Structural performance of H-type shear panel damper made of hot-rolled mild steel

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초록

In this study, cyclic loading experiments were performed to understand the mechanical characteristics of SPHC (hot-rolled mild steel) H-type shear panel dampers in a stud support-type installation. The specimens evaluated had panel width-to-thickness ratios of 48.9 and 52.5. Constant amplitude deformation loading was performed using shear deformation as a variable. A stable spindle-shaped hysteresis curve was exhibited with strength reduction caused by out-of-plane deformation. Maximum strength was achieved near the second cycle for all specimens and the specimens with the lower width-to-thickness ratio exhibited slightly higher strength increase ratios. Similarly, energy absorption capacity depended on load amplitude and width-to-thickness ratio of the panel part and specimens with a smaller width-to-thickness ratios corresponding to larger accumulative energy dissipation. Based on the Manson–Coffin law, the deformation capacity of the tested specimens was found to be lower throughout the fatigue curve when compared with the relative architectural guidelines.

키워드

H-type shear panel damper (HSPD)Width-to-thickness ratioHysteresis curveDeformation capacityFatigue curveEnergy absorption capacity
제목
Structural performance of H-type shear panel damper made of hot-rolled mild steel
저자
Kim,Jinwoo Eom,Tae-Sung Kim,Tae-Soo Park, Hae-Yong
DOI
10.1016/j.jcsr.2023.108134
발행일
2023-12
유형
Article
저널명
Journal of Constructional Steel Research
211
페이지
1 ~ 9