影响钢筋混凝土梁抗弯抗剪加固的参数研究

Oğuz Uzdil, B. Sayın, Turgay Çoşgun
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引用次数: 2

摘要

在钢筋混凝土(RC)结构的使用寿命期间,由于新的设计标准、强度降低和/或功能变化,结构性能应该得到改善。为了达到足够的结构性能水平,可以考虑以下两种选择:重建或加强结构。尽管在利用当前技术发展方面,重建具有一些优势,但这种选择可能会导致一些负面后果,例如建筑物的使用寿命中断,相对较高的成本和可持续性问题。因此,加强现有结构往往是首选。用于加固的技术可以分为两种不同的方法:传统的(增加新的结构构件)和非常规的(隔震、局部改造和护套)。在创新方法中,纤维增强聚合物增强方法因其实用性强、抗剪和抗弯能力提高等优点而备受关注。将其应用于结构构件的外表面,使用树脂可以减少变质。此外,不同方向的纤维在不同方向上传播应力,从而提供有效的力分布。采用MATLAB软件,研究了碳纤维增强聚合物(CFRP)取向和RC材料性能对RC梁加固效果的影响。因此,根据美国混凝土协会(ACI) 440.2R标准,提出了考虑挠曲和剪切效应的RC梁加固设计过程的各个阶段。通过编写MATLAB代码,减少了计算时间,并且可以更准确地获得材料特性。此外,利用MATLAB编码得到的曲线,可以观察到抗剪和抗弯能力的增加。结果表明,单层CFRP板应用于RC梁的抗弯承载力提高了50.6%,抗剪承载力提高了33.6%。然而,随着层数的增加,容量增长速率降低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Examination of parameters impacting flexural and shear strengthening of RC beams
Structural performance of reinforced concrete (RC) structures should be improved due to new design standards, strength reduction, and/or functional changes throughout their service life. To reach a sufficient level of structural performance, the following two options can be considered: reconstruction or strengthening of structures. Although reconstruction has some advantages in terms of using current technological developments, this option can lead to some negative consequences such as interruption of the building's service life, relatively high cost, and sustainability issues. Therefore, strengthening an existing structure mostly stands out as the first choice. The techniques used in strengthening applications can be grouped into two different methods: traditional (addition of new structural members) and non-conventional (seismic base isolation, local retrofitting, and jacketing). Among innovative methods, the fibre-reinforced polymer strengthening method attracts attention due to several advantages including practical applicability, as well as shear and bending capacity increase. Its application to the outer surface of structural members using resin reduces deterioration. Plus, fibres oriented in various directions spread stresses in different directions, therefore, provide effective force distribution. In this study, the effect of carbon fibre reinforced polymer (CFRP) orientation and RC material properties in the strengthening RC beams were investigated using MATLAB software. Accordingly, all stages of the design process are presented for RC beam strengthening considering both flexural and shear effects based on the American Concrete Institute (ACI) 440.2R standard. Through compiling MATLAB code, calculation time reduces, and material characteristics can be obtained more accurately. Plus, using curves obtained by MATLAB coding, shear and bending capacity increases can be observed. According to our findings, the application of one-layer CFRP plate to an RC beam increases the bending capacity by 50.6% and shear capacity by 33.6%. However, as the number of layers increases, the capacity increase rate reduces.
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