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Repairing Distortion-Induced Fatigue in Steel Bridges Using a CFRP-Steel Retrofit

机译:使用CFRP钢改造修复钢结构中的变形疲劳

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Distortion-induced fatigue (DIF) cracking in steel bridges accounts for one of the most common types of fatigue damage in steel bridges in the United States. Many methods have been developed to repair DIF; however, most available repair methods require concrete deck removal, which is expensive and disruptive to traffic. This paper describes an experimental study aimed at investigating the fatigue behavior of steel bridge girders repaired with a novel CFRP and steel retrofit. The retrofit addresses an important need in repairing distortion-induced fatigue-creating a load path from the connection stiffener to the girder flange without requiring bolting or welding to the flange. To evaluate the performance of this combined retrofit, fatigue tests were conducted using a half-scale 2845 mm (9 ft) long steel girder-to-cross-frame subassembly. The girder was cyclically-loaded to produce realistic DIF crack patterns, then a retrofit that engages three surfaces: the web, the flange, and the connection plate, was added. Five trials are described; two of the trials were performed in the unretrofitted condition while the other three trials were performed in the retrofitted condition. The retrofit performance was examined for different crack patterns, up to a 4 in. crack length. The experimental results showed that the CFRP-steel retrofit was effective in preventing distortion-induced fatigue crack propagation for all the tested crack patterns and lengths.
机译:失真性疲劳(DIF)在钢桥裂化占最常见的类型在美国钢桥疲劳损伤中的一个。许多方法已发展到维修DIF;然而,大多数可用的修复方法需要混凝土桥面拆除,这是昂贵的和破坏性通车。本文描述的实验研究旨在调查具有新颖CFRP和钢改型修复钢桥梁构件的疲劳特性。改型地址修复的重要需求失真引起的疲劳产生从连接加强件的梁凸缘的负载路径,而不需要螺栓或焊接到凸缘上。为了评估该组合改型的性能,疲劳试验是使用半刻度2845毫米(9英尺)长钢梁到跨框架子组件进行的。梁被周期性地加载以产生逼真的DIF裂纹图案,然后接合三个表面的改型:腹板,凸缘,和连接板中加入。五个试验中描述了两个试验的而其他三个试验在改装的条件下进行在unretrofitted条件进行。检验了不同裂缝模式的改型性能,由4英寸裂纹长度。实验结果表明,CFRP钢改型是有效地防止失真引起的疲劳裂纹扩展为所有测试的裂纹图案和长度。

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