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Generalized thermoelasticity of a piezoelectric layer

机译:压电层的广义热弹性

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In the present research, the response of a one-dimensional piezoelectric layer is investigated using the generalized thermoelasticity theory of Lord and Shulman. The layer is subjected to thermal shock on one surface. Three coupled equations, namely, motion equation, energy equation and Maxwell equation in terms of displacement, temperature, and electric potential are established. Using the proper transformation, the mentioned equations are given in a dimensionless form. These equations are discretized by means of the generalized differential quadrature method and traced in time by means of the Newmark time marching scheme. Numerical examples are provided to show the propagation and reflection of thermal, mechanical and electrical waves in a layer. It is shown that under the Lord and Shulman theory, temperature propagates with a finite speed, similar to mechanical displacement wave. However, the electric displacement and potential propagate with infinite speed.
机译:在本研究中,研究了一维压电层的响应,采用了主和舒尔曼的广义热弹性理论来研究。将该层对一个表面进行热冲击。建立了三个耦合方程,即运动方程,在位移,温度和电位方面的运动方程,能量方程和麦克斯韦方程。使用正确的变换,提到的等式以无量纲形式给出。这些等式通过广义差分正交方法离散化并通过纽马克时间行进方案及时及时追踪。提供了数值示例以示出在层中的热,机械和电波的传播和反射。结果表明,在主和舒尔曼理论下,温度以有限速度传播,类似于机械位移波。然而,电位移和电位以无限速度传播。

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