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NUMERICAL IMPACT ANALYSIS OF FOLDING-INDUCED TUBULAR THIN-WALLED ENERGY-DISSIPATING ELEMENTS

机译:折叠诱导的管状薄壁能量散热元件的数值影响分析

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This paper deals with the numerical impact analysis of tubular thin-walled steel-made elements with induced folding for energy dissipation application. The excellent deceleration of the impacting mass of axial collapsing structures favors their use in energy dissipation applications, such as impact resistance and rockfall protection. Dynamic Finite Element analyses have been carried out to evaluate the performance of vertical assemblies of cold-formed steel cell-shaped elements welded on each other to form collapsible tubular elements. In turn, these have been gathered in groups and restrained by galvanized steel wires to create modules. The axial collapse, which is the most effective energy absorption mechanism, has been triggered by shaping the elements' edge as serpentine. In the analysis, several assembly configurations have been subjected to a freefall rhombicuboctahedron-shaped rigid block impact; Falling height, impact angle, and block mass have been varied to investigate their effect on the performance. The numerical results show a good agreement when compared to those obtained through a real-scale experiment.
机译:本文涉及管状薄壁钢制元件的数值冲击分析,具有诱导折叠的能量耗散应用。轴向塌陷结构的撞击质量的优异减速优化了它们在能量耗散应用中的使用,例如抗冲击性和岩石保护。已经进行了动态有限元分析,以评估彼此焊接的冷成型钢电池形元件的垂直组件的性能以形成可折叠的管状元件。反过来,这些已经聚集在一体并被镀锌钢丝克制以创建模块。作为最有效的能量吸收机制,轴向塌陷通过将元素的边缘塑造为蛇纹石而被触发。在分析中,几个组装配置已经受到自由落体菱形橡胶形状的刚性块冲击;落下的高度,冲击角度和块质量已经变化,以研究它们对性能的影响。与通过实际实验获得的人相比,数值结果显示了良好的一致性。

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