共 23 条
- [11] XU Shubai, Principle of analytic hierarchy process, (1987)
- [12] LI Zhenguo, WANG Xingjian, GAO Dengke, Et al., Experimental investigation on setting property of magnesium oxysulfate cement, Bulletin of the Chinese Ceramic Society, 34, 5, (2015)
- [13] DUAN Liling, Study on porous magnesium oxysulfide concrete prepared by SAP, (2019)
- [14] ZHENG Anran, ZHAN Binggen, YANG Yongsan, Influence of mass ratio of MgO to MgSO<sub>4</sub> and H<sub>2</sub>O to MgSO<sub>4</sub> on the properties of magnesium oxysulfate cementitious material, Journal of Hefei University of Technology(Natural Science), 43, 10, (2020)
- [15] ZHU Jianfeng, XU Riqing, LUO Zhanyou, Et al., Modified Duncan‑Chang constitutive model for soft soil stabilized by magnesium oxysulfate cement considering three effect factors, Journal of Central South University(Science and Technology), 51, 7, (2020)
- [16] MA G W, LI Z J, WANG L., Printable properties of cementitious material containing copper tailings for extrusion based 3D printing, Construction and Building Materials, 162, pp. 613-627, (2018)
- [17] PAUL S C, TAY Y W D, PANDA B, Et al., Fresh and hardened properties of 3D printable cementitious materials for building and construction, Archives of Civil and Mechanical Engineering, 18, 1, (2018)
- [18] YUAN Q, LI Z M, ZHOU D J, Et al., A feasible method for measuring the buildability of fresh 3D printing mortar, Construction and Building Materials, 227, (2019)
- [19] SOLTAN D G, LI V C., A self‑reinforced cementitious composite for building‑scale 3D printing, Cement and Concrete Composites, 90, pp. 1-13, (2018)
- [20] ZHANG Y, ZHANG Y S, SHE W, Et al., Rheological and harden properties of the high‑thixotropy 3D printing concrete, Construction and Building Materials, 201, (2019)