首页> 外文期刊>Canadian Journal of Civil Engineering >Development of cost-effective PL-3 concrete bridge barrier reinforced with sand-coated glass fibre reinforced polymer (GFRP) bars: vehicle crash test
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Development of cost-effective PL-3 concrete bridge barrier reinforced with sand-coated glass fibre reinforced polymer (GFRP) bars: vehicle crash test

机译:研制成本效益高的PL-3混凝土桥梁隔离层,采用沙子涂层的玻璃纤维增​​强聚合物(GFRP)钢筋加固:车辆碰撞试验

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摘要

Corrosion of steel reinforcement due to environmental effects is a major cause of deterioration problems in bridge barriers. Glass fibre reinforced polymer (GFRP) bars, as a suitable alternative, addresses the corrosion-related problems of steel reinforcing bars. Recent research work conducted at Ryerson University on PL-3 bridge barrier proposed a cost-effective barrier configuration incorporating high-modulus GFRP bars with headed ends. To qualify the developed barrier configuration for use in bridge construction, a full-scale PL-3 barrier wall of 27.6 m length was constructed to perform vehicle crash testing. The crash test was performed in accordance with MASH Test Level 5 (TL-5). Evaluation criteria for full-scale vehicle crash testing were based on three appraisal areas namely: (i) structural adequacy; (it) occupant risk; and (iii) vehicle trajectory after collision. Crash test results showed that the barrier contained and redirected the vehicle. The vehicle did not penetrate or override the parapet. No detached elements, fragments, or other debris from the barrier were present to penetrate or show potential for penetrating the occupant compartment, or to present undue hazard to others in the area. No occupant compartment deformation occurred. The test vehicle remained upright during and after the collision event. Estimates of the equivalent impact force and associated energy absorbed by the barrier wall due to vehicle impact were deduced.
机译:由于环境影响而造成的钢筋腐蚀是造成桥梁障碍物恶化问题的主要原因。玻璃纤维增​​强聚合物(GFRP)钢筋作为一种合适的替代品,可以解决与钢筋相关的腐蚀相关问题。瑞尔森大学(Ryerson University)最近对PL-3桥式护栏进行的研究工作提出了一种具有成本效益的护栏配置,该结构结合了带头部的高模量GFRP筋。为了使开发的障碍物配置可用于桥梁建设中,建造了长度为27.6 m的全尺寸PL-3障碍墙以进行车辆碰撞测试。碰撞测试是根据MASH测试级别5(TL-5)执行的。全面的车辆碰撞测试的评估标准基于三个评估领域,即:(i)结构是否适当;乘员风险; (iii)碰撞后的车辆轨迹。碰撞测试结果表明,障碍物围住并重定向了车辆。车辆未穿透或越过护栏。没有障碍物的任何分离元素,碎片或其他碎屑穿透或显示出穿透乘员舱的潜力,或对该区域的其他人员造成不必要的危害。没有发生乘员舱变形。在碰撞事件期间和之后,测试车辆保持直立。推导了等效冲击力的估计值以及由于车辆碰撞而被阻挡壁吸收的相关能量。

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