Cyclic Behavior of a Reinforced Concrete Column with Unstressed Seven-Wire Steel Strands as Longitudinal Reinforcement

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Title: Cyclic Behavior of a Reinforced Concrete Column with Unstressed Seven-Wire Steel Strands as Longitudinal Reinforcement

Author(s): Yu-Chen Ou, Samuel Y.L.Yin, Yi-Qing Liu, and Jui-Chen Wang

Publication: Symposium Paper

Volume: 341

Issue:

Appears on pages(s): 97-104

Keywords: columns, cyclic test, reinforced concrete, seven-wire strands

DOI: 10.14359/51727026

Date: 6/30/2020

Abstract:
The use of unstressed Grade 1860 (MPa) seven-wire steel strands as longitudinal reinforcement in columns has the advantage of reducing the cost of steel as compared with conventional Grade 420 (MPa) deformed steel bars. A preliminary experimental study was conducted to investigate the performance of a column with unstressed seven-wire strands as longitudinal reinforcement. Large-scale column specimens were designed and tested using double-curvature lateral cyclic loading under a constant axial load. Test results showed that the column with strands as longitudinal reinforcement (RH1) showed less and wider cracks and less energy dissipation than the column with deformed bars as longitudinal reinforcement (ORH1). Despite this, RH1 showed a slightly higher drift capacity than ORH1 even when the strands used in RH1 had a much lower ultimate strain than the deformed bars used in ORH1.

Related References:

1. ASTM A416/A416M-18, 2018, “Standard Specification for Low-Relaxation, Seven-Wire Steel Strand for Prestressed Concrete”, ASTM International, West Conshohocken, PA.

2. AASHTO LRFD Standard Specifications for Highway Bridges 17th Edition. Washington, D.C.: American Association of State Highway and Transportation Officials, 2002.

3. ASTM A706/A706M-16, 2016, “Standard Specification for Deformed and Plain Low-Alloy Steel Bars for Concrete Reinforcement”, ASTM International, West Conshohocken, PA.

4. Budek, A.M., Priestley, M.J.N., and Lee, C. O., 2002, “Seismic design of columns with high-strength wire and strand as spiral reinforcement”, ACI Structural Journal, 99(5), 660-670.

5. ACI Committee 318, 2014, “Building Code Requirements for Structural Concrete (ACI 318-14) and Commentary”, American Concrete Institute, Farmington Hills, MI.

6. Caltrans, 2013, "Seismic Design Criteria Version 1.7", California Department of Transportation, Sacramento.

7. FEMA 356, 2000, “Pre-standard and Commentary for the Seismic Rehabilitation of Buildings”, Federal Emergency Management Agency, Washington, DC.