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师资队伍

胡黎俐
系所:先进工程材料与结构研究所
职称:副教授
办公地点:科技楼505

研究领域

[1] 纤维增强复合材料-金属新型组合结构 Innovative FRP-metal composite structures;

[2] 高性能海洋土木工程结构 High performance structures for offshore engineering;

[3] 智能材料及智能建造 Smart materials and constructions。


学习工作经历

2024年11月-至今,北京科技大学,土木与资源工程学院,副教授(硕导);

2020年6月-2024年10月,上海交通大学,土木工程系,助理教授、副教授(硕导、博导);

2017年9月-2020年6月,清华大学,土木工程专业,博士;

2018年10月-2019年7月,瑞士苏黎世联邦理工学院(ETH Zürich),国家公派联合培养;

2014年8月-2017年7月,清华大学,土木工程专业,硕士;

2010年9月-2014年6月,天津大学,土木工程专业、英语专业,学士。


本科生课程

暂无


研究生课程

暂无


社会兼职

[1] SCI期刊 Case Studies in Construction Materials,青年编委 Early Career Editorial Board Member;

[2] SCI期刊 Polymers专题,客座编辑 Special Issue Editor、专题咨询小组成员 Topical Advisory Panel;

[3] SCI期刊 Buildings专题,客座编辑 Special Issue Editor;

[4] SCI期刊 Frontiers in Materials,专题客座编辑 Research Topic Editor;

[5] 国际期刊 Smart Construction《智能建造与智慧运维》,青年编委;

[6] 国际期刊 Sustainable Structures,青年编委;

[7] 中文核心期刊《复合材料科学与工程》,青年编委;

[8] 国际会议 iCFSERP-2024 学术委员会,委员 Scientific Committee Member;

[9] 国际会议 ACESS 2023 以及 ACESS 2024 项目委员会,联合主席 Program Committee Co-Chair;

[10] 国际会议 SMAR 2024, Mini-Symposium、SMAR 2022 Special Session、国ISSCI 2018、ISERCI 2018,组织人;

[11] 中国土木工程学会,先进工程材料分会,理事;

[12] 中国复合材料学会,土木工程复合材料专业委员会,委员;

[13] 第七届全国复合材料力学与工程研讨会组织委员会,副主任;

[14] 第二届土木工程新材料及新型结构学术会议 组织委员会,委员;

[15] 多本国际SCI期刊及中文期刊,审稿人。


专利获奖鉴定

[1] 国际先进材料协会科学家奖(IAAM Scientist Medal);

[2] 国家青年人才托举计划 [3] 结构物表面外贴加固材料的一体化装置及施工方法. 国家发明专利, ZL 202110581924.5.;


科研项目

[1] 2023-2026,上海市自然科学基金面上项目,FRP增强海洋螺旋焊管低温疲劳裂纹扩展机理研究,在研,主持;

[2] 2023-2024,非金属材料创新中心(NEXCEL)创新基金TDA项目,玻纤增强复合材料筋材耐火及蠕变性能提升与应用关键技术,在研,主持;

[3] 2023,北京金茂绿建科技有限公司创新项目,基于预应力FRP增强结构的通讯塔加固器件研究,结题,主持;

[4] 2023-2025,国家青年托举工程基金,在研,主持;

[5] 2022-2024,国家自然科学基金青年基金项目,海洋工程用FRP外覆增强螺旋焊接钢管疲劳性能研究,在研,主持;

[6] 2021-2024,上海市科委2021年扬帆计划,腐蚀与疲劳荷载耦合作用下FRP外覆增强海洋钢管结构长期性能研究,结题,主持;

[7] 2021-2023,海洋工程国家重点实验室开放课题,FRP增强海洋工程螺旋焊管疲劳与冲击性能研究,结题,主持;

[8] 2020-2023,上海交通大学“双一流”建设项目人才科研启动基金,结题,主持;

[9] 2017-2019,国家工业建筑诊断与改造工程技术研究中心开放基金课题,CFRP抗疲劳加固钢吊车梁理论机理研究,结题,主持;

[10] 2023-2026,国家重点研发计划,地下工程结构用高性能纤维增强复合材料研制及应用技术,参与;

[11] 2017-2020,国家重点研发计划,纤维增强复合材料性能提升与建筑高效利用的结构设计理论及方法研究,参与;

[12] 2016-2017,横向项目,北关大道跨北运河桥复合材料(FRP)复杂曲面封护系统工程分析与设计咨询,参与。


代表性论文及著作

[1] Salim Cahyadi Andre, Zhang Yining, Hu Lili*, Shao Chengjian. Static and fatigue behavior of CFRP strengthened spiral welded steel tubes subjected to four-point bending. Ocean Engineering, 2024, 314, 119685.;

[2] Liu Xinyu, Salim Cahyadi Andre, Ban Huiyong, Hu Lili*. Behavior of CFRP-strengthened short spiral welded tubes under axial load. Thin-Walled Structures, 2024, 205, 112408.;

[3] Liang Xu, Wang Yunhao, Feng Peng, Hu Lili*. Novel strengthening method of signal tower using prestressed CFRP plates: Concept and behavior. Engineering Structures, 2024, 319, 118824.;

[4] Wang Hai-Tao, Bian Zhi-Ning, Wu Qiong, Hu Lili*, Chen Min-Sheng. Development of a novel anchorage and tensioning system for strengthening steel beams with unbonded prestressed CFRP plates. Engineering Structures, 2024, 312, 118234.;

[5] Zhang Yining, Hu Lili*, Shen Chen, Zhao Xiao-Ling. Study on fatigue behavior of butt-welded high-strength steel connections with surface cracks. Thin-Walled Structures, 2024, 200, 111888.;

[6] Ding Xinyu, Liang Xu, Chen Man-Tai, Hu Lili*. Study on CFRP-strengthened welded steel plates with inclined welds considering welding residual stress. Materials, 2024, 17, 1804.;

[7] Liang Xu, Wang Weiyong, Hu Lili*, Feng Peng. Experimental and numerical study on high-temperature performance of prestressed CFRP-reinforced steel columns. Engineering Structures, 2024, 301, 11.;

[8] Chen Man-Tai, Zhang Tianyi, Gong Zhichao, Zuo Wenkang, Wang Zhongxing, Zong Liang, Zhao Ou, Hu Lili*. Mechanical properties and microstructure characteristics of wire arc additively manufactured high-strength steels. Engineering Structures, 2024, 300: 117092.;

[9] Thongchom Chanachai, Hu Lili*, Sanit-in Penpichcha Khongpermgoson, Kontoni Denise-Penelope N., Praphaphankul Nitipong, Tiprak Koravith, Kongwat Suphanut. Experimental investigation on post-fire mechanical properties of glass fiber-reinforced polymer rebars. Polymers, 2023, 15(13): 2925.;

[10] Hu Lili, Liang Xu, Feng Peng, Li Hai-Ting*. Temperature effect on buckling behavior of prestressed CFRP-reinforced steel columns. Thin-Walled Structures, 2023, 188: 110879.;

[11] Wang Hai-Tao, Bian Zhi-Ning, Chen Min-Sheng, Hu Lili*, Wu Qiong. Flexural strengthening of damaged steel beams with prestressed CFRP plates using a novel prestressing system. Engineering Structures, 2023, 284: 115953.;

[12] Hu Lili, Cao Heng, Zhang Zihan, Wang Yequan*. An advanced method for predicting the axial compressive bearing capacity of FRP-strengthened hollow section metal columns. Advances in Structural Engineering, 2023, 26(8):1–24.;

[13] Chen Man-Tai, Cai Ao, Pandey Madhup, Shen Chen, Zhang Yuelong, Hu Lili*. Mechanical properties of high strength steels and weld metals at arctic low temperatures. Thin-Walled Structures, 2023, 185: 110543. (ESI高被引);

[14] Hu Lili, Feng Peng*. Theoretical analysis and design of prestressed CFRP-reinforced steel columns. Journal of Composites for Construction, ASCE, 2022, 26(3): 04022029.;

[15] Hu Lili, Feng Peng*, Gao Wanyang, Wang Yunhao. Flexural behavior of light steel purlins reinforced by prestressed CFRP laminates. Thin-Walled Structures, 2022, 174: 109125.;

[16] Wu Kaidong, Xing Zhe, Hu Lili*. Prestressed stayed beam-columns under eccentric compression: behaviour and prestress optimization, Engineering Structures, 2022, 256: 113996.;

[17] Hu Lili, Li Mingyi, Yiliyaer Tuerxunmaimaiti, Gao Wanyang, Wang Hai-Tao*. Strengthening of cracked DH36 steel plates by CFRP sheets under fatigue loading at low temperatures. Ocean Engineering, 2022, 243: 110203.;

[18] Hu Lili, Feng Peng*, Meng Yanran, Yang Jian. Buckling behavior analysis of prestressed CFRP-reinforced steel columns via FEM and ANN. Engineering Structures, 2021, 245(5): 112853.;

[19] Hu Lili*, Ghafoori Elyas, Pons Stefano, Feng Peng, Yang Jian, Azim Iftikhar. Fire behavior and design of steel columns reinforced by prestressed CFRP strips. Composite Structures, 2021, 275: 114516.;

[20] Hu Lili, Feng Peng*. Prestressed CFRP-reinforced steel columns under axial and eccentric compression. Composite Structures, 2021, 268: 113940.;

[21] Hu Lili, Wang Yuanyuan, Feng Peng*, Wang HaiTao, Qiang Hanlin. Debonding development in cracked steel plates strengthened by CFRP laminates under fatigue loading: experimental and boundary element method analysis. Thin-Walled Structures, 2021, 166: 108038.;

[22] Hu Lili, Li Weijie, Feng Peng*. Long-term behavior of CFRP plates under sustained loads. Advances in Structural Engineering, 2022: 1-15.;

[23] Hu Lili, Feng Peng*, Zhao Xiao-Ling. Fatigue design of CFRP strengthened steel members. Thin-Walled Structures, 2017, 119: 482-498.;

[24] Hu Lili, Zhao Xiao-Ling, Feng Peng*. Fatigue behavior of cracked high-strength steel plates strengthened by CFRP sheets. Journal of Composites for Construction, ASCE, 2016, 20(6): 04016043.