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Development and structural testing of a composite-reinforced timber highway guardrail

机译:复合材料加强型木材高速公路护栏的开发和结构测试

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摘要

Various government agencies install timber guardrails on scenic highways and roads in lieu of conventional steel guardrails for aesthetic reasons. Most acceptable timber guardrails rely on a continuous steel backing member to carry the large tensile forces caused by vehicle impact and transfer load to the posts. However, these guardrails are relatively expensive and heavy due to their use of large, solid-sawn timber sections. This study focuses on the development and structural testing of a novel timber guardrail that consists of a hardwood glued-laminated member strengthened with a fiber-reinforced polymer (FRP). The FRP acts in place of steel to carry the impact-induced tension and the guardrail is significantly shallower and lighter than conventional timber guardrails. This paper details the analysis of the guardrail response under vehicle impact, the development and testing of a unique and easily installed rail-to-rail field splice connection capable of carrying the tensile forces caused by vehicle impact, and the evaluation of guardrail durability in exterior conditions. In addition, the structural performance of the guardrail was assessed using experiments that produced the simultaneous tension and flexure forces expected during vehicle impact using a single hydraulic actuator and a three-point bending test apparatus. Based on the development and testing documented in this paper, the FRP-reinforced timber guardrail is expected to be capable of passing required vehicle crash tests.
机译:出于美学原因,各种政府机构在风景优美的高速公路和道路上安装了木材护栏,以代替传统的钢制护栏。大多数可接受的木材护栏均依靠连续的钢质支撑构件来承受车辆撞击和传递载荷至立柱所产生的较大拉力。但是,这些护栏由于使用了较大的实心锯材,因而相对昂贵且笨重。这项研究的重点是新型木材护栏的开发和结构测试,该护栏由硬木胶合层压构件和纤维增强聚合物(FRP)增强而成。 FRP代替钢材来承受冲击产生的拉力,并且护栏比传统的木材护栏明显更浅,更轻。本文详细分析了在车辆撞击下的护栏响应,开发并测试了一种独特且易于安装的能够承受车辆撞击所产生的拉力的轨对轨现场接头,并评估了护栏在外部的耐久性条件。此外,护栏的结构性能是通过使用单个液压执行器和三点弯曲测试设备产生的在车辆碰撞过程中预期同时产生的拉力和挠曲力的实验进行评估的。根据本文记录的开发和测试,FRP加固的木材护栏有望通过必要的车辆碰撞测试。

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