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A novel seismic strengthening method of RC columns confined by direct fastening steel plates

机译:直接紧固钢板局限制的RC柱的新型地震强化方法

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Reinforced concrete (RC) columns designed in accordance with older design codes that do not incorporate seismic resistance are prone to brittle failure. These defective columns may lead to the development of a non-ductile column sway mechanism during a strong earthquake. This failure process can be however remedied by strengthening the defective columns. In this study, an innovative strengthening method that uses direct fastening of steel plates is proposed for the seismic strengthening of RC columns. This method allows quick and easy implementation in practice, compared to the use of conventional steel jacketing connected through welding or bolting. The steel plates in the steel encasement can directly increase the axial, flexural and shear strengths. Furthermore, the confinement generated from the steel encasement can enhance the strength and ductility of the concrete core. This paper describes an experimental investigation of strengthened columns under reversed cyclic lateral load together with a constant vertical load and develops a theoretical model to predict the lateral capacity, which provides the basis for conducting the assessment of the generalized force-deformation relation. The experimental results indicate that the new connection method is robust and the strength and deformation of the strengthened columns are significantly improved. Variables such as connection spacing, number of nails, steel plate thickness and axial load ratio can affect the mechanical behavior of the strengthened columns.
机译:根据不掺入地震抗性的旧设计代码设计的钢筋混凝土(RC)柱易于脆弱失效。这些有缺陷的柱可能导致在强烈地震期间的非延性柱摇摆机制的发展。然而,通过强化缺陷柱可以弥补这种故障过程。在这项研究中,提出了一种使用钢板直接紧固的创新强化方法,用于抗RC柱的地震强化。与通过焊接或螺栓连接连接的传统钢护套的使用相比,这种方法可以在实践中快速且易于实现。钢板中的钢板可以直接增加轴向,弯曲和剪切强度。此外,从钢壳体产生的限制可以增强混凝土芯的强度和延展性。本文介绍了在反向循环横向载荷下加强柱的实验研究以及恒定的垂直载荷,并开发理论模型以预测横向容量,这为进行了广义力变形关系的评估提供了基础。实验结果表明,新的连接方法是鲁棒的,强化柱的强度和变形显着提高。诸如连接间距,钉子数,钢板厚度和轴向载荷比的变量可能会影响加强柱的机械特性。

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