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[1]马宏驰, 杜翠薇, 刘智勇, 等, E690高强钢在SO2污染海洋大气环境中的应力腐蚀行为研究, 金属学报, 2016, 52(3): 331-340..
[2]马宏驰, 杜翠薇, 刘智勇, 等, E690高强低合金钢焊接热影响区典型组织在含SO2海洋环境中的应力腐蚀行为对比研究, 金属学报, 2019, 52(3): 331-340..
[3]H.C. Ma, Z.Y. Liu, C.W. Du, et al. Effect of cathodic potentials on the SCC behavior of E690 steel in simulated seawater, Materials Science and Engineering: A, 642 (2015): 22-31..
[4]H.C. Ma, Z.Y. Liu, C.W. Du, et al. Comparative study of the SCC behavior of E690 steel and simulated HAZ microstructures in a SO2-polluted marine atmosphere, Materials Science and Engineering: A, 650 (2016): 93-101..
[5]H.C. Ma, Z.Y. Liu, C.W. Du, et al. Stress corrosion cracking of E690 steel as a welded joint in a simulated marine atmosphere containing sulphur dioxide, Corrosion Science, 100 (2015) : 627-641..
[6]H.C. Ma, C.W Du, Z.Y. Liu, et al. Effect of SO2 content on SCC behavior of E690 high-strength steel in SO2-polluted marine atmosphere, Ocean Engineering, 164 (2018): 256-262..
[7]H. C. Ma, Y. Fan, Z. Y. Liu, et al. Effect of pre-strain on the electrochemical and stress corrosion cracking behavior of E690 steel in simulated marine atmosphere, Ocean Engineering, 182 (2019): 188-195..
[8]H.C. Ma, B. Zhao, Z.Y. Liu, et al. Local chemistry–electrochemistry and stress corrosion susceptibility of X80 steel below disbonded coating in acidic soil environment under cathodic protection, Construction and Building Materials, 243(2020)..
[9]H.C. Ma, J.B. Zhao, Y. Fan, et al. Comparative study on corrosion fatigue behaviour of high strength low alloy steel and simulated HAZ microstructures in a simulated marine atmosphere, International Journal of Fatigue, 137(2020)..
[10]H.C. Ma, L.H Chen, J.B. Zhao, et al. Effect of prior austenite grain boundaries on corrosion fatigue behaviors of E690 high strength low alloy steel in simulated marine atmosphere, Materials Science and Engineering: A, 773 (2020)..
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