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Effects of solid distribution on the out-of-plane elastic properties of hexagonal honeycombs

机译:固体分布对六角形蜂窝面外弹性性能的影响

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摘要

A three-dimensional representative volume element model with appropriate periodic boundary conditions is proposed and employed to numerically calculate the out-of-plane elastic properties of hexagonal honeycombs with variable-thickness and curved cell edges. The FEA numerical results indicate that the out-of-plane shear modulus, compressive buckling strength and shear buckling strengths of regular hexagonal honeycombs are significantly affected by the solid distribution in cell edges. Meanwhile, the compressive and shear buckling strengths of hexagonal honeycombs can be enhanced dramatically as the curvature of cell edges becomes much larger. The theoretical expressions of the shear modulus, compressive buckling strength and shear buckling strengths of hexagonal honeycombs with variable-thickness and curved cell edges can also be expressed as the product of those with same relative density and constant-thickness and straight cell edges, and two cell-geometry coefficients to account for the effects of the solid distribution in cell edges.
机译:提出了具有适当周期性边界条件的三维有代表性的体积元模型,并用其数值计算了具有变厚度和弯曲单元格边缘的六边形蜂窝的平面外弹性特性。有限元分析的数值结果表明,规则六边形蜂窝的平面外剪切模量,压缩屈曲强度和剪切屈曲强度受单元边缘固体分布的影响很大。同时,随着孔边缘的曲率变得更大,六角形蜂窝的压缩和剪切屈曲强度可以大大提高。可变厚度和弯曲单元格边缘的六边形蜂窝的剪切模量,压缩屈曲强度和剪切屈曲强度的理论表达式也可以表示为相对密度相同且厚度恒定且蜂窝状边缘为直角的蜂窝的乘积单元几何系数,以说明单元边缘中固体分布的影响。

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