Hybrid Techniques for RC Column Strengthening

Alexandre Luis Sudano, J. B. Hanai
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Abstract

Strengthening techniques of reinforced concrete structures have significantly changed in recent years. Such improvements happened mainly because of the development of new materials and their associated strengthening techniques. For example, polymeric composites of synthetic fibers (carbon, aramid, glass, etc.), high-strength concrete, and other high-performance cement-based composites have been introduced to construction market. The application of these materials in the strengthening of reinforced concrete (RC) columns implies a review of the design methods and the execution procedures, because if the strengthening materials change, the performance of the strengthened column also changes. This paper intends to characterize, even though in a superficial form, the main strengthening mechanisms associated with some rehabilitation techniques. Also, based on an exploratory experimental analysis, this paper reports the potential of hybrid strengthening techniques by combining different strategies. Six plain concrete short columns were strengthened using several combinations of high-strength concrete (HSC) and fiber-reinforced polymer (FRP) jackets, which resulted in so-called hybrid techniques. The columns had 150 mm diameter and 600 mm height as initial dimensions that, depending on the applied strengthening technique, had the diameter increased to 200 mm. The test results demonstrate that hybrid strengthening techniques are feasible and they can be used in different ways to optimize the rehabilitation strategy.
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钢筋混凝土柱复合加固技术
近年来,钢筋混凝土结构的加固技术发生了很大的变化。这种改进主要是由于新材料及其相关强化技术的发展。例如,合成纤维聚合物复合材料(碳、芳纶、玻璃等)、高强混凝土和其他高性能水泥基复合材料已被引入建筑市场。这些材料在钢筋混凝土柱加固中的应用意味着对设计方法和执行程序的回顾,因为如果加固材料改变,加固柱的性能也会改变。本文旨在表征,即使是在一个肤浅的形式,主要加强机制与一些康复技术相关。此外,在探索性实验分析的基础上,本文报告了混合强化技术结合不同策略的潜力。六根素混凝土短柱采用高强混凝土(HSC)和纤维增强聚合物(FRP)夹套的几种组合进行加固,从而产生了所谓的混合技术。柱的直径为150毫米,高度为600毫米作为初始尺寸,根据所应用的加固技术,直径增加到200毫米。试验结果表明,混合强化技术是可行的,可通过多种方式优化修复策略。
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