热释电介质中的平面波

Xiaoguang Yuan
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引用次数: 1

摘要

本文研究了波在无限热释电介质中的传播。热释电体的控制方程用紧致代数形式表示。发现了四个特征波速,其中三个类似于弹性波的波速,而第四波主要是温度扰动,对应于被称为第二声的热脉冲。通过对BiTiO3的算例计算,发现所有的速度和衰减系数都与波法向和材料常数有关。考虑了电学性质对温度波传播的影响,表明温度波对热释电和压电不敏感。在一维情况下,详细研究了包含松弛时间的项对衰减的影响,其中讨论了11种情况。发现松弛时间越大,对波的影响越大;在实际情况下,电弛豫可以忽略不计,而弹性弛豫和热惯性是相当大的;热惯性项可以放大机械波,其作用与弹性和热释电阻尼项相反。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The plane waves in pyroelectric medium
The propagation of waves in an infinite pyroelectric medium is studied in this paper. The governing equations for the pyroelectrics are written in the compact algebraic form. Four characteristic wave velocities are found, three being analogous to those of elastic waves and the fourth wave, which is predominantly a temperature disturbance, corresponding to the heat pulse known as the second sound. From computing example for BiTiO3 it is found that all the velocities and attenuation coefficients are related to the wave normal and the material constants. The effect of the electric properties on the wave propagation is considered, which indicates that the temperature wave is not sensitive to pyroelectricity and piezoelectricity in the discussed case. The effects of the terms containing relaxation time on the attenuation are researched in detail in one-dimensional case, where 11 cases are discussed. It is found that larger relaxation time affects the wave more; the electric relaxation could be ignored in real situation, while the elastic relaxation and heat inertia are considerable; the heat inertia term can amplify the mechanical wave and its role is opposite to the elastic and pyroelectric damping terms.
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