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Strengthening of steel-concrete composite beams with prestressed CFRP plates using an innovative anchorage system

机译:采用创新锚固系统加强预应力CFRP板钢 - 混凝土复合梁

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摘要

This study investigates the flexural behavior of steel-concrete composite beams strengthened with prestressed carbon fiber-reinforced polymer (CFRP) plates. An innovative mechanical anchorage system was developed. The components of the system can be easily assembled on site before applying a prestressing force, and removed from the structures after strengthening is completed. A total of seven steel-concrete composite specimens including four simply supported beams strengthened at the positive moment region and three continuous beams strengthened at the negative moment region were tested statically until failure. Experimental results showed that the use of prestressed CFRP plates enhanced the flexural capacity and reduced the mid-span deflection of the beams. Furthermore, by prestressing the CFRP laminates, the material was used more efficiently, and the crack resistance of the continuous composite specimens at the central support was significantly improved after strengthening. Overall, the anchorage system proved to be practical and feasible for the strengthening of steel-concrete composite beams. The theoretical analysis of ultimate bearing capacity is reported, and good agreement between analytical values and experimental results is achieved.
机译:本研究研究了预应力碳纤维增强聚合物(CFRP)板加固的钢混凝土复合梁的弯曲行为。开发了一种创新的机械锚固系统。在施加预应力之前,可以容易地组装系统的部件,并在完成加强后从结构中取出。静态地测试包括在正片段区域和在负时刻区域加强的三个连续梁的四个简单的支撑梁的七种钢混凝土复合标本,直至发生故障。实验结果表明,预应力CFRP平板的使用增强了弯曲能力,降低了光束的中跨偏转。此外,通过预应力CFRP层压板,更有效地使用该材料,并且在加强后,在中央载体上的连续复合样品的抗裂性显着提高。总的来说,锚地系统证明是加强钢混凝土复合梁的实用可行。报道了最终承载力的理论分析,实现了分析值与实验结果之间的良好一致性。

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