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Mechanical behaviors of carbon fiber composite sandwich columns with three dimensional honeycomb cores under in-plane compression

机译:三维蜂窝芯碳纤维复合材料夹芯柱面内压缩力学行为

摘要

Mechanical properties and failure modes of carbon fiber composite egg and pyramidal honeycombs cores under in plane compression were studied in the present paper. An interlocking method was developed for both kinds of three-dimensional honeycombs. Euler or core shear macro-buckling, face wrinkling, face inter-cell buckling, core member crushing and face sheet crushing were considered and theoretical relationships for predicting the failure load associated with each mode were presented. Failure mechanism maps were constructed to predict the failure of these composite sandwich panels subjected to in-plane compression. The response of the sandwich panels under axial compression was measured up to failure. The measured peak loads obtained in the experiments showed a good agreement with the analytical predictions. The finite element method was used to investigate the Euler buckling of sandwich beams made with two different honeycomb cores and the comparisons between two kinds of honeycomb cores were conducted.
机译:研究了碳纤维复合鸡蛋芯和金字塔形蜂窝芯在平面压缩状态下的力学性能和破坏模式。针对这两种三维蜂窝开发了一种互锁方法。考虑了欧拉或岩心切变宏观屈曲,工作面起皱,工作面胞间屈曲,核心构件压扁和面板压扁,并给出了与每种模式相关的预测破坏载荷的理论关系。构造破坏机理图以预测这些复合夹芯板在平面内压缩下的破坏。测量了夹层板在轴向压缩下直至失效的响应。在实验中获得的测得的峰值负荷与分析预测显示出良好的一致性。用有限元方法研究了由两种不同的蜂窝芯制成的夹层梁的欧拉屈曲,并进行了两种蜂窝芯之间的比较。

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