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Improved Method for Bonding CFRP Overlays to Steel for Fatigue Repair

机译:将CFRP覆盖层粘结到钢上以进行疲劳修复的改进方法

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Experiments and computer simulations were carried out at the University of Kansas to investigate the use of composite materials for strengthening and repair of fatigue-vulnerable steel bridges. Prefabricated CFRP overlays were attached to welded coverplate specimens using a layer of epoxy resin. The specimens were then subjected to three-point bending under cyclic loading at a constant stress range. Early tests showed that bonding CFRP overlays to steel was an effective method to reduce the stress demand in areas susceptible to fatigue damage, and that this strengthening method could lead to substantial increases in crack initiation life. Fatigue tests also showed that maintaining the bond between the CFRP overlays and the steel was the most critical factor in the effectiveness of this strengthening technique. It was observed that the presence of a layer of breather fabric embedded within the layer of epoxy resin was the most important parameter affecting bond behavior under fatigue loading.This paper describes monotonic and fatigue tests carried out to evaluate the effect of the presence of breather fabric and thickness of the resin layer on bond strength and on the performance of the resin layer under fatigue loading. It was found that the mode of failure of the resin under monotonic and fatigue loading changed significantly due to the presence of the breather cloth. Although the presence of breather cloth had a negligible effect on the bond strength of thin resin layers, its effect on strength increased with the thickness of the resin layer. It was also found that the presence of the breather fabric had a very significant effect on the post-peak behavior of monotonic tests, which partially explains its beneficial effect on behavior under fatigue loading.
机译:在堪萨斯大学进行实验和计算机仿真,研究了复合材料的使用,以加强疲劳脆弱的钢结构修复。使用一层环氧树脂连接预制的CFRP覆盖物以焊接覆盖板样本。然后在恒定应力范围内在环状负载下进行三点弯曲试样。早期测试表明,粘合CFRP覆盖钢是一种有效的方法,以降低易受疲劳损伤的区域的应力需求,并且这种强化方法可能导致裂纹启动寿命的显着增加。疲劳试验还表明,维持CFRP覆盖层和钢之间的粘合是该强化技术有效性的最关键因素。据观察,嵌入环氧树脂层内的一层通气织物的存在是影响疲劳负荷下粘合行为的最重要的参数。 本文介绍了进行的单调和疲劳试验,以评估疲劳负荷下树脂层的呼吸织物和树脂层厚度的效果和疲劳负载下的树脂层的性能。结果发现,由于呼吸布存在,单调和疲劳负载下的树脂的失效方式变化显着。虽然浅谈对薄树脂层的粘合强度的影响可忽略不计,但其对强度的影响随着树脂层的厚度而增加。还发现,通气织物的存在对单调试验的后峰值行为产生了非常显着的影响,这部分地解释了其对疲劳负荷行为的有益作用。

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