王里
中国
15900218180
硕士生导师
男
中国矿业大学(北京)
工学博士
wangl1@126.com
土木与交通学院
教授
土木工程
土木与交通学院336
博士研究生
wang li
访问量:
科研论文
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[71] Li Wang;Kehan Ye;Qian Wan;Zhijian Li;Guowei Ma. Inclined 3D concrete printing: build-up prediction and early-age performance optimization. Additive Manufacturing, 2023, 71 , 103595.
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[72] Shuaipeng Yan;|Jiahao Xu;|Yuhan Bian;|Li Wang;|Guangchuan Liang. Effects of Al2O3 coating on electrochemical performance of MCMB material and LiNi0.5Mn1.5O4/MCMB full cells. Journal of Materials Science: Materials in Electronics, 2023, 34 4, .
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[73] Ruo-Chen Zhang;Li Wang;Xuan Xue;Guo-Wei Ma. Environmental profile of 3D concrete printing technology in desert areas via life cycle assessment. Journal of Cleaner Production, 2023, 396 , 136412.
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[74] Li Wang;Wei Xiao;Qiao Wang;Hailong Jiang;Guowei Ma. Freeze-thaw resistance of 3D-printed composites with desert sand. Cement and Concrete Composites, 2022, 133 , 104693.
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[75] Liu, Xiongfei1;Li, Qi1;Wang, Li1;Wang, Fang1;Ma, Guowei1;. Systematic approach for printability evaluation and mechanical property optimization of spray-based 3D printed mortar. Cement and Concrete Composites, 2022, 133 , .
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[76] Ma, Guowei1;Buswell, Richard A.2;Leal da Silva, Wilson Ricardo3;Wang, Li1;Xu, Jie2;Jones, Scott Z.4;. Technology readiness: A global snapshot of 3D concrete printing and the frontiers for development. Cement and Concrete Research, 2022, 156 , .
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[77] Lang, Yaqiang123;Sun, Xianli123;Xue, Gang1;Duan, Xinhui13;Wang, Li123;Liang, Guangchuan123;. Synthesis and enhanced electrochemical performance of LiNi0.5Mn1.5O4 cathode materials under the assistance of polyvinylpyrrolidone. Ionics, 2022, 28 11, 5025-5038.
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[78] 马国伟,张若晨,王里. 一种基于复合菌剂的3D打印自修复混凝土制备方法. , 2022, 河北工业大学, CN115745512A 2023.03.07.
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[79] Wang, Li1,3;Li, Qiqi1;Hu, Yuanyuan2;Cui, Tianlong1;Li, Rong2;. Shrinkage and Cracking Properties of Cellulose Fiber-Concrete Composites for 3D Printing by Leveraging Internal Curing. 3D PRINTING AND ADDITIVE MANUFACTURING, 2022, , .
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[80] Ma, Guowei1, 2; Yang, Wenwei1; Wang, Li1, 2 . Strength-constrained simultaneous optimization of topology and fiber orientation of fiber-reinforced composite structures for additive manufacturing. Advances in Structural Engineering, 2022, , .