个人资料
个人简介张洪亮,男,长安大学三级教授,博士生导师,公路学院道路系副主任。长安大学公路学院道路与铁道工程博士研究生毕业,获道路与铁道工程博士学位,同济大学博士后。 《公路水泥混凝土路面设计规范》(JTGD40-2011)主要起草人之一,国际期刊Journal of Builiding Materail Science编委,编著《连续配筋混凝土路面》,已公开发表论文近130篇,其中第一作者/通讯作者SCI收录30余篇,授权专利40余项,其中以第一发明人授权国家发明专利19项。科研方面,获得省级科技进步一等奖一项,省级科技进步二等奖两项,省级科技进步三等奖二项,中国公路学会科学技术二等奖一项,三等奖二项。教学方面,获得省级教学成果特等奖一项、国家级教学成果二等奖一项。 研究领域为路基路面工程。课题组重视道路工程、材料、力学及信息科学等的交叉,进行道路方面的新材料、新结构及新技术研究,在注重研究的创新性、前沿性的同时,也重视成果的实用价值。目前主要的研究方向包括:1.生态与环保沥青路面,如降温沥青路面、热阻沥青路面、排水路面等。2.智能路面,如自愈合沥青路面、除冰雪路面等。3.路面新材料的研发,如纳米沥青混合料、不饱和聚酯树脂改性沥青混合料、各种沥青路面添加剂等。4.桥面铺装。5.水泥混凝土路面,如连续配筋混凝土路面。6.旧路面的评价、养护与改建,如基于智能手机的路面平整度测试与评价、沥青路面再生等。7.基于多尺度理论的路面结构与材料的一体化设计。 社会职务研究领域研究领域为路基路面工程。课题组重视道路工程、材料、力学及信息科学等的交叉,进行道路方面的新材料、新结构及新技术研究,在注重研究的创新性、前沿性的同时,也重视成果的实用价值。目前主要的研究方向包括: 1. 生态与环保沥青路面,如降温沥青路面、热阻沥青路面、排水路面等。 2. 智能路面,如自愈合沥青路面、除冰雪路面等。 3. 路面新材料的研发,如纳米沥青混合料、不饱和聚酯树脂改性沥青混合料、各种沥青路面添加剂等。 4. 桥面铺装。 5. 水泥混凝土路面,如连续配筋混凝土路面。 6. 旧路面的评价、养护与改建,如基于智能手机的路面平整度测试与评价、沥青路面再生等。 7. 基于多尺度理论的路面结构与材料的一体化设计。 开授课程为本科生、硕士研究生、博生研究生讲授了《路基路面工程》、《水泥与水泥混凝土》、《现代高等路面工程》等课程,参与讲授国家级精品课程、国家级资源共享课程《路基路面工程》部分章节。 科研项目主持包括国家自然科学基金项目、中国博士后项目、交通运输部规范修订项目等在内的科研项目20余项。 目前在研的项目有: 1.国家自然科学基金项目,《面向自动驾驶环境的高速公路平曲线路段安全性能评测方法》(主要参加) 2. 交通部科技项目,《公路水泥混凝土路面设计规范JTJ D40-2011》修订 (主持) 3. 东营市科技局项目,《改性不饱和聚酯树脂沥青路面裂缝修补材料研究》 (主持) 4. 龙岩市科技局项目,《不饱和聚酯树脂改性沥青防水粘结层研究》 (主持) 5. 陕西省交通建设集团项目,《不饱和聚酯树脂基沥青路面坑槽冷补材料制备及性能研究》 (主持) 6. 浙江省公路与运输管理中心科技项目,《基于硅酸锂处理的石灰岩沥青表面层抗滑耐久性提升技术研究》 (主持) 7. 陕西省交通建设集团项目,《利用智能手机测试和评价路面平整度的技术研究》(主持) 8.东营市重点研发计划项目,《玻纤格栅防止半刚性基层路面反射裂缝技术研究》(主持) 已经完成的项目有: 1.国家自然科学基金项目,《基于shakedown理论的路基土顶面容许压应变研究》(主持) 2.交通部西部交通建设项目,《黄土路基压实技术》(主要参加) 3.交通部西部交通建设项目,《西部地区农村公路建设关键技术研究》(主要参加) 4.交通部科技项目,《公路水泥混凝土路面设计规范》(水泥混凝土路面配筋率设计)修订 (主持) 5.中国博士后基金项目,《基于shakedown理论的路基土永久变形模型研究》 (主持) 6.中央事业高校重点项目,《基于参数变异性的连续配筋混凝土路面横向裂缝分布和冲断预估研究》 (主持) 7.中央高校基本科研业务费专项资金项目,《固体粉末嵌入式浅色沥青路面研究》 (主持) 8.山东省交通运输厅科技项目,《冷再生沥青混合料在农村公路改造中的设计及应用研究》 (主持) 9.山东省交通运输厅项目,《粉土地区路基路面工程关键技术研究》(主持) 10.山东省交通运输厅科技项目,《连续配筋混凝土路面设计与施工技术研究》 (主要参加) 11.浙江省交通运输厅科技项目,《高速公路降低路堤高度关键技术研究》 (主持) 12.浙江省交通运输厅科技项目,《考虑持续极端高温天气影响的沥青路面设计和养护技术研究》 (主持) 13.浙江省交通运输厅科技项目,《基于重复加载试验的沥青路面永久变形预估及防治技术研究》 (主持) 14.陕西省交通运输厅科技项目,《沥青路面top-down裂缝防治关键技术研究》 (主持) 15.陕西省交通运输厅科技项目,《纳米改性沥青及沥青混合料技术与应用研究》 (主持) 16.陕西省交通运输厅科技项目,《不饱和聚酯树脂改性沥青桥面铺装技术研究》 (主持) 17.广东省交通运输厅科技项目,《水泥混凝土路面多锤头破碎后的性能及加铺水泥混凝土面层技术研究》 (主要参加) 18.广东省交通厅项目,《怀集至阳江港高速公路“绿色公路”主题性项目关键技术研究》(主持) 19.浙江省交通运输厅科技项目,《基于整车模型的沥青路面平整度评价方法和预防性养护时机研究》 (主持) 20.广西长长路桥建设有限公司吴圩至苏圩公路土建工程No.2标段项目,《连续配筋混凝土路面两阶段冲断发展预估和延缓措施研究》 (主持) 21.安康市科技局项目,《自愈型沥青路面研究》(主持) 论文发表论文近130篇,其中以第一作者/通讯作者在国外高水平期刊中发表的SCI收录论文30余篇: [38] Zhang Z, Zhang H, Ma J, et al. Multi-objective optimization, shrinkage and fracture properties of unsaturated polyester resin modified concrete for bridge deck pavement based on system theory[J]. Construction and Building Materials, 2024, 443: 137694.(SCI检索,top期刊) [37] Zhang H, Quan W, Wang R. Study on crack resistance of self-healing microcapsules in asphalt pavement by multi-scale method[J]. Plos one, 2024, 19(3): e0300178.(SCI检索) [36] Zhang H, Yao T, Cheng F. Road Performance and Self-Healing Property of Bituminous Mixture Containing Urea–Formaldehyde Microcapsules[J]. Materials, 2024, 17(4): 943.(SCI检索) [35] Zhang H, Liu X, Wang N. Nano-SiO2/polyurethane modified unsaturated polyester resin mortar for thin layer repairing on airport pavement[J]. Journal of Reinforced Plastics and Composites, 2024: 07316844241256415.(SCI检索) [34] Zhang H, Yao T, Li C. Study on the mechanical behavior of microcapsules during the mixing process of asphalt mixture[J]. Construction and Building Materials, 2024, 441: 137531. (SCI检索,top期刊) [33] Zhang H, Zhu K, Bai Y, et al. Impact of composition and knitting methods of fiberglass grid on the progression of reflective crack in asphalt pavement[J]. Construction and Building Materials, 2024, 419: 135579.(SCI检索,top期刊) [32] Zhang H, Zhu K, Liu F, et al. Development and performance of a novel hybrid toughened unsaturated polyester resin (UPR) composite for crack repair of asphalt pavement[J]. Construction and Building Materials, 2024, 416: 135274.(SCI检索,top期刊) [31] Zhen Zhang, Hongliang Zhang, Kongfa Zhu, Zujie Tang, Hao Zhang, Deterioration mechanism on Micro-structure of unsaturated polyester resin modified concrete for bridge deck pavement under salty Freeze-thaw cycles, Construction and Building Materials,Volume 368,2023,130366.(SCI检索,top期刊) [30] Zhang Z, Zhang H, Lv W, et al. Road performance of waterborne unsaturated polyester concrete cold patching materials for potholes in bituminous pavement[J]. Construction and Building Materials, 2022, 348: 128689.(SCI检索,top期刊) [29] Zhang Z, Zhang H, Xu S, et al. Pavement roughness evaluation method based on thetheoretical relationship between acceleration measured by smartphone and IRI[J]. International journal of pavement engineering, 2022, 23(9): 3082-3098.(SCI检索) [28] Zhen Zhang, Hongliang Zhang, Wenjiang Lv, Yunjie Yang,Road performance of waterborne unsaturated polyester concrete cold patching materials for potholes in bituminous pavement, Construction and Building Materials, Volume 348,2022,128689.(SCI检索,top期刊) [27] Zhang Z, Zhang H, Lv J, et al. Performance evaluation of skid-resistant surface treatment using lithium silicate for limestone bituminous pavement[J]. Construction and Building Materials, 2022, 342: 127990.(SCI检索,top期刊) [26] Zhang G, Zhang H, Sun W. Effect of coating optimization on performances of glass fiber geogrid for semi-rigid base asphalt pavement[J]. Geotextiles and Geomembranes, 2022, 50(2): 337-346.(SCI检索,top期刊) [25] Zhang H, Zhang Z, Lv J, et al. Effect of Lithium Silicate–Impregnated Limestone Aggregate on Skid Resistance Properties of Bituminous Mixture[J]. Journal of Materialsin Civil Engineering, 2022, 34(10): 04022251.(SCI检索) [24] Zhang H, Zhong Q, Liu T, et al. Preparation and characterization of waterborne unsaturated polyester resin interface binder for pothole repair[J]. Construction and BuildingMaterials, 2022, 342: 127848.(SCI检索,top期刊) [23] F Lai, H Zhang, K Zhu, M Huang. Test study and molecular dynamics simulation ofFe3+ modified TiO2 absorbing automobile exhaust. PLos, 2022.(SCI检索) [22] Gaowang Zhang, Hongliang Zhang, Wenpu Sun. Effect of coating optimization on performances of glass fiber geogrid for semi-rigid base asphalt pavement. Geotextiles and Geomembranes, 2021, 50(2). (SCI检索,top期刊) [21] Man H, Zhang H L, Liu J F. Asphalt pavement coated by hot-pressed hydrated lime[J]. International Journal of Pavement Engineering, 2021, 22(12): 1556-1567.(SCI检索) [20] Zhang H, Huang M, Hong J, et al. Molecular dynamics study on improvement effect of bis(2-hydroxyethyl) terephthalate on adhesive properties of asphalt-aggregate interface[J]. Fuel, 2021, 285.(SCI检索,top期刊) [19] Zhang Z, Zhang H, Gao Y, et al. Laboratory evaluation of the effect of kapok fiberson the rheological and fatigue properties of bitumen[J]. Construction and Building Materials, 2021, 272.(SCI检索,top期刊) [18] Zhang Z, Zhang H, Lv W, et al. Micro-structure characteristics of unsaturated polyester resin modified concrete under fatigue loads and hygrothermal environment[J]. Construction and Building Materials, 2021, 296.(SCI检索,top期刊) [17] Zhang Z, Zhang H, Liu T, et al. Study on the micro-mechanism and structure of unsaturated polyester resin modified concrete for bridge deck pavement[J]. Construction and Building Materials, 2021, 289.(SCI检索,top期刊) [16] Zhang Z, Zhang H, Xu S, et al. Pavement roughness evaluation method based on thetheoretical relationship between acceleration measured by smartphone and IRI[J]. International Journal of Pavement Engineering, 2021.(SCI检索) [15] Huang M, Zhang H, Gao Y, et al. Study of diffusion characteristics of asphalt-aggregate interface with molecular dynamics simulation[J]. International Journal of Pavement Engineering, 2021, 22(3): 319-330.(SCI检索) [14] Zhang H, Quan W, Liu J, et al. Thermosetting powder coating for asphalt pavement[J]. Road Materials and Pavement Design, 2020, 21(1): 217-236. (SCI检索) [13] Yu J-Y, Zhang H-L, Sun P, et al. Laboratory performances of nano-particles/polymer modified asphalt mixtures developed for the region with hot summer and cold winter and field evaluation[J]. Road Materials and Pavement Design, 2020, 21(6): 1529-1544.(SCI检索) [12] Zhang H, Gao Y, Hong J, et al. Laboratory research on road performances of unsaturated polyester concrete at medium-high temperature[J]. Construction and Building Materials, 2020, 254.(SCI检索,top期刊) [11] Zhang H, Su C, Bu X, et al. Laboratory investigation on the properties of polyurethane/unsaturated polyester resin modified bituminous mixture[J]. Construction and Building Materials, 2020, 260.(SCI检索,top期刊) [10] Gao Y, Zhang H, Kang H, et al. Road performance of liquid nitrile-butadiene rubber modified unsaturated polyester resin concrete[J]. Construction and Building Materials, 2020, 263.(SCI检索,top期刊) [9] Wang L, Zhang H, Zhao B, et al. Effect of Calcium Carbonate Whisker and Fly Ash on Mechanical Properties of Cement Mortar under High Temperatures[J]. Advances in Materials Science and Engineering, 2019, 2019(1): 9430804.(SCI检索) [8] Feng C, Zhang H, Li C, et al. The effects of hollow glass microsphere modification on the road performances and thermal performance of asphalt binder and mixture[J]. Construction and Building Materials, 2019, 220: 64-75.(SCI检索,top期刊) [7] Wang L, Zhang H, Gao Y. Effect of TiO2 Nanoparticles on Physical and Mechanical Properties of Cement at Low Temperatures[J]. Advances in Materials Science and Engineering, 2018, 2018.(SCI检索) [6] Zhang H, Bai Y, Cheng F. Rheological and self-healing properties of asphalt binder containing microcapsules[J]. Construction and Building Materials, 2018, 187: 138-148.(SCI检索,top期刊) [5] Zhang G, Zhang H, Bu X, et al. Laboratory study on performances of bimaleimide/unsaturated polyester resin modified asphalt[J]. Construction and Building Materials, 2018,179: 576-586.(SCI检索,top期刊) [4] Zhang H, Gao Y, Guo G, et al. Effects of ZnO particle size on properties of asphalt and asphalt mixture[J]. Construction and Building Materials, 2018, 159: 578-586.(SCI检索,top期刊) [3] Zhang H, Zhang G, Han F, et al. A lab study to develop a bridge deck pavement using bisphenol A unsaturated polyester resin modified asphalt mixture[J]. Construction and Building Materials, 2018, 159: 83-98.(SCI检索,top期刊) [2] Zhang H-L, Su M-M, Zhao S-F, et al. High and low temperature properties of nano-particles/polymer modified asphalt[J]. Construction and Building Materials, 2016, 114: 323-332.(SCI检索,top期刊) [1] Zhang H L, Hu C S. Determination of Allowable Differential Settlement in Bridge Approach due to Vehicle Vibrations[J]. Journal of Bridge Engineering, 2007, 12(2):154-163.(SCI检索) 著作: [4]张洪亮、刘永健、王永东、杨宏志,《道路桥梁与渡河工程导论》,人民交通出版社 [3]Fernando Pacheco-Torgal、Serji Amirkhanian,《Eco-efficient pavement construction materials》,Elsevier [2]张洪亮、左志武,《连续配筋混凝土路面》,人民交通出版社 [1]刘伯莹、姚祖康、王秉纲、谈至明、赵队家、杨学良、周玉民、张洪亮,《公路水泥混凝土路面设计规范》(JTG D40-2011),人民交通出版社科技成果荣誉奖励科研方面,获得省级科技进步一等奖一项,省级科技进步二等奖两项,省级科技进步三等奖二项,中国公路学会科学技术二等奖一项,三等奖二项。教学方面,获得省级教学成果特等奖一项、国家级教学成果二等奖一项。 工作经历2000.06-2002.09,长安大学,助教 2002.09-2005.10,长安大学,讲师 2005.10-2010.10,长安大学,副教授 2010.10-至今,长安大学,教授 2013.10-至今,长安大学,博士生导师 |