GDsumn9AttdMcqmWQO4y0iFhNyFJ6P3zBpbcA3nGAkhGmiZxAuoZ9DBytZ9R
Current position: Home >> Scientific Research >> Paper Publications

Numerical assessment of cyclic J-integral Delta J for predicting fatigue crack growth rate

Release Time:2019-03-13  Hits:

Indexed by:Journal Article

Date of Publication:2019-01-01

Journal:ENGINEERING FRACTURE MECHANICS

Included Journals:Scopus、SCIE

Volume:205

Page Number:455-469

ISSN:0013-7944

Key Words:Cyclic J-integral; Finite element method; Fatigue; Crack growth rate; Damage tolerance

Summary:The cyclic J-integral is a significant mechanical parameter to describe the elastic-plastic fatigue crack growth rate. A equivalent domain integral method based on finite element method was proposed for evaluating the cyclic J-integral. This numerical method was verified by comparing the results of cyclic J-integral with J-integral evaluated by using the built-in functionality of ABAQUS under monotonic tensile load. Base on this numerical method, the uniqueness of extreme value of cyclic J-integral was studied through a kinked crack and a specific code was also developed to simulate the crack propagation in 304 stainless steel (304SS) compact tension (CT) specimen under mode I loading. The expression of crack growth rate was established based on the cyclic J-integral obtained by the specific code and this expression is found to be in good agreement with the experimental results. The research contents in this paper may contribute to the damage tolerance assessment of components.

Prev One:Numerical Simulation and Experimental Studies on Elastic-Plastic Fatigue Crack Growth

Next One:Crystal plasticity assessment of the effect of material parameters on contact depth during spherical indentation of 304 stainless steel