
2018.07 - 2021.06 浙江大学,博士
2016.09 - 2018.06 浙江大学,硕士
2012.09 - 2016.06 长安大学,学士
2026.01 - 至今 东南大学,副研究员
2022.10 - 2025.12 东南大学,助理研究员,至善博士后
2021.08 - 2022.09 香港理工大学,博士后研究员
多场耦合损伤与断裂力学、人工智能与数字孪生技术
1. 国家重点研发计划子课题:交通铺面建造和运维期关键检监测感知指标研究,2025年12月-至今,主持
2. 国家自然科学基金青年科学基金项目(C类):沥青混合料开裂-愈合动态交互能量平衡机制及裂缝临界状态研究,2026年1月-至今,主持
3. 国家重点研发计划子课题:基于低碳运维和结构延寿的基础设施长效减碳工程原理,2025.6-至今,主持
4. 江苏省自然科学基金青年项目:沥青混合料裂缝不稳定快速扩展临界状态的判定与预测,2024.9-至今,主持
5. 中国博士后科学基金面上项目:基于裂纹自愈合失效的沥青混合料疲劳寿命预测研究,2023.7-至今,主持
6. 江苏省卓越博士后计划:面向数字孪生的智慧沥青路面结构内部损伤实时预测研究,2023.7-至今,主持
7. 国家重点研发计划“政府间国际科技创新合作”重点专项:数据驱动的道路基础设施服役安全与韧性预警,2020.4-2024.12,参与
8. 国家自然科学基金面上项目:耦合尺寸效应与结合能理论的沥青混合料高次疲劳起裂行为研究,2025.1-至今,参与
9. 浙江省自然科学基金重点项目:人工智能赋能沥青公路网疲劳退化研究,2020.6-2023.12,参与
10. 江西省重点研发计划项目:面向长寿命的既有高速公路沥青路面延寿设计与高韧性沥青材料研发,2025.6-至今,参与
11. 金华市重点科技计划项目:基于结合能技术的新型抗水敏高性能沥青混合料研究,2024.1-2025.12,参与
12. 技术服务科研项目:沿江高速长寿命路面结构服役性能评估和数字孪生监测研究,2024.12-至今,参与
13. 技术服务科研项目:基于多级弯沉的半刚性基层沥青路面结构内部损伤定量算法及程序开发,2024.1-至今,参与
1. 一种开裂-愈合动态交互作用下的粘弹性材料裂缝临界状态判定方法
2. 一种扭转循环荷载作用下的粘弹性材料疲劳裂纹可愈合临界尺寸计算方法
3. 一种粘弹性材料愈合演化预测方法、装置及存储介质
4. 一种循环加载-多阶段间歇的沥青材料疲劳裂纹临界愈合点测试方法
5. 沥青面层在多重环境梯度耦合下的室内表征方法
6. 沥青-集料界面疲劳性能的表征方法
7. 一种基于能量平衡法的有机胶凝材料内聚结合能测定方法
8. 一种沥青多级振幅时间扫描疲劳检测方法与系统
9. 一种沥青材料分子尺度力学行为的应力控制动态加载表征方法
10. 基于无人机-边缘计算协同的桥隧病害检测方法及系统
11. 一种基于平行粘结损伤模型的离散元疲劳损伤仿真方法
12. 基于屈服应力演化的沥青混合料应变软化评估方法和系统
代表性期刊论文
1. Luo, X., Liang, Z., Chen, Z., Li, H. *, & Lyu, Z. (2026). Critical healing criterion and crack size of viscoelastic materials at the transition to non-healable state. International Journal of Solids and Structures, 114174.
2. Tian, W., Li, H., *, Song, P., Zeng, B., & Zhang, Y. * (2026). Multiscale Understanding of Self-Healing Mechanisms in Complex Polymeric Bituminous Materials through Molecular Dynamics and Macroscopic Modeling. Polymer Degradation and Stability, 112478.
3. Gong, F., Hu, Y., Li, H. *, & Zhang, Y. * (2025). A Novel Multistage Time Sweep Approach for Fatigue Evaluation of Asphalt Binders. International Journal of Fatigue. 109162.
4. Li, H., Gong, F., Xu, J., Han, C., & Wei, W. (2025). Assessing and Enhancing Moisture Damage Resistance of Tuff-Asphalt Interface: A Hydrodynamic Fatigue Pull-off Test Approach.Construction and Building Materials, 490,142564.
5. Li, H., Tan, Z., Li, R., Luo, X, Zhang, Y., & Leng, Z. (2024). Mechanistic Modeling of Fatigue Crack Growth in Asphalt Fine Aggregate Matrix under Torsional Shear Cyclic Load. International Journal of Fatigue, 107999.
6. Li, H., Luo, X., & Zhang, Y. (2024). Predicting Fatigue Crack Growth Rate of Cement-Based and Asphalt Paving Materials based on Indirect Tensile Cyclic Loading Tests. Engineering Fracture Mechanics, 110146.
7. Li, H., Zhang, Y., Chen, Q., Xu, Z., & Luo, X. (2024). Rheological and bonding properties of aged bio-bitumen derived from slow pyrolysis of bamboo waste. Construction and Building Materials, 438, 136990.
8. Li, H., Ling, J., Leng, Z., Zhang, Y., & Luo, X. (2023). Nonlinear Viscoelasticity and Viscoplasticity Characteristics of Virgin and Modified Asphalt Binders. Journal of Engineering Mechanics, 149(10), 04023074.
9. Li, H., Luo, X., Gu, Z., Chen, Q., & Zhang, Y. (2023). Predicting Crack Growth of Paving Materials under Indirect Tensile Fatigue Loads. International Journal of Fatigue, 107818.
10. Li, H., Luo, X, Zhang, Y., & Leng, Z. (2023). Viscoelastic Fracture Mechanics-based Fatigue Life Model in Asphalt-filler Composite System. Engineering Fracture Mechanics. 109589.
11. Li, H., Chen, P., Wang, H., Luo, X., & Zhang, Y. (2022). Pseudo energy-based crack initiation criterion for asphalt-filler composite system under a fatigue shear load. Theoretical and Applied Fracture Mechanics, 119, 103333.
12. Li, H., Luo, X., Ma, F., & Zhang, Y. (2021). Micromechanics modeling of viscoelastic asphalt-filler composite system with and without fatigue cracks. Materials & Design, 209, 109983.
13. Li, H., Luo, X., & Zhang, Y. (2021). A kinetics-based model of fatigue crack growth rate in bituminous material. International Journal of Fatigue, 148, 106185.
14. Li, H., Luo, X., Zhang, Y., & Xu, R. (2021). Stochastic fatigue damage in viscoelastic materials using probabilistic pseudo J-integral Paris' law. Engineering Fracture Mechanics, 245, 107566.
15. Li, H., Luo, X., Yan, W., & Zhang, Y. (2020). Energy-Based Mechanistic Approach for Crack Growth Characterization of Asphalt Binder. Mechanics of Materials, 103462.
16. Li, H., Luo, X., & Zhang, Y. (2020). Pseudo energy-based kinetic characterization of fatigue in asphalt binders. China Journal of Highway and Transport, 33(10), 115.
17. Fang, C., Li, H. *, Li, Z., Chen, Y., & Guo, T. (2025). Fatigue Life Prediction of Asphalt Binders under Variable Loading Levels based on Dissipated Pseudo-strain Energy. Case Studies in Construction Materials, e04321.
18. Cao, K., Liu, G., Li, H. *, & Huang, Z. (2024). Multiscale prediction of thermal damage for hybrid fibers reinforced cementitious composites blended with fly ash at high temperatures. International Journal of Damage Mechanics, 33(5), 351-377.
19. Fang, C., Guo, N., Li, H. *, Leng, Z., & Jiang, J. (2024). Investigating Fatigue Damage Accumulation of Asphalt Binders Considering Amplitude Sequence and Loading Interaction. Journal of Materials in Civil Engineering, 36(6), 04024142.
20. Luo, X., Ling, J., Li, H. *, Zhang, Y., & Li, Y. (2023). Nonlinear viscoelastoplastic kinetics for high-temperature performance of modified asphalt binders. Mechanics of Materials, 180, 104612.
21. Cao, K., Li, H. *, Liu, G., Huang, Z., & Wu, G. (2023). Bonding properties between steel-basalt hybrid fibers reinforced cementitious composites and existing concrete at high temperatures. Journal of Building Engineering, 70, 106371.
22. Cao, K., Liu, G., Li, H. *, Huang, Z., & Wu, G. (2023). Correlation between macroscopic properties and microscopic pore structure in steel-basalt hybrid fibers reinforced cementitious composites subjected to elevated temperatures. Construction and Building Materials, 365, 129988.
23. 李辉, 罗雪, 张裕卿. 基于耗散伪应变能的沥青疲劳动力学表征[J].中国公路学报,2020, 33(10): 115-124.
会议论文与报告
1. Li, H., Luo, X., & Lytton, R. L. (2021). “Characterization of Deterministic and Stochastic Fatigue Cracking in Asphalt Binder.” The Transportation Research Board (TRB) 100th Annual Meeting, Washington, D.C., January 25-29.
2. Li, H., Ma, F; Luo, X; Zhang, Y. (2022). “Micromechanics Modeling of Viscoelastic Asphalt-filler Composite System with and without Fatigue Cracks.” The Transportation Research Board (TRB) 101st Annual Meeting, Washington, D.C., January 9-13.
3. Li, H., Leng, Z., Luo, X; Zhang, Y. (2023). “Viscoelastic Fracture Mechanics Based Fatigue Life Model for Asphalt-filler Composite Systems.” The Transportation Research Board (TRB) 102nd Annual Meeting, Washington, D.C., January 8-12.
4. Li, H., Luo, X., & Zhang, Y. (2024). “Predicting Crack Growth of Paving Materials under Indirect Tensile Fatigue Loads.” The Transportation Research Board (TRB) 103rd Annual Meeting, Washington, D.C., January 7-11.
5. Li, H., Tan, Z., Li, R., Luo, X, Zhang, Y., & Leng, Z. (2024). “Mechanistic Modeling of Fatigue Crack Growth in Fine Aggregate Matrix under Torsional Shear Cyclic Load.” The Transportation Research Board (TRB) 103rd Annual Meeting, Washington, D.C., January 7-11.
6. Li, H., Luo, X., & Zhang, Y. (2024). “Modeling Crack Growth Rate of Paving Materials under Indirect Tensile Fatigue Loads using J-integral based Paris' law.” The Transportation Research Board (TRB) 103rd Annual Meeting, Washington, D.C., January 7-11.
7. Li, H., Zhang, Y., & Luo, X. (2025). “Cracking Damage Mechanism-based Mechanistic Framework on Predicting Damage Evolution in Asphalt Pavements.” The Transportation Research Board (TRB) 104th Annual Meeting, Washington, D.C., January 7-11.
8. Gong, F., Li, H.*, & Zhang, Y. (2026). “A Multi-Stage Time Sweep Approach for Balanced Accuracy and Efficiency in Asphalt Binder Fatigue Evaluation.”The Transportation Research Board (TRB) 105th Annual Meeting, Washington, D.C., January 11-15.
9. Gong, F., Liang, Z., Zhang, Y., & Li, H.* (2026). “Enhancing Moisture Damage Resistance of Tuff-Asphalt Interface via Silane Coupling Agent: A Hydrodynamic Fatigue Pull-Off Testing and Hybrid Design Strategy” The Transportation Research Board (TRB) 105th Annual Meeting, Washington, D.C., January 11-15.
10. Li, H.*, Liang, Z., Luo, X. (2027). “Thermodynamic Modeling of the Critical Healable State and Crack Size in Asphalt-filler Composite Systems.” The Transportation Research Board (TRB) 106th Annual Meeting, Washington, D.C., January 10-14.
11. Li, H., Liu, G., Luo, X., & Zhang, Y. (2023). “Nonlinear elastic fatigue damage modelling of cement-treated construction and demolition waste.” Advances in Materials and Pavement Performance Prediction (AM3P), Hong Kong, May 22-24.
12. Li, H. (2021). “Energy-Based Kinetics Approach for Coupled Viscoplasticity and Viscofracture of Asphalt Mixtures.” For serving as the Invited Speaker giving an oral presentation on The TRC2021 Transportation Research Congress, Hangzhou, November 5-7.
13. 李辉. “间接拉伸疲劳荷载作用下铺面材料的裂纹增长预测研究”, 第五届全国路面力学仿真会议,南京,2023.4.1-2023.4.3.
14. Li, H. (2024). “Mechanistic Modelling of Fatigue Damage Evolution in Asphalt Pavements”, The 7th International Conference on Transportation Infrastructure and Materials (TIM2024). Chongqing, June 14-16.
15. 李辉. “沥青混合料裂缝失稳扩展临界判定”,第十三届道路与机场工程研究青年论坛,广西,2024.11.22-2024.11.24.
16. Gu, Z., Luo, X., Liu, G., Li, H., & Zhang, Y. (2023). Prediction of fatigue damage of fiber reinforced cement treated aggregate based on strain energy equilibrium theory. In Advances in Functional Pavements (pp. 288-292). CRC Press.
1. 江苏省卓越博士后,2023
2. 中国物流与采购联合会科技进步二等奖,2026
3. 江苏省力学学会优秀学术成果论文,2025
4. 东南大学本科优秀毕业论文指导老师,2025
5. 江苏省研究生智慧交通运输创新实践大赛获奖指导老师,2026
6. The Chinese-European Workshop (CEW) on Functional Pavement, Best Paper Award, 2023
7. The TRC2021 Transportation Research Congress, Best Presentation Award, 2021
1. 长安大学学报(自然科学版)学术编辑、 Transportation Safety and Environment青年编委、材料研究学报青年编委、Journal of Highway and Transportation Research and Development (English Edition)青年编委、科技通报青年编委、吉林建筑大学学报青年编委、Coatings/Nanomaterials客座编辑
2. International Journal of Fatigue、International Journal of Damage Mechanics、International Journal of Mechanical Sciences、Engineering structures、Engineering Fracture Mechanics、Theoretical and Applied Fracture Mechanics、Materials & Design、Engineering Failure Analysis、Automation in Construction、Advances in Engineering Software、Construction and Building Materials、Journal of Engineering Mechanics、Journal of Materials in Civil Engineering、Journal of Transportation Engineering, Part B: Pavements、International Journal of Pavement Engineering、Journal of Building Engineering、Transportation Geotechnics、Composites Communications、Case Studies in Construction Materials、Journal of Materials Science、Petroleum Science and Technology、SoftwareX、Measurement、交通运输工程学报(英文版)等60余本国内外重要学术期刊审稿人
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