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首页> 外文期刊>International Journal of Optomechatronics >Characterization of Transducer Performance and Narrowband Transient Ultrasonic Fields in Metals by Rayleigh-Sommerfeld Backpropagation of Compression Acoustic Waves Measured with Double-Pulsed Tv Holography
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Characterization of Transducer Performance and Narrowband Transient Ultrasonic Fields in Metals by Rayleigh-Sommerfeld Backpropagation of Compression Acoustic Waves Measured with Double-Pulsed Tv Holography

机译:用双脉冲电视全息法测量的压缩声波的瑞利-索默菲尔德反向传播特性表征金属中的换能器性能和窄带瞬态超声场

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摘要

This article presents a method aimed at the characterization of the narrowband transient acoustic field radiated by an ultrasonic plane transducer into a homogeneous, isotropic and optically opaque prismatic solid, and the assessment of the performance of the acoustic source. The method relies on a previous technique based on the full-field optical measurement of an acoustic wavepacket at the surface of a solid and its subsequent numerical backpropagation within the material. The experimental results show that quantitative transversal and axial profiles of the complex amplitude of the beam can be obtained at any plane between the measurement and excitation surfaces. The reconstruction of the acoustic field at the transducer face, carried out on a defective transducer model, shows that the method could also be suitable for the nondestructive testing of the performance of ultrasonic sources. In all cases, the measurements were performed with the transducer working under realistic loading conditions.
机译:本文提出了一种方法,旨在表征由超声平面换能器辐射成均匀,各向同性和光学不透明的棱镜固体的窄带瞬态声场,并评估声源的性能。该方法依赖于先前的技术,该技术基于固体表面声波包的全场光学测量及其在材料中的后续数值反向传播。实验结果表明,可以在测量表面和激发表面之间的任何平面上获得光束复振幅的定量横向和轴向轮廓。在有缺陷的换能器模型上进行的换能器表面声场的重建表明,该方法也适用于超声源性能的非破坏性测试。在所有情况下,测量都是在传感器在实际负载条件下工作的情况下进行的。

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