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Repair of damaged aluminum truss joints of highway overhead sign structures using FRP

机译:玻璃钢修复公路高架标牌结构损坏的铝桁架节点。

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摘要

An innovative repair technique is introduced for aluminum truss-type highway overhead sign structures, using fibre-reinforced polymer (FRP) sheets. The welded k-joints are typically subjected to excessive fatigue-induced cracking under the effects of wind and moving traffic. The repair technique proposed in this paper utilizes longitudinal FRP layers bonded to the diagonals and wrapped around the main chord to form alternating v-patterns, followed by additional circumferential layers for anchorage. Eight tests were conducted on four full-scale specimens. Weld lines at the junction between diagonals and main chord were ground to simulate a 90 percent loss of joint strength. After repair, diagonals were loaded to failure in tension. The study showed that full strength of the welded joints was restored using carbon-FRP sheets. Only 70 percent of joint strength was restored when using glass-FRP. The strengthening technique is particularly sensitive to quality control during installation. A field application using the proposed technique was successfully completed by the New York State Department of Transportation for a cracked aluminum truss over Route 88 in NY State.
机译:引入了一种创新的修复技术,该技术使用纤维增强聚合物(FRP)板对铝桁架式公路高架标牌结构进行修复。焊接的k型接头通常会在风和行进交通的影响下过度疲劳诱导开裂。本文提出的修复技术利用纵向FRP层粘结到对角线上并缠绕在主弦上以形成交替的v型,然后再附加圆周层进行锚固。对四个满量程样品进行了八次测试。将对角线和主弦之间的交点处的焊接线打磨,以模拟90%的接头强度损失。维修后,对角线加载失败。研究表明,使用碳纤维增强塑料板可以恢复焊接接头的全部强度。使用玻璃钢时,仅恢复了70%的接头强度。加固技术对安装过程中的质量控制特别敏感。纽约州交通局成功地完成了使用提出的技术的现场应用,用于纽约州88号公路上破裂的铝桁架。

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