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Energy Absorption Capability of Composite Hexagonal Array Systems: Numerical Analysis

机译:复合六边形阵列系统的能量吸收能力:数值分析

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In this paper, in-plane dynamic crushing test of E-Glass hexagonal array systems has been carried out numerically, using LS-DYNA FE software package. Two array systems of woven E-Glass/epoxy hexagonal were studied; single column array system and multi-column array system. The volume of material used in all models was constant. The significant effects of changing arrays' sequences and number of E-Glass layers in the hexagonal cells on the energy absorption capability are investigated. To validate the FEM, a single 45° hexagonal was modelled and crushed in X1 direction; the obtained numerical results were compared with the experimental results in terms of energy absorption capability, deformation modes and load-displacement curves, showing good agreement. Results obtained from single column array system showed that 1×4 array exhibited the higher energy absorption capability, whereas in multi-column array system, 4×3 array had the maximum value of energy absorbing compared to the whole studied models in this paper. As a conclusion, the multi-column array system has a higher energy absorption capability compared to the single column array system.
机译:在本文中,使用LS-DYNA FE软件包,在数值上进行了电子玻璃六边形阵列系统的平面动态破碎试验。研究了两种编织E-玻璃/环氧六边形系统;单列阵列系统和多列阵列系统。所有型号中使用的材料的体积是恒定的。研究了在六边形细胞中改变阵列序列和e-玻璃层数对能量吸收能力的显着影响。为了验证FEM,将单个45°六边形模拟并粉碎X1方向;将获得的数值结果与能量吸收能力,变形模式和负载 - 位移曲线的实验结果进行了比较,显示出良好的一致性。从单柱阵列系统获得的结果表明,1×4阵列表现出较高的能量吸收能力,而在多柱阵列系统中,4×3阵列与本文的整个研究模型相比,能量吸收的最大值。作为结论,与单柱阵列系统相比,多柱阵列系统具有更高的能量吸收能力。

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