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Quasi-static axial compression behavior of constraint hexagonal and square-packed empty and aluminum foam-filled aluminum multi-tubes

机译:约束六角形和方形填充的空铝泡沫填充铝多管的准静态轴向压缩行为

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摘要

The axial crushing behavior of empty and Al close-cell foam-filled single Al tubes and Al multi-tube designs (hexagonal and square) were investigated through quasi-static compression testing. The effects of foam filling on the deformation mode and the crushing and average crushing loads of single tubes and multi-tube designs were determined. The foam filling was found to shift the deformation mode of empty single tube and empty multi-tube designs from diamond into concertina. In multi-tube designs the constraint effects and the frictional forces were found to increase the average crushing loads over those of single tubes. It was also found that foam filling induced a higher strengthening coefficient in multi-tube than single tubes. Although foam filling increased the energy absorption in single tubes and multi-tube designs, it was not effective in increasing the specific absorbed energy over that of the empty tubes. However, multi-tube designs were found to be energetically more effective than single tubes at similar foam-filler densities, proving a higher interaction effect in multi-tube designs.
机译:通过准静态压缩试验研究了空的和密闭的泡沫铝填充单根铝管和铝多管设计(六角形和正方形)的轴向破碎行为。确定了泡沫填充对变形模式以及单管和多管设计的破碎和平均破碎载荷的影响。发现泡沫填充物使空的单管和空的多管设计的变形模式从金刚石转变为六角形。在多管设计中,发现约束效应和摩擦力比单管增加了平均破碎载荷。还发现,泡沫填充在多管中引起的增强系数高于单管。尽管泡沫填充增加了单管和多管设计中的能量吸收,但与空管相比,它无法有效地提高比吸收能量。但是,在类似的泡沫填充密度下,发现多管设计在能量上比单管更有效,证明了多管设计中的相互作用效果更高。

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