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Hysteretic response of tilt-up concrete precast walls with embedded steel plate connections

Authors
Yun, H.-D.Kim, H.-R.Choi, W.-C.
Issue Date
Sep-2020
Publisher
MDPI AG
Keywords
Cyclic test; Precast concrete wall panel; Shear connector; Supplementary reinforcement
Citation
Sustainability (Switzerland), v.12, no.19
Journal Title
Sustainability (Switzerland)
Volume
12
Number
19
URI
https://scholarworks.bwise.kr/gachon/handle/2020.sw.gachon/79050
DOI
10.3390/SU12197907
ISSN
2071-1050
Abstract
Many connection systems are available that can transfer tension and shear loads from a precast concrete wall panel to a floor slab. However, due to the insufficient anchor depth in relatively thin precast concrete panels, it is difficult to attain adequate ductility and stiffness to ensure structural integrity. Based on the authors' previous research results, the supplementary reinforcement of embedded steel plates in precast concrete wall panels can enhance stiffness while maintaining allowable displacement and ductility. In this study, three full-size tilt-up precast concrete panels with embedded steel plates were fabricated. Lateral cyclic loads were applied to full support structures consisting of a precast concrete wall panel and a foundation. The test results were compared with the results predicted using existing code equations found in the American Concrete Institute 318-14 and the Prestressed Concrete Institute Handbooks. The test results confirm that the supplementary reinforcement of thin precast concrete wall panels can provide (i) the required strength based on current code equations, (ii) sufficient ductility, and (iii) the energy dissipation capacity to resist cyclic loading. © 2020 by the authors.
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