首页> 外文会议>International conference on advanced composite materials in bridges and structures >CRASHWORTHINESS OF PL-3 CONCRETE BRIDGE BARRIER REINFORCED WITH SAND-COATED GFRP BARS
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CRASHWORTHINESS OF PL-3 CONCRETE BRIDGE BARRIER REINFORCED WITH SAND-COATED GFRP BARS

机译:用砂涂层GFRP棒加固PL-3混凝土桥屏障的耐火性

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Corrosion of steel reinforcement due to environmental effects is a major cause of deterioration problems in bridge barriers. Glass fibre reinforced polymers (GFRP), not only addresses this durability problem but also provides exceptionally high tensile strength. A recent design work conducted at Ryerson University on PL-3 bridge barrier proposed three different barrier configurations incorporating GFRP bars with headed ends, bent bars and bars with 180° hooks. A PL-3 barrier wall of 27.6 m length was constructed using the proposed first GFRP bar configuration, incorporating bars with headed ends, to perform vehicle crash testing. This paper summarizes the procedure and the results of the vehicle crash test conducted on the developed barrier. The crash test was performed in accordance with MASH Test Level 5 (TL-5), which involves the 36000V tractor trailer impacting the barrier at a nominal speed and angle of 80 km/h and 15° degrees, respectively. 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.
机译:由于环境影响,钢筋的腐蚀是桥梁障碍劣化问题的主要原因。玻璃纤维增​​强聚合物(GFRP),不仅解决了这种耐用性问题,还提供了极高的拉伸强度。最近在雷尔森大学的PL-3桥梁屏障进行了最新的设计工作,提出了三种不同的屏障配置,其中包含带头端的GFRP棒,弯曲条和带180°钩的杆。使用所提出的第一GFRP棒结构构建了27.6μm长度的PL-3阻挡壁,将杆与头端结合在一起,以进行车辆碰撞测试。本文总结了在发达的屏障上进行的车辆碰撞试验的程序和结果。碰撞试验是根据醪纸碎屑测试等级5(TL-5)进行的,这涉及36000V拖拉机拖车,分别以标称速度和80km / h和15°的角度影响屏障。碰撞测试结果表明,屏障包含并重定向车辆。车辆没有渗透或覆盖栏杆。没有从屏障中的分离的元素,碎片或其他碎屑被存在以穿透或显示穿透乘员室的可能性,或者向该地区的其他人呈现过度的危险。没有发生任何乘员室变形。在碰撞事件期间和之后,测试车辆保持直立。

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