Experimental study on behavior of flexural member with lab-spliced GFRP bar

Citations

SCOPUS

2

초록

The use of glass-fiber-reinforced polymer (GFRP) bars to replace steel reinforcement in concrete structures is a relatively new technique. GFRP bars possess mechanical properties different from steel bars, including high tensile strength combined with low elastic modulus and elastic brittle stress - strain relationship. Therefore, design procedures should account for these properties. This paper presents the experimental moment deflection relations of GFRP reinforced beam which are spliced. Test variables were lab-spliced length of GFRP rebar. A total of 6 concrete beams reinforced with steel and GFRP rebar tested. Three concrete beams reinforced with spliced GFRP rebar and 1 reference beams reinforced with non-spliced GFRP rebar was tested. All the specimens had a span of 4000mm, provided with 12.7mm nominal diameter steel and GFRP rebar. All test specimens were tested under 2-point loads so that the spliced region is subject to constant moment. The experimental results show that the splice length of GFRP increased with the ultimate load increasing and decreased with stiffness.

키워드

Concrete beamFlexural behaviorGFRP reinforcing barLab-splicedBars (metal)Concrete beams and girdersConcrete testingFiber reinforced plasticsReinforcementSteel fibersStrainStress-strain curvesTensile strengthConcrete beamFlexural behaviorGFRP reinforcing barsGlass-fiber reinforced polymer barsHigh-tensile strengthLab-splicedSteel reinforcementsStress-strain relationshipsReinforced concrete
제목
Experimental study on behavior of flexural member with lab-spliced GFRP bar
저자
Choi, Yun CheulChoi, Hyun KiChoi, Chang Sik
DOI
10.4028/www.scientific.net/KEM.452-453.781
발행일
2010-11
유형
Conference Paper
저널명
Key Engineering Materials
452-453
페이지
781 ~ 784