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Lightweight Structure Characterisation of Thin-walled Column Subjected to Biaxial Loadings

机译:双向作用下薄壁柱的轻量化结构表征

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Lightweight structure such as thin-walled column is adapted in electric vehicle as an energy absorber. It is also used to reduce the weight of the vehicle so it can reduce the energy consumption. Most researches focus on uniaxial loading whereas, in practice, biaxial loading is likely to occur. Researches also show that a multi-cell column performs better in crashworthiness compared to conventional or single-cell column. This research aims to conduct numerical simulations of the multi-cell thin-walled column subjected to biaxial loadings. Numerical simulations have been done to five different cross- section aluminium square columns: single-cell (V0H0); multi- cell with one vertical plate (V1H0); multi-cell with two vertical plates (V2H0); multi-cell with one vertical and one horizontal plates (V1H1); and multi-cell with two vertical and one horizontal plates (V2H1). V2H1 column performs high specific energy absorption when it is subjected to fully axial and axial- dominant loadings. It absorbs up to 69.07% more than single- cell column does. On the other hand, V2H0 column performs high specific energy absorption when it is subjected to fully bending and bending-dominant loadings. It absorbs up to 99.56% more than single-cell column does.
机译:诸如薄壁柱的轻质结构在电动车辆中适于用作能量吸收器。它还可用于减轻车辆的重量,因此可以减少能耗。大多数研究集中在单轴载荷上,而在实践中,可能会发生双轴载荷。研究还表明,与常规或单池色谱柱相比,多池色谱柱的耐撞性更好。这项研究旨在对承受双轴载荷的多单元薄壁柱进行数值模拟。已经对五种不同横截面的铝方柱进行了数值模拟:具有一个垂直板的多单元电池(V1H0);具有两个垂直板的多单元电池(V2H0);具有一个垂直板和一个水平板的多单元电池(V1H1);以及带有两个垂直板和一个水平板的多单元电池(V2H1)。 V2H1色谱柱在承受完全轴向和轴向主导载荷时会表现出较高的比能量吸收。它比单细胞柱吸收的吸收高达69.07%。另一方面,V2H0色谱柱在完全弯曲和弯曲为主的载荷下会吸收较高的比能量。它比单细胞柱吸收的吸收高达99.56%。

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