王日冉

郑州大学水利与交通学院副研究员/硕导
研究方向:沥青路面材料路面病害智能监测及智慧功能型混凝土材料
办公地点:

个人简介

王日冉,女,郑州大学水利与交通学院副研究员/硕导,主要研究方向为沥青路面材料、路面病害智能监测及智慧功能型混凝土材料。现为中国公路学会会员,并担任International Journal of Fatigue、Construction and Building Materials、International Journal of Pavement Engineering及Journal of Materials in Civil Engineering等多家国际道路与建筑材料领域权威SCI期刊的特约审稿人。

主持中国博士后面上项目、河南省自然科学基金青年项目、黄河实验室(郑州大学)一流课题青年托举项目及多项横向攻关项目;以第一或通讯作者身份在Journal of Cleaner Production、International Journal of Fatigue、Construction and Building Materials、复合材料学报等国际/国内顶尖期刊发表论文近30篇(含新锐一区10篇);授权国家专利10余项;多次荣获中国施工企业管理协会工程建设科学技术进步奖、河南省高等学校优秀科技成果自然科学奖及河南省教育厅科技成果奖优秀科技论文奖等荣誉。

教学课程

研究生教学课程:

  • 弹塑性力学(32学时)

科研项目

[1] 中国博士后面上项目(主持,No. 2023M743190),2023-2024
[2] 中国博士后面上项目(主持,No. 2021M692918),2021-2022
[3] 河南省自然科学基金青年项目(主持,No. 222300420308),2022-2023
[4] 黄河实验室(郑州大学)一流课题青年托举项目(主持,No. YRL22YL05),2022-2023
[5] 横向项目:活化废旧胶粉改性沥青关键技术研究(主持),2024-2025
[6] 横向项目:低碳环保与耐久性沥青改性关键技术研究及应用(完成人),2021-2023

论文和专著

【论文】

[1] Wang Riran, Zhang Guangwei, Chen Bei*, Ma Xiaopeng. A multi-scale perspective on the effectiveness of UV and water aging on the interfacial properties of the asphalt-aggregate systems modified by warm agents/polymers[J]. Construction and Building Materials, 2025, 496: 143768.(一区Top)
[2] Wang Riran, An Xin*, An optimized fatigue model of asphalt binder combining nonlinear viscoelastic and intrinsic healing characteristics[J]. Construction and Building Materials, 2024, 424: 135946.(一区Top)
[3] Wang Riran, An Xin*, Yue Jinchao, A proposed approach for accurate fatigue quantification of the base asphalt binders coupling nonlinear viscoelastic effects in S-VECD theoretical framework[J]. Construction and Building Materials, 2023, 392: 131850.(一区Top)
[4] Wang Riran, Yue Mingjing, Xiong Yuchao, Yue Jinchao*, Experimental study on mechanism, aging, rheology and fatigue performance of carbon nanomaterial/SBS-modified asphalt binders[J]. Construction and Building Materials, 2021, 268: 121189.(一区Top)
[5] Wang Riran, Qi Zemin, Li Ruixia, Yue Jinchao*, Investigation of the effect of aging on the thermodynamic parameters and the intrinsic healing capability of graphene oxide modified asphalt binders[J]. Construction and Building Materials, 2020, 230: 116984.(一区Top)
[6] Wang Riran, Xiong Yuchao, Yue Mingjing, Hao Meimei, Yue Jinchao*, Investigating the effectiveness of carbon nanomaterials on asphalt binders from hot storage stability, thermodynamics, and mechanism perspectives[J]. Journal of Cleaner Production, 2020, 276: 124180.(一区Top)
[7] Wang Riran, Xiong Yuchao, Ma Xiaopeng, Guo Yajun, Yue Mingjing, Yue Jinchao*, Investigating the differences between steel slag and natural limestone in asphalt mixes in terms of microscopic mechanism, fatigue behavior and microwave-induced healing performance[J]. Construction and Building Materials, 2022, 328: 127107.(一区Top)
[8] Chen Bei, Wang Riran*, Yu Xin, Dong Fuqiang, Ding Gongying, Identifying the influence of asphalt mixture workability improvement on the characteristics of asphalt, aggregate and void after compaction utilising CT scanning technology[J]. Construction and Building Materials, 2024, 448, 138172.(一区Top)
[9] An Xin, Wang Riran*, Kang Xiaolong, Yue Jinchao, A more accurate fatigue characterization of GO-modified asphalt binder considering non-linear viscoelastic behaviour and UV exposure effects[J]. International Journal of Fatigue, 2023, 168: 107396.(一区Top)
[10] Yue Mingjing, Yue Jinchao, Wang Riran*, Xiong Yuchao, Evaluating the fatigue characteristics and healing potential of asphalt binder modified with Sasobit® and polymers using linear amplitude sweep test[J]. Construction and Building Materials, 2021, 289: 123054.(一区Top)
[11] 万京库,王日冉.Ti3C2TX MXene调控水泥基材料高频电磁波吸收与屏蔽性能研究[J]. 复合材料学报, 2026. (中国科技期刊卓越行动计划中文领军期刊)

专利和软件著作权

【授权发明专利】

[1] 《一种有对照组的沥青紫外老化试验方法》(CN202111434654.1)
[2] 《一种干法SBS改性剂、SBS改性沥青及其制备方法》(CN202310095442.8)
[3] 《一种沥青混合料拌和过程烟气相对释放量的预测方法及烟气收集设备》(CN202310037318.6)

荣誉和奖励

[1] 河南省高等学校优秀科技成果自然科学奖(贰等奖),2026年,排1
[2] 河南省教育厅科技成果奖优秀科技论文奖(贰等奖), 2025年,排1
[3] 河南省教育厅科技成果奖优秀科技论文奖(壹等奖),2024年,排1
[4] 中国施工企业管理协会工程建设科学技术进步奖(贰等奖),2024年,排1
[5] 河南省教育厅科技成果奖优秀科技论文奖(壹等奖),2023年,排1
[6] 河南省教育厅科技成果奖优秀科技论文奖(壹等奖),2022年,排1