Title of article
Comparison of the simulation and experimental fatigue crack behaviors in the nanoseconds laser shocked aluminum alloy
Author/Authors
X.D. Ren، نويسنده , , Y.K. Zhang، نويسنده , , T. Zhang، نويسنده , , D.W. Jiang، نويسنده , , H.F. Yongzhuo، نويسنده , , Y.F. Jiang، نويسنده , , K.M. Chen، نويسنده ,
Issue Information
ماهنامه با شماره پیاپی سال 2011
Pages
6
From page
1138
To page
1143
Abstract
This investigation was performed to compare the simulation and experimental results of the fatigue crack growth rates and behaviors of the 7050-T7451 aluminum alloy by nanoseconds laser shock processing (LSP). Forman–Newman–deKoning (FNK) model embedded in the Franc2D/L software was utilized to predict fatigue crack growth rate, which was conducted to weigh the stress intensity factor (SIF) changing on the surface cracks. LSP induced high compressive residual stresses that served to enhance fatigue properties by improving the resistance against fatigue crack initiation and propagation. The circulating times of crack growth obtained from the simulation and experimental values indicated a slower fatigue crack growth rates after LSP. The relationships between the elastic–plastic materials crack growth rates and the SIF changing after LSP are resolved.
Keywords
Fatigue crack , Laser shock processing , Stress intensity factor
Journal title
Materials and Design
Serial Year
2011
Journal title
Materials and Design
Record number
1069557
Link To Document