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首页> 外文期刊>Journal of bridge engineering >Effective Bond Length of Carbon-Fiber-Reinforced Polymer Strips Bonded to Fatigued Steel Bridge I-Girders
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Effective Bond Length of Carbon-Fiber-Reinforced Polymer Strips Bonded to Fatigued Steel Bridge I-Girders

机译:碳纤维增强聚合物条粘结到疲劳钢桥工字梁的有效粘结长度

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摘要

After years in service, many steel girders have deteriorated to the point where fatigue cracks have initiated in the girders. In girders having cover plates that do not terminate in a compression region, a common type of crack initiates at the weld toe at the ends of the cover plate after being subjected to cyclic tensile loads due to traffic. The use of precured carbon-fiber-reinforced polymer (CFRP) laminates, adhered to the inside face of the girder tension flange, is one proposed method for repairing these cracked bridge girders. The main advantages of using CFRP laminates are their light weight and their durability, which result in ease of handling and maintenance. For the application of this rehabilitation method, it is important to determine the effective bond length for CFRP laminates adhered to the inside face of a cracked steel girder flange. Experimental tests using a new type of effective bond length test specimen were conducted in this research on several types of adhesives and precured CFRP laminates, in addition to several different bonding configurations. The minimum bond length required to achieve the maximum strength of the rehabilitation scheme for the materials investigated in this research was determined. The experimental results also indicated that an adhesive with relatively large ductility is required to redistribute the stresses successfully within the adhesive layer during increased loading. A simple analytical solution for the shear strain distribution in the adhesive layer was proposed for estimating the effective bond length, and the results were verified with computational analyses. Good agreement was found among the computational, analytical, and experimental results.
机译:在使用多年之后,许多钢梁已经退化到在梁中产生疲劳裂纹的程度。在具有不终止于压缩区域的盖板的大梁中,由于交通而受到周期性的拉伸载荷后,常见类型的裂纹在盖板端部的焊趾处开始。一种建议的方法是使用一种预固化的碳纤维增强聚合物(CFRP)层压板,该层压板粘附在大梁张紧翼缘的内表面上,是修复这些开裂桥梁的一种方法。使用CFRP层压板的主要优点是重量轻,经久耐用,从而易于处理和维护。对于这种修复方法的应用,重要的是确定粘附在破裂钢梁翼缘内表面上的CFRP层压板的有效粘结长度。在这项研究中,除了几种不同的粘合配置外,还对几种类型的粘合剂和预固化的CFRP层压板进行了使用新型有效粘合长度测试样品的实验测试。确定了达到这项研究中所研究材料的最大修复方案强度所需的最小粘结长度。实验结果还表明,在负载增加期间,需要使用具有较大延展性的胶粘剂才能在胶粘剂层中成功地重新分配应力。提出了一种简单的解析方法,用于估算粘合层中的剪切应变分布,以估算有效粘结长度,并通过计算分析验证了结果。在计算,分析和实验结果之间发现了很好的一致性。

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