A PLASTICITY MODEL AND ALGORITHM FOR MODE-I CRACKING IN CONCRETE

被引:64
作者
FEENSTRA, PH [1 ]
DEBORST, R [1 ]
机构
[1] EINDHOVEN UNIV TECHNOL,FAC MECH ENGN,5600 MB EINDHOVEN,NETHERLANDS
关键词
CONCRETE; CRACKING; FRACTURE; MODE-I; PLASTICITY; SOFTENING;
D O I
10.1002/nme.1620381503
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
A class of plasticity models which utilize Rankine's (principal stress) yield locus is formulated to simulate cracking in concrete and rock under monotonic loading conditions. The formulation encompasses isotropic and kinematic hardening/softening rules, and incremental (flow theory) as well as total (deformation theory) formats are considered. An Euler backward algorithm is used to integrate the stresses and internal variables over a finite loading step and an explicit expression is derived for a consistently linearized tangent stiffness matrix associated with the Euler backward scheme. Particular attention is paid to the corner regime, that is when the two major principal stresses become equal. A detailed comparison has been made of the proposed; plasticity-based crack formulations and the traditional fixed and rotating smeared-crack models for a homogeneously stressed sample under a non-proportional loading path. A comparison between the how-theory-based plasticity crack models and experimental data has been made for a Single Edge Notched plain concrete specimen under mixed-mode loading conditions.
引用
收藏
页码:2509 / 2529
页数:21
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