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Design and Analysis of Impact Attenuator for a Formula Student Car: A Study between Singular and Bi-tubular Tubes of Varying Geometries

机译:公式学生车冲击衰减器的设计与分析:不同几何形状和双管状管的研究

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The viability of thin-walled energy absorbers as impact attenuators for Formula Student car was examined in this study, specifically the crashworthiriess of singular and bi-tubular tubes of varying geometries. 12 designs were lumped into 4 groups, consisting of 3 singular tubes and 9 bi-tubular tubes of varying shapes and dimensions, and they were axially crush-simulated in LS-DYNA. The tubes were set to 50mm long and made of aluminium 6061-T6. The LS-DYNA settings were validated using published experimental data of similar studies. The singular tubes were found to have the highest values of specific energy absorption (SEA), with the singular hexagonal tube design recording the highest value of SEA compared to the other designs. It was also observed that square-shaped geometries were the best in absorbing energy, especially a bi-tubular tube with outer and inner square geometries.
机译:在本研究中检测了薄壁能量吸收剂作为公式学生轿车的影响衰减器的可行性,特别是奇异和双管状管的崩溃,不同的几何形状。 12个设计被簇被占4组,由3个奇异管和9个不同形状和尺寸的双管状管组成,它们在LS-DYNA中轴向挤压模拟。管设定为50mm长,由铝制6061-t6制成。使用具有类似研究的公开的实验数据来验证LS-DYNA设置。发现奇异管具有特定能量吸收(海)的最高值,与其他设计相比,奇异的六边形管设计记录了最高值。还观察到,方形几何形状是最佳的吸收能量,尤其是具有外部和内部平方几何形状的双管状管。

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