Influence of soils upon the impact effects of a truck on the W-beam guard rail
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摘要: 公路上正常行駛的車輛一旦操縱失控,安裝在路側的護欄就顯得極為重要,可避免車輛直接沖出道路發生致命危險.波形梁護欄是最常見的一種被動防護裝置,可有效抵御車輛施加的碰撞荷載.依據常規的設計思路,這種護欄可以利用波形梁板、防阻塊和立柱的變形來吸收汽車碰撞所產生的能量.但與實際情況不同的是,在這一過程中忽略了地基土體對碰撞過程可能產生的影響.本文通過分別建立不考慮和考慮地基約束作用的碰撞計算模型來研究土體的貢獻.在模擬過程中,分別觀測貨車的運行軌跡、護欄的變形和土體的變形.此外,也分析了不同部件對碰撞能量的吸收比率.與立柱接觸區毗鄰的土體因受沖擊荷載影響,可能發生剪切失效.整個護欄系統中超過10%的系統能量實際上是由土體吸收的,常用的簡化固定基模型跟實際情況有一定的出入.Abstract: Once a driver loses control of an operating vehicle on the highway,the guard rail installed as a protection will be important to eliminate the risk of fatal accidents during offroad crashes and collisions with hazardous roadside objects. The W-beam guard rail is one of the widely used passive safety devices designed to absorb loads applied by impacting vehicles. It can absorb the impact energy from large vehicles through the deformation of beams,blockouts and posts according to the traditional design method. However,contributions from the soils which the posts are rammed into are neglected. To this purpose,two computing models with and without soil bodies were considered,respectively. The trajectory of the truck,the deformation of the guard rail and the soil were observed during crash simulations. Moreover,the energy-absorbed ratios of different components in the guard rail system were also analyzed. A comparison between the two models indicates that the soil bodies adjacent to the post beneath the ground may become instable under shock loading,and more than 10% of the total impact energy is dissipated by the soil bodies. Consequently,the general fixed-base model cannot describe the real situation accurately enough.
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Key words:
- vehicles /
- guard rails /
- soils /
- impact analysis
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