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Analysis of Attenuation and Dispersion of Acoustic Waves in Low-Density Polyethylene

机译:低密度聚乙烯声波衰减和分散的分析

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Acoustic attenuation of a pulsed electroacoustic (PEA) signal is theoretically studied using the Kelvin-Voigt model for viscoelastic materials. Starting with the basics of viscoelasticity, we apply the model to an analysis of acoustic wave propagation in PEA systems. In experiments, low-density polyethylene films with three different thicknesses are used as PEA samples to verify the model. The transfer functions of the polymers in the PEA system are obtained on the basis of the viscoelastic theory with which we can calculate acoustic attenuation in polymer films. The calculated acoustic waveforms show good agreement with the measured one. Furthermore, we also demonstrate the waveform recovery using the transfer function.
机译:理论上使用Kelvin-Voigt模型用于粘弹性材料的理论研究了脉冲电声(PEA)信号的声学衰减。从粘弹性的基础开始,我们将模型应用于豌豆系统中声波传播的分析。在实验中,用三种不同厚度的低密度聚乙烯膜用作豌豆样品以验证该模型。基于粘弹性理论,获得豌豆系统中聚合物的转移功能,我们可以在聚合物膜中计算声学衰减。计算出的声波形状与测量的声波形式显示出良好的一致性。此外,我们还使用传递函数演示波形恢复。

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