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Hygro-thermal vibrations and buckling of laminated nanoplates via nonlocal strain gradient theory

机译:通过非函数应变梯度理论,叠层纳米层板的Hygro热振动和屈曲

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摘要

Vibrations and buckling of thin laminiated composite nano plates in hygrothermal environment are investigated using second-order strain gradient theory. Hamilton's principle is used in order to carry out motion equations. To obtain analytical solution Navier displacement field has been considered for both cross-and angle-ply laminates. Numerical solutions are provided and discussed in terms of plate aspect ratio and non local ratio for a large number of laminates. Whenever possible a comparison with classical analytical solutions is reported for buckling loads and fundamental frequencies. This work shows a large variety of angle-ply cases which are not common in the published literature. Moreover, critical temperatures for cross-and angle-ply laminates are shown for buckling and free vibration analyses.
机译:利用二阶应变梯度理论研究了湿热环境中薄层叠层复合纳米板的振动和屈曲。 汉密尔顿的原理用于执行运动方程。 为了获得分析解决方案,已经考虑了交叉和角度层压板的载波位移场。 根据板宽高比提供和讨论数值解决方案,以及大量层压板的非局部比。 只要有可能与经典分析解决方案进行比较,用于屈曲负载和基本频率。 这项工作显示出各种角度案例,在公开的文献中并不常见。 此外,示出了屈曲和自由振动分析的交叉角层层压板的临界温度。

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