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Wave propagation analysis of a rectangular sandwich composite plate with tunable magneto-rheological fluid core

机译:具有可调谐磁流变液的矩形三明治复合板的波传播分析

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摘要

This study presents an investigation of the wave propagation of a rectangular sandwich composite plate with tunable magneto-rheological fluid core. The constituent parts of this rectangular sandwich composite plate are the base layer, magneto-rheological fluid core, and limiter layer. Magneto-rheological fluid core is embedded within the base and limiter layers. Also, the upper and lower layers are made of elastic materials. For obtaining the governing equations of motion, Hamilton's principle and classical plate theory are used. After that, applying an analytical solution, the wave frequency and phase velocity of the propagated waves can be gained by solving eigenvalue problem. By investigating the effect of the magnetic field, the results emphasize that the magnetic field intensity is the most important factor for changing the value of the wave frequency and phase velocity. Besides, results show by enhancing the core-to-top layer thickness ratio, the wave frequencies reduce because magneto-rheological fluid core is softer in comparison to elastic layers. Therefore, magneto-rheological fluid layer operates similar to a damper. At the end, the influence of the thickness of magneto-rheological fluid core on the phase velocity is also discussed.
机译:本文研究了具有可调磁流变液芯的矩形夹层复合材料板的波传播。这种矩形夹层复合板的组成部分是基层、磁流变液芯和限制器层。磁流变液芯嵌入基底层和限制器层中。此外,上层和下层由弹性材料制成。为了获得运动的控制方程,使用了哈密顿原理和经典板理论。然后,应用解析解,通过求解特征值问题,得到传播波的频率和相速度。通过研究磁场的影响,结果强调磁场强度是改变波频率和相速度值的最重要因素。此外,结果表明,与弹性层相比,磁流变液芯层更柔软,因此通过提高芯层与顶层的厚度比,波频率降低。因此,磁流变液层的工作原理类似于阻尼器。最后讨论了磁流变液芯厚度对相速度的影响。

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