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Safety enhancement of water-filled road safety barrier using interaction of composite materials

机译:通过复合材料的相互作用增强充水道路安全屏障的安全性

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摘要

Road safety barriers are used to redirect traffic at roadside work-zones. When filled with water, these barriers are able to withstand low to moderate impact speeds up to 50kmh-1. Despite this feature, Portable Water-filled barriers (PWFB) face challenges such as large lateral displacements, tearing and breakage during impact; especially at higher speeds. This study explores the use of composite action to enhance the crashworthiness of PWFBs and enable their usage at higher speeds. Initially, energy absorption capability of water in PWFB is investigated. Then, composite action of the PWFB with the introduction of steel frame is considered to evaluate its enhanced impact performance. Findings of the study show that the initial height of the impact must be lower than the free surface level of water in a PWFB in order for the water to provide significant crash energy absorption. In general, an impact of a road barrier with 80% filled is a good estimation. Furthermore, the addition of a composite structure greatly reduces the probability of tearing by decreasing the strain and impact energy transferred to the shell container. This allows the water to remain longer in the barrier to absorb energy via inertial displacements and sloshing response. Information from this research will aid in the design of new generation roadside safety structures aimed to increase safety in modern roadways.
机译:道路安全屏障用于重定向路边工作区的交通。当装满水时,这些障碍物能够承受低至中等的撞击速度,最高可达50kmh-1。尽管具有此功能,便携式注水式屏障(PWFB)仍面临挑战,例如较大的侧向位移,冲击过程中的撕裂和破损。特别是在更高速度下。这项研究探索了使用复合动作来增强PWFB的耐撞性,并使其能够以更高的速度使用。最初,研究了PWFB中水的能量吸收能力。然后,考虑了PWFB与钢框架的复合作用,以评估其增强的冲击性能。研究结果表明,撞击的初始高度必须低于PWFB中水的自由表面水平,以使水吸收大量的碰撞能量。通常,填充80%的路障的影响是一个很好的估计。此外,复合结构的添加通过减小传递到壳容器的应变和冲击能而大大降低了撕裂的可能性。这允许水在屏障中停留的时间更长,以通过惯性位移和晃动响应吸收能量。这项研究提供的信息将有助于设计旨在提高现代道路安全性的新一代路边安全结构。

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