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Seismic strengthening of non-ductile reinforced concrete frames using aluminum shear links as energy-dissipation devices

机译:使用铝剪切杆作为耗能装置的非延性钢筋混凝土框架的抗震加固

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摘要

This paper presents a seismic strengthening technique using aluminum shear links as energy-dissipating devices to enhance the lateral strength, stiffness, and energy-dissipation potential of the existing reinforced concrete (RC) frames. The lateral load on the frame is allowed to transfer to the shear link through a load-transferring system consisting of a shear collector beam and chevron braces so as to cause shear yielding of aluminum plates. No extensive strengthening of the existing RC columns is carried out in the proposed technique. An experimental study is conducted on a reduced-scale non-ductile RC frame to investigate the effectiveness of the strengthening system under constant gravity loading and gradually increasing reversed cyclic lateral displacements. The strengthened specimen exhibited enhanced lateral strength, stiffness and energy-dissipation potential as compared to the RC (bare) frame. The excellent energy-dissipation and damping potential of the shear link significantly reduced the damage levels in the existing RC members of the strengthened specimen up to 3.5% drift level.
机译:本文提出了一种抗震加固技术,该技术使用铝剪切链作为耗能装置,以增强现有钢筋混凝土(RC)框架的侧向强度,刚度和耗能潜力。允许框架上的侧向载荷通过载荷传递系统传递到剪切连杆,该载荷传递系统由剪切收集器梁和V形人字形支撑组成,以引起铝板的剪切屈服。建议的技术没有对现有的RC柱进行广泛的加固。在缩小的非延性RC框架上进行了一项实验研究,以研究在恒定重力载荷和逐渐增加反向循环侧向位移的情况下加强系统的有效性。与RC(裸露)框架相比,加固后的试样具有增强的侧向强度,刚度和耗能潜力。剪切杆的出色的能量耗散和阻尼潜力极大地降低了加固试样中现有RC构件的破坏水平,漂移水平高达3.5%。

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