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Flexural strengthening of damaged RC T-beams using self-compacting concrete jacketing under different sustaining load

机译:在不同承受载荷下使用自密实混凝土护套对受损的RC T梁进行抗弯加固

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摘要

An experimental test is proposed in the present study to investigate the flexural behavior of damaged reinforced concrete (RC) beams strengthened by self-compacting concrete jacketing under different sustaining load. Eight RC T-beams with primary damages are designed and strengthened under different sustaining load. Then, the flexural testing test is employed to investigate the structural behavior of the strengthened beams. The influences of the sustaining load on beam response are clarified. The prediction method for the flexural capacity of the strengthened beams is also discussed. Results shows that the strengthening method proposed in the present study improves effectively the flexural behavior of beams, both in the stiffness after concrete cracking and the flexural capacity of the beams. Especially the flexural capacity, which becomes about twice as great. The interface treatment by surface roughening and rebar planting can provide effective bond strength between the substrate-new concrete. Sustaining load increase slightly the stiffness and the flexural capacity of beams until exceeding a critical value. The critical load was about 30% of the yield moment of beam before strengthening in the present test. The prediction of flexural capacity had high accuracy by the plastic limit analysis method and neglecting the strain-lag effects caused by the sustaining load during the strengthening process. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本研究提出了一项实验测试,以研究在不同承受载荷下,自密实混凝土护套增强的受损钢筋混凝土(RC)梁的弯曲性能。在不同的承受载荷下,设计并加固了八个具有主要损伤的RC T型梁。然后,通过弯曲试验测试来研究加固梁的结构性能。阐明了持续载荷对梁响应的影响。讨论了加固梁抗弯承载力的预测方法。结果表明,本研究提出的加固方法有效地改善了梁的抗弯性能,无论是混凝土开裂后的刚度还是梁的抗弯能力。尤其是抗弯能力,其约为两倍。通过表面粗糙化和钢筋种植进行的界面处理可以在新基材之间提供有效的粘结强度。持续载荷会稍微增加梁的刚度和抗弯能力,直到超过临界值。在本试验中,加固前的临界载荷约为梁屈服力矩的30%。用塑性极限分析法对弯曲能力的预测具有较高的准确性,而忽略了加固过程中承受持续荷载所引起的应变滞后效应。 (C)2018 Elsevier Ltd.保留所有权利。

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