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Low Velocity Impact Analyses of Prismatic Columns using Finite Element Method

机译:利用有限元法测定棱柱柱的低速冲击分析

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This paper presents the study of prismatic columns of different cross sections subjected to low velocity impact, which are commonly used as energy absorber components in vehicles. The impacts of the columns were numerically analyzed using FEM. Four cross sections were considered, i.e. square, hexagonal, octagonal and circular. For each cross section, columns with several combinations of perimeters and thicknesses were analyzed. The results showed that, for columns with equal perimeter and thickness, those with circular cross sections have the highest mean crushing force and those with square cross sections have the lowest crushing forces. Furthermore, keeping all other parameters constant, columns with thicker wall have significantly higher crushing force while columns with longer perimeter have only slightly higher crashing force. This parametric information will be very useful for modern automotive industry in designing front longitudinal members within an acceptable safety level.
机译:本文介绍了对低速撞击的不同横截面的棱柱柱的研究,其通常用作车辆中的能量吸收组件。使用FEM进行数值分析柱的冲击。考虑了四个横截面,即正方形,六边形,八边形和圆形。对于每个横截面,分析了具有几个周长和厚度组合的柱。结果表明,对于具有相等周长和厚度的柱,具有圆形横截面的柱具有最高的平均破碎力,并且具有方形横截面的柱具有最低的破碎力。此外,保持所有其他参数常数,具有较厚壁的柱具有显着更高的破碎力,而具有较长周长的柱子仅具有稍高的碰撞力。该参数信息对于在可接受的安全水平中设计前纵向成员时,现代汽车行业非常有用。

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