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Experimental and Analytical Investigation of D-Type Self-Centering Steel Eccentrically Braced Frames with Replaceable Hysteretic Damping Devices

机译:具有可更换滞回阻尼装置的D型自定心钢偏心支撑框架的实验和分析研究

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This paper presents the results of an experimental investigation of D-type self-centering eccentrically braced frames (SCEBF) subjected to cyclic loading. Analytical formulation of the SCEBF module frame's load-displacement relationship is first presented. A total of five one-bay one-story SCEBF module frame specimens were experimentally tested under cyclic loading to investigate their seismic behavior. Finite-element simulation study of Specimen SCEBF2 was also conducted to assist with specimen design. The replaceable hysteretic damping (RHD) devices made of low-yield steel were installed at the corners of a rocking link beam to use the amplified motion due to the rocking link beam's rotation and gap opening for energy dissipation. The experimental test results revealed that all the SCEBF specimens were capable of recentering and that the damage was confined to the RHD devices. It was also found that after severe cyclic loading, the SCEBF module frames with replaced RHD devices exhibited almost identical stiffness, strength, recentering ability, and energy dissipation capacity to those of the original structure.
机译:本文介绍了D型自定心偏心支撑框架(SCEBF)承受循环载荷的实验研究结果。首先介绍了SCEBF模块框架的载荷-位移关系的解析公式。在循环载荷下,总共对五个单舱单层SCEBF模块框架标本进行了实验测试,以研究其抗震性能。还对标本SCEBF2进行了有限元模拟研究,以协助标本设计。由低屈服强度钢制成的可替换滞后阻尼(RHD)设备安装在摇摆连杆梁的各个角落,以利用由于摇摆连杆梁的旋转和间隙开口而产生的放大运动来进行能量消散。实验测试结果表明,所有的SCEBF标本都可以对位,并且损坏仅限于RHD设备。还发现,在经历了严重的周期性载荷之后,替换为RHD装置的SCEBF模块框架显示出与原始结构几乎相同的刚度,强度,调心能力和能量耗散能力。

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