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Buckling analysis and experiment of fiber-paper honeycomb sandwich structure composites

机译:纤维纸蜂窝夹层结构复合材料的屈曲分析与实验

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The aim of this paper is to present a finite element method to predict buckling characteristics of paper honeycomb sandwich panels with composite skins under dynamic axial compression via ANSYS/LS-DYNA. First of all, some problems of the conventional method using honeycomb plate theory, sandwich laminboard theory and equivalent panel theory were pointed out. In order to develop an effective predicting method, by assuming appropriate periodic boundary condition on the edges, a simplified finite element model on hexagonal structure of a unit cell for sandwich panels was developed utilizing the 3D finite element method. The effective Young's modulus of the cellular wall was obtained from the result of the test on the honeycomb core. Several useful conclusions are drawn about the axial crushing of honeycomb sandwich composites and unit cell and can be used to guide the design of composite structures. The paper further attempts to explain numerical results are well consistent with the corresponding experimental ones.
机译:本文的目的是提出有限元方法,以通过ANSYS / LS-DYNA在动态轴向压缩下预测纸张蜂窝夹层板的屈曲特性。首先,指出了使用蜂窝板理论,夹层层压板理论和等效面板理论的传统方法的一些问题。为了开发有效的预测方法,通过假设边缘上的适当周期性边界条件,利用3D有限元方法开发了三明治板的单元电池的六边形结构上的简化有限元模型。从蜂窝芯的试验结果获得了细胞壁的有效杨氏模量。关于蜂窝夹层复合材料和单元电池的轴压制绘制了几种有用的结论,并且可用于引导复合结构的设计。该论文进一步尝试解释数值结果与相应的实验结果一致。

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