论文著作:
[1] Accelerated stress corrosion cracking of X80 pipeline steel under the combined effects of sulfate-reducing bacteria and hydrostatic pressure, Corrosion Science(中科院大类一区,IF=8.438), 2025,243:112593.
[2] Stress corrosion cracking behavior induced by Sulfate-reducing bacteria and cathodic protection on X80 pipeline steel, Construction and Building Materials (中科院大类一区,IF=7.902), 2021, 308: 125093.
[3] Effect of magnetic field on stress corrosion cracking induced by Sulfate reducing bacteria, Construction and Building Materials (中科院大类一区,IF=7.902), 2021, 303: 124521.
[4] Effect of magnetic field on the electrochemical corrosion behavior of X80 pipeline steel, Construction and Building Materials (中科院大类一区,IF=7.902), 2022, 350: 128897-128897.
[5] Stress corrosion cracking behavior of buried oil and gas pipeline steel under the coexistence of magnetic field and sulfate-reducing bacteria, Petroleum Science(中科院大类一区,中IF=6.051), 2024, 21(2):1320-1332.
[6] The effect of applied potential on stress corrosion cracking of X80 pipeline steel in acidic soil containing sulfate-reducing bacteria, Science China-Technological Sciences(中科院大类一区,IF=4.963), 2023, 66(10): 2837-2849.
[7] Hydrogen-induced cracking of X70 steel affected by sulfate-reducing bacteria and cathodic potential: experiment and density functional theory study, International Journal of Hydrogen Energy (中科院大类二区,IF=8.227), 2024, 49: 798-810.
[8] Investigation of corrosion behavior of 16Mn steel gusset plates in marine alternating dry-wet environments using response surface methodology, NPJ Materials Degradation (中科院大类二区,IF=7.598), 2025, 9(1): 49.
[9] Effect of magnetite nanoparticle size and concentration on microbiologically influenced corrosion of X70 steel by Desulfovibrio vulgaris, Electrochimica Acta (中科院大类二区,IF=5.549), 2025, 523:145992.
[10] Influence of anion and sulfate-reducing bacteria on the stress corrosion behavior and mechanism of X70 steel in a marine mud environment. Engineering Failure Analysis(中科院大类二区,IF=5.589), 2023, 143:106834.
科研项目:
[1] 国家自然科学基金项目,土壤环境硫酸盐还原菌与载荷协同效应下X80管线钢表面膜层纳米尺度行为及应力腐蚀开裂机理,2017.01-2019.12,20万,主持。
[2] 辽宁省重点攻关项目,基于大数据的天然气管道内腐蚀智能评价技术及应用,2022.09-2024.09,10万,主持。
[3] 辽宁省自然科学联合基金项目:多重海洋环境因素下管线钢渗氢腐蚀行为及机理的跨尺度研究,2020.05-2023.04,10万,主持。
[4] 辽宁省兴辽英才计划项目,复杂环境下油气管道腐蚀动力学行为及失效机制研究,2019.01-2021.12,50万,主持。
[5] 辽宁省优青培育项目:磁场与微生物协同效应对高强度管道应力腐蚀的影响机制,2020.01-2021.12,5.1万,主持。
[6] 辽宁省博士启动基金项目:高强度管线钢在硫酸盐还原菌与力学作用下裂尖行为及应力腐蚀机理,2016.05-2018.05,3万,主持。
[7] 企业横向项目,海外管道防腐优化设计及工程技术研究,2024.01-2026.12,616万,主持。
[8] 企业横向项目:应力交变工况下注汽管道热应力分析及运行优化技术开发,2025.02-2026.02,160万,主持。
[9] 企业横向项目:轻烃厂装置和低压输气管道腐蚀防控技术研究,2024.07-2024.12,35万,主持。
[10] 企业横向项目:深远海勘探装备严酷腐蚀环境下异型钢结构长效环保防腐技术优化研究,2023.05-2023.12,62万,主持。