代表性论文: | [1] J. Ma, B. Wang, X. Xing, Z. Gao, T. Feng, E. Liu, C. Zhang, H. Guo, L. Yin, X. Li, J. Yang, The correlation between hydrogen permeation behavior and microstructure in L360QS pipeline steel welded joints, International Journal of Electrochemical Science 20(2) (2025) 100925. [2] Z. Gao, S. Wu, T. Xiang, B. Gong, C. Deng, Coupling effect of post-weld heat treatment and fatigue damage on the hydrogen embrittlement of X80 steel welded joints, Journal of Materials Research and Technology 31 (2024) 2646-2657. [3] Li Qiang, Wang Dongpo, Deng Caiyan, Wu Shipin, Gao Zhiwei. Role of microstructure heterogeneity on hydrogen-assisted fracture toughness degradation of X80 weld metal in H2S-saturated solution [J]. Corrosion Science, 2023, 224(111467. [4] 张海,王东坡,高志伟.焊接残余应力对超声冲击处理焊接接头疲劳寿命的影响[J].机械工程学报,2023,59(10):124-133. [5] Gao ZW, Gong BM, Xu QJ, et al. High cycle fatigue behaviors of API X65 pipeline steel welded joints in air and H2S solution environment[J]. International Journal of Hydrogen Energy. 2021; 46(17): 10423-10437. [6] Gao Z, Gong B, Liu Y, Wang D, Deng C, Hu D. Fatigue-performance of PWHT welded joints: As-welded vs. high-frequency mechanical impact treatment. Journal of Constructional Steel Research. 2021; 187: 106933. [7] Gao ZW, Gong BM, Wang DP, et al. Effect of fatigue damage on the hydrogen embrittlement sensitivity of X80 steel welded joints. International Journal of Hydrogen Energy, 2021;46(77):38535-38550. [8] Zhiwei Gao, Dongpo Wang, Baoming Gong, et al. VHCF behavior of welded joints with HFMI-treated under moisture conditions. Welding Journal. 2021. [9] B.Y. Wang, Y.G. Liu, Z.W. Gao, T.L. Zhang, F. Yang, S.Q. Li, Transition from Pits to Stress Corrosion Cracking of SAE 4120 Steel in Simulated Oilfield Environment, International Journal of Electrochemical Science, 16 (2021). [10] 王东坡,胡典均,邓彩艳,吴世品,高志伟.热处理加超声冲击复合处理对Q345B钢焊接接头疲劳性能的影响. 焊接学报,2020,41(04):6-11. [11] B. Wang, Y. Yin, Z. Gao, Z. Hou, W. Jiang, Influence of the ultrasonic surface rolling process on stress corrosion cracking susceptibility of high strength pipeline steel in neutral pH environment, RSC Advances, 7 (2017) 36876-36885. [12] 王炳英,尹宇,高志伟,王亚茹.超声表面滚压对管线钢裂纹尖端应力场的影响[J].焊接学报,2017,38(01):27-30+130. [13] 王炳英,詹发福,李慧玲,高志伟.超声滚压加工对X80管线钢焊接残余应力的影响[J].焊接学报,2016,37(12):87-90+133. |