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教师英文名称:Lizhenhua
职称:特聘副研究员(人才)
硕士生导师
学科:材料学
学位:博士
所在单位:国家材料服役安全科学中心
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[1]Stress corrosion cracking behavior and mechanism of scratched Alloy 690TT in lead-containing caustic solution.Corrosion Science,2025,245,112702.
[2]Effect of temperature on corrosion fatigue behavior of Inconel Alloy 690TT steam generator tube.Corrosion Science,2024,227,111741.
[3]Corrosion fatigue damage mechanism and life evaluation of Inconel Alloy 690TT steam generator tube in high temperature pressurized water.Corrosion Science,2023,212,110953.
[4]Effects of dissolved hydrogen on corrosion fatigue crack growth behavior of 316LN stainless steel in high temperature pressurized water environment.Corrosion Science,2024,232,112041.
[5]Size effect of scratches on the degradation behavior of Alloy 690TT in high temperature caustic solution.Corrosion Science,2021,182,10931.
[6]Oxide properties of deformed Alloy 690TT in caustic solution at high temperature.Corrosion Science,2020,174,108806.
[7]Study on the SCC behavior induced by creep cavities on scratched surface of Alloy 690TT in high temperature water.Corrosion Science,2022,196,110017.
[8]Fatigue life prediction of nuclear reactor main bolt based on temperature effect and size effect.International Journal of Fatigue,2021,152,106443.
[9]High cycle fatigue behavior and numerical evaluation of Alloy 690TT steam generator tube.International Journal of Fatigue,2020,137,105662.
[10]Fatigue crack initiation and propagation behavior of Inconel Alloy 690TT steam generator tube.Materials Science and Engineering A,2021,811,141090.
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