Nomex蜂窝夹芯板三点弯曲破坏行为试验与细观模拟

Mingze Ma, Piao Li, Ti Ye, Daiyang Gao
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引用次数: 0

摘要

对Nomex蜂窝夹层板在三点弯曲作用下的破坏行为和承载能力进行了试验和数值研究。实验中观察到的破坏模式为岩心剪切破坏和面片/岩心脱粘破坏。利用Abaqus/显式仿真建立了考虑Nomex纸和树脂涂层的详细模型。采用Hill 1948二次各向异性屈服准则描述Nomex纸的塑性行为,采用主应力准则预测树脂涂层的失效。通过实验和数值结果的对比,验证了该中尺度模型的有效性。详细讨论了几何参数对弯曲性能的影响。结果表明:Nomex蜂窝夹芯板的极限受力和抗弯刚度受芯材取向、树脂厚度和芯材尺寸的显著影响。切割位置对极限力和弯曲刚度没有影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study on the failure behavior of Nomex honeycomb sandwich panels under three-point bending load: Experiments and meso-scale simulation
The failure behavior and load-carrying capacity of Nomex honeycomb sandwich panels under three-point bending are experimentally and numerically studied. The failure modes observed in experiments are core shear failure and face-sheet/core debonding. A detailed model considering Nomex paper and resin coating is built with Abaqus/explicit simulation. The Hill 1948 quadratic anisotropic yield criteria are adopted to describe the plastic behavior of Nomex paper and the principal stress criteria are used for predicting the failure of resin coating. The effectiveness of the proposed meso-scale model is validated by comparing the experimental and the numerical results. The effects of geometric parameters on the bending behaviors are discussed in detail. It is shown that the ultimate force and bending stiffness of Nomex honeycomb sandwich panels is significantly influenced by the core orientation, resin thickness and cell size. The cutting position has no effect on the ultimate force and bending stiffness.
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