u型机械夹紧锚定CFRP复合材料在钢筋混凝土梁受弯加固中的应用

K. Letcham, P. Vincent
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摘要

本文研究了u型钳形锚固对碳纤维增强聚合物复合材料钢筋混凝土梁的外加固性能。采用单向碳纤维对截面为150 × 200 mm2的梁进行加固,并采用自制的u型夹钳作为夹紧装置加强纤维增强聚合物(FRP)的粘结。试验采用四点弯曲体系,试验参数为FRP层数。安装u型夹箍加固梁的破坏模式与未安装u型夹箍加固梁的破坏模式非常相似(FRP复合材料断裂)。然而,通过抵消纤维边缘剥离应力的发展,避免了玻璃钢的分层。由于采用u型夹箍加固的梁比未采用u型夹箍加固的梁表现出更多的线性行为,因此u型夹箍加固的梁可能更有可能出现突然/快速/脆性破坏模式,而采用u型夹箍加固的梁的延性指标也证实了上述行为。u型夹箍的引入通过抵消脱粘作用提高了梁的抗弯刚度和极限强度,与未加u型夹箍的梁相比,加u型夹箍的梁的抗弯刚度和极限强度分别提高了58.33%和20.37%。采用前人提出的模型对各加固梁的理论强度值进行了计算,并与试验结果进行了比较。由此推断,与不使用u型夹箍的梁相比,在FRP加固中使用u型夹箍提供了经济和结构效益。
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U-type mechanical clamping to anchor the CFRP composites in strengthening of RC beams subjected to bending
The present study investigates the performance of U-type clamp anchorage on external strengthening of reinforced concrete beams using carbon fibre-reinforced polymer composites. Unidirectional carbon fibre was used to strengthen the beam having a cross-section of 150 × 200 mm2 and the fabricated U-type clamp was used as a clamping device to enhance the fibre-reinforced polymer (FRP) bonding. To test the beam, four-point bending system was adopted and the experimental parameters were the number of FRP layers. The failure mode of strengthened beams with U-type clamp was very similar (rupture of FRP composites) to the beams without U-type clamp. However, the delamination of FRP was evaded by counteracting the peeling stress development at the edge of fibre. Since the beams strengthened with U-type clamp exhibited more linear behaviour than that of the beams strengthened without U-type clamp, there may be a higher possibility for abrupt/rapid/brittle mode of failure and the ductility index of the beam with U-type clamp confirmed the above behaviour. However, the introduction of U-type clamp enhanced the flexural stiffness and ultimate strength by counteracting the debonding, and the beam with U-type clamp exhibited a maximum of 58.33% and 20.37% enhancement in flexural stiffness and ultimate strength than that of the beam without U-type clamp, respectively. The theoretical strength value of all strengthened beams was evaluated using models proposed in the previous research and compared with experimental results. It is inferred that the use of U-type clamp in FRP strengthening provides economic and structural benefits compared to a beam without U-type clamp.
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