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Transient response of a laminated sandwich plate with viscoelastic core subjected to air blast: theory and experiment

机译:爆炸作用下粘弹性夹芯层合板的瞬态响应:理论与实验

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This paper is focused on the theoretical and experimental study of the dynamic behavior of sandwich composite plates with a viscoelastic core subjected to blast load. The sandwich plate has carbon/epoxy face sheets and an aramid honeycomb core. The clamped boundary conditions are considered for all edges of the plate. The sandwich plate is modeled using first order shear deformation theory considering the geometrical nonlinearities. The equations of motion are derived by the use of the virtual work principle for the sandwich plate. The viscoelastic behavior is modeled by using the Kelvin-Voigt theory. The equations of motion are reduced into the time domain using Galerkin's method. The nonlinear-coupled equation system is solved by Mathematica Software. In the experimental study, the pressurized air in a shock tube is impinged on the sandwich composite plate by rupturing a membrane in front of the shock tube. The strain-time histories obtained from the theoretical analysis are compared with the experimental ones and a good agreement is found.
机译:本文重点研究了爆炸冲击载荷作用下具有粘弹性芯的夹心复合材料板的动力特性的理论和实验研究。夹心板具有碳/环氧树脂面板和芳纶蜂窝芯。对于板的所有边缘都考虑了夹紧的边界条件。考虑到几何非线性,使用一阶剪切变形理论对夹层板进行建模。通过使用虚拟工作原理为夹心板得出运动方程。通过使用开尔文-沃格特理论对粘弹性行为进行建模。使用Galerkin方法将运动方程式简化到时域中。非线性耦合方程组通过Mathematica软件求解。在实验研究中,通过使冲击管前面的膜破裂,将冲击管中的压缩空气撞击到夹心复合材料板上。将理论分析得到的应变时间历史与实验结果进行比较,发现吻合良好。

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