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首页> 外文期刊>Journal of the Brazilian Society of Mechanical Sciences and Engineering >Axial crushing of perforated metal and composite-metal tubes
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Axial crushing of perforated metal and composite-metal tubes

机译:穿孔金属管和复合金属管的轴向破碎

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摘要

This article presents experimental and numerical study of intact and perforated metal and composite-metal tubes under axial compression loading. The metal specimens were prepared by cutting commercial circular tubes into desired lengths. To build the composite-metal specimens, the aluminum tubes were wrapped with fiber-reinforced composite (woven E-glass fiber and vinyl ester resin) using hand layup technique. Some circular cutouts with different diameters were drilled in the mid-height of perforated specimens. The samples were axially compressed between two rigid platens under quasi-static condition using Zwick universal testing machine. The effects of number and diameter of holes on some key parameters of energy absorbers such as peak load, specific absorbed energy and crush force efficiency are investigated. Comparing results of perforated tubes with intact specimens shows that number and diameter of holes have great effects on mentioned parameters. Numerical simulation of perforated metal tubes is performed by finite element method using Abaqus/Explicit software package, and the results show good correlation between experimental and numerical methods in the most investigated cases.
机译:本文对完整和穿孔金属管和复合金属管在轴向压缩载荷作用下的实验和数值研究进行了研究。金属试样是通过将商业圆管切割成所需长度来制备的。为了构建复合金属试样,铝管采用手工铺层技术用纤维增强复合材料(编织的E-玻璃纤维和乙烯基酯树脂)包裹。在穿孔试样的中高处钻出一些不同直径的圆形切口。使用Zwick万能试验机在准静态条件下,将样品轴向压缩在两个刚性压板之间。研究了孔的数量和直径对能量吸收器峰值负荷、比吸收能量和抗压力效率等关键参数的影响。将穿孔管与完整试样的结果进行比较表明,孔的数量和直径对上述参数有很大影响。采用Abaqus/Explicit软件包采用有限元方法对穿孔金属管进行了数值模拟,结果表明,在研究较多的工况中,实验方法与数值方法具有较好的相关性。

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