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Experimental and theoretical investigation on the hybrid CFRP-ECC flexural strengthening of RC beams with corroded longitudinal reinforcement

机译:锈蚀钢筋与钢筋混凝土梁的CFRP-ECC混合抗弯加固试验与理论研究

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摘要

This paper reports an experimental and theoretical investigation on the flexural behavior of hybrid engineered cementitious composite (ECC) and carbon fiber reinforced polymer (CFRP) strengthened reinforced concrete (RC) beams with different corrosion levels of longitudinal reinforcement. A certain thickness of damaged concrete cover was removed and replaced by ECC, and CFRP sheets were attached to the soffit of the ECC layer to form the so-called hybrid CFRP-ECC strengthening. Experimental results show that the ECC strengthening could recover the capacity close to that of a virgin beam if the corrosion ratio was less than 10%. Bonding CFRP to ECC in the hybrid CFRP-ECC strengthening prevented CFRP debonding due to the multiple micro-cracking behavior of ECC, thus significantly enhanced the flexural capacity of a beam. The cracking of the remaining upper concrete was better restrained due to the excellent cracking control ability of ECC. In addition to experimental work, theoretical models were proposed to predict the capacity of hybrid CFRP-ECC strengthened beam with corroded flexural steel bars under different failure modes. Model results are found to be in good agreement with test data.
机译:本文报道了不同工程水平腐蚀水平的混杂工程胶凝复合材料(ECC)和碳纤维增强聚合物(CFRP)增强钢筋混凝土(RC)梁的抗弯性能的实验和理论研究。移除一定厚度的受损混凝土表层,并用ECC代替,然后将CFRP板粘贴到ECC层的拱腹上,以形成所谓的CFRP-ECC混合增强。实验结果表明,如果腐蚀率小于10%,则ECC强化可以恢复到接近原始梁的能力。在CFRP-ECC混合增强中将CFRP粘结到ECC可以防止由于ECC的多次微裂纹行为而导致CFRP脱胶,从而显着提高了梁的抗弯能力。由于ECC具有出色的开裂控制能力,因此可以更好地抑制其余上部混凝土的开裂。除实验工作外,还提出了理论模型来预测在不同破坏模式下带有受弯挠性钢筋的混合CFRP-ECC增强梁的承载能力。发现模型结果与测试数据非常吻合。

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