Development of New Hybrid Composite Girders

Author:

Mutsuyoshi Hiroshi,Hai Nguyen Duc,Asamoto Shingo

Abstract

<p>A hybrid FRP bridge girder consisting of CFRP and GFRP has been developed in Japan. A number of tensile and compressive coupon tests were conducted to determine the material properties of hybrid FRP laminates which were used in the analytical investigations of the large-scale FRP beams. A series of beams with wide flange widths varying the volume content of CFRP in flanges were tested under four-points loading. The experimental investigations revealed that the failure mode of these beams was induced by the local buckling of the compressive flange. In order to avoid the</p><p>local buckling, stiffeners were installed in the flexural and shear span of beams. Although an appropriate installation of stiffeners can prevent effectively the local buckling, however the hybrid FRP beams failed prematurely due to stress concentration at the loading points. Analyses were carried out and showed a good correlation with experimental results.</p>

Publisher

International Association for Bridge and Structural Engineering (IABSE)

Reference10 articles.

1. ASTM D 3410/ D 3410 M-95, 1995. Standard Test Method for Compressive Properties of Polymer Matrix Composite Materials With Unsupported Gage Section by Shear Loading. American Society for Testing and Materials, Philadelphia, PA., pp. 175-186.

2. Davalos, J. F., Salim, H. A., Qiao, P., Lopez-Anido, R. and Barbero, E. J. 1996. Analysis and Design of Pultruded FRP Shapes under Bending. Composites Part B, 27B, pp. 295-305.

3. H. Mutsuyoshi, N.D. Hai, S. Asamoto, A.C. Manalo and T. Matsui, 2008. Hybrid FRP composite I-beams consisting of CF/GFRP. Proceedings of the CICE2008 Conference, July 22-24, Zurich, Switzerland.

4. H. Mutsuyoshi, T. Aravinthan, S. Asamoto and K. Suzukawa, 2007. Development of new hybrid composite beams consisting of carbon and glass fibers. Proceedings of the COBRAE Conference 2007, March 28-30, Stuttgart, Germany.

5. L.C. Bank, 1989. Flexural and Shear Moduli of Full-Section Fiber Reinforced Plastic (FRP) Pultruded Beams. ASTM Journal of Testing and Evaluation, Vol. 17, No. 1, pp. 40-45.

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