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首页> 外文期刊>International Journal of Precision Engineering and Manufacturing >Relative measurement of the acoustic nonlinearity parameter using laser detection of an ultrasonic wave
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Relative measurement of the acoustic nonlinearity parameter using laser detection of an ultrasonic wave

机译:超声波激光检测声学非线性参数的相对测量

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The relative acoustic nonlinearity parameter beta' is defined by the amplitudes of the fundamental and second-order harmonic components in the detected ultrasonic wave signal, in which a piezoelectric transducer is conventionally used for detection. Although it is not identical to the absolute parameter beta defined by the displacement amplitudes, beta' has been widely used for the relative comparison between the same materials since its ratio is identical to that of the absolute parameter when the detected signal amplitude is proportional to the displacement amplitude. However, beta cannot be replaced by beta' for the comparison between different materials due to the difference of respective acoustic impedance. This study aims to show that a laser detection method using a photorefractive interferometer can be used for the relative comparison of acoustic nonlinearity between different materials because its output is independent of the acoustic impedance. To demonstrate, two similar materials, Al6061-T6 and Al2024-T4, and one different material, copper, were tested. Experimental results showed that the ratio beta (2024) / beta (6061) , measured via the proposed method and the conventional piezoelectric detection method, were in good agreement with the references. However, in the case of beta (Cu) / beta (6061) , only the proposed method showed good agreement with the references.
机译:相对声学非线性参数β'由检测到的超声波信号中的基本和二阶谐波分量的幅度限定,其中压电换能器通常用于检测。虽然它与由位移幅度定义的绝对参数β不相同,但是由于当检测到的信号幅度与绝对参数的比例与绝对参数的比例相同,因此Beta'已被广泛用于相同的材料之间的相对比较。位移幅度。然而,由于各自的声阻抗的差异,β不能被β'代替。该研究旨在表明,使用光折折灌干涉仪的激光检测方法可用于不同材料之间的声学​​非线性的相对比较,因为其输出与声阻抗无关。为了证明,测试了两种类似的材料,Al6061-T6和Al2024-T4和一种不同的材料,铜。实验结果表明,通过所提出的方法和传统的压电检测方法测量的比率β(2024)/β(6061)与参考有关。然而,在β(Cu)/ beta(6061)的情况下,只有所提出的方法与参考表现出良好的一致性。

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