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Evaluation of Crashworthiness Parameters of Metallic Tubes with Multiple Inner Step Tubes Arrangements

机译:具有多个内阶梯管布置的金属管的耐撞性参数评估

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Response during energy absorption of a tube system is the key for its application in structures under dynamic loading. An ideal energy absorber should behave with a low peak force, high mean crushing force and with a smooth force displacement curve while under dynamic loading. In this particular study, a bunch of metallic 3-step stepped-tubes with ascending number of stepped-tubes in different configurations are placed inside a metallic thin-walled tube and are numerically investigated for its energy absorption characteristics under dynamic axial loads. Stepped-tubes can absorb energy with progressive failure as per specific need of the design but their geometry parameters influence their performance. One of the initial proposed configurations with five stepped-tubes arrangement is further investigated for changing geometry of stepped-tube and sensitivity of energy absorption characteristics with changed geometry are studied. Deformation modes and different energy absorption parameters such as peak value of crushing force, specific energy absorption, mean crushing force and crush force efficiency are plotted for all of the configurations. Results are compared with published numerical and experimental results for the impact of the proposed configurations on energy absorption capability.
机译:管系统能量吸收过程中的响应是其在动态载荷下应用到结构中的关键。理想的能量吸收器在动态载荷下应具有较低的峰值力,较高的平均压紧力和平滑的力位移曲线。在此特定研究中,将一束具有不同配置的递增数量的阶梯管的金属3阶梯管放置在金属薄壁管内部,并对其在动态轴向载荷下的能量吸收特性进行了数值研究。阶梯管可以根据设计的特定需求吸收能量,并伴随渐进式失效,但是其几何参数会影响其性能。为了改变阶梯管的几何形状,进一步研究了最初提出的具有五个阶梯管布置的配置之一,并且研究了随着几何形状改变而引起的能量吸收特性的灵敏度。绘制了所有配置的变形模式和不同的能量吸收参数,例如破碎力的峰值,比能量吸收,平均破碎力和破碎力效率。将结果与已发布的数值和实验结果进行比较,以了解拟议配置对能量吸收能力的影响。

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