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首页> 外文期刊>Proceedings of the Institution of Civil Engineers >Steel bracing configurations for seismic retrofitting of a reinforced concrete frame
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Steel bracing configurations for seismic retrofitting of a reinforced concrete frame

机译:用于加固钢筋混凝土框架的钢支撑配置

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摘要

Steel bracings are among the most common and potentially effective technical solutions for enhancing the seismic safety of existing reinforced concrete structures. Nevertheless, several issues dealing with both analysis and design of steel bracings for retrofitting reinforced conrete frames remain unresolved. This paper presents a study inspired by a practical retrofitting project of a reinforced concrete frame with concentric X-bracings. Specifically, it proposes a discussion about the consequences and implications of assuming three different configurations for the steel diagonals, chosen from among the architecturally compatible ones. A detailed description of the as-built reinforced concrete frame is first presented, along with key information about the procedure followed to design the bracing diagonals. Then, after having outlined the numerical models employed to simulate the mechanical response of both concrete and steel members, the results of a series of non-linear time-history analyses are reported and discussed with the aim of highlighting the key advantages and disadvantages of adopting the three alternative bracing configurations. In this regard, particularly critical aspects, such as the actions transferred to foundations, the stresses achieved in beam-to-columns joints and the distribution of forces throughout the existing reinforced concrete members, are considered to compare the performance of the three alternative bracing patterns.
机译:钢支撑是增强现有钢筋混凝土结构抗震安全性的最常见且潜在有效的技术解决方案之一。然而,关于加固钢筋混凝土框架的钢支撑的分析和设计的几个问题仍未解决。本文提出了一项研究,该研究的灵感来自具有同心X形支撑的钢筋混凝土框架的实际改造项目。具体而言,它提出了关于假设对角钢采用三种不同构型的后果和影响的讨论,这些构型是从结构兼容的构架中选择的。首先介绍了在建钢筋混凝土框架的详细说明,以及有关设计支撑对角线的步骤的关键信息。然后,在概述了用于模拟混凝土和钢构件的力学响应的数值模型后,报告并讨论了一系列非线性时程分析的结果,目的是突出采用该模型的主要优点和缺点。三种可选的支撑配置。在这方面,特别是比较关键的方面,例如转移到基础上的作用,梁到柱节点的应力以及现有钢筋混凝土构件中的力分布等,以比较三种替代支撑方式的性能。 。

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