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Effective strengthening schemes for heat damaged reinforced concrete beams

机译:用于热损伤钢筋混凝土梁的有效强化方案

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Several effective strengthening schemes for enhancing the flexural strength of heat-damaged reinforced concrete (RC), beams are proposed. A series of twenty-eight RC rectangular beams were cast, subject to a temperature of 600?°C for 3?h, strengthened, and then tested in flexure to determine the effect of externally applied carbon and glass fiber reinforced polymeric sheets (CFRP) and (GFRP) respectively, as a method for regaining the beams’ flexural capacity. The load-deflection behavior and the modes of failure of the beams tested are described. The beams strengthened in shear and flexure with CFRP and GFRP sheets applied at the sides and the bottom of the beams in U-shaped jackets or strips showed a significant increase in their flexural strength compared to control and heat damaged ones. They achieved a high percentage of the control beams load carrying capacity, and exhibited a ductile failure characterized by the initiation of typical flexural cracks in the moment zone followed by the occurrence of flexure-shear cracks in the constant shear span. Optimizing the CFRP and GFRP strengthening schemes proposed could provide promising and cost effective repair alternatives for enhancing the flexural capacity of fire damaged RC members.
机译:提出了一种用于提高热损伤钢筋混凝土(RC)的抗弯强度的有效强化方案,是提出的,梁。铸造一系列二十八个RC矩形梁,受到600°C的温度3Ω·H,加强,然后在弯曲中进行测试,以确定外部施加的碳和玻璃纤维增​​强聚合物片材的效果(CFRP) (GFRP)分别是重新恢复光束弯曲能力的方法。描述了所测试的光束的负载偏转行为和失效模式。与对照和热损坏的梁的侧面施加的CFRP和GFRP片材中加强的横梁和GFRP片材的射线和GFRP片材的横向和GFRP片显示出显着的弯曲强度显着增加。它们实现了高百分比的控制梁承载能力,并且表现出具有典型弯曲裂纹的延伸性的延展性故障,然后在恒定剪切跨度中发生弯曲剪切裂缝。优化CFRP和GFRP加强方案提出的建议可以提供有前途和成本效益的修复替代方案,以提高防火损坏RC成员的弯曲能力。

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