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Bending collapse of dual rectangle thin-walled tubes for conceptual design

机译:双矩形薄壁管的弯曲塌陷,用于概念设计

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In engineering, the bending deformations of thin-walled tubes mostly are under three-point loading. However, for the dual rectangle thin-walled tube (DRTWT), the theoretical prediction of the three-point bending collapse is still an unsolved problem. In this paper, the three-point bending collapse of the DRTWT is innovatively investigated using theoretical prediction and experimental verification. The global energy equilibrium theory is applied to derive the bending characteristic of the DRTWT. It is assumed that all the bending energy is absorbed and distributed along the hinge lines and in the toroidal surfaces during the bending collapse. The analytical results show good agreement with the experimental results. Finally, a simplified bumper structure of automobile is created by using beam elements and spring elements with the derived bending characteristics, which can effectively replace the detailed finite element model (FEM) to accelerate the crashworthiness design of automotive structure at the conceptual design stage.
机译:在工程中,薄壁管的弯曲变形大多在三点载荷下。但是,对于双矩形薄壁管(DRTWT),三点弯曲塌陷的理论预测仍然是一个尚未解决的问题。本文利用理论预测和实验验证对DRTWT的三点弯曲坍塌进行了创新研究。运用全局能量平衡理论推导了DRTWT的弯曲特性。假定在弯曲塌陷期间,所有弯曲能量都沿铰链线吸收并分布在环形表面中。分析结果与实验结果吻合良好。最终,利用具有导出弯曲特性的梁单元和弹簧单元创建了简化的汽车保险杠结构,可以在概念设计阶段有效地替代详细的有限元模型(FEM),以加速汽车结构的耐撞性设计。

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