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A high-order theory for the analysis of circular cylindrical composite sandwich shells with transversely compliant core subjected to external loads

机译:承受外力作用的具有横向柔度芯的圆柱形复合材料夹心壳的高阶理论

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摘要

A new model based on the high order sandwich panel theory is proposed to study the effect of external loads on the free vibration of circular cylindrical composite sandwich shells with transversely compliant core, including also the calculation of the buckling loads. In the present model, in contrast to most of the available sandwich plate and shell theories, no prior assumptions are made with respect to the displacement field in the core. Herein the displacement and the stress fields of the core material are determined through a 3D elasticity solution. The performance of the present theory is compared with that of other sandwich theories by the presentation of comparative results obtained for several examples encompassing different material properties and geometric parameters. It is shown that the present model produce results of very high accuracy, and it is suggested that the present model, which is based on a 3D elasticity solution for the core material, can be used as a benchmark in future studies of the free vibration and buckling of circular cylindrical composite sandwich shells with a transversely compliant core.
机译:提出了一种基于高阶夹心板理论的新模型,研究了外部载荷对具有横向柔顺性的圆柱状复合夹心壳的自由振动的影响,还包括了屈曲载荷的计算。在本模型中,与大多数可用的夹心板和壳理论相反,没有对芯中的位移场做出任何先验假设。在此,芯材料的位移和应力场通过3D弹性解来确定。通过介绍几个实例的比较结果,将本理论的性能与其他三明治理论的性能进行比较,这些实例涵盖了不同的材料特性和几何参数。结果表明,该模型产生的结果具有很高的精度,并且建议该模型基于芯材料的3D弹性解,可以用作未来自由振动和振动研究的基准。带有横向柔顺芯的圆柱形复合材料三明治壳的屈曲。

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