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Experimental study on the behavior of CFT stub columns filled with PCC subject to concentric compressive loads

Authors
Kang, H.-S.Lim, S.-H.Moon, T.-S.Stiemer, S.F.
Issue Date
2005
Publisher
Techno Press
Keywords
CFT stub columns; Failure mode; Polymer cement concrete; Ultimate strength; Width-thickness ratio
Citation
Steel and Composite Structures, v.5, no.1, pp 17 - 34
Pages
18
Indexed
SCOPUS
KCICANDI
Journal Title
Steel and Composite Structures
Volume
5
Number
1
Start Page
17
End Page
34
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/29203
DOI
10.12989/scs.2005.5.1.017
ISSN
1229-9367
1598-6233
Abstract
This paper presents an experimental study and its findings of the behavior of circular and square stub columns filled with high strength concrete (f c′=49 MPa) and polymer cement concrete (PCC) under concentric compressive load. Twenty-four specimens were tested to investigate the effects of variations in the tube shape (circular, square), wall thickness, and concrete type on the axial strength of stub columns. The characteristics of CFT stub columns filled with two types of concrete were investigated in order to collect the basic design data for using the PCC for the CFT columns. The experimental investigations included consideration of the effects of the concrete fill on the failure mode, ultimate strength, initial stiffness and deformation capacity. One of the key findings of this study was that circular section members filled with PCC retain their structural resistance without reduction far beyond the ultimate capacity. The results presented in this paper will provide experimental data to aid in the development of design procedures for the use of advanced concretes in CFT columns. Additionally, these results give structural designers invaluable insight into the realistic behavior of CFT columns.
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공과대학 (건축공학부)
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