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Behavior of Cyclically Loaded Squat Reinforced Concrete Bridge Columns Upgraded with Advanced Composite-Material Jackets

机译:先进复合材料外套升级后的循环荷载蹲式钢筋混凝土桥柱的性能

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摘要

This paper summarizes comprehensive experimental studies on scaled models of squat bridge columns repaired and retrofitted with advanced composite-material jackets. In the experimental program, a total of 14 half-scale squat circular and rectangular reinforced concrete columns were tested under fully reversed cyclic shear in a double bending configuration. In order to provide a basis for comparison, a total of three as-built columns were tested. Another 10 column samples were tested after being retrofitted with different composite jacket systems. One circular as-built column was repaired after failure. The repair process involved both crack injection as well as addition of carbon/epoxy composite jacket. The repaired column was then retested and evaluated. Experimental results showed that all as-built columns developed an unstable behavior and failed in brittle shear mode. The common failure mode for all retrofitted samples was due to flexure with significant improvement in the column ductility. The repaired column demonstrated ductility enhancement over the as-built sample.
机译:本文总结了用先进的复合材料夹套修复和改造的蹲式桥梁立柱比例模型的综合实验研究。在实验程序中,总共14个半蹲式圆形和矩形钢筋混凝土柱在双弯曲配置下的完全反向循环剪切力下进行了测试。为了提供比较的基础,总共测试了三个组装好的立柱。在使用不同的复合夹套系统进行改装后,对另外10个色谱柱样品进行了测试。失效后修复了一个圆形的已建圆柱。修复过程涉及裂纹注入以及碳/环氧复合材料护套的添加。然后对修复过的色谱柱进行重新测试和评估。实验结果表明,所有已建柱都表现出不稳定的行为,并在脆性剪切模式下失效。所有翻新样品的常见失效模式归因于弯曲,显着改善了柱的延展性。修复后的色谱柱显示出比原样更高的延展性。

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