Concrete columns with discrete confinement by metal sheets subjected to uniaxial compression: derivation toward design rule
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Creator 1. Maetee Boonpichetvong
2. Tanyada Pannachet
3. Siraphon Pinitkarnwatkul
4. Harm Askes
Title Concrete columns with discrete confinement by metal sheets subjected to uniaxial compression: derivation toward design rule
Publisher Faculty of Engineering, Khon Kaen University
Publication Year 2561
Journal Title Engineering and Applied Science Research
Journal Vol. 45
Journal No. 1
Page no. 56-64
Keyword Concrete, Metal sheet, Axial compression, Finite element analysis, Confinement
URL Website https://www.tci-thaijo.org/index.php/easr/index
Website title Engineering and Applied Science Research
ISSN 2539-6161
Abstract This paper applied a nonlinear finite element model to study the effect of discrete metal sheet confinement on the uniaxial compressive strength of concrete columns. The columns in this study had circular cross sections with a diameter of 15 cm and a height of 75 cm. Concrete columns with various discrete wrap patterns were computationally simulated and found to be consistent with available experimental results. The results from the three-dimensional finite element modelling showed the effect of the bi-axial response of the metal sheet when it acted as confining material. An analytical procedure outlined in this study was used to determine the effective confining pressure in concrete. This work demonstrates that the development of the strength of a concrete column with discrete metal sheet confinement depends on its size, spacing and the number of the applied metal sheet layers. Strength prediction equations for study columns were derived as an example adaptable to formulate necessary design rules.
Engineering and Applied Science Research

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