代表性论文
一、英文部分
[1] Zhao Jihui, Wang Dongmin※, Wang Xueguang, et al. Ultrafine grinding of fly ash with grinding aids: Impact on particle characteristics of ultrafine fly ash and properties of blended cement. Construction and Building Materials, 2015, 78: 250-259. (EI&SCI, IF=2.71)
[2] Zhao Jihui, Wang Dongmin※, Wang Xueguang, et al. Ultrafine grinding of fly ash with grinding aids: Impact on particle characteristics of ultrafine fly ash and properties of blended cement. Construction and Building Materials, 2015, 78: 250-259. (EI&SCI, IF=2.71)
[3] Zhao Jihui, Wang Dongmin※, Liao Shucong. Effect of mechanical grinding action on physical and chemical characteristics of circulating fluidized bed fly ash from coal gangue power plant. Construction and Building Materials, 2015, 101:851-860. (EI&SCI, IF=2.71)
[4] Zhao Jihui, Wang Dongmin※, Yan Peiyu, et al. Particle characteristics and activity of ground granulated blast furnace slag powder containing industrial crude glycerol-based grinding aids. Construction and Building Materials, 2016, 104:134–141. (EI&SCI, IF=2.71)
[5] Zhao Jihui, Wang Dongmin※, Wang Xueguang, et al. Characteristics and mechanism of modified triethanolamine as cement grinding aids. Journal of Wuhan University of Technology-Materials Science, 2015, 30:134-141. (EI&SCI, IF=0.40)
[6] Zhao Jihui, Wang Dongmin※, Yan Peiyu, et al. Self-cementitious property of steel slag powder blended with gypsum. Construction and Building Materials, under review, 2015. (EI&SCI, IF=2.71)
[7] Zhao Jihui, Wang Dongmin※, Yan Peiyu, et al. Mineral characteristics of the heat-stewed converter steel slag: phase distribution, micro-morphology and micro-hardness. Minerals Engineering, submitted, 2015. (EI&SCI, IF=1.75)
[8] Zhao Jihui, Wang Dongmin※, Wang Xueguang, et al. Effect of grinding aids on the particles characteristics of cement and analysis of action mechanism. Advanced Materials Research, 2014, 936: 1404-1408. (EI)
[9] Zhao Jihui, Zhang Dawang, Wang Dongmin※, et al. Cementitious property of steel slag powder and impact on the mechanical property of cement. The 14th International Congress on the Chemistry of Cement, 2015.
[10] Wang Dongmin, Zhao Jihui, Yang Baogui, et al. Excitation action of chemical admixtures on steel slag cementitious materials. The 14th International Congress on the Chemistry of Cement, 2015.
[11] Zhao Jihui, Wang Dongmin※, Wang Jianfeng, et al. Study on the performance and mechanism of a modified triethanolamine grinding aids. Tenth International Conference on Superplasticizers and Other Chemical Admixtures, 2012: 357-367.
[12]ZHANG Li-ran,WANG Dong-min,ZHANG Wei-li. Study on the Multi-level flocculation structures of fresh cement pastes by confocal laser scanning microscope. Journal of Wuhan University of Technology(Materials Science Edition) 2014.2 (SCI)
[13]ZHANG Li-ran, WANG Dong-min, PAN Jia, et al. Relationship between flocculent structure and rheological behavior/effective volume fraction of fresh cement paste. Journal of the Chinese Ceramic Society. 2014.9 (EI)
[14]ZHANG Li-ran, WANG Dong-min, WANG Fang, et al. Microwaves assisted synthesis of polycarboxylic superplasticizer- A kinetic study.the 14th International Congress on the Chemistry of Cement (ICCC 2015)
[15]ZHANG Li-ran, WANG Dong-min, WANG Fang, et al. Study on the multi-level flocculent structures and rheological behavior of fresh cement pastes. Materials and structure (Under review) (SCI)
[16]ZHANG Li-ran,WANG Dong-min,ZHANG Wei-li. Study on influence of the cement grinding aid to the compatibility of cement-superplasticizer system based on the theory of multi-level flocculation structure.The 8th International Symposium on Cement & Concrete (ISCC2013) 2013. (ISTP)
[17] Fanghui Han, Rengguang Liu, Dongmin Wang, Peiyu Yan. Characteristics of the hydration heat evolution of composite binder at different temperature. ThermochimicaActa.2014, 586: 52-57. (EI&SCI, IF: 2.185)
[18] Fanghui Han, Zengqi Zhang, Dongmin Wang, Peiyu Yan. Hydration heat evolution and kinetics of blended cements containing steel slag at different temperatures.ThermochimicaActa.2015, 605: 43-51. (EI&SCI, IF: 2.185)
[19] Fanghui Han, Zengqi Zhang, Dongmin Wang, Peiyu Yan. Hydration kinetics of composite binder containing slag at different temperatures. Journal of Thermal Analysis and Calorimetry. 2015, 121: 815-827. (EI&SCI, IF: 2.206)
[20]Kong Xiangming, Jin Ye, Lu Zhenbao, Zhang Yanrong, Wang Dongmin. Organic cement chemistry-the supplementary branch to the chemistry of cement and concrete. Sustainable and science-driven engineering of cement-based materials, Beijing, China, 2011.7.
[21]Xiang-ming Kong, Zhen-Bao Lu, Hui Liu, Dong-Min Wang. Influences of triethanolamine on the hydration and the strength development of cementitious systems.Magazine of Concrete Research, 2013, 65(1): 1-9 (SCI影响因子0.759)
[22]Kong Xiangming, Lu Zhenbao, Zhang Yanrong, Zhang Zhenling, Jin Ye, Wang Dongmin. Effect of organic grinding aids on cement properties and the analysis via organic cement chemistry. Journal of the Chinese Ceramic Society, 2012, 40(1):49-55.(EI)
[23]Kong Xiangming, Liu Hui, Wang Dongmin. The influence of silanes on hydration and strength development of cementitious systems.Cement and Concrete Research, 2015, 67: 168-178. (SCI影响因子3.848)
[24]Zhang Da-Wang, Wang D M, Zhang T, et al. The study of the structure rebuilding and yield stress of 3D printing geopolymer pastes [J]. Construction & Building Materials, 2018, (184) 575-580. (SCI二区,IF=3.485)
[25]Zhang Da-Wang, Wang D M, Liu Z, et al. Rheology, agglomerate structure, and particle shape of fresh geopolymer pastes with different NaOH activators content[J]. Construction & Building Materials, 2018, (187) 674-680. (SCI二区,IF=3.485)
[26]Zhang Da-Wang, Wang D M, Xie F Z. Microrheology of geopolymer fresh pastes with different NaOH content at room temperature [J]. Construction & Building Materials, 2019(207) 284-290. (SCI二区IF=3.485)
[27]Liu Z, Zhang Da-Wang, et al. Microstructure and phase evolution of alkali-activated steel slag during early age [J]. Construction & Building Materials, 2019(204) 158-165 (SCI二区IF=3.485)
二、中文部分
[1]王栋民,金欣,欧阳世翕水泥-膨胀剂-磨细矿渣复合胶凝材料膨胀与强度发展的协调性研究《硅酸盐学报》- 2002 -被引量: 23
[2]陈建奎,王栋民.高性能混凝土(HPC)配合比设计新法---全计算法.硅酸盐学报, 2000, 28(2):194-198(被引量: 271)
[3]王栋民,郭新秋,方占民 含不同结构单元共聚羧酸高效减水剂的应用研究《应用基础与工程科学学报》- 2002 -被引量: 13
[4]王栋民,左彦峰,欧阳世翕氯离子在掺不同矿物质掺合料高性能混凝土中的扩散性能 《硅酸盐学报》, 2004, 32(7):858-861被引量: 29
[5]王栋民,陈华辉,欧阳世翕高强流态膨胀混凝土力学性能和膨胀行为《硅酸盐学报》- 2004 -被引量: 18
[6]李崇智,冯乃谦,王栋民,侯云芬.梳形聚羧酸系减水剂的制备、表征及其作用机理.硅酸盐学报, 2005, 33(1):87-92(被引量: 142)
[7]侯云芬,王栋民,李俏.水玻璃性能对粉煤灰基矿物聚合物的影响 《硅酸盐学报》2008被引量: 22
[8]左彦峰,王栋民,吴绍祖.聚羧酸系超塑化剂对水泥浆体流动性的影响 《建筑材料学报》2004被引量: 18
[9]王栋民,张力冉,张伟利等.超塑化剂对新拌水泥浆体多级絮凝结构的影响.建筑材料学报,2012.6(EI)
[10]张力冉,王栋民,张伟利.基于多级絮凝结构理论研究水泥助磨剂对超塑化剂与水泥的相容性的影响.应用基础与工程科学学报,2015,23(6): 52-56. (EI)
[11]张力冉,王栋民,张伟利.运用激光扫描共聚焦显微镜观察新拌浆体多级絮凝结构.电子显微学报. 2013,14(4): 569-579. (核心)
[12]孔祥明,路振宝,闫娟,刘辉,王栋民.三乙醇胺对水泥浆体离子浓度的影响规律.硅酸盐学报,2013,41(7)106-111(EI)
[13]孔祥明,路振宝,石晶,王栋民,侯珊珊,刘辉.磷酸与磷酸盐类化合物对水泥水化动力学的影响.硅酸盐学报. 2012,(11):1553-1558.(EI)
[14]史志花,孔祥明,王栋民.聚合物纳米粒子型减水剂合成与性能研究.建筑材料学报,2014, 17(6): 939-944.(EI)
[15]孔祥明,刘辉,蒋凌飞,路振宝,王栋民.含硅烷官能团聚羧酸减水剂对水泥浆体流动性和力学性能的影响.硅酸盐学报,2014,42(5)635-641(EI)
[16]韩方晖,王栋民,阎培渝.含不同掺量矿渣或粉煤灰的复合胶凝材料的水化动力学.硅酸盐学报. 2014, 42(5): 613-620. (EI)
[17]张大旺,王栋民.地质聚合物混凝土研究现状[J].材料导报, 2018(9):1519-1527.(EI)
[18]张大旺,王栋民,朴春爱.钢渣掺量对3D打印地质聚合物材料新拌浆体流变性的影响[J].应用基础与工程科学学报,2018,26(03):596-604.(EI)
[19]王栋民,张大旺,刘泽, et al. 3D打印混凝土标准与规程制定的问题研究[J].混凝土, 2019, 354(04):6-9.
[20]张大旺,王栋民. 3D打印混凝土材料及混凝土建筑技术进展[J].硅酸盐通报,2015,34(06):1583-1588
授权发明专利
1、王栋民 韩立林 陈福银 颜亨吉 游宝坤 超长钢筋混凝土结构无缝设计与施工方法ZL 93 1 17132 6
2、王栋民 扈士凯 罗小红 刘晓斌 惠飞 轻集料的制备方法及以其产品为主保温源的无机保温材料ZL 2008 1 0222289.6
3、王栋民 熊卫锋 左彦峰 武增礼 王振华 宋涛文 水溶性接枝聚羧酸类减水剂及其制备方法ZL 2008 1 0222288. 1
4、王栋民 刘治华 抗硫酸盐型有机硅改性聚羧酸系超塑化剂及其制备方法ZL 2012 1 0539481.4
5、王栋民 范德科 范兴旺 苏胜 杨荣俊 邬长森 田景松 混凝土掺合料及煅烧煤矸石制备混凝土掺合料的方法ZL 2010 1 0606022.4
6、王栋民 赵计辉 王剑锋等 一种水泥助磨剂母液、制备方法及使用方法ZL201310116064.3
7、王栋民 赵计辉 王振华等.一种醇胺-羧酸系聚合物及制备方法和应用ZL201310116104.4
8、王栋民 张力冉 逄建军 王浩 张树雄 李娟 一种半水石膏专用线型聚羧酸类减水剂的制备方法ZL 2013 1 0687635. 9
9、王栋民 张力冉 逄建军 王浩 李娟 张树雄 潘佳 一种采用微波辅助法制备聚羧酸接枝共聚物类高效超塑化剂的方法ZL 2013 1 0503433. 4
出版专著
1、王栋民著.高性能膨胀混凝土[M].中国水利电力出版社.知识产权出版社. 2006.
2、覃维祖、王栋民、丁建彤译 混凝土:微结构、性能与应用[M].中国电力工业出版社. 2008.
3、姚嵘、张玉波、王栋民 粉煤灰在自诊断压敏水泥基材料中的应用[M].冶金工业出版社. 2009.8
4、王栋民、张琳编著 干粉砂浆原理与配方指南[M].化学工业出版社. 2010.11
5、王栋民、张以河、李端乐编著 工矿业精细化学品化学[M].化学工业出版社. 2013.11
6、水中和、魏小胜、王栋民主编 现代混凝土科学与技术[M].科学出版社. 2014
7、刘泽 彭桂云 王栋民 王群英主译 碱激发材料[M].中国建材工业出版社. 2018年
社会学术兼职
中国硅酸盐学会 常务理事
中国硅酸盐学会固废分会 理事长,分会专家委员会 主任委员
北京市硅酸盐学会 副理事长
中国硅酸盐学会混凝土与水泥制品分会理事
国家住房和城乡建设部绿色建材产业技术创新战略联盟副理事长,联盟技术委员会副主任委员
国家建筑材料行业科技教育委员会 专家 国家科学技术奖 评审专家
中国自然资源学会政策研究专业委员会 副主任委员
中国土木工程学会混凝土外加剂专业委员会委员、耐久性委员会委员、高强高性能混凝土委员会委员
中国混凝土与水泥制品协会外加剂应用技术分会专家委员会 副主任委员
中国水泥协会水泥助磨剂分会专家委员会 副主任委员
北京市预拌砂浆工程技术研究中心技术委员会 委员
《商品混凝土》杂志 副主编
《硅酸盐通报》编委
民建北京市人资环委员会 委员
科技部863重大专项项目 评审专家
科技部973重大基础研究项目 评审专家
国家自然科学基金委员会 函评专家
北京市科学技术奖 评审专家
中国工程院光华工程奖 评审专家
教育部长江学者特聘教授 评审专家等