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Retrofitting of steel pile-abutment connections of integral bridges using CFRP

机译:使用CFRP改造整体桥梁的钢桩-基台连接

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摘要

Integral bridges are typically designed with flexible foundations that include one row of piles. The construction of integral bridges solves difficulties due to the maintenance of expansion joints and bearings during serviceability. It causes integral bridges to become more economic comparing with conventional bridges. Research has been focused not only to enhance the seismic performance of newly designed bridges, but also to develop retrofit strategies for existing ones. The local performance of the pile to abutment connection will have a major effect on the performance of the structure and the embedment length of pile inside the abutment has a key role to provide shear and flexural resistance of pile-abutment connections. In this paper, a simple method was developed to estimate the initial value of embedment length of the pile for retrofitting of specimens. Four specimens of pile-abutment connections were constructed with different embedment lengths of pile inside the abutment to evaluate their performances. The results of the experimentation in conjunction with numerical and analytical studies showed that retrofitting pile-abutment connections with CFRP wraps increased the strength of the connection up to 86%. Also, designed connections with the proposed method had sufficient resistance against lateral load.
机译:整体式桥梁通常设计为具有柔性基础,其中包括一排桩。整体桥的结构解决了维修期间因伸缩缝和轴承的维护而造成的困难。与传统的桥相比,它使整体桥变得更加经济。研究不仅集中在增强新设计桥梁的抗震性能,而且还针对现有桥梁开发改型策略。桩对基台连接的局部性能将对结构的性能产生重大影响,基台内部桩的埋入长度对于提供桩基对连接的抗剪和抗挠性起关键作用。在本文中,开发了一种简单的方法来估计用于翻新标本的桩的嵌入长度的初始值。构造了四个基台连接的标本,基台内桩的嵌入长度不同,以评估其性能。实验结果与数值分析和分析研究相结合,结果表明,用CFRP缠绕材料加固桩基连接可以使连接强度提高多达86%。同样,使用所提出的方法设计的连接具有足够的抵抗横向载荷的能力。

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