A laboratory test program was undertaken to characterize the seismic performance of concrete squat walls entirely reinforced with glass fiber-reinforced polymer (GFRP) bars. Four large-scale specimens were constructed and tested under the combined action of constant axial and quasi-static lateral reversed cyclic loads. The specimens were 150 mm (6 in.) in thickness, 1400 mm (55 in.) in length, and 1600 mm (63 in.) in height, with a corresponding aspect ratio of 1.14. The primary test variables were the axial load ratio (ALR) and web reinforcement ratio (horizontal and vertical). The test results were analyzed in terms of cracking behavior, failure mechanisms, hysteretic response, and web and boundary reinforcement strains. The effect of the test variables on the lateral load and drift capacity, energy dissipation, and deformability aspects were carefully examined. Overall, the ALR impacted neither the lateral load and drift capacity nor the energy dissipated by a specimen prior to failure. The web reinforcement, on the other hand, had a direct impact on the lateral load and drift capacity as well as on the wall deformability and energy dissipation characteristics.
机构:
The Key Laboratory of Urban Security and Disaster Engineering, Ministry of Education, Beijing University of Technology, BeijingThe Key Laboratory of Urban Security and Disaster Engineering, Ministry of Education, Beijing University of Technology, Beijing
Deng Z.
Gao L.
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机构:
The Key Laboratory of Urban Security and Disaster Engineering, Ministry of Education, Beijing University of Technology, BeijingThe Key Laboratory of Urban Security and Disaster Engineering, Ministry of Education, Beijing University of Technology, Beijing
Gao L.
Wang X.
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机构:
School of Civil Engineering, North China University of Technology, BeijingThe Key Laboratory of Urban Security and Disaster Engineering, Ministry of Education, Beijing University of Technology, Beijing
Wang X.
Yingyong Jichu yu Gongcheng Kexue Xuebao/Journal of Basic Science and Engineering,
2019,
27
(05):
: 1065
-
1076
机构:
Univ Colorado, Dept Civil Engn, Denver, CO 80204 USAUniv Colorado, Dept Civil Engn, Denver, CO 80204 USA
Kim, Ju-Hyung
Kim, Yail J.
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机构:
Univ Colorado, Dept Civil Engn, Denver, CO 80204 USA
Univ Colorado, Bridge Engn Inst, Int Tech Soc, Denver, CO USAUniv Colorado, Dept Civil Engn, Denver, CO 80204 USA
Kim, Yail J.
Park, Hong-Gun
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机构:
Seoul Natl Univ, Dept Architecture & Architectural Engn, Seoul, South KoreaUniv Colorado, Dept Civil Engn, Denver, CO 80204 USA