites

机译:分层各向异性介质的时间分辨线聚焦声显微镜:在复合材料中的应用

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摘要

This paper presents theoretical and experimental studies of the time-domain response of line focus acoustic microscopy from a layered anisotropic medium. A method for elastic constant reconstruction from acoustic microscopy signatures also is presented. The microscopy response is complicated by multiple reflections in the layers and by the anisotropic nature of the material. The model is based on a new, stable recursive stiffness matrix algorithm developed for a multilayered anisotropic medium, which is applied to the interpretation of the time-resolved acoustic microscopy signature. Specific examples are given for unidirectional and multidirectional graphite epoxy composites. It is shown that the fluid load has a significant effect on the leaky surface waves in these composites, increasing surface wave speed above that for the slow transverse wave. This results in its absence from the microscopy signature of the surface wave. The theoretical results are compared with experiments carried out using a line focus PVDF transducer developed at National Institute of Standards and Technology (NIST). Time-resolved acoustic microscopy has been applied to the determination of elastic constants of a unidirectional composite or of one lamina in a cross-ply composite. The lateral waves and multiple reflections of bulk waves appearing in the microscopy signatures are used for the elastic properties reconstruction. The reconstruction results are compared to data obtained by the self-reference double-through-transmission ultrasonic bulk wave method.
机译:本文介绍了分层各向异性介质中线聚焦声显微镜的时域响应的理论和实验研究。还提出了一种从声学显微镜特征中重建弹性常数的方法。显微响应由于层中的多次反射和材料的各向异性而变得复杂。该模型基于为多层各向异性介质开发的新的,稳定的递归刚度矩阵算法,该算法适用于时间分辨声学显微镜特征的解释。给出了单向和多向石墨环氧复合材料的具体实例。结果表明,流体载荷对这些复合材料中的泄漏表面波有显着影响,使表面波速度增加至慢横波速度以上。这导致没有表面波的显微镜特征。将理论结果与使用美国国家标准技术研究院(NIST)开发的线聚焦PVDF传感器进行的实验进行了比较。时间分辨声学显微镜已用于确定单向复合材料或交叉复合材料中一个薄片的弹性常数。显微特征中出现的横波和体波的多次反射被用于弹性特性的重建。将重建结果与通过自参考双透射超声波体波方法获得的数据进行比较。

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