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Bidirectional self-locked energy absorbing system: Design and quasi-static compression properties

机译:双向自锁能量吸收系统:设计和准静态压缩特性

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摘要

Thin-walled tubes are widely utilized as energy absorption element. It is necessary to realize the bidirectional self-locked of thin-walled tube system without any constraint under lateral and oblique impact for emergency protection and improving energy absorption. In this study, we designed a novel 3D printed thin-walled tube with variable section achieving rapid assembly of bidirectional self-locked thin-walled system. Comparison among the thin-walled tube with variable section, dumbbell-shaped tube, rectangular-shaped tube and three corresponding systems were conducted with regard to deformation and energy absorption. The typical deformation modes of three kinds of tube and system were obtained by experimental results. Oblique quasi-static compression tests were conducted to validate the bidirectional self-locked effect of system. Geometrical restriction satisfying bidirectional self-locked effect and parametric analysis of presented tube is discussed. It was found that specific energy absorption of the presented thin-walled tube with variable section is superior to these of dumbbell-shaped configuration and rectangular-shaped configuration from both perspectives of tube and system.
机译:薄壁管被广泛用作能量吸收元件。有必要实现薄壁管系统的双向自锁,在侧向和倾斜冲击下不受任何约束,以进行应急保护和提高能量吸收。在这项研究中,我们设计了一种新颖的3D打印薄壁管,该管具有可变截面,可以实现双向自锁薄壁系统的快速组装。对变截面薄壁管,哑铃形管,矩形管和三个相应的系统进行了变形和能量吸收的比较。通过实验得到了三种管和系统的典型变形模式。进行了斜准静态压缩试验,以验证系统的双向自锁效果。讨论了满足双向自锁效应的几何约束以及所提出的管的参数分析。发现从管和系统的角度来看,所提出的具有可变截面的薄壁管的比能量吸收均优于哑铃形构造和矩形构造。

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