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Improving seismic performance of non-ductile reinforced concrete frames through the combined behavior of friction and metallic dampers

机译:通过摩擦和金属阻尼器的组合行为改善非延性钢筋混凝土框架的抗震性能

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This paper describes a seismic strengthening technique using a wall-type damping system (DS), targeted at moment-resisting frame buildings. The DS under consideration is a hybrid damper which works through the combined and multi-phase action of a friction damper (FD) and a metallic damper (MD). To assess the seismic effectiveness of the proposed system, full-scale cyclic tests were conducted on a bare reinforced concrete (RC) frame with non-ductile detailing and four damper-strengthened frames. The RC frame showed highly pinched behavior, whereas the hysteresis curves of strengthened frames were more stable due to the activation of FD and/or MD, forming a larger loop area. The deformation capacities of the RC frame and strengthened frames were not significantly different, but the maximum strength, stiffness, and energy dissipation capacities were significantly improved in the strengthened frames. The calculated strength and stiffness equations accurately represented the actual behavior of the RC frame. Conversely, the stiffness values of the DS were considerably lower than predicted by theoretical equations as a result of the softening of anchorage fixity according to the connection details.
机译:本文介绍了一种针对墙架阻尼系统(DS)的抗震加固技术,针对抗弯框架建筑物。所考虑的DS是一种混合阻尼器,它通过摩擦阻尼器(FD)和金属阻尼器(MD)的组合和多相作用起作用。为了评估所提出系统的抗震效果,对具有非延展性细节的裸钢筋混凝土(RC)框架和四个阻尼加强框架进行了全面的循环测试。 RC框架表现出高度的挤压行为,而增强框架的磁滞曲线由于FD和/或MD的激活而更加稳定,从而形成了较大的回路面积。钢筋混凝土框架和加固框架的变形能力没有显着差异,但是加固框架的最大强度,刚度和能量耗散能力得到了显着提高。计算得出的强度和刚度方程可以准确地表示RC框架的实际行为。相反,由于根据连接细节的锚固固定性的软化,DS的刚度值大大低于理论方程式的预测值。

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