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Repair of heat-damaged reinforced concrete T-beams using FRC jackets

机译:使用FRC护套修复受热损坏的钢筋混凝土T型梁

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摘要

A series of 16 under-reinforced concrete (RC) T-beams were cast, heated at 600℃ for 2.5 h, repaired and then tested under four-point loading to study the effectiveness of using externally applied high-strength fibre reinforced concrete (FRC) jackets as a method of increasing the flexural capacity of beams. The overall response of the beams loaded up to failure, the onset of cracking and cracking pattern, serviceability, stiffness and ductility were described. Four types of fibre were used: glass, high-performance polypropylene (HPP), hooked end steel and brass-coated steel (BCS) with fibre content ranging from 1 to 2%. The beams repaired with steel-FRC jackets applied at the sides of the beams' web and the bottom of the flange, exhibited a substantial improvement in their flexural behaviour compared with control (undamaged) ones. They regained a large proportion of the control beams' ultimate load capacity, and showed a typical flexural failure with an increase in the first cracking load. The beams repaired with HPP and glass fibres exhibited a marginal improvement in their flexural behaviour compared with control ones with a typical flexural failure and a decrease in the first cracking load. Based on the findings of the present study, high-strength steel-FRC jackets may be considered as a promising material for maintenance and rehabilitation of concrete structures.
机译:浇铸了一系列16根钢筋混凝土T型梁,在600℃加热2.5小时,进行了修复,然后在四点荷载下进行了测试,以研究使用外施高强度纤维增强混凝土(FRC)的有效性。 )护套作为增加梁抗弯能力的一种方法。描述了加载至破坏的梁的整体响应,开裂和开裂形式的出现,可使用性,刚度和延性。使用了四种类型的纤维:玻璃纤维,高性能聚丙烯(HPP),钩形端钢和黄铜涂层钢(BCS),纤维含量为1-2%。与控制腹板(未损坏)相比,在框架腹板的侧面和法兰底部应用钢-FRC护套修复的框架具有显着改善。他们重新获得了控制梁的大部分极限载荷能力,并表现出典型的挠曲破坏,其中第一裂纹载荷增加。用HPP和玻璃纤维修复的梁与具有典型挠性破坏和第一次断裂荷载降低的对照组相比,其挠曲性能略有改善。根据本研究的结果,高强度钢-FRC护套可以被认为是用于混凝土结构维护和修复的有前途的材料。

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