科研项目: [1]国家自然科学基金项目:西北大温差地区热再生沥青胶结料损伤诱导混合料性能劣化机理研究,52368066,主持,在研 [2]甘肃省重点研发计划项目:筑路用绿色环保型沥青混合料烟气产生-流动-抑制机理研究,25YFGA038,主持,在研 [3]甘肃省自然科学基金项目:河西走廊地区温差循环作用下热再生沥青胶浆组分-结构-性能衰减机理研究,23JRRA773,主持,结题 [4]甘肃省自然科学基金项目:基于凸优化理论的绿色复掺改性沥青研发与路用性能试验研究,20JR10RA171,主持,结题 [5]甘肃省高等公司创新基金项目:混杂纤维增强甘肃寒区热再生沥青混合料多尺度抗裂性能研究,2022A-026,主持,结题 [6]金年会官方网站入口红柳优秀青年人才计划,主持,结题 [7]校企合作横向项目:本地化集料铺筑沥青路面关键技术研究,主持,在研 [8]校企合作横向项目:大掺量热再生沥青混合料配比设计方法与施工技术研发,主持,在研 [9]校企合作横向项目:城市道路新型装配式PC井室快速预制-便捷拼装技术研发,主持,结题 [10]国家自然科学基金项目:甘肃省热再生沥青胶浆的微细观结构与流变特性再生机理研究,51868047,参与(第二),结题 [11]甘肃省重点研发计划项目:厂拌热再生沥青混合料再生效果与不同层位路用功能评价,20YF3GA017,参与(第二),结题 学术成果: 【代表性学术期刊论文】 [1]Tengfei Nian*, Haowen Sun, Jinguo Ge, etal.Molecular Dynamics Analysis of Enhancing Mechanical Properties of Aged SBS-Modified Asphalt Through Component Regulation[J]. Construction and Building Materials, 2025, 491: 142784.(SCI,中科院一区TOP) [2]Tengfei Nian*, Shiwen Xue, Xiaoming Huang, etal.Correction of Uneven Illumination in Asphalt Mixture X-Ray CT Images Based on Frequency Domain Filtering [J]. Journal of Materials in Civil Engineering, ASCE, 2025, 37(8): 04025237.(SCI) [3]Tengfei Nian*, Piyi Li, Xiaoming Huang,etal. Toughening mechanism of highland barley straw fiber at the asphalt-aggregate interface: A molecular dynamics approach[J]. Construction and Building Materials, 2025, 486: 142036.(SCI,中科院一区TOP) [4]Tengfei Nian*, Shiwen Xue, Jinguo Ge,etal. Application of U-Net+ + deep learning network for segmentation and processing of asphalt mixture X-ray CT images[J]. Applied Soft Computing, 2025, 177, 113308.(SCI,中科院二区TOP) [5]Tengfei Nian, Yanlin Li, Xiaohua Jin,etal. Toward Carbon Balance in Life Cycle: The Carbon Emission Assessment for the Recycled Coarse Aggregate Concrete[J]. Advances in Civil Engineering, 2025, 2025: 9184976.(SCI) [6]Tengfei Nian*, Maomin Wang, Xiaoming Huang,etal. Investigating crack resistance and mechanisms of crack extension in high-content steel fibers reinforced hot recycled asphalt mixtures[J]. Construction and Building Materials, 2024, 450: 138717.(SCI,中科院一区TOP) [7]Tengfei Nian*, Maomin Wang, Shuwang Li,etal. Enhancing pavement structural resilience: analyzing the impact of vehicle‑induced dynamic loads on RAP‑recycled cement‑stabilized crushed stone pavements with tip cracks [J]. Materials and Structures, 2024, 57: 162.(SCI) [8]Tengfei Nian*, Maomin Wang, Jinguo Ge,etal. Enhancing Low-Temperature Crack Resistance: A Method for Establishing Meso-Models and Evaluating Steel Fiber-Reinforced Hot Recycled Asphalt Mixtures[J]. Construction and Building Materials, 2024, 438: 137026.(SCI,中科院一区TOP) [9]Tengfei Nian*, Piyi Li, Jinguo Ge,etal. Green Environmental Protection and Sustainable Utilization of Straw: Investigation for Molecular Dynamics of Highland Barley Straw Fiber to Enhancing Road Performance of Asphalt[J]. Journal of Cleaner Production, 2024, 452: 141940.(SCI,中科院一区TOP) [10]Tengfei Nian*, Shuwang Li, Ping Li,etal. Mechanical response of interlayer structural shear performance of asphalt pavement with functional layer considering interlayer contact state[J]. Case Studies in Construction Materials.2023, 18: e01934.(SCI、中科院二区) [11]Tengfei Nian*, Jinggao Li, Ping Li*,etal. Method to predict the interlayer shear strength of asphalt pavement based on improved back propagation neural network[J]. Construction and Building Materials. 2022, 351: 128969.(SCI,中科院一区TOP) [12]Tengfei Nian*, Jinguo Ge, Ping Li*, etal.Improved three-dimensional discrete modeling method and anti-cracking properties of asphalt mixture [J]. Construction and Building Materials. 2022, 321: 126405.(SCI,中科院一区TOP) [13]Tengfei Nian*, Jinguo Ge, Ping Li,etal. Improved discrete element numerical simulation and experiment on low-temperature anti-cracking performance of asphalt mixture based on PFC2D [J]. Construction and Building Materials. 2021, 283: 122792.(SCI,中科院一区TOP) [14]Tengfei Nian*, Jinguo Ge, Ping Li, etal.Influence of multiple factors on shear fatigue resistance of asphalt pavement interlayer adhesive materials [J]. Journal of Materials in Civil Engineering,ASCE. 2020,32(9): 04020251.(SCI) [15]Tengfei Nian, Ping Li, Yu Mao, etal.Connections between chemical composition and rheology of aged base asphalt binders during repeated freeze-thaw cycles [J]. Construction and Building Materials. 2018,159:338-350.(SCI,中科院一区TOP) [16]念腾飞*,韩召,魏智强,等.考虑骨料形态的沥青混合料细观数值建模方法[J].吉林大学学报(工学版), 2025, 55(02): 639-652.(EI) [17]念腾飞*,李坯艺,黄晓明.青稞秸秆纤维增强沥青-集料界面黏附性分子动力学评价[J].华中科技大学学报(自然科学版), 2025, 53(02): 150-157+165.(EI) [18]念腾飞*,李竞高,李萍,等.沥青混合料烟气富集方法与释放规律分析[J].公路交通科技, 2024-02-15, 41(02): 11-21. [19]念腾飞,李萍,张国宏,等.考虑水-温循环的SBS改性沥青复数剪切模量预估模型[J].复合材料学报, 2019,36(02):533-543.(EI) [20]念腾飞,李萍,林梅.冻融循环下沥青特征官能团含量与流变参数灰熵分析及微观形貌[J].吉林大学学报(工学版), 2018,48(4):1045-1054.(EI) 【代表性专利】 [1]念腾飞,王茂民,薛世文,等.一种沥青加热搅拌装置[P].发明专利,专利号: 202211153840.2. [2]念腾飞,薛世文,韩召,等.一种模块化圆形PC井室预制模板与施工组装及拆除方法[P].发明专利,专利号: 202210402199.5 [3]念腾飞,薛世文,韩召,等. PC井室大管径管道的预留孔模板[P].实用新型专利,专利号: 202222350827.8. [4]念腾飞,韩召,薛世文,等.一种道路施工用组合式围栏[P].发明专利,专利号: 202211158036.3. [5]念腾飞,李树旺,石福周,等.一种改进的新型装配式道路PC井身与管道接口装置[P].实用新型专利,专利号: 202122449103.4. [6]念腾飞,戈锦果,李萍.一种对沥青中溢出烟气的净化处理装置[P].实用新型专利,专利号: 202021403222.5. [7]念腾飞,王盟,李萍,等.一种具有倾倒式实验室用沥青混合料搅拌缸[P].实用新型专利,专利号: 202021404629.X. 指导本科生获老员工创新创业计划项目: [1]张碧瑶等.2024年国家级创新训练项目:基于“风能、光能、生物质能”的多能互补式农用高效供暖系统,指导教师:念腾飞、李金平 [2]古超卓等.2023年国家级创新训练项目:基于仿生学设计的全方位多镜面碟式太阳能光热聚光器,指导教师:念腾飞 [3]赵志忠等.2022年国家级创新训练项目:大掺量RAP再生水泥稳定碎石基层级配设计与力学性能试验研究,指导教师:念腾飞、冯琼 [4]黄俊烨等.2021年国家级创新训练项目:装配式沥青路面混合料设计与层间粘结材料性能研究,指导教师:李萍、念腾飞 [5]李锐等.2022年甘肃省创新训练项目:城市道路新型装配式PC井室快速预制-便捷拼装技术研发,指导教师:念腾飞 [6]古超卓等.2022年甘肃省创新训练项目:绿色低碳型抑烟沥青复配制备方法与路用性能试验研究,指导教师:念腾飞 [7]王超等.2022年甘肃省创新训练项目:基于碳纳米管改性的微胶囊路面自修复材料,指导教师:王英、念腾飞 [8]张辉等.2021年甘肃省创新训练项目:高楼火灾生命的守护神-一种高层火灾逃逸器,指导教师:念腾飞 [9]赵振东等.2021年甘肃省创新训练项目:基于凸优化理论的绿色复掺改性沥青研发与路用性能试验研究,指导教师:念腾飞 [10]李立题等.2020年甘肃省创新训练项目:香烟头过滤嘴海绵提高季节性冻土区沥青路面低温抗裂性能研究,指导教师:念腾飞、李萍 [11]臧洋等.2020年甘肃省创新训练项目:混凝土裂缝的微生物修复效果及耐久性能研究,指导教师:冯琼、念腾飞 (更新于2025年8月) |