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Experimental and numerical behaviour of dissipative devices based on carbon-wrapped steel tubes for the retrofitting of existing precast RC structures

机译:基于碳包裹钢管的耗能装置对现有预制RC结构进行改造的实验和数值特性

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摘要

The 2012 Emilia earthquake (in Northern Italy) caused extensive damage to existing prefabricated reinforced concrete structures. These buildings were found being extremely vulnerable because, being designed for vertical loads only, they featured friction-based connections between structural elements, most commonly between beams and columns. Given the large diffusion of these structures, their seismic retrofit is critical. Various techniques have been proposed in the literature, in most of which friction-based connections are removed by inserting mechanical connectors that will make beam-column connections hinged. These approaches lead to a significant increase of the base shear and therefore require strengthening of columns. The paper presents dissipative devices based on carbon-wrapped steel tubes to be used as an alternative low-damage solution for the retrofit of beam-column connections. The first part of the paper presents results of experimental tests on the devices and discusses their dissipative behaviour. The succeeding parts of the paper present numerical analyses on simple structures reinforced with the proposed device. The results of the numerical study show how the introduction of the dissipative devices produces a significant reduction of forces transmitted to the structure, by comparing the seismic response of simple frame structures equipped with dissipative devices with the response of equivalent elastic systems.
机译:2012年艾米利亚大地震(在意大利北部)对现有的预制钢筋混凝土结构造成了广泛破坏。人们发现这些建筑物非常脆弱,因为它们仅设计用于垂直载荷,其特征在于结构元件之间(通常是梁和柱之间)基于摩擦的连接。鉴于这些结构的广泛扩散,对其进行地震改造至关重要。文献中已经提出了各种技术,其中大多数基于摩擦的连接是通过插入机械连接器来消除的,该机械连接器将使梁柱连接成为铰链。这些方法导致基础剪力的显着增加,因此需要加强柱子。本文提出了一种基于碳包裹钢管的耗散设备,该耗散设备将用作梁柱连接件翻新的替代性低损伤解决方案。本文的第一部分介绍了该设备的实验测试结果,并讨论了它们的耗散行为。本文的后续部分对用所提出的装置加强的简单结构进行了数值分析。数值研究的结果表明,通过将装有耗散装置的简单框架结构的地震响应与等效弹性系统的响应进行比较,耗散装置的引入如何显着降低了传递到结构的力。

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