Finite Element Modeling of Strain Localization Zone in Concrete

콘크리트 변형률국소화영역의 유한요소모델링

  • 송하원 (연세대학교 토목공학과) ;
  • 나웅진 (연세대학교 대학원 토목공학과)
  • Published : 1997.04.01

Abstract

The strain localization of concrete is a phenomenon such that the deformation of concrete is localized in finite region along with softening behavior. The objective of this paper is to develope a consistent algorithm for the finite element modeling of localized zone in the analysis of the strain-localization in concrete. For modeling of the localized zone in concrete under strain localization, a general Drucker-Prager failure criterion which can consider nonlinear strain softening behavior of concrete after peak-stress is introduce. The return-mapping algorithm is used for the integration of the elasto-plastic rate equation and the consistent tangent modulus is derived. Using finite element program implemented with the developed algorithms, strain localization behaviors for the different sizes of concrete specimen under compression are simulated.

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