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Effect of joint mechanism on vehicle redirectional capability of water-filled road safety barrier systems

机译:共同机制对填充路安全屏障系统的车辆重定向能力的影响

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摘要

Portable water-filled barriers (PWFBs) are roadside appurtenances that prevent vehicles from penetrating into temporary construction zones on roadways. PWFBs are required to satisfy the strict regulations for vehicle re-direction in tests. However, many of the current PWFBs fail to re-direct the vehicle at high speeds due to the inability of the joints to provide appropriate stiffness. The joint mechanism hence plays a crucial role in the performance of a PWFB system at high speed impacts. This paper investigates the desired features of the joint mechanism in a PWFB system that can re-direct vehicles at high speeds, while limiting the lateral displacement to acceptable limits. A rectangular “wall” representative of a 30 m long barrier system was modeled and a novel method of joining adjacent road barriers was introduced through appropriate pin-joint connections. The impact response of the barrier “wall” and the vehicle was obtained and the results show that a rotational stiffness of 3000 kNm/rad at the joints seems to provide the desired features of the PWFB system to re-direct impacting vehicles and restrict the lateral deflection. These research findings will be useful to safety engineers and road barrier designers in developing a new generation of PWFBs for increased road safety.
机译:便携式充分的水屏障(PWFB)是路边垫底,防止车辆穿透到道路上的临时建筑区。 PWFB必须满足测试中车辆重新方向的严格规定。然而,由于关节无法提供适当的刚度,许多当前的PWFB不能以高速重新引导车辆。因此,联合机制在高速冲击下对PWFB系统的性能起到至关重要的作用。本文研究了一种PWFB系统中的接头机构的所需特征,可以在高速上重新直接车辆,同时将横向位移限制为可接受的限制。建模了30米长屏障系统的矩形“墙”代表,并通过适当的销连接引入连接相邻的道路屏障的新方法。获得屏障“壁”和车辆的冲击响应,结果表明,在接头处的3000knm / rad的旋转刚度似乎提供了PWFB系统的所需特征,以重新直接冲击车辆并限制横向偏转。这些研究结果将对安全工程师和道路屏障设计师有用,在开发新一代PWFB以增加道路安全性。

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