[1] Fang K., Mao J.*, Wang Q., et al. Degradation and Recovery Behavior for the Seismic Performance of a Chloride-Contaminated RC Pier after Electrochemical Repair. ASCE-Journal of Bridge Engineering, 2026, 31: 04025087
[2] Liu Y., Mao, J.*, Liu Y., et al. Systematic study of bonding behavior at the aggregate-mortar interface: Analysis based on experimental and numerical models. Engineering Fracture Mechanics, 2025, 321:111151.
[3] Mao J., Ding Y., Fang K., et al. Improvement on mechanical properties and durability of concrete by ultra-deep migration technology of coupling agents. Construction and Building Materials,2025, 461:139863
[4] Mao J., Xia Y., Li H., et al. Feasibility and application of novel electrical curing method for constant-temperature hardening of concrete at cold regions. Journal of Building Engineering,2024, 97:110899
[5] Mao J., Luo Z., Zhang L., et al. A low carbon treatment to enhance recycled aggregate concrete durability by continuous loading at the curing period. Journal of Cleaner Production,2024, 471:143408
[6] Zeng Y., Mao J.*, Ren J., et al. Improvement on durability of concrete by early age continuous loading treatment. Construction and Building Materials, 2024, 418: 135392
[7] Chen C., Mao J.*, Ren J., et al. Liquid nitrogen frozen cementitious material and its potential applications: Inspired by refrigeration industry. Construction and Building Materials, 2024, 440: 137448.
[8] Mi L., Mao J.*, Li L., et al. Microstructural damage and durability of plateau concrete: Insights into freeze-thaw resistance and improvement strategies. Structures, 2024, 60: 105888
[9] Mao J., Zhang Y., Quan S., et al. Creep Characterization of Concrete Suffering Initial Damage. ASCE-Journal of Materials in Civil Engineering. 2023, 35(6):04023110
[10] Mao J., Jia H., Wu K., et al. A novel method to prevent frost cracking of perforated concrete components in cold regions. Cold Regions Science and Technology. 2023.103848