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首页> 外文期刊>Composite Structures >Blast resistance of auxetic and honeycomb sandwich panels: Comparisons and parametric designs
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Blast resistance of auxetic and honeycomb sandwich panels: Comparisons and parametric designs

机译:膨胀和蜂窝夹芯板的抗爆炸性:比较和参数设计

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AbstractEquivalent sandwich panels composed of auxetic and conventional honeycomb cores and metal facets are analysed and compared for their resistance performances against impulsive loadings. The dynamic behaviours of these structures are numerically investigated, taking into account the rate-dependent effects. The Johnson-Cook model is employed to describe the dynamic responses of the composite sandwiches subjected to high strain-rate loadings. Analytical models are derived correlating unit cell geometrical parameters and crushing strengths of the representative panels at different impact velocities. Parametric studies are conducted to evaluate the performances of different sandwich panel designs under impulsive loadings. In particular, transmitted reaction forces and maximum stresses on the protected structure are quantified for various design parameters including the geometrical factors and the effective Poisson’s ratios. A quarter of the panel is symmetrically modelled with shell elements and the CONWEP model is used to simulate the blast loading. Auxetic panels demonstrate interesting crushing behaviour, effectively adapting to the dynamic loading by progressively drawing material into the locally loaded zone to thereby enhance the impact resistance. Meanwhile, conventional honeycomb panels deform plastically without localised stiffness enhancement.
机译: 摘要 分析了由膨胀和常规蜂窝状芯以及金属小面组成的等效夹芯板,并比较了其抗冲击载荷的性能。考虑到速率依赖性效应,对这些结构的动力学行为进行了数值研究。 Johnson-Cook模型用于描述承受高应变率载荷的复合材料三明治的动力响应。推导了分析模型,该模型将晶胞的几何参数与代表板在不同冲击速度下的抗压强度相关联。进行参数研究以评估不同夹心板设计在脉冲载荷下的性能。特别是,针对各种设计参数(包括几何系数和有效泊松比),可以对传递给受保护结构的反作用力和最大应力进行量化。面板的四分之一采用壳单元对称建模,CONWEP模型用于模拟爆炸载荷。辅助面板显示出有趣的破碎特性,通过逐渐将材料拉入局部加载区域来有效地适应动态负载,从而增强了抗冲击性。同时,传统的蜂窝板会发生塑性变形而不会局部增强刚度。

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