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[1]浙江省自然科学基金青年基金:冻融作用下氧化石墨烯对混凝土界面过渡区的作用机理及细观损伤模型研究(Q23D010010). 2023.1-2025.12.主持.
[2]绍兴市基础公益计划项目(2023A13006):冻融作用下纳米片对混凝土界面的作用机理与寿命预测模型研究. 2024.01-2025.12.主持.
[3]横向项目:基于MATLAB的混凝土三维细观建模技术(K22-01430000-028). 2022.10-2023.10.主持.
[3]校级重点项目:纳米片对海工混凝土界面的作用机理及化学力学模型研究(2022LG008). 2023.1-2024.12.主持.
[4]国家自然科学基金面上项目:压气储能地下内衬洞室服役性能与失效破坏机制(52278402). 2023.1-2025.12.参与.
[5]横向项目:北江特大桥索塔群桩基础安全稳定性与防治措施研究. 2022.01-2024.12.参与.
[6]中国科学院前沿科学重点研究项目:盐渍化寒区道路冻胀、盐胀机理及其防治技术研究(No.QYZDY-SSW-DQC015), 2016.07-2021.05,结题,参与.
[7]青海水利水电勘察设计研究院项目:柴达木盆地水资源配置一期工程盐渍土的工程地质特性研究, 2017.08-2019.08,结题,参与.
[1]H.Y. Zeng,J.B. Chen, X.F. Luo, et al., Dispersibility of graphene-family materials andtheir impact on the properties of cement-based materials: Applicationchallenges and prospects, Rev. Adv. Mater. Sci. 64(1)(2025) 20250147.
[2] H.Y.Zeng,R.C. Zhou, J. Yu*, et al., Experiment and modelling of degradation mechanism ofcement mortar with graphene oxide nanosheets under sulfate attack, Cem. Concr.Compos.155 (2025)105833.
[3] H.Y.Zeng, Y.M. Lai*, S. Qu, F. Yu, Exploringthe effect of graphene oxide on freeze-thaw durability of air-entrainedmortars. Constr. Build. Mater. 324(2022) 126708.
[4] H.Y.Zeng, S. Qu, Y. Tian, et al., Recentprogress on graphene oxide for next-generation concrete: characterizations,applications and challenges, J. Build. Eng. 69(15)(2023)106192.
[5] H.Y.Zeng, Y.M. Lai*, S. Qu, F. Yu, Effect ofgraphene oxide on permeability of cement materials: An experimental andtheoretical perspective, J. Build. Eng. 41(2021)102326.
[6] H.Y.Zeng, Y.M. Lai*, S. Qu, Y.H. Qin,Graphene oxide-enhanced cementitious materials under external sulfate attack:implications for long structural life, ACS Appl. Nano. Mater. 3(10)(2020)9784-9795. (主封面文章)
[7] H.Y.Zeng, S. Qu*, Y.H. Qin, Microstructureand transport properties of cement-based material enhanced by graphene oxide,Mag. Concr. Res. 73(19)(2020)1011-1024.
[8] X.YShu, Z.D. Zhu, S. Qu*, L.K. He, H.Y. Zeng, et al., Anisotropiccharacteristics and deformation behaviors of layered rocks surrounding tunnel:A review, J. Rock. Mech. Geotech, 17(2025)8198-8223.
[9] Z.M.You,Y.M. Lai*, H.Y. Zeng, Y.H. Yang,Influence of water and sodium chloride content on corrosion behavior of castiron in silty clay, Constr. Build. Mater. 238(2020)117762.
[10]赖远明,曾红燕. 抗冻型水泥基材料、其制备方法及应用,2021.6.29.专利号:ZL 202110723766.2.
[11]Lai YM, Zeng HY. Anti-corrosion high-strength mortar and preparation method anduse thereof. 2024.06.08. (BE2023/5005)
[12] 一种基于混凝土表面气泡检测装置.2022.11.25. 公布号:CN115388764A
[13] 曾红燕,屈伸. 混凝土氯离子迁移测量系统和测量方法.2022.11.22. 公布号:CN115372404A.

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