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Experimental and Theoretical Investigation of Combined Expansion Tube-Axial Splitting as Impact Energy Absorbers

机译:混合膨胀管轴向分裂作为冲击能量吸收剂的实验与理论研究

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In this study, the combination of an expansion tube and a deformable rigid tube with axial splitting is developed as a new mechanism for use as an impact energy absorber. The impact absorbing structure consists of two circular tube forming dies, with each die allowing the tube to expand and to split. The latter is used to remove away radially the debris after expansion and splitting, so that the absorption process can continue without being obstructed by the debris itself. This paper presents the experimental and theoretical investigation of the combined expansion tube-axial splitting as an impact energy absorber. The experiment by the laboratory scale impact testing has been done with a variation of the parameters such as pipe thickness (t), angle of splitter (alpha), comparison of dies upgrading diameter (D-2) and inner pipe diameter (D-1) (D-2/D-1). The theoretical investigation is carried out with a literature study related to the mechanics of material and theoretical studies from previous research studies. The final result of this paper, i.e. a new formula proposed to calculate the mean load, is reflective of the study of a combined expansion tube with axial splitting. The difference between the results of analytical calculation and experiments is 10.13%.
机译:在该研究中,膨胀管和可变形刚性管具有轴向分裂的组合作为用作冲击能量吸收器的新机构。冲击吸收结构由两个圆形管成型模具组成,每个模具允许管膨胀并分裂。后者用于在膨胀和分裂后径向地移除碎屑,使得吸收过程可以继续不被碎片本身阻塞。本文介绍了膨胀管轴分裂作为冲击能量吸收器的实验和理论研究。实验室尺度的影响测试已经采用了诸如管厚度(T),分离器(α)的参数的变化来完成,模具升级直径(D-2)和内管直径(D-1)的比较(D-1 )(D-2 / D-1)。理论调查是通过与先前研究研究的材料机制和理论研究有关的文学研究进行的。本文的最终结果,即建议计算平均载荷的新配方,反映了具有轴向分裂的组合膨胀管的研究。分析计算结果与实验结果之间的差异为10.13%。

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