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首页> 外文期刊>Journal of Materials Engineering and Performance >Experimental Analysis of the Crushing of Honeycomb Cores Under Compression
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Experimental Analysis of the Crushing of Honeycomb Cores Under Compression

机译:压缩下蜂窝核心粉碎的实验分析

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This paper presents an experimental study of the compressive response of hexagonal honeycomb core from the initial elastic regime to a fully crushed state. To understand the crushing mechanism, aluminum honeycomb core was compressed quasi-statically between rigid platens under displacement control. Honeycomb test specimens made of aluminum alloy with different configurations such as cell size, cell number, core density, and specimen size have been tested. During the crushing, the cells buckle elastically and collapse at a higher stress due to inelastic action, after the cells crush by progressive formation of folds on cell walls. The response densifies when folds consume the whole panel height. The peak load recorded during tests corresponded to the buckling of honeycomb cells. The different specimens showed similar load/displacement curves, and the differences observed were only due to the influence of the core density, number of cells, and specimens size on mechanical behavior of hexagonal honeycomb core which has a very important role in the energy absorption capacity. In addition, this study allowed us to build a database of experimental tests for various configurations and allowed us to know the precise energy absorption capacity.
机译:本文介绍了六角形蜂窝芯从初始弹性方格到完全压碎状态的抗压响应的实验研究。为了了解破碎机构,铝蜂窝芯在位移控制下刚性压板之间被压缩了准静态。已经测试了由具有不同配置的铝合金制成的蜂窝状测试标本,例如细胞尺寸,细胞数,核心密度和样本尺寸。在破碎期间,在细胞在细胞壁上逐渐形成折叠后,细胞引起的压力下弹性和坍塌,并且在细胞压碎之后。折叠消耗整个面板高度时响应致密。在测试期间记录的峰值负荷对应于蜂窝细胞的屈曲。不同的样本显示出类似的载荷/位移曲线,观察到的差异仅是由于核心密度,细胞数量和标本尺寸对六边形蜂窝核心的力学行为的影响,这在能量吸收能力中具有非常重要的作用。此外,本研究允许我们为各种配置构建实验测试数据库,并使我们能够了解精确的能量吸收能力。

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