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High frequency acoustic dispersion of surface waves using time-resolved broadband microscopy

机译:使用时间分辨宽带显微镜的表面波高频声学分散

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Broadband time-resolved microscopy was used in order to extend spatial frequency domain analysis of the V(z)-technique from a single frequency to the bandwidth of the transducer. With a special frequency dependent SAW speed imaging mode the occurrence and characteristics of the different SAW waves can be visualized. Phase velocities were estimated using multi-narrow-band spatial frequency analysis. A number of different plastics, metals, quartz glasses, piezo ceramics, tooth enamel, dentin and cortical bone was investigated. The observed velocities were in the range from 2300 to more than 6000 m/s. Recently reported multiple SAW reflections were only observed in low attenuating materials, e.g. titanium and aluminum. This methodology allows to study the frequency dependence of acoustic properties with a high spatial resolution and minor sample preparation, which is of particular interest for the investigation of biological materials.
机译:使用宽带时间分辨显微镜,以便将V(Z)的空间频域分析从单个频率扩展到换能器的带宽。通过特殊的频率依赖锯速成像模式,可以可视化不同锯波的发生和特性。使用多窄带空间频率分析估计相速度。研究了许多不同的塑料,金属,石英玻璃,压电陶瓷,牙釉质,牙本质和皮质骨。观察到的速度为2300至超过6000m / s。最近报道的多种锯反射仅在低衰减材料中观察到,例如,钛和铝。该方法允许使用高空间分辨率和次要样品制备研究声学性质的频率依赖性,这对于对生物材料的研究特别感兴趣。

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