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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >THEORETICAL AND EXPERIMENTAL INVESTIGATIONS OF ACOUSTIC SIGNATURES OF MATERIALS USING SCANNING MICROSCOPES WITH VARIABLE LENS ILLUMINATION
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THEORETICAL AND EXPERIMENTAL INVESTIGATIONS OF ACOUSTIC SIGNATURES OF MATERIALS USING SCANNING MICROSCOPES WITH VARIABLE LENS ILLUMINATION

机译:可变显微照明的扫描显微镜对材料声学特征的理论和实验研究

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The most important part of a scanning acoustic microscope system is the wide-opening-angle lens which could have many shapes and sizes. Such lenses include several interfering surface modes which may obscure the measured acoustic properties. In this paper, we investigate the conventional spherical wide-angle lens whose central part has been covered by a circular aperture stop of varying diameter, D, to absorb the energy of acoustic modes. The influence of increasing D of such absorbers on the acoustic signatures, V(z), of plastic materials in which the speed of sound is slow (plexiglass) and materials in which the speed of sound is relatively fast (silica and stainless steel) is investigated theoretically and experimentally, leading to similar behaviours: a decrease in amplitude, a broadening of periodic spacings and the complete disappearance of the oscillatory form of V(z) for large D, namely for large excluded angles. A novel formula for periods, Delta z', is proposed for covered lenses, which explains the velocity shift associated with the period variation as the excluded angle increases. [References: 23]
机译:扫描声显微镜系统最重要的部分是广角镜,它可以具有许多形状和大小。这样的透镜包括可能使所测量的声学特性模糊的几种干扰表面模式。在本文中,我们研究了常规的球面广角镜,其中心部分被直径为D的圆形孔径光阑所覆盖,以吸收声模的能量。此类吸收器的D增大对声速较慢的塑料材料(有机玻璃)和声速较快的材料(二氧化硅和不锈钢)的声学特征V(z)的影响为在理论上和实验上进行了研究,得出了类似的行为:对于大D,即对于大排除角,振幅减小,周期间隔变宽以及V(z)振荡形式的完全消失。提出了一种新的周期公式Delta z',用于覆盖透镜,它解释了随着排除角的增加,与周期变化相关的速度偏移。 [参考:23]

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