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An efficient energy absorber based on fourfold-tube nested circular tube system

机译:基于四管嵌套圆管系统的高效吸能器

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In order to develop an efficient energy absorption structure for protecting equipment against impact and blast shock, this research proposes a fourfold-tube system (FT) consisting of four tubes. Its performance was analyzed experimentally (quasi-static test) and numerical simulation with FE (finite element) models. The deformation mode of the FT system was described in detail by simulation and experiment. With the collapse of the outer tube, the upper inner tubes were pushed towards both sides of the lower inner tube, then three inner tubes are side-by side in the outer tube and all the tubes were collapsed simultaneously, therefore the stress transmits to the protected structure to be distributed more evenly. As a consequence, the protection capability of the nested tube system is improved by enhancing energy absorption capacity and the robustness of deformation mode. The performance of FT system was compared with that of the triple-tube system (TT) and single-tube system (ST), both the experimental result and simulation results show that the FT system can provide the most stable deformed mode and the highest energy absorption efficiency. For mild-steel nested tube systems, the energy absorbed by the FT system is larger than that of the TT system by 30%, so the defense ability of the FT system is better than the IT system. The deformation mode of the FT system under dynamic load tested experimentally, the results prove that the nested system can works as expected at high strain rates. Finally, the FT system was tested with two type of dynamic loading conditions, impact and blast shock. The results demonstrate that the FT system can provide the most efficient impact force reduction and blast mitigation in protecting the structures from damage under impact and shock wave from the explosion.
机译:为了开发一种有效的能量吸收结构来保护设备免受冲击和爆炸冲击,本研究提出了一种由四根管组成的四管系统(FT)。对它的性能进行了实验分析(准静态测试),并使用有限元(FE)模型进行了数值模拟。通过仿真和实验详细描述了FT系统的变形模式。随着外管的塌陷,上内管被推向下内管的两侧,然后三个内管并排在外管中,所有管同时塌陷,因此应力传递到外管。受保护的结构可以更均匀地分布。结果,通过增强能量吸收能力和变形模式的鲁棒性来改善嵌套管系统的保护能力。将FT系统的性能与三管系统(TT)和单管系统(ST)进行了比较,实验结果和仿真结果均表明FT系统可提供最稳定的变形模式和最高的能量吸收效率。对于低碳钢嵌套管系统,FT系统吸收的能量比TT系统吸收的能量大30%,因此FT系统的防御能力优于IT系统。 FT系统在动态载荷下的变形模式进行了实验测试,结果证明该嵌套系统可以在高应变率下按预期工作。最后,FT系统在两种动态载荷条件下进行了测试,即冲击和爆炸冲击。结果表明,FT系统可以提供最有效的冲击力降低和爆炸缓解,从而保护结构免受冲击和爆炸冲击波的破坏。

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