Masuda, K.; Ishihara, S.; Shibata, H.; Oguma, N.
Effect of Rod-like Structure on Fatigue Life, Short Surface Crack Initiation and Growth Characteristics of Extruded Aluminum Alloy A2024 (Analysis via Modified Linear Elastic Fracture Mechanics). Materials 2021, 14, 7538.
https://doi.org/10.3390/ma14247538
AMA Style
Masuda K, Ishihara S, Shibata H, Oguma N.
Effect of Rod-like Structure on Fatigue Life, Short Surface Crack Initiation and Growth Characteristics of Extruded Aluminum Alloy A2024 (Analysis via Modified Linear Elastic Fracture Mechanics). Materials. 2021; 14(24):7538.
https://doi.org/10.3390/ma14247538
Chicago/Turabian Style
Masuda, Kenichi, Sotomi Ishihara, Hiroshi Shibata, and Noriyasu Oguma.
2021. "Effect of Rod-like Structure on Fatigue Life, Short Surface Crack Initiation and Growth Characteristics of Extruded Aluminum Alloy A2024 (Analysis via Modified Linear Elastic Fracture Mechanics)" Materials 14, no. 24: 7538.
https://doi.org/10.3390/ma14247538
APA Style
Masuda, K., Ishihara, S., Shibata, H., & Oguma, N.
(2021). Effect of Rod-like Structure on Fatigue Life, Short Surface Crack Initiation and Growth Characteristics of Extruded Aluminum Alloy A2024 (Analysis via Modified Linear Elastic Fracture Mechanics). Materials, 14(24), 7538.
https://doi.org/10.3390/ma14247538