颜可珍

教授

基本情况

姓 名:颜可珍

出生年月:1975年5月

籍 贯:湖南桃江人

学历学位:工学博士

职 称:教授、博士生导师

职 务:道路与交通工程系主任

招生需求:每年招收3-5名硕士研究生和1-2名博士研究生、博士后

欢迎道路交通、材料、计算机、力学、岩土等方向有兴趣的学生加入一起学习。

联系方式:yankz@hnu.edu.cn;微信:ykzhunan

教育及工作经历

2014年05月-现在: 湖南大学土木工程学院,教授、博士生导师

2012年09月-2013年09月: 美国德州A&M University,访问学者

2007年02月-2010年05月: 长安大学公路工程学院,博士后

2006年10月-2014年05月: 湖南大学土木工程学院,副教授

2005年03月-2006年10月: 湖南大学土木工程学院,讲师

2002年-2005年: 浙江大学土木工程(岩土方向)博士

1999年-2002年: 长安大学道路与铁道工程硕士

1995年-1999年: 沈阳建筑大学交通土建专业学士

科研项目

(一)主持的主要科研项目:

[1]国家自然科学基金项目:梯度非均质路面结构力学分析及参数反演研究

[2]国家自然科学基金项目:各向异性路面结构力学行为及其参数智能反演研究

[3]国家自然科学基金项目:基于分数阶导数的横观各向同性粘弹性路面及同伦参数反演研究

[4]国家自然科学基金项目:沥青路面梯度非均质黏弹性表征及结构力学行为研究(52478452)

[5]中国博士后基金:基于梯度结构的沥青路面结构力学行为分析

[6]教育部博士点新教师基金:路基边坡冲刷的细观机理及稳定性研究

[7]中国博士后基金特别资助:沥青路面动力响应及参数反演研究

[8]湖南省科技厅项目:废旧聚合物复合改性沥青材料及应用研究

[9]湖南省交通科技项目:环保型高粘高弹沥青开发及应用研究

[10]湖南省交通科技项目:轻型直立式组合挡土墙在路基改扩建工程中的应用研究

[11]湖南省交通科技项目:湿热多雨地区混凝土桥面沥青铺装层处治关键技术及评价研究

[12]长沙市自然科学基金:氧化石墨烯复合聚氨酯改性沥青性能及其协同作用机理研究

[13]湖南省自然科学基金 聚氨酯定形二元共晶相变材料的自调温沥青路面研究(2024JJ9064)

(二)参与的主要科研项目:

[1]国家自然科学基金项目:层状硅酸盐与无机纳米粒子复配改性沥青的防老化及机理研究

[2]国家自然科学基金项目:基于R-曲线理论的沥青混凝土中间温度断裂特性研究

[3]教育部博士点基金:基于线结构光与组网像机的路面参数提取方法研究

[4]教育部博士点基金:无机纳米粒子对沥青性能的影响及其作用机理的研究

学术成果

1.主要中文论文(部分):

[1]颜可珍,师峻逸,王敏,史开心,柳金洪,洪哲.聚醚胺接枝氧化石墨烯对沥青性能的影响[J].湖南大学学报(自然 科学版),2023,50(01):137-143.DOI:10.16339/j.cnki.hdxbzkb.2023014.

[2]杨胜丰,黄东青,张攀,李曙,颜可珍.基于弹性黏力学指标的APAO改性沥青高温性能评价[J].湖南交通科技,2022,48(04):1-5.

[3]左云,赵晓文,颜可珍,张曼.ERA/WCO复合改性沥青及沥青混合料高低温性能[J].湖南科技大学学报(自然科学版),2022,37(04):49-56.DOI:10.13582/j.cnki.1672-9102.2022.04.007.

[4]颜可珍,黄顺欣,葛冬冬,洪哲.水泥混凝土桥面铺装层间黏结性能研究[J/OL].湖南大学学报(自然科学版):1-10[2023-04-18].http://kns.cnki.net/kcms/detail/43.1061.N.20221129.1217.002.html

[5]杨胜丰,颜可珍,查旭东,黎国凯.沥青混合料动态黏弹性分数阶导数Zener模型Wicket方法[J].公路工程,2022,47(05):126-131.DOI:10.19782/j.cnki.1674-0610.2022.05.019.

[6]成滢,赵晓文,颜可珍,黄顺欣.高模量沥青及沥青混合料性能研究[J].公路,2022,67(10):343-349.

[7]陈路斯,颜可珍,向鹏,张雨欣.飞灰替代矿粉对沥青胶浆性能的影响[J].山东交通科技,2022(02):19-22.

[8]颜可珍,杨坤,陈冠名,黄顺欣.掺稻壳灰乳化沥青冷再生混合料性能研究[J].湖南大学学报(自然科学版),2022,49(03):203-210.DOI:10.16339/j.cnki.hdxbzkb.2022041.

[9]颜可珍,杨胜丰,黎国凯,周华,潘勤学,吕松涛.沥青混合料动态黏弹性分数阶导数模型[J].中国公路学报,2022,35(05):12-22.DOI:10.19721/j.cnki.1001-7372.2022.05.002.

[10]颜可珍,李慧丽,洪哲,黎国凯.LDPE/EVA复合改性沥青的流变性能[J].建筑材料学报,2022,25(04):408-414.

[11]张虎,颜可珍,朱向平.基于BP神经网络的双层体系模量反演研究[J].中外公路,2020,40(06):37-40.DOI:10.14048/j.issn.1671-2579.2020.06.008.

[12]朱向平,颜可珍,张虎,游凌云.考虑层间状态的横观各向同性沥青路面力学分析[J].广西大学学报(自然科学版),2020,45(04):748-756.DOI:10.13624/j.cnki.issn.1001-7445.2020.0748.

[13]任钰芳,陈景豪,颜可珍,宋小金.TLA/SBR复合改性沥青性能试验研究[J].公路工程,2020,45(02):72-79.DOI:10.19782/j.cnki.1674-0610.2020.02.013.

[14]任钰芳,孙皓,颜可珍,宋小金.SBR/TLA复合改性沥青混合料性能试验研究[J].中外公路,2020,40(02):212-215.DOI:10.14048/j.issn.1671-2579.2020.02.045.

[15]颜可珍,王绍全,田珊,陈景豪,孙皓.基于Overlay Test评价应力吸收层抗反射裂缝性能[J].湖南大学学报(自然科学版),2020,47(01):108-115.DOI:10.16339/j.cnki.hdxbzkb.2020.01.013.

[16]颜可珍,满建宏,石挺魏,陈帅,刘能源.考虑层间接触状态的横观各向同性结构动力响应解析解[J].湖南大学学报(自然科学版),2019,46(11):97-105.DOI:10.16339/j.cnki.hdxbzkb.2019.11.011.

[17]黄佳,赵晓文,徐瑞聪,颜可珍.城市道路交叉口沥青路面抗剪强度及车辙分析[J].湖南交通科技,2019,45(03):1-4+15.

[18]江毅,颜可珍.沥青路面加铺温度应力及防裂分析[J].湖南交通科技,2019,45(03):5-10.

[19]颜可珍,高素云,胡玥.基于集对分析-可变模糊集的热拌沥青路面全生命周期能耗和环境排放评价模型[J].公路工程,2019,44(02):50-54+150.DOI:10.19782/j.cnki.1674-0610.2019.02.010.

[20]颜可珍,王道珵.聚合物改性沥青低温性能指标研究[J].建筑材料学报,2020,23(02):479-484.

[21]颜可珍,郑凯高,胡迎斌.城市生活垃圾焚烧飞灰在沥青胶浆中的应用[J].铁道科学与工程学报,2018,15(10):2509-2517.DOI:10.19713/j.cnki.43-1423/u.2018.10.008.

[22]颜可珍,陈明,胡玥.废胶粉/APAO复合改性沥青性能[J].长安大学学报(自然科学版),2018,38(02):1-8.DOI:10.19721/j.cnki.1671-8879.2018.02.001.

[23]李群,游凌云,颜可珍,庾付磊.均布荷载下横观各向同性沥青路面力学行为分析[J].合肥工业大学学报(自然科学版),2017,40(05):679-684.

[24]刘能源,颜可珍,胡迎斌,游凌云.基于横观各向同性的沥青路面加铺层力学分析[J].湖南大学学报(自然科学版),2017,44(05):96-103.DOI:10.16339/j.cnki.hdxbzkb.2017.05.012.

[25]颜可珍,胡迎斌,游凌云,刘能源,庾付磊.横观各向同性沥青路面结构动力响应分析[J].公路交通科技,2017,34(05):1-9.

[26]颜可珍,赵晓文,石挺巍,刘俊.荷载接触形式对路面结构力学指标的影响分析[J].重庆交通大学学报(自然科学版),2017,36(04):24-30.

[27]黄志义,陈雅雯,颜可珍.非均布移动荷载作用下黏弹性沥青路面动力响应分析[J].重庆交通大学学报(自然科学版),2017,36(03):30-35+53.

[28]石挺巍,颜可珍,赵晓文.移动荷载作用下长大上坡沥青路面剪应力分析[J].湘潭大学自然科学学报,2016,38(04):26-33.DOI:10.13715/j.cnki.nsjxu.2016.04.006.

[29]颜可珍,游凌云,葛冬冬,庾付磊.横观各向同性沥青路面结构力学行为分析[J].公路交通科技,2016,33(04):1-6.

[30]颜可珍,胡玥,王曾光,许洪彬.废胶粉/再生低密度聚乙烯复合改性沥青研究[J].建筑材料学报,2017,20(01):145-149.

[31]颜可珍,游凌云,王晓亮.SMA混合料冻融循环性能试验及超声波法评价[J].中国公路学报,2015,28(11):8-14.DOI:10.19721/j.cnki.1001-7372.2015.11.002.

[32]颜可珍,沈光辉,游凌云.非线性温度梯度作用下水泥混凝土路面力学分析[J].湖南大学学报(自然科学版),2015,42(07):74-80.DOI:10.16339/j.cnki.hdxbzkb.2015.07.012.

[33]颜可珍,葛冬冬,游凌云.沥青混合料单轴深深入抗剪试验的细观分析[J].湖南大学学报(自然科学版),2015,42(05):113-119.DOI:10.16339/j.cnki.hdxbzkb.2015.05.017.

[34]颜可珍,刘沛,王晓亮.基于GEP算法的沥青混合料动模量预测[J].建筑材料学报,2015,18(06):1106-1110.

[35]颜江平,颜可珍,游凌云.区间非线性模糊法的沥青路面预养护决策[J].公路工程,2014,39(06):1-4+33.

[36]颜可珍,周志雄.基于非线性模糊法的水泥路面性能评价[J].浙江大学学报(工学版),2013,47(08):1379-1383+1392.

[37]周志军,梁涵,庾付磊,颜可珍.山区公路高切坡岩土的理想点法安全评价[J].兰州理工大学学报,2013,39(04):119-122.

[38]周志军,唐平祥,颜可珍.基因表达编程算法的冻融系数预测研究[J].宁夏大学学报(自然科学版),2013,34(02):147-150.

2.主要英文杂志论文(部分):

[1]ASADI I, HASHEMI M, SAJADI B, et al. Evaluating the time lag and decrement factor of mortar and concrete containing OPBC as an agricultural by-product lightweight aggregate [J]. Case Studies in Thermal Engineering, 2023, 41.

[2]Yang Shengfeng,Yan Kezhen,Liu Wenyao. The Effect of Ultraviolet Aging Duration on the Rheological Properties of Sasobit/SBS/Nano-TiO2-Modified Asphalt Binder[J]. Applied Sciences,2022,12(20).

[3]Man Jianhong,Yan Kezhen,Miao Yu,Liu Yang,Yang Xu,Diab Aboelkasim,You Lingyun. 3D Spectral element model with a space-decoupling technique for the response of transversely isotropic pavements to moving vehicular loading[J]. Road Materials and Pavement Design,2022,23(11).

[4]Min W,Kaixin S,Kezhen Y, et al. Research on the Properties and Mechanism of Graphene/nano-TiO_2 Composite Modified Asphalt[C]//中国科学技术协会,交通运输部,中国工程院,湖北省人民政府.2022世界交通运输大会(WTC2022)论文集(公路工程篇).人民交通出版社股份有限公司,2022:327-338.DOI:10.26914/c.cnkihy.2022.019042.

[5]Hong Zhe,Yan Kezhen,Wang Min,Yuan Jian,Ge Dongdong,Liu Jun. The laboratory performance of asphalt mixture with thermoplastic polyurethane (TPU) and amorphous poly alpha olefin (APAO) compound modified asphalt binder[J]. Construction and Building Materials,2022,349.

[6]Yan Kezhen,Lan Haozhen,Li Qun,Ge Dongdong,Li Yiran. Optimum utilization of recycled aggregate and rice husk ash stabilized base material[J]. Construction and Building Materials,2022,348.

[7]Kezhen Yan,Junyi Shi,Kaixin Shi,Min Wang,Goukai Li,Zhe Hong. Effects of the chemical structure of curing agents on rheological properties and microstructure of WER emulsified asphalt[J]. Construction and Building Materials,2022,347.

[8]Yan Kezhen,Li Guokai,Li Qun,Diab Aboelkasim,You Lingyun,Wang Min. Compound modification of asphalt mixture using ethylene-vinyl acetate copolymer and amorphous poly alpha olefin[J]. Construction and Building Materials,2022,341.

[9]Yan Kezhen,Yuan Jian,Wang Min,Ge Dongdong,Hong Zhe. Preparation process and performance of thermoplastic polyurethane/amorphous poly alpha olefin compound modified bitumen[J]. Journal of Cleaner Production,2022,352.

[10]Hong Zhe,Yan Kezhen,Ge Dongdong,Wang Min,Li Guokai,Li Huili. Effect of styrene-butadiene-styrene (SBS) on laboratory properties of low-density polyethylene (LDPE)/ethylene-vinyl acetate (EVA) compound modified asphalt[J]. Journal of Cleaner Production,2022,338.

[11]Yan Kezhen,Li Lanlan,Long Zhengwu,Xiao Leling,Liu Kai,Zhou Wujun,You Lingyun,Ou Jianliang,Wu Shenghua. Conversion of Municipal Solid Waste Incineration Bottom Ash in Asphalt Pavements[J]. School of Civil Engineering, Yango University, Fuzhou, Fujian Province, China;College of Civil Engineering, Hunan University, Changsha, Hunan Province, China;School of Civil and Hydraulic Engineering, Huazhong University of Science and Technology, Wuhan, Hubei Province, China;Department of Civil and Environmental Engineering, The University of Edinburgh, Edinburgh, UK;School of Automobile and Traffic Engineering, Hefei University of Technology, Hefei, Anhui Province, China;Department of Civil, Coastal, and Environmental Engineering, University of South Alabama, Shelby Hall 3109, Mobile, AL, USA,2022,11(1).

[12]Yan Kezhen,Li Yiran,Long Zhengwu,You Lingyun,Wang Min,Zhang Man,Diab Aboelkasim. Mechanical behaviors of asphalt mixtures modified with European rock bitumen and waste cooking oil[J]. Construction and Building Materials,2022,319.

[13]Hong Zhe,Yan Kezhen,Wang Min,You Lingyun,Ge Dongdong. Low-density polyethylene/ethylene–vinyl acetate compound modified asphalt: Optimal preparation process and high-temperature rheological properties[J]. Construction and Building Materials,2022,314(PB).

[14]Yan Kezhen,Liu Wenyao,You Lingyun,Ou Jianliang,Zhang Man. Evaluation of waste cooling oil and European Rock Asphalt modified asphalt with laboratory tests and economic cost comparison[J]. Journal of Cleaner Production,2021,310.

[15]Yan Kezhen,Lan Haozhen,Duan Zheng,Liu Wenyao,You Lingyun,Wu Shenghua,Miljković Miomir. Mechanical performance of asphalt rejuvenated with various vegetable oils[J]. Construction and Building Materials,2021,293.

[16]Yu Ling,You Lingyun,Zhang Huaizhi,Jia Siyu,Zhang Yitong,Zhao Ting,Yan Kezhen. Long-term performance deterioration models for semi-rigid asphalt pavement in cold region[J]. International Journal of Pavement Research and Technology,2021,14(6).

[17]Kezhen Yan,Zhe Hong,Lingyun You,Jianliang Ou,Miomir Miljković. Influence of ethylene-vinyl acetate on the performance improvements of low-density polyethylene-modified bitumen[J]. Journal of Cleaner Production,2021,278.

[18]Wang Shaoquan,Gao Ying,Yan Kezhen,You Lingyun,Jia Yanshun,Dai Xiongwei,Chen Ming,Diab Aboelkasim. Effect of long-term aging on waste tire rubber and amorphous poly alpha olefin compound modified asphalt binder and its mixtures[J]. Construction and Building Materials,2020(prepublish).

[19]You Lingyun,Yan Kezhen,Man Jianhong,Shi Tingwei. 3D Spectral Element Solution of Multilayered Half-Space Medium with Harmonic Moving Load: Effect of Layer, Interlayer, and Loading Properties on Dynamic Response of Medium[J]. International Journal of Geomechanics,2020,20(12).

[20]Liu Wenyao,Yan Kezhen,Li Joshua Qiang,Yang Shu. Peridynamics-based simulation of semi-circular bending (SCB) testing[J]. Construction and Building Materials,2020(prepublish).

[21]Kezhen Yan,Hao Sun,Lingyun You,Shenghua Wu. Characteristics of waste tire rubber (WTR) and amorphous poly alpha olefin (APAO) compound modified porous asphalt mixtures[J]. Construction and Building Materials,2020,253(C).

[22]Jun Liu,Kezhen Yan,Wenyao Liu,Xiaowen Zhao. Partially replacing Styrene-Butadiene-Styrene (SBS) with other asphalt binder modifier: Feasibility study[J]. Construction and Building Materials,2020,249(C).

[23]Kezhen Yan,Jinghao Chen,Lingyun You,Shan Tian. Characteristics of compound asphalt modified by waste tire rubber (WTR) and ethylene vinyl acetate (EVA): Conventional, rheological, and microstructural properties[J]. Journal of Cleaner Production,2020,258(prepublish).

[24]Jinghao Chen,Kezhen Yan,Lingyun You. Rheological and Spectroscopic Properties of Ethylene Vinyl Acetate–Modified Rubberized Asphalt[J]. Journal of Materials in Civil Engineering,2020,32(6).

[25]Lingyun You,Kezhen Yan,Jianhong Man,Nengyuan Liu. Anisotropy of multi-layered structure with sliding and bonded interlayer conditions[J]. Frontiers of Structural and Civil Engineering,2020,14(prepublish).

[26]Lingyun You,Jianhong Man,Kezhen Yan,Daocheng Wang,Huili Li. Combined Fourier-wavelet transforms for studying dynamic response of anisotropic multi-layered flexible pavement with linear-gradual interlayers[J]. Applied Mathematical Modelling,2020,81(C).

[27]Kezhen Yan,Man Zhang,Lingyun You,Shenghua Wu,Hongyan Ji. Performance and optimization of castor beans-based bio-asphalt and European rock-asphalt modified asphalt binder[J]. Construction and Building Materials,2020,240(C).

[28]Kezhen Yan,Yang Peng,Lingyun You. Use of tung oil as a rejuvenating agent in aged asphalt: Laboratory evaluations[J]. Construction and Building Materials,2020,239(C).

[29]Lingyun You,Kezhen Yan,Nengyuan Liu. Assessing artificial neural network performance for predicting interlayer conditions and layer modulus of multi-layered flexible pavement[J]. Frontiers of Structural and Civil Engineering,2020,14(2).

[30]Lingyun You,Kezhen Yan,Yufei Yue,Tao Yu. Comparisons of Natural and Enhanced Asphalt Mixtures Containing Recycled Cement-Stabilized Macadam as Aggregates[J]. Journal of Materials in Civil Engineering,2020,32(4).

[31]You Lingyun,Yue Yufei,Yan Kezhen,Zhou Yubo. Characteristics of cement-stabilized macadam containing surface-treated recycled aggregates[J]. Road Materials and Pavement Design,2020,22(9).

[32]Yan Kezhen,Wang Shaoquan,Ge Dongdong,Chen Jinghao,Tian Shan,Sun Hao. Laboratory performance of asphalt mixture with waste tyre rubber and APAO modified asphalt binder[J]. International Journal of Pavement Engineering,2020,23(1).

[33]Kezhen Yan,Shan Tian,Jinghao Chen,Jun Liu. High temperature rheological properties of APAO and EVA compound modified asphalt[J]. Construction and Building Materials,2020,233(C).

[34]Kezhen Yan,Guokai Li,Lingyun You,Yubo Zhou,Shenghua Wu. Performance assessments of open-graded cement stabilized macadam containing recycled aggregate[J]. Construction and Building Materials,2020,233(C).

[35]Xu Qinwu,Engquist Björn,Solaimanian Mansour,Yan Kezhen. A new nonlinear viscoelastic model and mathematical solution of solids for improving prediction accuracy.[J]. Scientific reports,2020,10(1).

[36]Kezhen Yan,Hao Sun,Fengqian Gao,Dongdong Ge,Lingyun You. Assessment and mechanism analysis of municipal solid waste incineration bottom ash as aggregate in cement stabilized macadam[J]. Journal of Cleaner Production,2020,244(C).

[37]Lingyun You,Kezhen Yan,Daocheng Wang,Dongdong Ge,Xiaojin Song. Use of amorphous-poly-alpha-olefin as an additive to improve terminal blend rubberized asphalt[J]. Construction and Building Materials,2019,228(C).

[38]Shengfeng Yang,Kezhen Yan,Weili He,Zengguang Wang. Effects of Sasobit and Deurex additives on asphalt binders at midrange and high temperatures[J]. International Journal of Pavement Engineering,2019,20(12).

[39]Lingyun You,Kezhen Yan,Tingwei Shi,Jianhong Man,Nengyuan Liu. Analytical solution for the effect of anisotropic layers/interlayers on an elastic multi-layered medium subjected to moving load[J]. International Journal of Solids and Structures,2019,172-173.

[40]Shaoquan Wang,Kezhen Yan,Dongdong Ge,Zheng Hong. Laboratory research on the performance of stress-absorption interlayer (SAI) of waste tire rubber and amorphous ploy alpha olefin modified asphalt[J]. Construction and Building Materials,2019,223(C).

[41]Kezhen Yan,Lanlan Li,kaigao Zheng,Dongdong Ge. Research on properties of bitumen mortar containing municipal solid waste incineration fly ash[J]. Construction and Building Materials,2019,218.

[42]Kezhen Yan,Lingyun You,Daocheng Wang. High-Temperature Performance of Polymer-Modified Asphalt Mixes: Preliminary Evaluation of the Usefulness of Standard Technical Index in Polymer-Modified Asphalt[J]. Polymers,2019,11(9).

[43]Kezhen Yan,Fengqian Gao,Hao Sun,Dongdong Ge,Shu Yang. Effects of municipal solid waste incineration fly ash on the characterization of cement-stabilized macadam[J]. Construction and Building Materials,2019,207.

[44]Jun Liu,Kezhen Yan,Jenny Liu,Dong Guo. Evaluation of the characteristics of Trinidad Lake Asphalt and Styrene–Butadiene–Rubber compound modified binder[J]. Construction and Building Materials,2019,202.

[45]Lingyun You,Kezhen Yan,Nengyuan Liu,Tingwei Shi,Songtao Lv. Assessing the mechanical responses for anisotropic multi-layered medium under harmonic moving load by Spectral Element Method (SEM)[J]. Applied Mathematical Modelling,2019,67.

[46]Lingyun You,Zhanping You,Kezhen Yan. Effect of anisotropic characteristics on the mechanical behavior of asphalt concrete overlay[J]. Frontiers of Structural and Civil Engineering,2019,13(1).

[47]Kezhen Yan,Tingwei Shi,Lingyun You,Jianhong Man. Spectral Element Method for Dynamic Response of Multilayered Half Medium Subjected to Harmonic Moving Load[J]. International Journal of Geomechanics,2018,18(12).

[48]Jun Liu,Kezhen Yan,Jenny Liu. Rheological Characteristics of Polyphosphoric Acid–Modified Asphalt Mastic[J]. Journal of Materials in Civil Engineering,2018,30(12).

[49]Nengyuan Liu,Kezhen Yan,Lingyun You,Ming Chen. Laboratory testing on the anti-aging performance of amorphous poly alpha olefin (APAO) modified asphalt binders[J]. Construction and Building Materials,2018,189.

[50]Dongdong Ge,Kezhen Yan,Fangyong Ye,Xiaowen Zhao. The laboratory performance of asphalt mixture with Amorphous poly alpha olefins (APAO) modified asphalt binder[J]. Construction and Building Materials,2018,188.

[51]Shengfeng Yang,Kezhen Yan,Bowen He,Weili He,Daocheng Wang,Haibing Wang. Ultraviolet and PAV aging procedures influence on rheological characteristics of Sasobit/SBS modified binder containing titanium dioxide nanoparticles[J]. Petroleum Science and Technology,2018,36(19).

[52]Lingyun You,Kezhen Yan,Yingbin Hu,Wenbo Ma. Impact of interlayer on the anisotropic multi-layered medium overlaying viscoelastic layer under axisymmetric loading[J]. Applied Mathematical Modelling,2018,61.

[53]Wenyao Liu,Kezhen Yan,Dongdong Ge,Ming Chen. Effect of APAO on the aging properties of waste tire rubber modified asphalt binder[J]. Construction and Building Materials,2018,175.

[54]Xiaowen Zhao,Kezhen Yan,Shu Yang,Hanyu Peng. Laboratory Research on the Properties of Warm Amorphous Poly Alpha Olefin–Modified Asphalt Mixture Using Sasobit and Deurex[J]. Journal of Materials in Civil Engineering,2018,30(5).

[55]Jun Liu,Kezhen Yan,Jenny Liu,Xiaowen Zhao. Using Artificial Neural Networks to Predict the Dynamic Modulus of Asphalt Mixtures Containing Recycled Asphalt Shingles[J]. Journal of Materials in Civil Engineering,2018,30(4).

[56]Jianhua Gao,Kezhen Yan,Weili He,Shengfeng Yang,Lingyun You. High temperature performance of asphalt modified with Sasobit and Deurex[J]. Construction and Building Materials,2018,164.

[57]Nengyuan Liu,Kezhen Yan,Caijun Shi,Lingyun You. Influence of interface conditions on the response of transversely isotropic multi-layered medium by impact load[J]. Journal of the Mechanical Behavior of Biomedical Materials,2018,77.

[58]Lingyun You,Kezhen Yan,Yingbin Hu,Jun Liu,Dongdong Ge. Spectral element method for dynamic response of transversely isotropic asphalt pavement under impact load[J]. Road Materials and Pavement Design,2018,19(1).

[59]Yang Shengfeng,Yan Kezhen,He Weili,Wang Haibing. Laboratory Evaluation of Deurex-Modified Asphalt[J]. Journal of Materials in Civil Engineering,2017,30(1).

[60]Xiaowen Zhao,Kezhen Yan,Weili He,Cong Cai. Effects of Sasobit/Deurex on amorphous poly alpha olefin (APAO) modified asphalt binder[J]. Construction and Building Materials,2017,154.

[61]Dongdong Ge,Kezhen Yan,Lingyun You,Zexing Wang. Modification mechanism of asphalt modified with Sasobit and Polyphosphoric acid (PPA)[J]. Construction and Building Materials,2017,143.

[62]Jun Liu,Kezhen Yan,Xiaowen Zhao. Rheological and aging properties of warm mix asphalt binders containing expanded vermiculite[J]. Petroleum Science and Technology,2016,34(11-12).

[63]KeZhen Yan,Weili He,Ming Chen,Wenyao Liu. Laboratory investigation of waste tire rubber and amorphous poly alpha olefin modified asphalt[J]. Construction and Building Materials,2016,129.

[64]Jun Liu,Kezhen Yan,Lingyun You,Dongdong Ge,Zexing Wang. Laboratory performance of warm mix asphalt binder containing polyphosphoric acid[J]. Construction and Building Materials,2016,106.

[65]Dongdong Ge,Kezhen Yan,Zhanping You,Hongbin Xu. Modification mechanism of asphalt binder with waste tire rubber and recycled polyethylene[J]. Construction and Building Materials,2016,126.

[66]Kezhen Yan,Hongbin Xu,Lingyun You. Analytical layer-element approach for wave propagation of transversely isotropic pavement[J]. International Journal of Pavement Engineering,2016,17(3).

[67]Lingyun You,Kezhen Yan,Yingbin Hu,Dan G. Zollinger. Spectral element solution for transversely isotropic elastic multi-layered structures subjected to axisymmetric loading[J]. Computers and Geotechnics,2016,72.

[68]Jun Liu,Kezhen Yan,Lingyun You,Pei Liu,Kezhen Yan. Prediction models of mixtures’ dynamic modulus using gene expression programming[J]. International Journal of Pavement Engineering,2016,18(11).

[69]Kezhen Yan,Dongdong Ge,Lingyun You,Xiaoliang Wang. Laboratory investigation of the characteristics of SMA mixtures under freeze–thaw cycles[J]. Cold Regions Science and Technology,2015,119.

[70]Kezhen Yan,Hongbin Xu,Lingyun You. Rheological properties of asphalts modified by waste tire rubber and reclaimed low density polyethylene[J]. Construction and Building Materials,2015,83.

[71]Kezhen Yan,Lingyun You. Investigation of complex modulus of asphalt mastic by artificial neural networks[J]. Indian journal of engineering and materials sciences,2014,21(4).

[72]Kezhen Yan,Henglong Zhang,Hongbin Xu. Effect of polyphosphoric acid on physical properties, chemical composition and morphology of bitumen[J]. Construction and Building Materials,2013,47.

[73]Yan Kezhen,Xu Hongbing,Shen Guanghui,Liu Pei. Prediction of Splitting Tensile Strength from Cylinder Compressive Strength of Concrete by Support Vector Machine[J]. Advances in Materials Science and Engineering,2013,2013.

[74]Henglong Zhang,Chongzheng Zhu,Kezhen Yan,Jianying Yu. Effect of Rectorite and Its Organic Modification on Properties of Bitumen[J]. Journal of Materials in Civil Engineering,2013,27(8).

3.主要国际国内会议论文(部分):

[1]Hu Y, Yan K, You L, et al. Effects of Material Cross-anisotropy on the Mechanical Responses of Asphalt Pavements[J]. 2016(ictim).

[2]LIU J, YAN K, ZHAO X. Predicting the dynamic modulus of asphalt mixtures containing recycled asphalt shingles using artificial neural networks[J]. 2016(ictim).

[3]HU Y, YAN K Z, HU Y B. Back-calculation of Asphalt Pavement Modulus based on Gene Expression Programming[J].2016(ictim).

[4]Yan KZ,Study on Mechanical Behavior of Asphalt Concrete Pavements with Non-Uniformity Gradient Materials,2011 International Conference on Civil Engineering, Architecture and Building Materials (CEABM 2011), 2011, (243-249): 4334-4338

[5]Yan KZ,Prediction of Resilient Modulus of Asphalt Pavement Material Using Support Vector Machine,GeoHunan International Conference: Road Pavement and Material Characterization, Modeling, and Maintenance, Edited by ASCE (the American Society of Civil Engineers). 2011:16-23.

[6]Yan KZ. Asphalt pavement evaluation based on matter element model. GeoHunan International Conference: Challenges and Recent Advances in Pavement Technologies and Transportation Geotechnics, Edited by ASCE (the American Society of Civil Engineers). 2009 :18-24

[7]Yan KZ. Swelling behavior of compacted expansive soils,GeoHunan International Conference: Challenges and Recent Advances in Pavement Technologies and Transportation Geotechnics, Edited by ASCE (the American Society of Civil Engineers). 2009 :1-6

[8]颜可珍,夏唐代,姜爱华.交通荷载作用下地基中瑞利波的传播特性[C]全国岩土力学数值分析与解析方法研讨会. 2004:414-417.

[9]夏唐代,颜可珍,石中明,等.地基剪切波速与抗剪强度的关系研究[C]全国青年岩土力学与工程会议. 2004.

发明专利

[1]颜可珍,李浦豪.一种轻型组合挡土墙结构[P].湖南省:CN218322853U,2023-01-17.

[2]颜可珍,陈冠名,袁建,李伊燃.一种高温多雨地区混凝土桥梁沥青铺装层结构[P].湖南省:CN214143150U,2021-09-07.

[3]张恒龙,段海辉,史才军,颜可珍,陈佩茹,周铭钰,粟时庆.一种路面自调温铺面材料及其制备方法[P].湖南省:CN111423157A,2020-07-17.

[4]颜可珍,洪哲,游凌云. PE/EVA复合改性沥青及其制备方法[P].湖南省:CN111234542A,2020-06-05.

[5]颜可珍,杨胜丰,高建华,王道珵,洪政,向鹏,何炜力.沥青路面用环保温拌复配改性沥青、改性剂及其制作方法[P].湖南省:CN107641329B,2020-05-12.

[6]颜可珍,王绍全,陈明.防治反射裂缝的复合改性沥青应力吸收层及其制备方法和应用[P].湖南:CN108863169A,2018-11-23.

[7]颜可珍,陈明,杨胜丰. APAO废胶粉复合改性沥青及其制作方法和用途[P].湖南省:CN106221251B,2018-06-15.

[8]颜可珍,杨胜丰,高建华,王道珵,洪政,向鹏,何炜力.沥青路面用环保温拌复配改性沥青、改性剂及其制作方法[P].湖南:CN107641329A,2018-01-30.

奖励与荣誉

[1]湖南省青年骨干教师

[2]湖南省自然科学论文一等奖

[3]湖南大学优秀党员

[4]湖南大学优秀实习指导教师

[5]湖南大学优秀毕业设计指导教师(2016、2017)

[6]湖南大学优秀硕士论文指导教师(2016,2019)

[7]湖南省优秀硕士论文指导教师(2017,2020)

[8]中国公路学会二等奖(2022年) 沥青路面动力与环境响应、设计参数及工程应用

[9]2021年度湖南省创新团队奖:湖南大学绿色高性能土木工程材料及应用技术创新团队

[10]湖南省优秀研究生导师团队(2018)

[11]湖南省科技进步二等奖(2023)

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