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首页> 外文期刊>Journal of intelligent material systems and structures >Free vibration analysis of micro-magneto-electro-elastic cylindrical sandwich panel considering functionally graded carbon nanotube-reinforced nanocomposite face sheets, various circuit boundary conditions, and temperature-dependent material properties using high-order sandwich panel theory and modified strain gradient theory
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Free vibration analysis of micro-magneto-electro-elastic cylindrical sandwich panel considering functionally graded carbon nanotube-reinforced nanocomposite face sheets, various circuit boundary conditions, and temperature-dependent material properties using high-order sandwich panel theory and modified strain gradient theory

机译:考虑功能梯度碳纳米管增强纳米复合材料面板,各种电路边界条件和温度相关材料特性的微磁电弹性圆柱夹层板的自由振动分析,使用高阶夹心板理论和改进的应变梯度理论

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摘要

In this article, based on high-order sandwich panel theory and modified strain gradient theory, free vibration analysis of a micro-magneto-electro-elastic sandwich panel with a transversely flexible core and functionally graded carbon nanotube-reinforced nanocomposite face sheets is investigated. Also, the influences of temperature-dependent material properties and various circuit boundary conditions such as open and closed are considered in this study. Carbon nanotubes are arranged in longitudinal direction inside polyvinylidene fluoride matrix with various functionally graded (FG) distributions such as uniform, FG-V, FG-A, FG-X, and FG-O in the face sheets. The generalized rule of mixture is employed to predict mechanical, electrical, magnetic, and thermal properties of micro-sandwich composite panel. The classical shell theory and an elasticity high-order theory are used for the face sheets and the core, respectively. Then, the governing equations of motion are derived using Hamilton's principle. In this article, the influences of the volume fraction, the various distributions of carbon nanotubes, the multi-physical fields, open- and closed-circuit boundary conditions, the material length scale parameters, different face sheet and core thicknesses, and temperature changes on the natural frequency are investigated, and the obtained results show that these influences play an important role in the natural frequencies and can be used in order to prevent the resonance phenomenon and also for manufacturing process design and optimization of micro-magneto-electro-elastic composite sandwich cylindrical panels.
机译:本文基于高阶夹心板理论和改进的应变梯度理论,研究了具有横向柔性芯和功能梯度碳纳米管增强纳米复合材料面板的微磁电弹性夹心板的自由振动分析。此外,在这项研究中考虑了与温度有关的材料特性和各种电路边界条件(例如开路和闭路)的影响。碳纳米管沿纵向排列在聚偏二氟乙烯基质内部,面板中具有各种功能梯度(FG)分布,例如均匀,FG-V,FG-A,FG-X和FG-O。混合的一般规则用于预测微三明治复合板的机械,电气,磁和热性能。面板和核心分别使用经典壳理论和弹性高阶理论。然后,使用汉密尔顿原理导出运动的控制方程。在本文中,碳纳米管的体积分数,各种分布,多物理场,开路和闭路边界条件,材料长度尺度参数,不同的面板和芯厚度以及温度变化的影响对固有频率进行了研究,结果表明这些影响在固有频率中起着重要作用,可用于防止共振现象,还可用于微磁电弹性复合材料的制造工艺设计和优化。夹层圆柱板。

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