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Experimental study on RC frame structures strengthened by externally-anchored PC wall panels

机译:外锚式PC墙板加固RC框架结构的试验研究

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摘要

Infill wall strengthening method has been widely used for seismic strengthening of deteriorated reinforced concrete (RC) frame structures with non-seismic details. Although such infill wall method can ensure sufficient lateral strengths of RC frame structures deteriorated in seismic performances with a low constructional cost, it generally requires quite cumbersome construction works due to its complex connection details between an infill wall and existing RC frame. In this study, an advanced seismic strengthening method using externally-anchored precast wall panels (EPCW) was developed to overcome the disadvantage inherent in the existing infill wall strengthening method. A total of four RC frame specimens were carefully designed and fabricated. Cyclic loading tests were then conducted to examine seismic performances of RC frame specimens strengthened using the EPCW method. Two specimens were fully strengthened using stocky precast wall panels with different connection details while one specimen was strengthened only in column perimeter with slender precast wall panels. Test results showed that the strength, stiffness, and energy dissipation capacity of RC frame specimens strengthened by EPCWs were improved compared to control frame specimens without strengthening.
机译:填充墙加固方法已广泛用于具有抗震细节的劣化钢筋混凝土(RC)框架结构的抗震加固。尽管这种填充墙方法可以确保RC框架结构的足够的侧向强度,而抗震性能以较低的建造成本降低,但是由于其在填充墙和现有RC框架之间的连接细节复杂,因此通常需要相当麻烦的建筑工程。在这项研究中,开发了一种使用外部锚固预制墙板(EPCW)的先进抗震加固方法,以克服现有填充墙加固方法固有的缺点。精心设计和制造了总共四个RC框架标本。然后进行了循环荷载试验,以检验采用EPCW方法加固的钢筋混凝土框架标本的抗震性能。使用不同连接细节的预制预制墙板充分加固了两个标本,而仅使用细长预制墙板在圆柱范围内进行了加固。试验结果表明,与不加筋的对照框架标本相比,EPCW增强的RC框架标本的强度,刚度和能量耗散能力得到了改善。

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