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Title: Influence of Confining Hoop Flexural Stiffness on Behavior of High-Strength Lightweight Concrete Columns

Author(s): Ali R. Khaloo and A. Bozorgzadeh

Publication: Structural Journal

Volume: 98

Issue: 5

Appears on pages(s): 657-664

Keywords: column; ductility; high-strength concrete; hoop reinforcement; lightweight concrete.

DOI: 10.14359/10619

Date: 9/1/2001

Abstract:
This paper presents the behavior of high-strength lightweight concrete columns confined with small size diameter hoop reinforcement. The concrete had a strength of up to 87.2 MPa (12,500 psi). The experimental program consisted of axial load tests on eight column specimens. The cross-sectional shape of the column specimens was elliptical, with dimensions of 152 x 229 mm (6 x 9 in.) and height of 762 mm (30 in.). The only longitudinal reinforcements used were four 4.52 mm (0.178 in.) diameter wires that were tack-welded to the lateral reinforcement to maintain the desired configuration of the lateral reinforcement. The influencing parameters included concrete strength and amount and spacing of lateral reinforcement. Results of this investigation were compared with those of similar columns confined with steel reinforcement of larger diameter size. The results showed that columns confined with small diameter size for confining reinforcement (representing low flexural stiffness) lead to low strength and low ductility. The compressive strength of confined concrete f¢cc, corresponding strain e¢cc,and ductility for columns confined with small size diameter were lower than that of larger diameter size, and the differences became considerable for high-strength concrete.


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