Fiber-Reinforced Concrete in Closure Pours over Piers

被引:0
|
作者
Ozyildirim, H. Celik [1 ]
Khakimova, Evelina [2 ]
Nair, Harikrishnan [3 ]
Moruza, Gail M. [4 ]
机构
[1] VDOT Virginia Transportat Res Council VTRC, Charlottesville, VA 22903 USA
[2] AECOM, Los Angeles, CA USA
[3] VTRC, Mat Team, Charlottesville, VA USA
[4] VTRC, Charlottesville, VA USA
关键词
closure pour; crack width; fiber-reinforced concrete; polypropylene fibers; polyvinyl alcohol fibers; steel fibers; PERMEABILITY; COMPOSITES;
D O I
10.14359/51689561
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Cracks in concrete, high permeability, or leaking bridge joints facilitate the penetration of chloride solutions, resulting in extensive corrosion damage. Joints can be eliminated by constructing continuous decks or closure pours, and infiltration through concrete can be minimized by using low-permeability concrete and fiber-reinforced concrete (FRC) that controls cracks. This study investigated low-permeability FRCs with polyvinyl alcohol (PVA), polypropylene (PP), or steel (S) fibers to control cracking in closure pours. Large volumes of suitable fibers used in FRC enable high residual strengths and deflection hardening behavior. Generally, in these concretes, multiple tight cracks (less than 0.004 in. [0.1 mm] wide) occur, which resist the ingress of harmful solutions. In two bridges on I-64 near Covington, VA, closure pours with FRCs were placed. The initial results indicate, in general, no or tight cracking in FRCs with PVA, PP, or S fibers. Deflection hardening did not occur in all mixtures; however, the tight cracks observed were attributed to the addition of fibers and the presence of primary reinforcement.
引用
收藏
页码:397 / 406
页数:10
相关论文
共 50 条
  • [41] A new test method for fiber-reinforced concrete
    Zollo, RF
    Hays, CD
    Zellers, R
    CEMENT CONCRETE AND AGGREGATES, 1999, 21 (02): : 111 - 116
  • [42] Use of Basalt Fibers in Fiber-Reinforced Concrete
    Pickel, Daniel J.
    West, Jeffrey S.
    Alaskar, Abdulaziz
    ACI MATERIALS JOURNAL, 2018, 115 (06) : 867 - 876
  • [43] Effects of γ Radiation on Fiber-Reinforced Polymer Concrete
    Martinez-Barrera, Gonzalo
    Giraldo, Luis F.
    Lopez, Betty L.
    Brostow, Witold
    POLYMER COMPOSITES, 2008, 29 (11) : 1244 - 1251
  • [44] Damage Modeling of Metallic Fiber-Reinforced Concrete
    Hameed, Rashid
    Sellier, Alain
    Turatsinze, Anaclet
    Duprat, Frederic
    11TH INTERNATIONAL CONFERENCE ON THE MECHANICAL BEHAVIOR OF MATERIALS (ICM11), 2011, 10 : 1670 - 1678
  • [45] Impact resistance of fiber-reinforced concrete - A review
    Yoo, Doo-Yeol
    Banthia, Nemkumar
    CEMENT & CONCRETE COMPOSITES, 2019, 104
  • [46] CRACK PROPAGATION IN FIBER-REINFORCED CONCRETE.
    Jeng, Y.S.
    Shah, S.P.
    1600, (112):
  • [47] Shrinkage cracking in polyolefin fiber-reinforced concrete
    Banthia, N
    Yan, C
    ACI MATERIALS JOURNAL, 2000, 97 (04) : 432 - 437
  • [48] Torsional Behavior of Waste Fiber-Reinforced Concrete
    Sanok, Artur
    Domski, Jacek
    Kobaka, Janusz
    Logon, Dominik
    MATERIALS, 2024, 17 (13)
  • [49] FIBER-REINFORCED CONCRETE BEAMS UNDER TORSION
    ELNIEMA, EI
    ACI STRUCTURAL JOURNAL, 1993, 90 (05) : 489 - 495
  • [50] FIBER-REINFORCED CONCRETE UNDER BIAXIAL COMPRESSION
    YIN, WS
    SU, ECM
    MANSUR, MA
    HSU, TTC
    ENGINEERING FRACTURE MECHANICS, 1990, 35 (1-3) : 261 - 268