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Dynamic buckling of flat and curved sandwich panels with transversely compressible core

机译:具有横向可压缩芯的平面和弯曲夹心板的动态屈曲

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In the present study, the effect of the transverse compressibility of the core on the transient dynamic response of structural sandwich panels under rapid loading conditions is investigated. The analysis is based on a higher-order sandwich shell theory in an effective multilayer formulation. The model is based on the standard Kirchhoff-Love hypothesis for the face sheets whereas a first/second order power series expansion is employed for the core. Consistent equations of motion and boundary conditions are derived by means of Hamilton's principle. An analytical solution is obtained by an extended Galerkin procedure. The theory is applied to the dynamic buckling and postbuckling analyses of plane and curved sandwich panels subjected to rapidly applied tangential and transverse loads. It is observed that the transverse compressibility of the core can have distinct effects on both, the frequency and the amplitudes of the resulting free oscillations. Due to interactions between the overall oscillation and a local oscillation in the presence of a face wrinkling instability mode, the dynamic response can be chaotic, resulting in oscillating face wrinkling instability modes with unpredictable amplitudes.
机译:在本研究中,研究了芯的横向可压缩性对快速加载条件下结构夹芯板瞬态动力响应的影响。该分析基于有效多层配方中的高阶三明治壳理论。该模型基于面板的标准Kirchhoff-Love假设,而核心采用一阶/二阶幂级数展开。运动和边界条件的一致方程是根据汉密尔顿原理导出的。通过扩展的Galerkin程序可以获得解析解。该理论适用于承受快速施加切向和横向载荷的平面和弯曲夹心板的动态屈曲和后屈曲分析。可以看出,芯部的横向可压缩性对所产生的自由振荡的频率和振幅都有明显的影响。由于在存在面部起皱不稳定性模式的情况下总体振荡和局部振荡之间的相互作用,因此动态响应可能是混乱的,从而导致振幅具有不可预测的摆动的面部起皱不稳定性模式。

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