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首页> 外文期刊>Composite Structures >Wave propagation characteristics in magneto-electro-elastic nanoshells using nonlocal strain gradient theory
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Wave propagation characteristics in magneto-electro-elastic nanoshells using nonlocal strain gradient theory

机译:基于非局部应变梯度理论的磁电弹性纳米壳中的波传播特性

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摘要

In this paper, the wave propagation in magneto-electro-elastic (MEE) nanoshells is investigated via two nonlocal strain gradient shell theories, namely, the Kirchhoff-Love shell theory and the first-order shear deformation (FSD) shell theory. By using Hamilton's principle, we derive the governing equations, which are then solved analytically to obtain the dispersion relations of MEE nanoshells. Results are presented to highlight the influences of the temperature change, external electric potential, external magnetic potential, external load, nonlocal parameter and length scale parameter on the wave propagation characteristics of MEE nanoshells. It is found that the electro-magneto-mechanical loadings can lead to the cut-off wave number at which the frequency reaches to zero.
机译:本文通过两种非局部应变梯度壳理论,即基尔霍夫-洛夫壳理论和一阶剪切变形(FSD)壳理论,研究了磁电弹性(MEE)纳米壳中的波传播。利用汉密尔顿原理,推导了控制方程,然后对其进行解析求解,得到了MEE纳米壳的色散关系。结果表明,温度变化,外部电势,外部磁势,外部负载,非局部参数和长度尺度参数对MEE纳米壳的波传播特性的影响。已经发现,电磁机械负载会导致频率达到零的截止波数。

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