
姓名:许荔
职称:助理研究员
联系方式:xuli2024@shu.edu.cn
办公地址:上海大学宝山校区东区土木楼303
研究方向:
工程纤维增强水泥基复合材料(ECC)及工程应用、装配式结构、钢-混凝土组合结构
工作经历:
2024.12-至今 上海大学,土木工程系,助理研究员
2020.01-2024.12 东南大学,土木工程学院,博士后
2022.07-2023.06 荷语鲁汶大学,材料与结构系,博士后
教育经历:
2012.9-2019.12 东南大学,土木工程学院,博士
2008.9-2012.06 东南大学,土木工程学院,本科
科研项目:
1. 国家自然科学面上基金,新型干式装配RCS混合框架-ECC/钢板组合剪力墙结构抗震性能及设计方法研究, 52278155, 2023.01 – 2027.12, 参与.
2. 国家自然科学青年基金. 装配式ECC板屈曲约束钢板剪力墙抗震性能与设计方法研究, 2021–2023, 主持.
3. 中国博士后国际交流计划派出项目, 2022– 2023, 主持.
4. 江苏省博士后科研资助计划. 新型装配式钢板/ECC组合剪力墙抗震性能及优化设计方法研究,2020– 2021, 主持.
近5年代表性论文
1. Xu L, Jiang B, Lin JT, Gu DW, Pan JL*. Shear-tension interaction behavior and design model for ECC-embedded stud connectors. Engineering Structures, 2026, 349, 121865.
2. Xu L, Jiang B, Lin JT, Gu DW, Pan JL*. Investigation on Flexural Performance of Orthotropic Steel–ECC Composite Bridge Decks. Journal of Bridge Engineering (ASCE), 2025, 30(6): 04025023.
3. Xu L, Jiang B, Lin JT, Gu DW, Pan JL*. Pullout behavior of headed steel studs embedded in engineered cementitious composites: Experiment, simulation, and design. Structures, 2025, 73, 108426.
4. Xu L, Wang XY, Dong BQ, Yang X, Pan JL*. Seismic behaviors of steel-FRP composite bar-reinforced engineered cementitious composites columns under reversed cyclic loads. Engineering structures, 2024, 316: 118571.
5. Xu L, Wang XY, Pan JL*, Zhou JJ, Liu WR. Bond behavior between steel-FRP composite bars and engineered cementitious composites in pullout conditions. Engineering structures, 2024, 299: 117086.
6. Zhou JJ, Xia G, Zhao J, Wang PY, Xu L*, Pan JL. Investigation of flexural cracks in engineered cementitious composites beams reinforced with CFRP bars. Construction and Building Materials, 2024, 438: 136900.
7. Xu L, Ma XM, Pan JL*, Zhou JJ, Wang XY, Liu WR. Investigation on bond behavior of steel-FRP composite bars in engineered cementitious composites by spliced beam tests. Construction and Building Materials, 2023, 407: 133480.
8. Xu L, Pan JL*, Guo L. Mechanical performance of precast RC columns with grouted sleeve connections. Engineering structures, 2022, 252: 113654.