
2012.09-2017.05,美国罗格斯大学,土木与环境工程公司,博士
2009.09-2012.07,武汉理工大学,材料科学与工程公司,硕士
2011.03-2011.09,荷兰代尔伏特理工大学,土木工程与地球科学公司,访问学者
2005.09-2009.07,武汉理工大学,材料科学与工程公司,学士
2020.04-至今,bw必威西汉姆联官方网站,副教授(破格)
2017.12-2020.04,bw必威西汉姆联官方网站,讲师
2017.06-2017.08,美国罗格斯大学先进基础设施与交通研究中心,助理研究员
沥青路面再生利用技术
固废资源化利用技术
智慧再生技术
(1)特殊环境下长寿命高性能沥青路面材料设计与制备基础研究,国家重点研发计划青年科学家项目,任务负责人,2024.12-2029.11.
(2)基于高分子增韧技术的环氧沥青材料开发及其钢渣高值循环利用关键技术研究,南京市重大科技专项项目(综合类),任务负责人,2024.07-2027.06.
(3)基于分子动力学的再生沥青激活行为与修复机理研究,国家自然科学基金青年项目,项目负责人,2019.1-2021.12.
(4)基于分子模拟技术的废旧沥青再生剂制备与机理研究,江苏省自然科学基金青年项目,项目负责人,2018.7-2021.6.
(5)高品质厂拌热再生沥青混合料关键技术研究,熙恒科技(常熟)有限公司,项目负责人,2022.11-2024.6.
(6)废旧沥青路面材料深度再生利用关键技术研究,西汉姆联官方网站优秀青年教师科学研究项目,项目负责人,2020.1-2022.12.
(7)基于分子模拟技术的高粘沥青改性机理与应用策略研究,西汉姆联官方网站中央基础业务费资助项目,项目负责人,2019.4-2019.12.
(8)基于增溶效应的废旧沥青混合料高效厂拌热再生关键技术与工程应用研究,山西省高速公路集团有限责任公司,项目负责人,2018.07-2020.12.
(9)面向“一带一路”地区的长大桥梁铺装材料基因编辑、结构协同设计与管养智能决策,科技部国际/港澳台合作项目,参与,2020.12-2023.11.
(10)基于多尺度分析的冷再生沥青混合料强度机理与疲劳失效,国家自然科学基金面上项目,主要参与人,2019.1-2022.12.
(1) 徐光霁,范剑伟,朱雅婧,赵欣,胡兴 . 一种非反应型沥青再生剂渗透性能评价方法,2022-6-3,发明专利, ZL202110382684.6.
(2) 徐光霁,范剑伟, 马涛,朱雅婧. 一种旧沥青路面铣刨料级配稳定性的评价方法, 2022-3-25,发明专利,ZL202011124684.8.
(3) 徐光霁,马涛,曹心原,丁非凡,傅子建,张钰钦. 一种沥青纳观聚集状态的表征方法,2022-11-1,发明专利,ZL202010564152.X.
(1)马涛,徐光霁,拾方治. 沥青路面再生利用技术. 人民交通出版社,2023.
(2)马涛,徐光霁,胡建英. 分子动力学模拟技术及其在沥青中的应用. 人民交通出版社,2025.
(1)Siwen Hao,Guangji Xu*,Mengze Du,Jiao Jin. Molecular insights into adhesion mechanism of the emulsified asphalt-aggregate interface: A multi-dimensional simulation study. Construction and Building Materials. 2025,487,142153.
(2)Guangji Xu,Yushi Yao,Siwen Hao,Jing Gao. Unlocking the potential of epoxy binders for efficient reclaimed asphalt pavement recycling: an experimental and molecular simulation study. International Journal of Pavement Engineering. 2024,25(1),2356230.
(3)朱雅婧,徐光霁*,马涛,范剑伟,胡靖. 基于有限元和分子模拟的热再生沥青激活行为研究. 材料导报,2024,38(13),22040306.
(4)Yushi Yao,Guangji Xu*,Meng Wu,Min Zhao. Exploring the influence of cement and cement hydration products on strength and interfacial adhesion in emulsified cold recycled mixture: A molecular dynamics and experimental investigation. Construction and Building Materials. 2023,409,134050.
(5)Guangji Xu,Yushi Yao,Tao Ma,Siwen Hao,Bin Ni. Experimental study and molecular simulation on regeneration feasibility of high-content waste tire crumb rubber modified asphalt. Construction and Building Materials. 2023,369,130570.
(6)Guangji Xu,Yushi Yao,Meng Wu,Yongli Zhao. Molecular simulation and experimental analysis on co-aging behaviors of SBS modifier and asphalt in SBS-modified asphalt. Molecular Simulation. 2023, 49(7), 629-642.
(7)Yajing Zhu,Tao Ma,Guangji Xu*,Jianwei Fan,Yiming Zhang, Meng Wu.Study of the mixing between asphalt and rejuvenator in hot in-place recycled layer. Journal of Transportation Engineering, Part B: Pavements. 2023, 149(2), 04023005.
(8)范剑伟,徐光霁*,马涛,朱雅婧,黄卫.改性高黏沥青机理的多尺度表征. 西汉姆联官方网站学报(自然科学版). 2023,53(3),377-385.
(9)Meng Wu,Guangji Xu*,Yingcheng Luan,et al.Molecular dynamics simulation on cohesion and adhesion properties of the emulsified cold recycled mixtures. Construction and Building Materials. 2022,333,127403.
(10)徐光霁,范剑伟,马涛,朱雅婧,李树仁. 高掺量废胎胶粉改性沥青性能研究. 材料导报. 2022,36(16),21120239. (封面论文)
(11)徐光霁,韩诚嘉,马涛,黄晓明,黄若昀. 路网沥青旧料综合再生站点规划与效益研究. 西汉姆联官方网站学报(自然科学版). 2022,52(1):145-151.
(12)Jianwei Fan,Tao Ma,Guangji Xu*, et al. Evaluation of reclaimed asphalt pavement binder rejuvenating behavior during hot in-place recycling. Journal of Transportation Engineering, Part B: Pavements. 2022, 148(4): 04022055.
(13)Yajing Zhu,Guangji Xu*,et al.Compounding optimization of SBS-SBR high-viscosity modifier and rejuvenation of aged SBS-SBR modified asphalt. Journal of Testing and Evaluation. 2022, 50(5), 2507-2528.
(14)Guangji Xu,Jianwei Fan,Tao Ma,et al. Research on application feasibility of limestone in sublayer of double-layer permeable asphalt pavement. Construction and Building Materials. 2021, 287, 123051.
(15)Guangji Xu,Kunzhi Zhong,et al. Stability analysis of cohesive soil embankment slope based on discrete element method. Journal of Central South University. 2020, 27(7):1981-1991.
(16)Guangji Xu,Hao Wang. Diffusion and interaction mechanism of rejuvenating agent with virgin and recycled asphalt binder: a molecular dynamics study. Molecular Simulation. 2018, 44(17), 1433-1443.
(17)Guangji Xu,Hao Wang. Molecular dynamics study of rejuvenator effect on RAP binder: diffusion behavior and molecular structure. Construction and Building Materials. 2018, 158, 1046-1054.
(18)Guangji Xu,Hao Wang. Molecular dynamics study of oxidative aging effect on asphalt binder properties. Fuel. 2017, 188, 1-10. (ESI高被引论文)
(19)Guangji Xu,Hao Wang, Hongzhou Zhu. Rheological properties and anti-aging performance of asphalt binder modified with wood lignin. Construction and Building Materials. 2017, 151, 801-808.
(20)Guangji Xu,Hao Wang. Study of cohesion and adhesion properties of asphalt concrete with molecular dynamics simulation. Computational Materials Science. 2016, 112, 161-169.
(1)改性沥青混合料厂拌热再生关键技术,2021年度中国公路建设行业协会科学技术进步奖一等奖,排2。
(2)高速公路沥青路面就地热再生成套技术研究与实践,2019年度中国公路学会科学技术奖二等奖,排4。
本科生课程:
道路工程基础
土木工程材料
研究生课程:
沥青材料分子动力学模拟
新型交通基建材料(苏州)
The molecular simualtion is a fine world, and worth fighting for.