Development of FRP (Fiber Reinforced Polymer) for Rehabilitation of Marine Concrete Structure

被引:0
|
作者
Soh, Guan Hong [1 ]
Wijaya, Sherly [1 ]
Lu, Jin Ping [1 ]
机构
[1] Admat Technol Private Ltd, Singapore, Singapore
关键词
fiber reinforced polymer; marine concrete rehabilitation; corrosion monitoring; structural monitoring;
D O I
暂无
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
The durability of marine concrete structures has long been a concern of many countries, especially in the island country of Singapore, where many structures are constructed along coastal areas. Currently, the durability of concrete under marine conditions can be enhanced by the addition of admixtures, and using high grade concrete. The FRP system can also be used to increase the durability of the concrete structures under marine conditions, by preventing the ingress of chloride ions into the structures, thereby preventing the corrosion of the steel reinforcements. In addition, the FRP system has the additional function of increasing the strength of the structure. The FRP system, which composed of the epoxy developed and carbon fiber selected, was evaluated according to various standard testing methods to get the basic technical information of the FRP system. Full scale laboratory testing was carried out to determine the effectiveness of the FRP in enhancing the structural performance of concrete structures. Test results showed that the structural capacity of concrete beams can be increased, with the addition of the FRP system. A total of 8 marine structures (4 beams, 3 slabs and 1 pile cap) were chosen for installation and monitoring at the Port of Singapore Authority site. Results show that the corrosion rates were lower than the unwrapped (control) structures. It was also observed that the FRP wrapped structures had no durability problems under marine conditions. In addition, structural health monitoring was conducted using a system of Fiber Optic Sensors (FOS). Structural Monitoring results showed that beams wrapped with the FRP exhibited greater reductions in strain.
引用
收藏
页码:453 / 460
页数:8
相关论文
共 50 条
  • [21] Glass FRP reinforcement in rehabilitation of concrete marine infrastructure
    Newhook, John P.
    ARABIAN JOURNAL FOR SCIENCE AND ENGINEERING, 2006, 31 (1C) : 53 - 75
  • [22] Introduction: Fiber Reinforced Polymer (FRP) Composites
    Schumacher, Ann
    Pulido, M. Dolores G.
    STRUCTURAL ENGINEERING INTERNATIONAL, 2010, 20 (04) : 362 - 362
  • [23] Fiber Reinforced Polymer (FRP) Composites for Construction
    Guo, Rui
    Wang, Bo
    Yang, Muye
    He, Weidong
    Zhang, Chuntao
    BUILDINGS, 2024, 14 (10)
  • [24] Sustainable rehabilitation with fiber reinforced concrete
    1600, Associated Cement Companies Ltd. (88):
  • [25] Carbon fiber-reinforced polymer wraps for corrosion control and rehabilitation of reinforced concrete columns
    Debaiky, AS
    Green, MF
    Hope, BB
    ACI MATERIALS JOURNAL, 2002, 99 (02) : 129 - 137
  • [26] Exposure Test of FRP-Reinforced Concrete Structure in Temperate Marine Tide Zone
    Chu, Mingjin
    Sun, Zhijuan
    Cui, Huichen
    zhang, Ke
    PROGRESS IN STRUCTURE, PTS 1-4, 2012, 166-169 : 538 - +
  • [27] The trilinear moment vs. curvature relationship of concrete beams reinforced with fiber reinforced polymer (FRP) rebars
    He, Zheng
    Ou, Jinping
    Wang, Bo
    COMPOSITE STRUCTURES, 2007, 77 (01) : 30 - 35
  • [28] Structural analysis of FRP reinforced polymer concrete material
    San-Jose, J. Tomas
    Vegas, Inigo
    Meyer, Find
    CONSTRUCTION AND BUILDING MATERIALS, 2006, 20 (10) : 971 - 981
  • [29] Creep behaviour of FRP-reinforced polymer concrete
    Tavares, CML
    Ribeiro, MCS
    Ferreira, AM
    Guedes, RM
    COMPOSITE STRUCTURES, 2002, 57 (1-4) : 47 - 51
  • [30] Bending Behavior of Fiber Reinforced Plastic (FRP) and Steel Fiber Reinforced Concrete Beams
    Chen, Shengping
    Ma, Xiaoxia
    Lu, Yingfa
    Luo, Hanhan
    Liangni
    SCIENCE OF ADVANCED MATERIALS, 2019, 11 (07) : 1037 - 1043