4.6 Article

Analysis of RC Hollow Columns Strengthened with GFRP

期刊

JOURNAL OF COMPOSITES FOR CONSTRUCTION
卷 15, 期 4, 页码 545-556

出版社

ASCE-AMER SOC CIVIL ENGINEERS
DOI: 10.1061/(ASCE)CC.1943-5614.0000192

关键词

Concrete columns; Wrapping; Confinement; Modeling; Hollow sections

资金

  1. NSF Industry/University Cooperative Research Center for Repair of Buildings and Bridges with Composites (RB2C) at the University of Miami
  2. REte dei Laboratori Universitari di Ingegneria Sismica (RELUIS) at the University of Naples Federico II
  3. Mapei S.p.A
  4. Div Of Industrial Innovation & Partnersh
  5. Directorate For Engineering [0933537] Funding Source: National Science Foundation

向作者/读者索取更多资源

Reinforced concrete (RC) hollow piers in bridges withstand high moment and shear demands ensured with reduced mass and lower stress on foundations compared with solid piers. Failure of hollow columns is typically affected by premature buckling of reinforcing bars and concrete cover spalling. At present, no guidelines are available for the design of their upgrade, and few research investigations can be found on hollow columns strengthened by using fiber-reinforced polymer (FRP) materials. This paper discusses an experimental program carried out on purely compressed RC hollow columns externally wrapped with glass-fiber-reinforced polymer (GFRP). Three specimens were tested: one specimen was unstrengthened and used as the benchmark; the other two specimens were GFRP-wrapped with different confining reinforcement ratios. Each specimen was designed according to dated codes (i.e., prior to 1970) accounting only for gravity loads. In particular, steel longitudinal bars cross section and steel tie-spacing were designed with the minimum amount of longitudinal reinforcement and minimum tie area at maximum spacing. Tests results highlight that the GFRP-jacket mainly provided ductility increases before low strength increments could be obtained. Refined and simplified numerical models for hollow square RC columns, previously proposed by the authors, herein extend to hollow rectangular members. Comparisons of experimental results and theoretical predictions on the basis of both refined and simplified confinement models were performed and showed good agreement. In the case of the simplified model, a value for the effective ultimate FRP strain was suggested. DOI: 10.1061/(ASCE)CC.1943-5614.0000192. (C) 2011 American Society of Civil Engineers.

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