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An Experimental Study on Non-Compression X-Bracing Systems Using Carbon Fiber Composite Cable for Seismic Strengthening of RC Buildings

机译:碳纤维复合电缆抗压X形支撑体系对RC建筑抗震性能的试验研究

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Cross-bracing (X-bracing) is one of the most popular methods of seismic retrofitting, and has been shown to significantly increase the structural stiffness and strength of buildings. Conventional steel X-bracing methods typically exhibit brittle failure at the connection between the brace and the building, or buckling failure of the braces. This study investigated the structural properties of a new type of non-compression X-bracing system using carbon fiber composite cable (CFCC). This non-compression X-bracing system uses CFCC bracing and bolt connections between structural members and the terminal fixer of the CFCC, instead of conventional steel bracing. The aim is to overcome the brittle and buckling failures that can occur at the connection and bracings with conventional steel X-bracing methods. We carried out cyclic loading tests, and the maximum load carrying capacity and deformation were investigated, as well as hysteresis in the lateral load–drift relations. The test results revealed that the CFCC X-bracing system installed in reinforced concrete frames enhanced the strength markedly, and buckling failure of the bracing was not observed.
机译:交叉支撑(X支撑)是抗震改造中最流行的方法之一,并且已经证明可以显着提高建筑物的结构刚度和强度。常规的钢X支撑方法通常在支架与建筑物之间的连接处表现出脆性破坏,或支架的屈曲破坏。这项研究调查了一种新型的使用碳纤维复合电缆(CFCC)的非压缩X支撑系统的结构特性。这种非压缩X支撑系统使用CFCC支撑和结构构件与CFCC的端子固定器之间的螺栓连接,而不是传统的钢支撑。目的是克服使用传统钢X支撑方法在连接和支撑处可能发生的脆性和屈曲破坏。我们进行了循环载荷试验,研究了最大载荷承载能力和变形,以及横向载荷-漂移关系中的滞后现象。测试结果表明,安装在钢筋混凝土框架中的CFCC X支撑系统显着提高了强度,并且未观察到支撑的屈曲破坏。

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