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Static analysis of cylindrical sandwich panels with a flexible core and laminated composite face sheets

机译:具有挠性芯和层压复合面板的圆柱形夹芯板的静态分析

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摘要

In this study, static response of cylindrical sandwich panels with flexible core based on the high-order theory (HOT) of sandwich structures is investigated. A layerwise formulation is developed to study the applicability of HOT. The face sheets are considered as composite laminates with cross-ply layup that follow first-order shear deformation assumption and the core is considered as a linear elastic medium with out-of-plane stresses only. The field equations along with the boundary conditions are derived by means of the principle of minimum potential energy. A closed-form solution is developed for simply supported boundary conditions and a comparison is made with results from the commercial finite element software ANSYS to verify high-order and layerwise solution results. Finally, influence of parameters including the core to face sheets stiffness ratio and the core to face sheets thickness ratio on the applicability of HOT is investigated. Results demonstrate a good agreement between high-order and layerwise results for the small thickness ratio of the core to the face sheet and low stiffness cores.
机译:在这项研究中,基于三明治结构的高阶理论(HOT),研究了具有柔性芯的圆柱形三明治板的静态响应。开发了分层配方以研究HOT的适用性。面板被认为是遵循一阶剪切变形假设的具有交叉铺层的复合层压板,而纤芯被视为仅具有面外应力的线性弹性介质。场方程和边界条件是根据最小势能原理导出的。针对简单支持的边界条件开发了一种封闭形式的解决方案,并与商业有限元软件ANSYS的结果进行了比较,以验证高阶和逐层解决方案的结果。最终,研究了包括芯部到面板的刚度比和芯部到面板的厚度比在内的参数对HOT适用性的影响。结果表明,对于芯与面板的较小厚度比和低刚度的芯,高阶和分层结果之间具有良好的一致性。

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