基本情况
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姓 名: |
韩松 |
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职 务: |
实验中心党支部书记,副主任 |
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职 称: |
教授 |
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学 历: |
研究生 |
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学 位: |
博士 |
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通信地址: |
北京市海淀区上园村3号北京交通大学土建楼210 |
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邮 编: |
100044 |
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办公电话: |
+86-13811381179 |
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电子邮箱: |
教育背景
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2008/07 - 2012/06,清华大学,土木工程系,建筑材料研究所,工学博士。导师:阎培渝教授 |
工作经历
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2024/11 - 今,北京交通大学,土建学院,教授 / 博士生导师 |
研究方向
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招生专业
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科研项目
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教学工作
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主讲本科生课程《土木工程材料》《建筑3D打印技术基础》《工程创新试验与实训》,研究生课程《3D打印材料基础理论与应用》《新材料与新结构设计方法》,全英文课程《Civil Engineering Materials》。 北京交通大学优秀主讲教师,教书育人先进个人,青年教师基本功大赛三等奖。 |
论文/期刊
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[73] Junhao Yang, Song Han*, Qingwei Wang, et al. The Influence of Graphene Oxide on the Hydration and Mechanical Properties of Cement-Based Materials with Low Water-Binder Ratio[J]. Cement and Concrete Composites, 2024:105640.(SCI一区top,影响因子13.1) [72] Qingwei Wang, Song Han*, Junhao Yang, et al. Optimizing printing and rheological parameters for 3D printing with cementitious materials[J]. Automation in Construction, 2025, 169:105881. (SCI一区top,影响因子11.5) [71] Ying Wei, Song Han*, Shiwei Yu, et al. Parameter impact on 3D concrete printing from single to multi-layer stacking[J]. Automation in Construction, 2024, 164:105449. (SCI一区top,影响因子11.5) [70] Qingwei Wang, Song Han*, Qi Liu, et al. Research on the 3D printing process and filament shape of cementitious materials in low gravity[J]. Construction and Building Materials, 2025, 458:139503. (SCI一区top,影响因子8.0) [69] Qingwei Wang, Song Han*, Junhao Yang, et al. Preparation of geopolymer concrete with Bayer red mud and its reaction mechanism[J]. Construction and Building Materials, 2023, 409:133730. (SCI一区top,影响因子8.0) [68] Ying Wei, Song Han*, Chen Ziwei, et al. Numerical simulation of 3D concrete printing derived from printer head and printing process[J]. Journal of Building Engineering, 2024, 88:109241. (SCI二区top,影响因子7.4) [67] Hongwei Lin, Song Han, Bing Han, et al. Development of mechanical properties of concrete in vacuum tunnel of vacuum-based maglev train[J]. Construction and Building Materials. 2024, 445:137928. (SCI一区top,影响因子8.0) [66] Cong Wu, Dongshuai Hou, Pan Wang, Mengmeng Li, Hongjian Xu, Song Han. Investigation of polysiloxane coatings with two-components for synergistic improved corrosion resistance of cementitious materials[J]. Construction and Building Materials. 2024, 449:138142. (SCI一区top,影响因子8.0) [65] Lin H, Li Y, Cheng G, Liang S, Han S, et al. Effects of vacuum exposure on the mechanical properties and microstructures of concrete with and without surface coating[J].Construction and Building Materials, 2025, 476:141340.(SCI一区top,影响因子8.0) [64] Huang L, An M, Wang Y, Xie Y, Han S, Yu Z. Effect mechanisms of prolonged dry-hot exposure on C-S-H gel properties in cementitious materials[J].Construction and Building Materials, 2025, 462: 140013. (SCI一区top,影响因子8.0) [63] Liu Jizhong, Mingzhe An, Huang Liangxian, Yue Wang, Song Han. Influence of vibrating compaction time on the strength and microstructure of ultra-high performance concrete[J]. Construction and Building Materials, 2023, 409:133584. (SCI一区top,影响因子8.0) [62] Hongwei Lin, Yanfeng Han, Siming Liang, Gong Fuyuan, Song Han, Peng Feng. Effects of low temperatures and cryogenic freeze-thaw cycles on concrete mechanical properties: A literature review[J]. Construction and Building Materials, 2022, 345:128287. (SCI一区top,影响因子8.0) [61] Wang Y, An M, Yu Z, Han S. Impacts of various factors on the rehydration of cement-based materials with a low water–binder ratio using mathematical models[J]. Construction & Building Materials, 2016, 125:160-167. (SCI一区top,影响因子8.0) [60] Han Song, Yan Peiyu, Liu Rengguang. Study on the hydration product of cement in early age using TEM. Science China Technological Sciences, 2012, 55(8): 2284-2290. (SCI一区top,影响因子4.9) [59] Han S, Yan PY, Kong XM. Study on the compatibility of cement-superplasticizer system based on the amount of free solution[J]. Science China Technological Sciences, 2011, 54(1): 183-189. (SCI一区top,影响因子4.9) [58] Zhang Y, Kong X, Hou S, Han S. Study on the rheological properties of fresh cement asphalt paste. Construction and Building Materials, 2012, 27(1): 534-544.(SCI一区top,影响因子8.0)[57] Liangxian Huang, Mingzhe An, Yongjiang Xie, Yue Wang, Song Han. Time-varying moisture characteristics and C-S-H gel properties of concrete in dry and hot environments[J]. Case Studies in Construction Materials. 2024, 21:e03812. (SCI二区,影响因子6.6) [56] Wang Q, Yan P Y, Han S. The influence of steel slag on the hydration of cement during the hydration process of complex binder. Science China Technological Sciences, 2011, 54(2): 388-394. (SCI一区top,影响因子4.9) [55] Han S*, Liu YZ, Liu D, An MZ, Yu ZR. The Modeling Research on the Early-Age Shrinkage of UHPFRC in Different Curing Conditions. Advances in Civil Engineering, 2018, 2018(6). 1-8. (SCI) [54] Han S*, Cui YF, Huang HF, An MZ, Yu ZR. Effect of Curing Conditions on the Shrinkage of Ultra-High Performance Fiber Reinforced Concrete (UHPFRC). Advances in Civil Engineering, 2018, 2018(7). 1-8. (SCI) [53] Han Song, Johanne Plank. Mechanistic study on the effect of sulfate ions on polycarboxylate superplasticisers in cement. Advances in Cement Research, 2013, 25(4): 200-207. (SCI) [52] Chengming Lan, Shuo Zhuang, Song Han, et al. Monitoring of soil water content using spherical smart aggregates based on electromechanical impedance (EMI) technique[J]. Smart Materials and Structures, 2023, 32(7):074002. (SCI) [51] Liu Jizhong, Mingzhe An, Yue Wang, Song Han, Yu Ziruo. Research on the Relation between Slump Flow and Yield Stress of Ultra-High Performance Concrete Mixtures[J]. Materials, 2022, 15(22):8104. (SCI) [50] Wang Q, Yan PY, Han S. Activity index for steel slag. Magazine of Concrete Research, 2011, 63(10): 737-742. (SCI) [49] Bai B, Guo L, Han S. Pore pressure and consolidation of saturated silty clay induced by progressively heating/cooling[J]. Mechanics of Materials, 2014, 75(10):84-94. (SCI) [48] Zhang Peng, Song Han, Golewski Grzegorz Ludwik, et al. Nanoparticle-reinforced building materials with applications in civil engineering[J]. Advances in Mechanical Engineering, 2020, 12(10):168781402096543. (SCI) [47] Zhang Peng, Song Han, Ng Serina, et al. Fiber-Reinforced Concrete with Application in Civil Engineering[J]. Advances in Civil Engineering, 2018, 2018:1-4. (SCI) [46] Zhang P, Han S, Ng S, et al. High Performance Concrete Materials with Applications in Building and Civil Engineering[J]. Journal of Engineering, 2017, 2017(7):1-3. (SCI) [45] Zhang P, Han S, Ng S, et al. Advanced Cementitious Building Materials with Applications in Civil Engineering[J]. Advances in Civil Engineering, 2017, 2017(4):1-3. (SCI) [44] Wang Y, An M Z, Yu Z R, Han S, Ji W Y. Durability of reactive powder concrete under chloride-salt freeze–thaw cycling[J]. Materials & Structures, 2017, 50(1):18. (SCI) [43] Han Song*, An Mingzhe. The Flowability and Adsorption of Low Sulfate Cement with Superplasticizers. Applied Mechanics and Materials, 2014, 477: 904-907. (EI) [42] 韩松*, 崔叶富, 郑玉飞, et al. 低水胶比水泥浆体的力学性能与水泥石微结构[J]. 硅酸盐学报, 2019, 47(2):153-160. (EI) [41] 韩松*, 刘丹, 张戈,等. 超低水胶比复合胶凝材料孔结构随养护制度和龄期的变化机理[J]. 硅酸盐学报, 2017, 45(11):1594-1604. (EI) [40] 韩松*, 阎培渝, 安明喆. 碱金属硫酸盐与减水剂对水泥浆体抗泌水能力的影响[J]. 硅酸盐学报, 2016, 44(11):1614-1620.(EI) [39] 韩松*, 涂亚秋, 安明喆, 余自若. 活性粉末混凝土早期收缩发展规律及其控制方法研究. 中国铁道科学. 2015. 36(1): 40-47. (EI) [38] 韩松*, 安明喆, 郭瑞, 刘高. 陶粒内养护高性能混凝土抗裂性能研究. 建筑材料学报. 2015, 18(5). (EI) [37] 韩松*, 阎培渝, 安明喆. 减水剂与低硫酸盐含量水泥的相容性研究. 硅酸盐学报. 2014.42(8): 981-988. (EI) [36] 韩松*, 阎培渝. 硫酸盐对萘系减水剂与水泥相容性的影响[J]. 硅酸盐学报, 2010 (9): 1765-1770. (EI) [35] An MZ, Wang Y, Yu ZR, Ji WY, Han S. Durability of uhpc under complex environments[c]. 1st International Conference on UHPC Materials and Structures, 2016, 105:380-394. (ISTP) [34] Zhang G, An MZ, Dong XY, Han MM, Han S. Effect of periodic thermal fatigue on strength and permeability of ultra-high performance concrete[C]. 1st International Conference on UHPC Materials and Structures, 2016, 105:395-402. (ISTP) [33] Wang Yue, An Mingzhe, Yu Ziruo, Han Song, Tu Yaqiu. Stability of low water binder ratio cement based material in water[C]. The 14th International Congress on the Chemistry of Cement(ICCC 2015), 2015:166. (ISTP) [32] 程冠之, 林红威, 李咏昊, 庄扬波, 韩松, 韩冰, 李大林. 涂层防护对低真空暴露混凝土性能的影响规律[J].硅酸盐学报, 2025-2-19. (EI) [31] 郭献戌, 安明喆, 王月, 余自若, 韩松. 大温差循环作用下混凝土温度响应及损伤模拟[J]. 建筑材料学报, 2023, 26(08):845-852. (EI) [30] 余自若, 夏文敏, 安明喆, 王月, 韩松. 基于桁架-拱模型的钢筋UHPC矩形梁抗剪承载力计算方法[J]. 铁道学报, 2023, 45(03):16-29. (EI) [29] 安明喆, 韩松, 王月, et al. 桥塔用内养护高强度抗裂混凝土性能研究[J]. 铁道建筑, 2020, 60(01):44-48. (EI) [28] 李宇森, 吕嘉怡, 麻元开, 韩松. 温度与收缩变形作用下混凝土开裂风险研究综述[J]. 中国建筑金属结构, 2023, 22(07):37-41. [27] 黄冉, 韩松*, 宁文绣, et al. 低水胶比复合胶凝材料的力学性能与水化产物微结构研究[Z]. 中国硅酸盐学会水泥分会第七届学术年会, 2018:41. [26] 王华, 韩松, 安明喆. 活性粉末混凝土材料微观结构的研究现状. 材料导报. 2014. 28(4): 95-99. (EI) [25] Hou S, Kong X, Cao E, Han S. Effects of chemical structure on the properties of polycarboxylate-type superplasticizer in cementitious systems[J]. Journal of the Chinese Ceramic Society, 2010, 9: 017. (EI) [24] 安明喆, 张戈, 韩松. 速凝剂主要组成对水泥水化影响机理研究[J]. 铁道工程学报, 2019, 36(11):74-81. [23] 安明喆, 王华, 王月, 韩松, 黄瀚锋, 季文玉. 活性粉末混凝土在海水冻融作用下的耐久性[J]. 中国铁道科学, 2018, 39(2):1-9. [22] 陈宝春, 李聪, 黄伟, 安明喆, 韩松, 丁庆军. 超高性能混凝土收缩综述[J]. 交通运输工程学报, 2018, 18(1):13-28. [21] 安明喆, 王海鹏, 韩松, et al. 硫酸盐环境对活性粉末混凝土抗拉强度的影响[J]. 铁道学报, 2017, 39(11):144-150. [20] 安明喆, 苏阳, 王月, 韩松,余自若. 粗骨料石粉含量对 C50 高性能混凝土性能的影响研究[J]. 中国铁道科学, 2013, 34(4): 27-32. (EI) [19] 余自若, 高康, 安明喆, 韩松. 活性粉末混凝土微观结构及其对强度与抗氯离子渗透性能的影响研究[J]. 西安建筑科技大学学报: 自然科学版, 2013 (1): 31-37. (EI) [18] 郭瑞, 李国平, 安明喆, 韩松. 内养护技术对不同强度等级高性能混凝土性能的影响[J]. 中国铁道科学, 2015, 36(3):24-29. (EI) [17] 王月, 安明喆, 余自若, 韩松. 活性粉末混凝土冻融循环前后NaCl溶液的吸入特性[J]. 哈尔滨工业大学学报, 2015, 47(4):71-75. (EI) [16] 王月, 安明喆, 余自若, 贾方方, 韩松. 活性粉末混凝土耐久性及其评价指标[Z]. 第九届全国高强与高性能混凝土学术交流会, 2014:243-248. [15] Shikun Zhao, Song Han*, Mingzhe An, et al. The early-age ang long-term shrinkage of ultra-high performance fiber reinforced concrete (UHPFRC)[C]. The 2nd International Conference on UHPC Materials and Structures,UHPC2018-China(第二届超高性能混凝土材料和结构国际会议), 2018:526-536. (ISTP) [14] Mingzhe An, Junyu Zhou, Ziruo Yu, Song Han, Yue Wang. Research progress on durability and long-term stability of uhpc materials[C]. The 2nd International Conference on UHPC Materials and Structures,UHPC2018-China(第二届超高性能混凝土材料和结构国际会议), 2018:508-517. (ISTP) [13] Guo R, Zhang XG, G Liu, Li GP, An MZ, S Han. Research on mix proportion design and properties of internal curing concrete in bridges[C]. Bridge Maintenance, Safety, Management and Life Extension, 2014:1826-1830. [12] Han Song, Yan Peiyu. Influence of sulfate and soluble alkali content on the compatibility of cement with naphthalene superplasticizer. 13rd International Congress on the Chemistry of Cement, 2011. (ISTP) [11] 韩松*, 阎培渝, 孔祥明. 基于自由溶液量的水泥-减水剂系统相容性研究[J]. 中国科学: 技术科学, 2011, 41(4): 412-418. [10] 韩松*, 阎培渝, 刘仍光. 水泥早期水化产物的 TEM 研究[J]. 中国科学: 技术科学, 2012, 42(8): 879-885. [9] Han Song*, An Mingzhe. Research on the shrinkage of reactive powder concrete and its influencing factors. The 8th International Symposium on Cement & Concrete. 2013.07. (ISTP) [8] 韩松, 阎培渝. 硫酸盐对掺减水剂水泥相容性的影响机理. 中国硅酸盐学会水泥分会首届学术年会论文集, 2009. [7] 韩松, 阎培渝. 大掺量粉煤灰的胶粉聚苯颗粒保温砂浆研制[J]. 2008 第三届中国国际建筑干混砂浆生产应用技术研讨会论文集, 2008. [6] 韩松*, J.Plank. K2SO4对聚羧酸减水剂作用效果的影响机理研究. 聚羧酸系高性能减水剂及其应用技术新进展, 2011. [5] 王强, 阎培渝, 韩松. 钢渣在复合胶凝材料的水化过程中对水泥水化的影响[J]. 中国科学: 技术科学, 2011, 41(2): 170-176. [4] 冯竟竟, 王强, 韩松, 等. 高温诱致水泥浆体微观结构劣化现象的研究[J]. 电子显微学报, 2010, 29(6): 560-568. [3] 闫振鹏, 安明喆, 李化建, 韩松. 高抗裂低收缩纤维混凝土性能研究[J]. 混凝土与水泥制品, 2012 (8): 43-47. [2] 聂庆科, 白冰, 李华伟, 韩松, 王英辉. 粉煤灰和矿粉含量对混凝土抗硫酸盐腐蚀影响的试验研究[J]. 混凝土, 2015(7):1-3. [1] 安明喆, 苏阳, 邢海军, 侯新拓, 王月, 韩松. 骨料中石粉含量对电杆用C60高性能混凝土性能的影响[J]. 混凝土, 2015(7):107-110.
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学术专著
专利
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获奖与荣誉
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社会兼职
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中国土木工程学会混凝土及预应力混凝土分会,理事 中国混凝土与水泥制品协会土壤稳定与固化技术分会,理事 中国设备管理协会建设工程检验检测及智慧测试产业发展中心,理事 《硅酸盐学报》期刊青年编委。 《市政技术》期刊编委,材料与检测学部副主任。 中国混凝土与水泥制品协会喷射混凝土材料与工程技术分会,专家委员 中国硅酸盐学会混凝土与水泥制品分会高性能混凝土专业委员会,专家委员 中国建筑学会建筑材料分会大体积混凝土应用技术专业委员会,专家委员 国家企业技术中心(嘉华特种水泥股份有限公司),技术专家。 中国硅酸盐学会测试技术分会磁共振测试技术委员会,专家委员 中国绿色建材产业发展联盟利废新材专业委员会,专家委员 中国电子显微镜学会无机非金属建筑材料微观测试与分析专业委员会,专家委员 中国硅酸盐学会固废分会有机固废专业委员会,专家委员 《Cement and Concrete Research》《Cement and Concrete Composites》《Automation in Construction》《Construction and Building Materials》《Powder Technology》《SCIENCE CHINA Technological Sciences》等SCI期刊审稿人、Special Issue编委。 参与编制GB/T31387《超高性能混凝土》国家标准、CECS国家工程建设行业标准三部、行业与团体标准六部、铁路总公司混凝土标准一部。 |