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Optimal performance-based design of FRP jackets for seismic retrofit of reinforced concrete frames

机译:基于性能优化的FRP护套用于钢筋混凝土框架的抗震改造

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摘要

External bonding of fiber-reinforced polymer (FRP) composites is now a well-established technique for the strengthening/retrofit of reinforced concrete (RC) structures. In particular, confinement of RC columns with FRP jackets has proven to be very effective in enhancing the strength and ductility of columns, and has become a key technique for the seismic retrofit of RC structures. Despite the large amount of research on the behavior of RC columns confined with FRP, little research has been conducted on the behavior of RC frames with FRP-confined columns. For the seismic retrofit of RC frames with FRP, apart from the structural response of a retrofitted frame, an important issue is how to deploy the least amount of the FRP material to achieve the required upgrade in seismic performance. With these two issues in mind, this paper presents an optimization technique for the performance-based seismic FRP retrofit design of RC building frames. The thicknesses of FRP jackets used for the confinement of columns are taken as the design variables, and minimizing the volume and hence the material cost of the FRP jackets is the design objective in the optimization procedure. The pushover drift is expressed explicitly in terms of the FRP sizing variables using the principle of virtual work and the Taylor series approximation. The optimality criteria (OC) approach is employed for finding the solution of the nonlinear seismic drift design problem. A numerical example is presented and discussed to demonstrate the effectiveness of the proposed procedure.
机译:如今,纤维增强聚合物(FRP)复合材料的外部粘结是一种用于增强/改造钢筋混凝土(RC)结构的成熟技术。特别是,用FRP夹套限制RC柱对提高柱的强度和延展性非常有效,并且已成为RC结构抗震改造的关键技术。尽管对FRP约束的RC柱的性能进行了大量研究,但对FRP约束的RC框架的性能却进行了很少的研究。对于采用FRP的RC框架进行抗震改造,除了要对框架进行结构响应外,重要的问题是如何使用最少的FRP材料来实现所需的抗震性能提升。考虑到这两个问题,本文提出了一种基于性能的钢筋混凝土建筑框架抗震FRP改造设计的优化技术。用于限制柱子的FRP护套的厚度被视为设计变量,并且最小化体积,因此FRP护套的材料成本是优化过程中的设计目标。使用虚拟功原理和泰勒级数逼近,用FRP尺寸变量明确表示下移偏移。最优准则(OC)方法用于寻找非线性地震漂移设计问题的解决方案。给出并讨论了一个数值示例,以证明所提出程序的有效性。

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