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Numerical study of open-top truncated pyramid folded structures with interconnected side walls against flatwise crushing

机译:侧壁相互连通的平顶开顶截棱锥折叠结构的数值研究

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In this study, new types of folded structures with different base shapes (i.e. triangle, square and pentagon) are proposed. Each structure is folded from a thin sheet of aluminium, with the geometry of open-top truncated pyramid and connected inclination sidewalls. The purpose of this unique geometry is to increase the crushing resistance of the folded structure while maintaining a uniform collapsing behaviour under different crushing rates as compared with other existing folded kirigami structures. Three base shapes, i.e. triangle, square and pentagon, are considered in this study. Geometric parameters are derived for these structures based on three governing parameters: top and bottom edge length and cell height. Numerical models of these structures are firstly calibrated with quasi-static crushing test data followed by dynamic crushing simulations. To evaluate the crushing performances, structural responses including peak and average crushing stress, uniformity ratio and densification strain are compared among these three structures and also with the widely studied Miura-origami structure of the same density. Superior performances of crushing are observed for the proposed open-top truncated pyramid structure with higher average stress and more uniform collapsing under various loading rates, indicating potential application as energy absorber.
机译:在这项研究中,提出了具有不同基本形状(即三角形,正方形和五边形)的新型折叠结构。每个结构均由铝薄板折叠而成,其几何形状为开顶截棱锥和相连的倾斜侧壁。与其他现有的折叠式折纸结构相比,这种独特的几何形状的目的是增加折叠结构的抗压性,同时在不同的压碎率下保持均匀的塌陷性能。本研究考虑了三种基本形状,即三角形,正方形和五边形。这些结构的几何参数是根据三个控制参数得出的:顶部和底部边缘长度以及像元高度。首先用准静态破碎测试数据校准这些结构的数值模型,然后再进行动态破碎模拟。为了评估破碎性能,比较了这三种结构的峰值和平均破碎应力,均匀度比和致密化应变等结构响应,并与广泛研究的相同密度的Miura-origami结构进行了比较。所提出的开顶截头棱锥结构在各种载荷率下具有较高的平均应力和更均匀的塌陷,观察到其优异的破碎性能,表明其潜在的用途是吸收能量。

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