何伟

职位:副系主任

职称:副教授

邮箱:hewei@bucea.edu.cn

发文时间:2026-09-04 撰稿人:

代表性论文:

He, Wei; Wang, Bin; Xu Hao-tian; et al. Low-dosage flake graphite powder as a physical micro-reinforcement for enhancing the freeze–thaw resistance of recycled aggregate concrete[J]. Construction and Building Materials, 2026, 542: 148047. 

He, Wei*; He, Lei; Meng, Xia; et al. Reconciling stiffness and conductivity in graphite-based piezoresistive concrete: Interface-functionalized recycled aggregates[J]. Journal of Building Engineering, 2026, 123: 115896.

He, Wei*; Xu, Haotian; He, Lei; et al. Balancing mechanical compatibility and electrical conductivity in carbon fiber–graphite piezoresistive concrete through interfacial functionalization of recycled coarse aggregates[J]. Structural Control and Health Monitoring, 2026, 2026(01): 9928462.

He, Wei*; Wang, Bin; He, Lei; et al. Low-content graphite powder for improving the compressive–tensile strength and fracture behavior of recycled aggregate concrete[J]. Journal of Composite Materials, 2026.

He, Wei*; Chen, Yinuo; Meng, Xia; et al. Synergistic utilization of co-located high-carbon ferrochrome slag and GGBFS for coastal saline soil stabilization: Performance and chloride immobilization mechanism[J]. Case Studies in Construction Materials, 2026, 25: e06222.

He, Wei*; Li, Zhao-han; Meng, Xia; et al. Comprehensive study on mechanical properties and hydration mechanisms of HCFS-GGBFS-based geopolymer activated by sodium chloride, gypsum, and quicklime[J]. Construction and Building Materials, 2025, 475: 141218. 

He, Wei; Song, Shaomin*; Meng, Xia; et al. Early-age Hydration Characteristics of Composite Binder Containing Graphite Powder[J]. Journal of Wuhan University of Technology(Materials Science), 2022 ,37(06): 1252-1261. 

何伟; 周予启; 王强*. 铜渣粉作为混凝土掺合料的研究进展. 材料导报, 2018, 32(23): 4125-4134. 

王登权; 何伟; 王强*; 王志强. 重金属在水泥基材料中的固化和浸出研究进展, 硅酸盐学报, 2018, 46(05): 683-693.

刘进; 何伟*;  王栋民.蒸养条件下水泥-磷渣复合胶凝材料的水化产物的长龄期特征[J].电子显微学报, 2017, 36(6): 571-576.

He, Wei; Meng, Xia; Zheng, Yu; Ji, Hongguang*; Liu, Chengbin. Development trend of the compressive strength of an in-Service sidewall corroded by sulphate with a high concentration of Ca2+. Journal of Chemists and Chemical Engineers, 2016, 65(1-2):1-10.(EI JA,期刊2016首期首篇文章 Lead article)

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