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Finite element-based damage and failure analysis of honeycomb core sandwich composite structures for space applications

机译:基于有限元的蜂窝芯夹芯复合结构在空间应用中的破坏与失效分析

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The paper presents an investigation into the thermomechanical performance of complex composite sandwich structures with adhesively bonded metallic fittings when exposed to extreme temperature ranges. A detailed finite element analysis is conducted by explicitly modeling the honeycomb core geometry with a cup metallic fitting. The material properties for the core sheet are identified from the experimental load-displacement curves of the test coupons. The identified properties are implemented in a finite element model of a sandwich cylindrical panel section of a spacecraft's thrust tube subjected to thermal cycles. The critical stresses and potential failure modes of the sandwich panel section with the cup bonded fitting are correlated with experimental observations. The developed methodology for the analysis of composite sandwich structures is intended to investigate thrust tubes with other configurations of bonded joints and fittings.
机译:这篇论文提出了当暴露于极端温度范围时,具有粘合金属配件的复杂复合夹层结构的热机械性能的研究。通过使用杯形金属配件对蜂窝状芯的几何形状进行显式建模,可以进行详细的有限元分析。芯板的材料特性是从测试试样的实验载荷-位移曲线确定的。所识别的特性在经受热循环的航天器推力管的夹心圆柱面板部分的有限元模型中实现。具有杯形连接配件的夹层板部分的临界应力和潜在破坏模式与实验观察结果相关。用于分析复合夹层结构的已开发方法旨在研究具有其他构造的粘结接头和管件的推力管。

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