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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Scanning tomographic acoustic microscopy using shear waves
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Scanning tomographic acoustic microscopy using shear waves

机译:使用剪切波扫描断层扫描声学显微镜

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摘要

We propose to use shear waves instead of longitudinal waves in a novel scanning tomographic acoustic microscope (STAM) in which the specimens are solid. When a specimen with a shear modulus is immersed in the microscope's water bath, mode conversion takes place at the water-solid interface. The shear wave energy is detectable and can be used for image reconstruction. Although wave transmission in most solid specimens is limited to about 20/spl deg/ for longitudinal waves, it is about twice that for shear waves. Also, velocities of shear waves are lower than those of longitudinal waves and hence the wavelengths at the same frequency are smaller. For these and other reasons we can expect that for many specimens the resolution of a shear-wave STAM to be substantially better than that of a longitudinal-wave STAM. We use computer simulation in order to compare the operation of a shear-wave STAM with that of the conventional longitudinal-wave STAM. We have simulated tomographic reconstruction for each. The corresponding critical angles of incidence are computed and tomographic reconstructions of a particular solid specimen is obtained by using the back-and-forth propagation algorithm (BFP). Our simulation results show that shear-wave STAM has better resolution than longitudinal-wave STAM.
机译:我们建议在新型扫描层析X射线声学显微镜(STAM)中使用剪切波代替纵波,其中样品是固体。当将具有剪切模量的样本浸入显微镜的水浴中时,模式转换会在水-固体界面发生。剪切波能量是可检测的,可用于图像重建。尽管对于纵波,大多数固体样本中的波传输被限制为大约20 / spl deg /,但它是剪切波的大约两倍。而且,剪切波的速度低于纵波的速度,因此相同频率下的波长更小。由于这些和其他原因,我们可以预期,对于许多试样,剪切波STAM的分辨率将明显好于纵波STAM。我们使用计算机仿真来比较剪切波STAM和常规纵波STAM的操作。我们已经为每个模拟层析成像重建。通过使用来回传播算法(BFP),计算了相应的临界入射角,并获得了特定固体样品的断层扫描图像。我们的仿真结果表明,剪切波STAM比纵波STAM具有更好的分辨率。

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