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Analysis of laser-generated ultrasonic force source at specimen surface and display of bulk wave in transversely isotropic plate by numerical method

机译:用数值方法分析试样表面激光产生的超声力源并显示横观各向同性平板中的体波

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摘要

Taking into account the effects of thermal diffusion and optical penetration, as well as the finite width and duration of the laser source, the laser-generated ultrasonic force source at surface vicinity is presented. The full acoustic fields of laser-generated ultrasonic bulk wave are obtained and displayed in transversely isotropic plate. The features of laser-generated ultrasound bulk waves are analyzed. The features of laser-generated ultrasonic bulk wave are in good agreement with the theoretical results (the phase velocity surfaces), demonstrating the validity of this simulation. The numerical results indicate that the features of laser-generated ultrasound waveforms in anisotropic specimen, different from the case in isotropic materials, have a close relation with the propagating plane and propagation direction. This method can provide insight to the generation and propagation of laser-generated ultrasonic bulk wave in transversely isotropic material.
机译:考虑到热扩散和光学穿透的影响,以及激光源的有限宽度和持续时间,提出了在表面附近产生激光的超声力源。获得了激光产生的超声波体波的全声场,并将其显示在横观各向同性的平板中。分析了激光产生的超声波体波的特征。激光产生的超声波体波的特性与理论结果(相速度表面)非常吻合,证明了该模拟的有效性。数值结果表明,与各向同性材料不同,各向异性样品中激光产生的超声波波形的特征与传播平面和传播方向密切相关。这种方法可以为横观各向同性材料中激光产生的超声波体波的产生和传播提供见识。

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