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Influence of cell wall curvature radius and adhesive layer on the effective elastic out-of-plane properties of hexagonal honeycombs

机译:孔壁曲率半径和粘合层对六角形蜂窝有效弹性面外特性的影响

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Numerical modeling of honeycomb structures in aerospace engineering is too tedious and time consuming. The homogenization of these structures permits to obtain an equivalent orthotropic homogeneous solid and its elastic effective properties and thus realizing very efficient simulations. In a sandwich structure the most important effective constants of the core are the out-of-plane shear moduli G23 and G13. These particular effective constants can be obtained analytically, numerically or, if available, can be taken from the producer's data sheets. In the last case they are generally obtained experimentally, but only for some particular thicknesses of the cores and sandwich faces. The analytical models usually neglect the curvature radius of the cell walls and the adhesive layer influence by using some additional hypotheses. In this paper a general parameterization of commercial honeycombs is first discussed. Then, neglecting the skin effect and considering the rigid skin effect, the out-of-plane properties of the core are obtained using a finite element analysis of a representative volume element. The numerical results are analyzed by comparing them to the ones given by the existing analytical models and/or experimental data and their advantages and pitfalls are discussed and explained. The results provide new insights into understanding the mechanics of honeycombs.
机译:航空航天工程中蜂窝结构的数值建模过于繁琐且耗时。这些结构的均质化允许获得等效的正交各向异性均质固体及其弹性有效特性,从而实现非常有效的模拟。在夹心结构中,核心最重要的有效常数是面外剪切模量G23和G13。这些特定的有效常数可以通过分析,数字方式获得,或者如果可以的话,可以从生产商的数据表中获取。在最后一种情况下,它们通常是通过实验获得的,但仅针对芯和夹心面的某些特定厚度。分析模型通常通过使用一些其他假设而忽略了细胞壁的曲率半径和粘合剂层的影响。在本文中,首先讨论了商用蜂窝的一般参数化。然后,在忽略集肤效应并考虑刚性集肤效应的情况下,使用代表性体积元素的有限元分析获得了岩心的平面外特性。通过将数值结果与现有分析模型和/或实验数据给出的数值结果进行比较,对数值结果进行了讨论和解释。结果为了解蜂窝力学提供了新的见解。

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