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Model for predicting fatigue life and limit of steels based on micromechanics of small crack growth
Kazuki Shibanuma, Koya Ueda, Hiroaki Ito, Yoshiki Nemoto, Masao KINEFUCHI, Katsuyuki Suzuki, Manabu Enoki
The University of Tokyo Kobe Steel (Japan)
来源Materials & Design
年份2017
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学术脉络
学科主题
工程Fatigue and fracture mechanics
Microstructure and Mechanical Properties of Steels · Metal Forming Simulation Techniques
参考文献 53
Prediction model on cleavage fracture initiation in steels having ferrite–cementite microstructures – Part II: Model validation and discussions
被引 29Kazuki Shibanuma, Shuji Aihara, Katsuyuki Suzuki · Engineering Fracture Mechanics · 2015
Prediction model on cleavage fracture initiation in steels having ferrite–cementite microstructures – Part I: Model presentation
被引 39Kazuki Shibanuma, Shuji Aihara, Katsuyuki Suzuki · Engineering Fracture Mechanics · 2015
Grain Size Effect on Crack Nucleation and Growth in Long-Life Fatigue of Low-Carbon Steel
被引 101Sakae Taira, Keisuke Tanaka, M Hoshina · 1979
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引用本文 45
Hydrogen Embrittlement as a Conspicuous Material Challenge─Comprehensive Review and Future Directions
被引 398Haiyang Yu, A. Díaz, Xu Lu · Chemical Reviews · 2024
Machine learning-based predictions of fatigue life and fatigue limit for steels
被引 174Lei He, ZhiLei Wang, Hiroyuki AKEBONO · Journal of Material Science and Technology · 2021
Influence of Stress Level and Fibre Volume Fraction on Fatigue Performance of Glass Fibre-Reinforced Polyester Composites
被引 81Mahmoud Yousry Zaghloul, Moustafa Mahmoud Yousry Zaghloul, Mai Mahmoud Yousry Zaghloul · Polymers · 2022
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