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Tensile Strength Characteristics of GFRP Bars in Concrete Beams with Work Cracks under Sustained Loading and Severe Environments 被引量:4

Tensile Strength Characteristics of GFRP Bars in Concrete Beams with Work Cracks under Sustained Loading and Severe Environments
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摘要 To investigate the effect of different environmental conditions of GFRP bars in concrete beams with work cracks subjected to sustained loads, the beams were exposed in indoor, freeze/thaw cycles and immersed in alkaline solution at elevated temperature. The bars were carefully extracted from the beams and tested in order to evaluate residual tensile properties. The results show that the tensile strength decreased significantly in the highly aggressive conditions but not in the natural conditions. The effect of GFRP bars casting in concrete beams demonstrated approximately 2.5% decrease of tensile strength caused by pore water environment in concrete beams on basis of those of the original bars. The effect of sustained loading plus work cracks demonstrated about 10.5% tensile strength decrease on basis of those of the bars only casted in concrete beams. The effect of environments under sustained loading plus work cracks demonstrated about 17% tensile strength decrease caused by a saturated solution of Ca(OH)2 and 60-2 ℃ tap water (pH=12-13) and about 8% tensile strength decrease caused by freezing and thawing cycle (F/T), both on basis of those of the bars of the indoor beams only under sustained loading plus work cracks. The results demonstrate the effects of the tensile strengths under different environmental conditions of GFRP bars in concrete beams with work cracks subjected to sustained loads. To investigate the effect of different environmental conditions of GFRP bars in concrete beams with work cracks subjected to sustained loads, the beams were exposed in indoor, freeze/thaw cycles and immersed in alkaline solution at elevated temperature. The bars were carefully extracted from the beams and tested in order to evaluate residual tensile properties. The results show that the tensile strength decreased significantly in the highly aggressive conditions but not in the natural conditions. The effect of GFRP bars casting in concrete beams demonstrated approximately 2.5% decrease of tensile strength caused by pore water environment in concrete beams on basis of those of the original bars. The effect of sustained loading plus work cracks demonstrated about 10.5% tensile strength decrease on basis of those of the bars only casted in concrete beams. The effect of environments under sustained loading plus work cracks demonstrated about 17% tensile strength decrease caused by a saturated solution of Ca(OH)2 and 60-2 ℃ tap water (pH=12-13) and about 8% tensile strength decrease caused by freezing and thawing cycle (F/T), both on basis of those of the bars of the indoor beams only under sustained loading plus work cracks. The results demonstrate the effects of the tensile strengths under different environmental conditions of GFRP bars in concrete beams with work cracks subjected to sustained loads.
出处 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2013年第5期934-937,共4页 武汉理工大学学报(材料科学英文版)
基金 Funded Partly by the National Natural Science Foundation of China(No.51178361)
关键词 GFRP bars concrete beams working cracks sustained loading and severe environments tensile strength GFRP bars concrete beams working cracks sustained loading and severe environments tensile strength
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  • 1M M Lwin. The important Roles of Bridge Maintenance and Managementon Transportation Safety and Efficiency[C]. 3rd International Conference on Bridge Maintenance, Safety and Management, Taylor and Francis, Netherlands, 2006.
  • 2American Concrete lnst. Guidefor the Design and Construction of Concrete Reinforced with FRP Bars[S]. ACI 440.IR-06, 2006.
  • 3Japan Society of Civil Engineering. Recommendation for Design and Construction of Concrete Structures Using Continuous Fiber Reinforcing Materials[S]. Japanese Society of Civil Engineering, Concrete Engineering, Series 23, 1997.
  • 4Ewan A Byars, Peter Waldron, Valter Dejke. Durability of FRP in Concrete - Current Specifications and a New Approach[J]. International Journal of Materials and Product Technology, 2003, 19( I): 40-52.
  • 5Gilbert Nkurunziza, Ahmed Debaiky, Patrice Cousin, et al. Durability of GFRP Bars: A Critical Review of the Literature[J]. Progress in Structural Engineering and Materials, 2005, 7(4): 194-209.
  • 6Va Iter Dejke. Durability of FRP Reinforcement in Concrete[D]. Sweden: Chalmers University of Technology, Sweden, 2001.
  • 7F.Katsuki T Uomoto. Prediction of Deterioration of FRP Rods due to Alkali Attack[C]. Proceedings of the Second International RILEM Symposium (FRPRCS-2), Non-Metallic (FRP) Reinforcement for Concrete Structures, London, 1995.
  • 8F E Tannous, H Saadatmanesh. Environmental Effects on the Mechan?ical Properties ofE-glass FRP Rebars[J]. ACT Materials Journal, 1998, 95(2): 87-100.
  • 9A Mukherjee, S J Arwikar. Performance of Glass Fiber-reinforced Polymer Reinforcing Bars in Tropical Environments - Part I: Structural Scale Tests[J]. ACT Structural Journal, 2005, I 02(5): 745-753.
  • 10Brahim Benmokrane, Peng Wang, Tan Minh Ton-That. Durability of Glass Fiber-reinforced Polymer Reinforcing Bars in Concrete Environment[J]. Journal of Composites for Construction, 2002, 6(3): 143-153.

同被引文献22

  • 1刘志勇,吴桂芹,马立国,周新刚.FRP筋及其增强砼的耐久性与寿命预测[J].烟台大学学报(自然科学与工程版),2005,18(1):66-73. 被引量:26
  • 2高丹盈,朱海堂,李趁趁.纤维增强塑料筋混凝土梁正截面抗裂性能的研究[J].水力发电学报,2003,22(4):54-59. 被引量:15
  • 3彭波,胡曙光,丁庆军,耿健.蒸养参数对高强混凝土抗氯离子渗透性能的影响[J].武汉理工大学学报,2007,29(5):27-30. 被引量:9
  • 4Bakis C E.Durability of GFRP Reinforcement Bars[C]//CICE 2010the 5th International Conference on FRP Composites in Civil Engineering.Beijing:[s.n.],2010:27-29.
  • 5Alsayed S H.Flexural Behavior of Concrete Beams Reinforced with GFRP Bars[J].Cement and Concrete Composites,1998,20(1):1-11.
  • 6Masmoudi R,Theriault M,Benmokrane B.Flexural Behavior of Concrete Beams Reinforced with Deformed Fiber Plastic Reinforcing Rods[J].ACI Structural Journal,1998,95(6):665-675.
  • 7Tegola A L.Actions for Verification of RC Structures with FRP Bars[J].Journal of Composites for Construction,1998,2(3):145-148.
  • 8ACI 440.1R-06Guide for the Design and Construction of Concrete Reinforced with FRP Bars[S].Farmington Hills:American Concrete Institution,2006.
  • 9ACI 440.3R-04Guide Test Methods for Fiber Reinforced Polymers(FRP)for Reinforcing or Strengthening Concrete Structures[S].Farmington Hills:American Concrete Institution,2004.
  • 10郝庆多,王言磊,欧进萍.GFRP/钢绞线复合筋黏结锚固试验研究及设计建议[J].土木工程学报,2008,41(4):40-48. 被引量:20

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