王锟

郑州大学水利与交通学院副研究员、硕士生导师
研究方向:水工混凝土耐久性智能/仿生混凝土基础设施数智化增韧
办公地点:水利学院办公楼517室

个人简介

王锟,男,郑州大学水利与交通学院副研究员、硕士生导师,National University of Singapore联合培养博士。主要研究方向包括水工混凝土耐久性、智能/仿生混凝土、基础设施数智化增韧等。近五年在相关领域发表高水平论文30余篇,成果获教育部科技进步二等奖、河南省教育厅科技成果一等奖。主持国家自然科学基金、全国博士后创新人才支持计划、河南省重点研发与推广专项等科研项目。

学术兼职

[1] 国际材料和结构实验研究联合会(RILEM),委员
[2] 中国硅酸盐学会固废与生态材料分会,青年委员
[3] 中国灾害防御协会,会员
[4] 中国水利学会,会员
[5] 《Colloids and Interfaces》、《Materials》、《AppliedMath》,客座编辑
[6] 担任多个国内外学术期刊审稿人及青年编委

教学课程

本科生教学课程:

  • 水工钢筋混凝土结构学

科研项目

[1] 主持全国博士后创新人才支持计划(国家资助博士后研究人员计划A档),2026.06-2028.06
[2] 主持国家自然科学基金青年科学基金项目“冻融-硫酸盐耦合作用下混凝土相变反应演化机制及性能提升”(52508317),2026.01-2028.12
[3] 主持河南省重点研发与推广专项“基于肌肉仿生的桥梁拼宽混凝土粘结性能调控技术研究”(252102231005),2025.01-2026.12
[4] 主持河南省博士后科研项目“严酷条件下石灰石-煅烧黏土-水泥胶凝体系混凝土力学性能演变机理研究”,2026.01-2027.12
[5] 主持中建七局科技研发课题,“除冰盐侵蚀与冻融循环影响下城市桥梁耐久性能提升关键技术研究”(CSCE7b-2025-Z-20),2025.06-2028.03

论文和专著

【论文】

[1] Kun Wang, Jinjun Guo*, Xiaomeng Li. Neutralization behavior of Belite-rich cement concrete under acid rain exposure[J]. Construction and Building Materials, 2025, 472: 140798. (SCI, IF=8.0, 中科院1区, TOP期刊)
[2] Kun Wang, Wang Bingjie, Guo Jinjun*, Meng Qingxin, Feng Hu. Sharpey's fiber-inspired gradient anchoring and multiscale synergistic modification of the new–old concrete interface for bridge widening applications[J]. Developments in the Built Environment, 2025,23:100750. (SCI, IF=8.2, 中科院2区)
[3] Kun Wang, Jinjun Guo*. Structural evolution of silicate tetrahedral polymerization in C-(A)-S-H gels subjected to rare earth leaching environments[J]. Journal of Sustainable Cement-Based Materials, 2025,2588313. (SCI, 中科院3区)
[4] Kun Wang, Jinjun Guo*, Jinjin Wang, Donghui Qi, Yuanxun Zheng, Shaowei Hu. Bio-inspired widening concrete using cellulose nanofiber to enhance multiscale Fiber–Matrix interface[J]. Journal of Materials Research and Technology, 2024, 33, 6223-6233. (SCI, IF=6.6, 中科院1区, TOP期刊)
[5] Kun Wang, Kang Dong, Jinjun Guo*, Hongjian Du. Absorption and Release mechanism of superabsorbent polymers and its impact on shrinkage and durability of internally cured concrete – A review[J]. Case Studies in Construction Materials, 2024, 21, e03909. (SCI, IF=4.9, 中科院2区)
[6] Kun Wang, Jinjun Guo*, Juan Wang, Yuanxun Zheng, Peng Zhang, Hongjian Du. Numerical and experimental analysis of the effect of multi-ion electrical coupling on the sulfate convection zone in hydraulic concrete[J]. Construction and Building Materials, 2024, 449, 138340-138340. (SCI, IF=8.0, 中科院1区, TOP期刊)
[7] Kun Wang, Juhyuk Moon, Hongjian Du, Xing Xia, Duo Zhu, Peng Zhang, Jinjun Guo*. Early-age shrinkage and hydration of concrete incorporating a mutually reinforcing systems of super absorbent polymers and MgO expansive agent under low humidity conditions[J]. Construction and Building Materials, 2024, 417, 135350. (SCI, IF=8.0, 中科院1区, TOP期刊)
[8] Kun Wang, Yuanyuan Cheng, Benbo Sun, Lin Yang, Peng Zhang, Jinjun Guo*. Effects and interactions of scouring abrasion and external sulfate attack on deterioration of lining concrete: Experiments and preliminary modeling[J]. Construction and Building Materials, 2023, 263, 120635. (SCI, IF=8.0, 中科院1区, TOP期刊)
[9] Jinjun Guo, Kun Wang*, Peng Zhang, Hongyin Xu. Effect of internal curing on early-age properties of concrete under simulative natural environment in arid regions[J]. Construction and Building Materials, 2023, 362, 129697. (SCI, IF=8.0, 中科院1区, TOP期刊)
[10] Jinjun Guo, Xiaomeng Li, Yaoqun Xu, Peng Zhang, Kun Wang*. Neutralization evolution of concrete under acid rain and carbonation erosion: A review[J]. Journal of Materials Research and Technology 2023, 25. (SCI, IF=6.6, 中科院1区, TOP期刊)
[11] Kun Wang, Jinjun Guo*, Lin Yang, Peng Zhang, Hongyin Xu. Multiphysical damage characteristics of concrete exposed to external sulfate attack: Elucidating effect of drying–wetting cycles[J]. Construction and Building Materials, 2022, 329, 127143. (SCI, IF=8.0, 中科院1区, TOP期刊)
[12] Jinjun Guo, Minghao Gao, Kun Wang*, Peng Zhang. Mechanisms and influential variables on the abrasion resistance hydraulic concrete[J]. Nanotechnology Reviews, 2022, 11: 2997–3019(SCI, IF=8.0, 中科院2区)
[13] Yan Lu, Kun Wang*, Duo Zhu, Qingxin Meng, Liyan Cui. Hydration and pore structure characteristics of concrete incorporating internal curing materials in a dry and large-temperature-difference environment[J]. Materials Research Express, 2022, 9, 035502.
[14] Kun Wang, Jinjun Guo*, Peng Zhang, Qingxin Meng. The counterbalance of the adverse effect of abrasion on the properties of concrete incorporating nano-SiO2 and polypropylene fiber based on pore structure fractal characteristics[J]. Fractal and Fractional, 2022, 6, 392. (SCI, IF=5.4, 中科院1区)
[15] Kun Wang, Jinjun Guo*, Lin Yang. Effect of dry–wet ratio on sulfate transport-reaction mechanism in concrete[J]. Construction and Building Materials, 2021, 302, 124418. (SCI, IF=8.0, 中科院1区, TOP期刊)
[16] Kun Wang, Jinjun Guo*, Xuanjun Liu, Lin Yang, Peng Zhang. Effect of dry–wet ratio on pore-structure characteristics of fly ash concrete under sulfate attack[J]. Materials and Structures, 2021, 54, 100. (SCI, IF=3.8, 中科院3区)
[17] Jinjun Guo, Kun Wang*, Cuige Qi. Determining the Mineral Admixture and Fiber on Mechanics and Fracture Properties of Concrete under Sulfate Attack[J]. Journal of Marine Science and Engineering, 2021, 9, 251.
[18] Kun Wang, Jinjun Guo*, Hao Wu, Lin Yang. Influence of dry-wet ratio on properties and microstructure of concrete under sulfate attack[J]. Construction and Building Materials, 2020, 263, 120635. (SCI, IF=8.0, 中科院1区, TOP期刊)

【专著】

[1] 郭进军,王锟,黄琪,姚兵,张鹏,卢燕.《干湿交替下硫酸盐侵蚀混凝土传输-反应机制演变》,北京:科学出版社,2025.

专利和软件著作权

【授权发明专利】

[1] 一种基于真实孔隙结构与溶液组成的水工混凝土离子传输方法,ZL202411837983.4,2025-11-05
[2] 一种适用于高海拔地区的高强韧负碳水工混凝土及其制备方法,202610081156X,2026-01-21
[3] 一种基于改进Mask R-CNN提取ITZ特征的混凝土冻融断裂性能预测方法,2026106796281,2026-05-18
[4] 一种用于防渗面板的抗裂混凝土及制备方法,ZL201810115496.5,2021-03-26
[5] 一种定量检测受硫酸盐侵蚀混凝土中钙矾石含量的方法,ZL201911284392.8,2023-05-02
[6] 一种用于混凝土内部相对湿度测量的试验装置,ZL201811591139.2,2024-05-10
[7] 一种适用于结构受拉区的微生物定位自修复混凝土材料及其制备方法,ZL202110518295.1,2021-05-12
[8] 一种基于肌肉仿生的拼宽桥墩自预应力混凝土及其制备方法,202410870148.4,2024-09-17
[9] 一种界面处理剂及其制备方法和应用,202411481643.2,2024-10-22
[10] 一种改进的混凝土冲刷磨蚀试验机,202110202269.8,2021-02-23
[11] 一种应用于内养护材料的快速饱水装置,ZL202021772717.5,2020-08-24
[12] 一种高纯单相γ-C-S-H凝胶的制备方法,2024102001322,2024-02-22
[13] 一种适用于高架桥梁的高韧环氧树脂粘结剂及其制备方法,202610268704.X,2026-03-06
[14] 一种适于机器人养护的桥梁排水结构及其施工方法,2025112837246,2025-09-09
[15] 一种界面处理剂及其制备方法和应用,202411481643.2,2024-10-22
[16] 基于AGV与机械臂协同的自适应动态反光锥防护系统及方法,202511377215X,2025-09-25

荣誉和奖励

[1] 河南省优秀博士学位论文获得者,2025年
[2] 郑州大学2025校优秀毕业论文指导老师,2025年
[3] 河南省事业单位个人奖励,嘉奖,2026年