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Flexural Strengthening of Concrete Slab-Type Elements with Textile Reinforced Concrete

机译:纤维增强混凝土对混凝土板式构件的抗弯加固

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摘要

This paper deals with flexural strengthening of reinforced concrete (RC) slabs with a carbon textile reinforced concrete (TRC) system. The surface coating treatment was applied to a carbon grid-type textile to increase the bond strength. Short fibers were incorporated into the matrix to mitigate the formation of shrinkage-induced cracks. The tensile properties of the TRC system were evaluated by a direct tensile test with a dumbbell-type grip method. The tensile test results indicated that the effect of the surface coating treatment of the textile on the bonding behavior of the textile within the TRC system was significant. Furthermore, the incorporation of short fibers in the matrix was effective to mitigate shrinkage-induced crack formation and to improve the tensile properties of the TRC system. Six full-scale slab specimens were strengthened with the TRC system and, subsequently, failure tested. The ultimate load-carrying capacity of the strengthened slabs was compared with that of an unstrengthened slab as well as the theoretical solutions. The failure test results indicated that the stiffness and the ultimate flexural capacity of the strengthened slab were at least 112% and 165% greater, respectively, than that of the unstrengthened slab. The test results further indicated that the strengthening effect was not linearly proportional to the amount of textile reinforcement.
机译:本文涉及碳纤维增强混凝土(TRC)系统对钢筋混凝土(RC)楼板的抗弯加固。对碳网格型织物进行表面涂层处理以增加粘合强度。将短纤维掺入基质中,以减轻收缩引起的裂纹的形成。 TRC体系的拉伸性能通过哑铃型抓地力方法的直接拉伸试验进行评估。拉伸试验结果表明,织物的表面涂层处理对TRC体系内织物的粘合行为的影响是显着的。此外,在基体中掺入短纤维可有效减轻收缩引起的裂纹形成并改善TRC体系的拉伸性能。用TRC系统加固了六个完整的平板试样,随后进行了破坏测试。比较了加固板和未加固板的极限承载力以及理论解。破坏测试结果表明,与未加强板相比,加强板的刚度和极限抗弯能力分别至少高112%和165%。测试结果进一步表明,增强效果与织物增强量不成线性比例关系。

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