TY - JOUR
T1 - A new method for cyclic crack-tip plastic zone size determination under cyclic tensile load
AU - Jingjie, Chen
AU - Yi, Huang
AU - Leilei, Dong
AU - Yugang, Li
PY - 2014/8
Y1 - 2014/8
N2 - This paper presents a new method to determine the cyclic crack-tip plastic zone size (CTPZS) in the center cracked plate subject to cyclic tensile load. The maximum crack opening displacement (MCOD) and the variable quantity of MCOD (VMCOD) are used to estimate cyclic CTPZS in this method. Based on the series of calculation results by finite element analysis, an explicit expression of cyclic CTPZS versus MCOD and VMCOD is fitted by the least square method. The expression enables to eliminate the influences of crack geometry, plate sizes, elastic modulus, yield stress, plane state, stress ratio, overload ratio and load sequence. Therefore, the presented method is suitable for center cracked finite plate models with different material under cyclic tensile load.
AB - This paper presents a new method to determine the cyclic crack-tip plastic zone size (CTPZS) in the center cracked plate subject to cyclic tensile load. The maximum crack opening displacement (MCOD) and the variable quantity of MCOD (VMCOD) are used to estimate cyclic CTPZS in this method. Based on the series of calculation results by finite element analysis, an explicit expression of cyclic CTPZS versus MCOD and VMCOD is fitted by the least square method. The expression enables to eliminate the influences of crack geometry, plate sizes, elastic modulus, yield stress, plane state, stress ratio, overload ratio and load sequence. Therefore, the presented method is suitable for center cracked finite plate models with different material under cyclic tensile load.
KW - Center cracked plate
KW - Cyclic plastic zone size
KW - Finite element analysis
KW - Maximum crack opening displacement
KW - Variable quantity of maximum crack opening displacement
UR - http://www.scopus.com/inward/record.url?scp=84904071067&partnerID=8YFLogxK
U2 - 10.1016/j.engfracmech.2014.05.001
DO - 10.1016/j.engfracmech.2014.05.001
M3 - Article
AN - SCOPUS:84904071067
SN - 0013-7944
VL - 126
SP - 141
EP - 154
JO - Engineering Fracture Mechanics
JF - Engineering Fracture Mechanics
ER -