Structural performance of light weight multicellular FRP composite bridge deck using finite element analysis

被引:0
作者
Woraphot Prachasaree
Pongsak Sookmanee
机构
[1] Prince of Songkla University,Department of Civil Engineering, Faculty of Engineering
来源
Journal of Wuhan University of Technology-Mater. Sci. Ed. | 2012年 / 27卷
关键词
fiber reinforced polymer (FRP); composites; bridge; deck; finite element;
D O I
暂无
中图分类号
学科分类号
摘要
Fiber reinforced polymer (FRP) composite materials having advantages such as higher strength to weight than conventional engineering materials, non-corrosiveness and modularization, which should help engineers to obtain more efficient and cost effective structural materials and systems. Currently, FRP composites are becoming more popular in civil engineering applications. The objectives of this research are to study performance and behavior of light weight multi-cellular FRP composite bridge decks (both module and system levels) under various loading conditions through finite element modeling, and to validate analytical response of FRP composite bridge decks with data from laboratory evaluations. The relative deflection, equivalent flexural rigidity, failure load (mode) and load distribution factors (LDF) based on FE results have been compared with experimental data and discussed in detail. The finite element results showing good correlations with experimental data are presented in this work.
引用
收藏
页码:939 / 943
页数:4
相关论文
共 29 条
  • [1] Sotiropoulos S.(1995)Theoretical and Experimental Evaluation of FRP Components and Systems [J] J. Struct. Eng, ASCE 120 464-485
  • [2] GangaRao H. V. S.(2000)Design and Performance of a Modular Fiber Reinforced Plastic Bridge [J] Compos. Part B: Eng. 31 619-628
  • [3] Mongi A.(2000)Performance of Tube and Plate Fiber Glass Composite Bridge Deck [J] J. Compos. Constr., ASCE 49 48-54
  • [4] Aref A. J.(2005)Fiber Reinforced Plastic Deck Profile for I-Girder Bridges [J] Compos. Struct. 67 411-416
  • [5] Parsons I. D.(2006)Performance Evaluation of FRP Bridge Deck Component under Torsion [J] J. of Bridge. Eng., ASCE 11 430-442
  • [6] Hayes M. D.(2009)Performance Evaluation of FRP Bridge Deck Component under Shear Loads [J] J. of Compos. Mater. 43 377-395
  • [7] Ohanchi D.(1998)Shear Distribution in Simply-supported Curved Composite Cellular Bridges [J] J. of Bridge Eng., ASCE 3 47-55
  • [8] Lesko J. J.(2001)Testing and Evaluation of Components for a Composite Bridge Deck [J] J. of Reinf. Plast. Comp. 20 441-461
  • [9] Lee H. Y.(2007)Experimental Characterization of a Pultruded GFRP Bridge Deck for Light Weight Vehicles[J] Compos. Struct. 80 141-151
  • [10] Hwang Y. K.(2008)Testing and Evaluation of GFRP Composite Deck Panels [J] Ocean Eng. 35 287-293