Dynamic Behavior of Discretely Bonded Cross Tube With Functionally Graded Cellular Structure

S. Jenson, E. Ohioma, Muhammad Ali, K. Alam
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Abstract

Thin walled members are commonly used in vehicle’s frontal chassis to provide protection and damage attenuation to the passenger cabin in the case of an impact loading. These structural members undergo progressive deformation under axial loading. The type of deformation mode is critical as it defines the overall configuration of force-displacement curve. There are different types of deformation modes for cross tubes under axial loading. Likewise, the cellular structures exhibit distinct deformation modes under in-plane loading. The work presented here investigates the effects of bonding of cellular core structure on deformation modes of cross tubes under axial loading. The results show that partial, or discrete bonding of cellular core with the tube has significant effect on progressive deformation of tubes and therefore, presents an opportunity to re-configure force-displacement curve for improved protection of automobile structures under impact loading.
具有功能梯度胞状结构的离散键合交叉管的动力特性
薄壁构件通常用于车辆的前底盘,在碰撞载荷的情况下为客舱提供保护和衰减损伤。这些结构构件在轴向载荷作用下发生渐进式变形。变形模式的类型至关重要,因为它定义了力-位移曲线的整体结构。在轴向载荷作用下,交叉管具有不同的变形模式。同样,在面内荷载作用下,胞状结构也表现出不同的变形模式。本文研究了轴向载荷作用下胞芯结构粘结对交叉管变形模式的影响。结果表明,蜂窝芯与管的部分或离散粘结对管的递进变形有显著影响,因此为重新配置力-位移曲线提供了机会,以改善汽车结构在冲击载荷下的保护。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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