刘江林
时间: 2026-09-05 来源:

姓名:刘江林
职称:讲师
研究方向(Focus Area):
1、水泥基功能材料研发;
2、高性能混凝土材料与结构;
3、深度学习与数字孪生在结构工程中的应用。
联系方式:
办公地址:主楼B座507
电子邮箱:liujlbjut@163.com
办公电话:010-61771750
一、个人简介及主要荣誉称号
刘江林,男,1993年12月生。2024年在北京工业大学获工学博士学位,2026年北京工业大学博士后出站。担任 Cement and Concrete Composites、Composites Part B: Engineering和Journal of Building Engineering等国际期刊审稿人。
致力于硅酸盐/磷酸镁水泥基功能材料的研发、高性能混凝土材料与结构设计以及深度学习与数字孪生技术在工程中的应用研究。主持国家自然科学基金青年科学基金项目(C类)、国家资助博士后研究人员计划C档、中国博士后科学基金面上项目等国家级/省部级项目5项。相关成果发表高水平SCI/EI等期刊论文近40篇。其中以第1/通讯作者发表高水平SCI论文16篇,含一区SCI论文13篇、单篇影响因子14.1的期刊论文2篇。授权国家发明专利5件,其中4件已完成成果转化。获2025年度建筑材料科学技术奖二等奖。
二、教学与人才培养情况
担任2026年研水电2667班班主任
三、主要科研项目情况
纵向项目:
[1] 国家自然科学基金青年科学基金项目(C类):具有电磁防护与表面强化双重功能的磷酸镁水泥-混凝土复合结构设计与优化研究(项目号:52508244),2026-2028,主持,30万
[2] 国家资助博士后研究人员计划C档:吸波磷酸镁水泥表层涂覆混凝土复合结构电磁防护与表面强化性能优化设计研究 (项目号:GZC20252135),2025-2026,主持,24万
[3] 中国博士后科学基金第76批面上项目:既有建筑电磁屏蔽用磷酸镁复合材料的组成-功能协同优化设计(项目号:2024M760175),2024-2026,主持,8万
[4] 北京市博士后科学基金项目:具有电磁防护功能的MPC-混凝土复合结构的设计研究(项目号: 2025-ZZ-48),2025-2026,主持,5万
[5] 北京市朝阳区博士后科学基金项目:功能化磷酸镁水泥基匹配层协同增强既 有混凝土电磁吸波与表层强化性能设计研究(项目号:2025ZZ-7),2025-2026,主持,4万
四、主要获奖
获2025年度建筑材料科学技术奖二等奖:新型电磁调控混凝土设计与性能提升方法(3/7)
五、代表性论著(20篇以内)
【1】Liu Jianglin, Li Yue*, Preparation and mechanism analysis of nanocrystalline cellulose-tricalcium silicate paste composite with high electromagnetic transmission performance, Cement & Concrete Composites 143 (2023).
【2】Li Yue, Liu Jianglin*, Experimental study and mechanism analysis of functional nanocrystalline cellulose to improve the electromagnetic transmission performance of ordinary Portland cement, Cement & Concrete Composites 143 (2023).
【3】Liu Jianglin, Li Yue*, Du Xiuli*, Effect and mechanism analysis of NCC on mechanical and shrinkage properties of cement paste under low atmospheric pressure and low humidity, Construction and Building Materials 494 (2025).
【4】Liu Jianglin, Li Yue*, Quantitative study on the dielectric properties of tricalcium silicate pastes under different W/C, Construction and Building Materials 366 (2023).
【5】Liu Jianglin, Li Yue*, Multi-scale quantitative study on dielectric properties of C-S-H synthesized by different molar ratio of Ca/Si, Construction and Building Materials 360 (2022).
【6】Liu Jianglin, Li Yue*, Preparation and research of high electromagnetic wave transmission type concrete in 5G frequency band, Construction and Building Materials 443 (2024).
【7】Liu Jianglin, Li Yue*, Exploring the influence and mechanisms of functionalized nanoscale wood fiber on the electromagnetic transmission performance of OPC paste, Construction and Building Materials 420 (2024).
【8】Liu Jianglin, Li Yue*, Mechanism study on the effect of diammonium hydrogen phosphate on the setting time and micro-nanostructure of ordinary Portland cement paste, Construction and Building Materials 407 (2023).
【9】Li Yue, Liu Jianglin, Investigation of seismic performance of RC column with electrochemical chloride extraction-strengthening by MPC-CFRP, Engineering Structures 247 (2021).
【10】Li Yue, Liu Jianglin, A mesoscopic numerical analysis method for evaluating the electromagnetic transmission performance of cement mortar with varying sand particle sizes and content, Journal of Building Engineering 97 (2024).
【11】Li Yue, Liu Jianglin*, Mesoscopic numerical simulation analysis of electromagnetic transmission properties of prefabricated glass microbeads-cement paste composites, Journal of Building Engineering 68 (2023).
【12】Liu Jianglin, Li Yue*, Effect and mechanism analysis of hydroxylated nano-boron nitride on workability and multi-scale mechanical properties of cement paste, Archives of Civil and Mechanical Engineering 22(3) (2022).
【13】Li Yue, Liu Jianglin, Axial compression mesoscale modelling of RC columns after reinforcement-electrochemical chloride extraction, Structures 31 (2021) 876-890.
【14】Li Yue, Liu Jianglin, Experimental-Numerical Analysis of Bending Behavior of Reinforced Concrete Beam with Electrochemical Chloride Extraction-Strengthening, KSCE Journal of Civil Engineering 25(8) (2021) 2991-3007.
【15】Jin Caiyun, Liu Jianglin*, Z.G. Wang, Y. Li, Early Cracking Risk Prediction Model of Concrete under the Action of Multifield Coupling, Advances in Materials Science and Engineering 2021 (2021).
【16】Li Yue, Hua Cheng,Liu Jianglin*,Mechanism study on the effects of waste silica gel powder on the strength and electromagnetic transmission properties of sulphoaluminate cement paste, Journal of Materials Science-Materials in Electronics 37(14) (2026).

