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Structural performance of continuous RC slabs strengthened in negative moment regions with a mineral-based composite

机译:矿物基复合材料在负弯矩区域加固连续RC板的结构性能

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摘要

An experimental programme was proposed and carried out to assess the effectiveness of the mineral-based composite (MBC) technique for the flexural strengthening of negative moment regions in continuous reinforced concrete slabs. In addition to the testing of the two reference specimens, the experimental programme included the testing of nine continuous RC slab specimens with different strengthening techniques, namely, using ordinary steel bars and MBC material. This experimental programme was conducted to study the failure modes, the load-deflection behaviour and the failure loads. Furthermore, we present and describe a comparative study between the two strengthening techniques, namely, steel reinforcing bars with MBC or steel bars with epoxy mortar. Based on the experimental results presented, both strengthening techniques for continuous slabs are evidently efficient. In this study the measured results for the average crack spacing were compared with the limits stipulated in CEB-FIP code 1990 and the failure load calculations were extended with an analytical approach based on the ultimate theory for the failure load calculation. In conclusion, the results obtained from the analytical model are in agreement with the experimental results.
机译:提出并进行了一项实验程序,以评估矿物基复合材料(MBC)技术对连续钢筋混凝土板中负弯矩区域的抗弯加固的有效性。除了测试两个参考样本外,实验程序还包括测试九个采用不同加固技术的连续RC平板样本,即使用普通钢筋和MBC材料。进行了该实验程序以研究失效模式,载荷-挠曲行为和失效载荷。此外,我们介绍并描述了两种加固技术之间的对比研究,即采用MBC的钢筋或采用环氧砂浆的钢筋。根据给出的实验结果,两种连续板的加固技术显然都是有效的。在这项研究中,将平均裂纹间距的测量结果与CEB-FIP规范1990中规定的极限进行了比较,并基于极限载荷计算的最终理论,采用分析方法扩展了载荷计算。总之,从分析模型获得的结果与实验结果一致。

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