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Sandwich Plates with a Compressible Core Impacted by Blast Loading

机译:夹层板,带有可压缩核心受冲压载荷影响

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The foundation of the nonlinear theory of asymmetric anisotropic sandwich plates with a first order compressible weak orthotropic core under a Friedlander-Type explosive blast is presented. The equations of motion are developed by means of Hamilton's Principle. Within the theory, the face sheets are asymmetric while adopting the Love-Kirchoff model. In addition, the core layer is assumed to be compressible (extensible) in the transverse direction thereby capturing any wrinkling or global instabilities. The theory is then simplified and applied for the case of sandwich plates with symmetric unidirectional fiber reinforced laminated composite facings with the axes of orthotropy not necessarily coincident with the geometrical axes. The governing solution is developed using the Extended-Galerkin method resulting in two coupled nonlinear second order ordinary differential equations which are then solved using the adaptive 4th-Order Runge-Kutta Method for a system of differential equations.
机译:介绍了在弗里德兰德型爆炸爆炸下具有一阶压缩弱正交芯的非对称各向异性夹层板非线性各向异性夹层板的非线性理论的基础。运动方程是通过汉密尔顿的原则制定的。在该理论中,面部床单在采用爱情模型的同时是不对称的。另外,假设芯层沿横向是可压缩(可伸缩的),从而捕获任何皱纹或全局稳定性。然后将该理论简化并施加了具有对称单向纤维增强层叠层叠的夹层平板的夹层,其轴的轴线不一定与几何轴一致。使用扩展Galerkin方法开发了管理解决方案,得到了两个耦合的非线性二阶常微分方程,然后使用用于微分方程系统的自适应4阶runge-Kutta方法来解决。

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