Stress-Strain Response and Fracture of a Plain Concrete in Biaxial Loading

이축 하중을 받는 콘크리트의 응력-변형률 응답 및 파괴

  • 이상근 (한전전력연구원 원자력연구실) ;
  • 송영철 (한전전력연구원 원자력연구실) ;
  • 권용길 (충북대학교 토목공학과) ;
  • 한상훈 (충북대학교 토목공학과)
  • Published : 2001.05.01

Abstract

In this paper the biaxial failure criteria and stress-strain response for plain concrete are studied under uniaxial and biaxial stress(compression-compression, compression-tension, and tension-tension combined stress). The concrete specimens of a square plate type are used for uniaxial and biaxial loading. The experimental data indicate that the strength of concrete under biaxial compression, f2/fl=-l/-1, is 17 percent larger than under uniaxial compression and the poisson's ratio of concrete is 0.1745. On the base of the results, a biaxial failure envelope for plain concrete that the uniaxial strength is 398kgf/$cm^{2}$ are developed. The biaxial failure behaviors for three biaxial loading areas are also plotted respectively. In addition, the characteristics of stress-strain response under biaxial compression are compared and verified with the experimental and analytical results.

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