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Dynamic and quasi-static bending behaviour of thin-walled aluminium tubes filled with aluminium foam

机译:泡沫铝填充的薄壁铝管的动态和准静态弯曲行为

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摘要

This paper aims to evaluate the potential use of closed-cell aluminium alloy integral-skin foams as stiffening elements for aluminium alloy thin-walled structures that are main basic components in the concept and design of automotive body parts. Foam specimens were prepared using the powder metallurgical route, inserted into empty thin-walled tubes and subjected to quasi-static and dynamic bending loading conditions. The effect of introducing foam into tubes was evaluated using the infrared thermography during the three-point bending tests. The foam-filled tubes, empty tubes and foams are compared in terms of the maximum load carrying capacity, crash energy absorption, specific energy absorption and deformation modes. Results showed that the foam filling leads due to interaction between the tube wall and foam filler, causing an increased bending response of the filled tubes which exceeds the sum of the bending response for the individual components. Their deformation mode is a combination between the modes of the individual components.
机译:本文旨在评估闭孔铝合金整体表皮泡沫作为铝合金薄壁结构的加强元件的潜在用途,这些薄壁结构是汽车车身零件概念和设计中的主要基本组件。使用粉末冶金路线制备泡沫样品,将其插入空的薄壁管中,并经受准静态和动态弯曲载荷条件。在三点弯曲测试期间,使用红外热像仪评估了将泡沫引入管中的效果。比较了泡沫填充管,空管和泡沫的最大承载能力,碰撞能量吸收,比能量吸收和变形模式。结果表明,泡沫填充是由于管壁和泡沫填充物之间的相互作用导致的,从而导致填充管的弯曲响应增加,超过了各个组件的弯曲响应总和。它们的变形模式是各个组件的模式之间的组合。

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