[1] Zhihui Zhao, Laibo Li*. Rheology control towards 3D printed magnesium potassium phosphate cement composites. Composites Part B: Engineering. 239 (2022) 109963. (SCI, Q1, IF: 11.322); [2] Zhihui Zhao, Lingchao Lu*. Effects of bentonite, diatomite and metakaolin on the rheological behavior of 3D printed magnesium potassium phosphate cement composites. Additive Manufacturing. 46 (2021) 102184. (SCI, Q1, IF: 11.632); [3] Zhihui Zhao, Lingchao Lu*. Mix design and rheological properties of magnesium potassium phosphate cement composites based on the 3D printing extrusion system.Construction and Building Materials. 284 (2021) 122797. (SCI, Q1, IF: 7.693); [4] Zhihui Zhao, Lingchao Lu*. Evaluation of pre-coated recycled aggregate for concrete and mortar. Construction and Building Materials. 43 (2013) 191-196. (SCI, Q1, IF: 7.693); [5] Zhihui Zhao, Lingchao Lu*. Rheological properties and structural build-up of 3D printed magnesium potassium phosphate cement. ICDCS2022. 2 (2022): 247-250 (EI); [6] Yuan Jin, Jiabin Xu, Yali Li, Zhihui Zhao, Laibo Li*. Rheological properties, shape stability and compressive strength of 3D printed colored cement composites modified by needle-like pigment. Additive Manufacturing. 57 (2022) 102965. (SCI, Q1, IF: 11.632); [7] Jiabin Xu, Mingxu Chen, Zhihui Zhao, Lingchao Lu*. Printability and efflorescence control of admixtures modified 3D printed white Portland cement-based materials based on the response surface methodology. Journal of Building Engineering. 38 (2021) 102208. (SCI, Q2, IF: 7.144); [8] Yuan Jin, Xiaolong Zhou, Mingxu Chen, Zhihui Zhao, Lingchao Lu*. High toughness 3D printed white Portland cement-based materials with glass fiber textile. Materials Letters, 309 (2022) 131381. (SCI, Q3, IF: 3.574) |