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A Numerical Analysis of Empty and Foam-filled Aluminium Conical Tubes Under Oblique Impact Loading

机译:倾斜冲击载荷下空泡沫铝圆锥管的数值分析

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In real impact applications, an energy absorber rarely sustains dynamic loading either axial or oblique but a combination of both. Established studies have proved that thin-walled tube is an excellent energy absorber under dynamic loading. Furthermore, the introduction of foam filling successfully enhanced the energy absorption capacity of thin-walled tube. However, the understanding of its response under oblique loading has yet been fully explored. Moreover, emerging in automotive industry has lead to increase interests on lightweight materials such as aluminium alloy. As such, this paper presents the crushing behaviour of empty and foam-filled aluminium alloy (AA6061-T6) conical tubes under oblique impact loading using a validated nonlinear finite element (FE) code, LS-DYNA. The study aims to assess the effect of foam filling on the energy absorption of AA6061-T6 tubes for variations in filler density. In fact, to the best of our knowledge, this study is the first attempt to evaluate a response of empty and foam-filled aluminum conical tube by using an experimentally validated model under oblique dynamic loading conditions. Good correlations between the numerical and experimental results were observed. The study show that initial peak force and the energy absorption increase with increasing filler density under axial and oblique loading. On the other hand, the effect of foam filling (0.534 g/cm~3 aluminium foam filler) is less pronounced for the initial peak force under axial impact loading. Furthermore, the initial peak force and dynamic force of empty and foam-filled AA6061-T6 conical tubes decrease as the load angle increases from 0 deg to 20 deg hence reduces the energy absorption capacity.
机译:在实际影响应用中,能量吸收器很少维持动态加载,无论是轴向还是斜,而是两者的组合。已建立的研究证明,薄壁管是动态载荷下的优良能量吸收器。此外,泡沫填充的引入成功增强了薄壁管的能量吸收能力。但是,对倾斜负荷响应的理解尚未得到充分探索。此外,汽车工业中的出现导致铝合金等轻质材料的利益增加。因此,本文使用验证的非线性有限元(FE)代码,LS-DYNA呈现倾斜冲击载荷下的空和泡沫填充铝合金(AA6061-T6)锥形管的破碎行为。该研究旨在评估泡沫填充对AA6061-T6管的能量吸收的影响,用于填充密度的变化。事实上,据我们所知,本研究首次尝试通过在倾斜动态负载条件下使用实验验证的模型来评估空和泡沫填充的铝锥管的响应。观察到数值和实验结果之间的良好相关性。该研究表明,初始峰值力和能量吸收随着轴向和倾斜载荷的增加而增加。另一方面,泡沫填充的效果(0.534g / cm〜3铝泡沫填料)对于轴向冲击载荷下的初始峰值力不太明显。此外,随着载荷角从0°增加到20 deg来降低能量吸收能力,初始峰值力和动态力随着载荷角的增加而降低。

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