Field and laboratory evaluation of silica fume modified concrete bridge deck overlays in Ohio

被引:0
|
作者
Fitch, MG [1 ]
Abdulshafi, OA [1 ]
机构
[1] Ohio State Univ, Dept Civil & Environm Engn & Geodet Sci, Columbus, OH 43210 USA
来源
CONCRETE IN CONSTRUCTION | 1998年 / 1610期
关键词
D O I
暂无
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
The properties of silica fume modified concrete (SFMC) mixes that have been used by the Ohio Department of Transportation for bridge deck overlays since 1984 were evaluated under field and laboratory conditions. The research methods included construction monitoring of 9 overlay placement projects, visual inspections of 145 decks, in-depth condition surveys of 28 decks, and testing of laboratory SFMC mixes with materials obtained from the construction monitoring projects. Notable activities included field-testing to compare the effectiveness of ground-penetrating radar and manual sounding techniques for detecting the presence of debonded/delaminated deck areas and laboratory testing of overlay bond strength specimens under direct tensile loading. Based on the information collected, it was concluded that the overall performance of SFMC overlays in Ohio through 1995 was good, with none of the existing overlays showing spalling or patching; however, instances of drying shrinkage cracking were noted. Recommendations are provided to assist in achieving optimum SFMC overlay performance.
引用
收藏
页码:20 / 27
页数:8
相关论文
共 50 条
  • [41] Effect of slag, silica fume, and finishing on the sorptivities of field concrete
    Tumidajski, Peter J.
    CANADIAN JOURNAL OF CIVIL ENGINEERING, 2006, 33 (08) : 1022 - 1026
  • [42] Development and field applications of silica fume concrete in Canada: a retrospective
    Thomas, MDA
    Cail, K
    Hooton, RD
    CANADIAN JOURNAL OF CIVIL ENGINEERING, 1998, 25 (03) : 391 - 400
  • [43] Field Destructive Testing of a Reinforced Concrete Bridge Deck Slab
    Shu, Jiangpeng
    Bagge, Niklas
    Nilimaa, Jonny
    JOURNAL OF BRIDGE ENGINEERING, 2020, 25 (09)
  • [44] Laboratory Evaluation of Alkali-Activated Slag Concrete Pavement Containing Silica fume and Carbon Nanotubes
    Janaki, Abolfazl Mohammadi
    Shafabakhsh, Gholamali
    Hassani, Abolfazl
    ENGINEERING JOURNAL-THAILAND, 2021, 25 (05): : 21 - 31
  • [45] Field testing of FRP rebar reinforced concrete bridge deck
    Thippeswamy, H
    Franco, J
    GangaRao, H
    MATERIALS AND CONSTRUCTION: EXPLORING THE CONNECTION, 1999, : 316 - 323
  • [46] Monitoring of Field Performance of Longitudinally Cracked Concrete Bridge Deck
    William, G. W.
    Shoukry, S. N.
    Riad, M. Y.
    BRIDGE MAINTENANCE, SAFETY, MANAGEMENT, RESILIENCE AND SUSTAINABILITY, 2012, : 3984 - 3991
  • [47] Detection and quantitative evaluation of pumping distress on bridge deck pavement through field and laboratory experiments
    Ren, Dongya
    Shang, Jing
    Xu, Jie
    Huang, Mingxing
    Chen, Xu
    Cao, Chaofei
    Ai, Changfa
    CONSTRUCTION AND BUILDING MATERIALS, 2023, 378
  • [48] Field Performance Evaluation of Pavement Sections with High Polymer-Modified Asphalt Concrete Overlays
    Habbouche, Jhony
    Boz, Ilker
    Diefenderfer, Brian K.
    Adel, Sayed
    AIRFIELD AND HIGHWAY PAVEMENTS 2021: PAVEMENT DESIGN, CONSTRUCTION, AND CONDITION EVALUATION, 2021, : 197 - 208
  • [49] Use of conventional and high-performance steel-fiber reinforced concrete for bridge deck overlays
    KrstulovicOpara, N
    Haghayeghi, AR
    Haidar, M
    Krauss, PD
    ACI MATERIALS JOURNAL, 1995, 92 (06) : 669 - 677
  • [50] Vertical Electrical Impedance Evaluation of Asphalt Overlays on Concrete Bridge Decks
    Baxter, Jared S.
    Guthrie, W. Spencer
    Waters, Tenli
    Barton, Jeffrey D.
    Mazzeo, Brian A.
    44TH ANNUAL REVIEW OF PROGRESS IN QUANTITATIVE NONDESTRUCTIVE EVALUATION, VOL 37, 2018, 1949