首页> 外文期刊>International Journal of Crashworthiness >Long-span semi-rigid cable barriers designed for high-impact severity satisfying the small car impact speed of 160km/h
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Long-span semi-rigid cable barriers designed for high-impact severity satisfying the small car impact speed of 160km/h

机译:长跨度半刚性电缆屏障专为高冲击严重程度而满足160km / h的小型车冲击速度

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This study attempts to develop a semi-rigid barrier that produces a dynamic lateral displacement of approximately 0.8 m for the large vehicle impact energy of 261.4 kJ (14-ton truck - 85 km/h - 15 degrees) and satisfies the small car impact condition of 1.3 tons - 160 km/h - 20 degrees. Through extensive finite element analyses for various alternatives, it was investigated that a cable barrier could play a role of a semi-rigid barrier and satisfied the target performance when it, into which the initial pre-stressed force of 1900 kN was introduced, employed strong posts with a post spacing of 60 m. The occupant safety of this semi-rigid cable barrier is improved when the post spacing is increased but the initial pre-stressed force of the cables and cable anchor systems had to be increased to maintain the same working width. Due to the flexible characteristics of cable barriers with long spans, the semi-rigid cable barrier showed a possibility that it could accommodate small car impact velocities higher than 160 km/h. However, the semi-rigid cable barrier also revealed a vulnerability for large vehicle impacts as its bottom rail might rotate if the installation height was not enough to accommodate the deflection of cables. The final design of the long-span strong-post semi-rigid cable barrier was verified through full-scale vehicle crash tests.
机译:该研究试图开发半刚性屏障,为大型车辆冲击能量为261.4 kJ(14吨卡车 - 85 km / h-15度),产生约0.8米的动态横向位移,满足小型汽车冲击条件1.3吨 - 160公里/小时 - 20度。通过广泛的有限元分析各种替代方案,研究了电缆屏障可以发挥半刚性屏障的作用,并在引入1900 kn的初始预应力时满足目标性能,所用的柱子间距为60米。当柱间距增加但是电缆和电缆锚固系统的初始预应力时,该半刚性电缆屏障的乘员安全性得到改善,以保持相同的工作宽度。由于长跨度的电缆屏障的灵活特性,半刚性电缆屏障显示出可容纳高于160 km / h的小型车冲击速度。然而,半刚性电缆屏障还显示出大型车辆冲击的脆弱性,因为如果安装高度不足以容纳电缆的偏转,则底部导轨可能旋转。通过全尺寸车辆碰撞测试验证了长期强跨度半刚性电缆屏障的最终设计。

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