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Controlling energy absorption capacity of combined bitubular tubes under axial loading

机译:控制轴向载荷下组合式肘管的能量吸收能力

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The purpose of this study was to investigate the effect of geometry on the energy absorption of aluminum tubes with different cross-section and the effect of combined bitubular tubes to absorb more energy under axial crushing. In the experimental part, aluminum tubes with circular and square cross-section were prepared and then the quasi-static tests with static loading rate were performed and the load-deflection diagrams in each test were obtained. A numerical model is proposed based on finite element analysis to simulate the collapse process considering the non-linear responses due to material behavior, contact and large deformation. The comparison of numerical and experimental results showed that the present model provides an appropriate procedure to determine the collapse mechanism, crushing load and the amount of energy absorption. The validated finite element model was then used for the parametric studies, in order to determine the effect of the geometry factors such as combined substitution of bitubular tubes, multi-cell reinforced and fiat end-capped on the energy absorption. The primary outcome of the study is new research information which will facilitate the design of thin walled tubes as energy absorbers in crushing applications.
机译:这项研究的目的是研究几何形状对不同横截面的铝管能量吸收的影响,以及组合式管状管在轴向破碎下吸收更多能量的影响。在实验部分,准备了具有圆形和正方形横截面的铝管,然后进行了具有静态载荷率的准静态试验,并获得了每个试验中的载荷-挠度图。提出了基于有限元分析的数值模型,以考虑材料行为,接触和大变形引起的非线性响应来模拟倒塌过程。数值和实验结果的比较表明,该模型提供了确定塌陷机理,破碎载荷和能量吸收量的适当程序。然后,将经过验证的有限元模型用于参数研究,以确定几何因素的影响,如组合替代小管,多单元增强和扁平端盖对能量吸收的影响。研究的主要结果是新的研究信息,这将有助于设计薄壁管作为破碎应用中的能量吸收器。

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