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Influence of fly ash on compressive strength and micro-characteristics of magnesium potassium phosphate cement mortars Journal article
CEMENT AND CONCRETE RESEARCH, 2017,Volume: 99,Page: 86-94
Authors:  Xu, Biwan;  Ma, Hongyan;  Shao, Hongyu;  Li, Zongjin;  Lothenbach, Barbara
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Magnesium potassium phosphate cement  Fly ash  Compressive strength  Micro-characteristics  Reactivity  
Experimental and computational investigation of magnesium phosphate cement mortar Journal article
Construction and Building Materials, 2016,Volume: 112,Page: 331-342
Authors:  Hou D.;  Yan H.;  Zhang J.;  Wang P.;  Li Z.
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M/P ratio  Magnesium phosphate cement  Molecular dynamics  Struvite-K  
Printability of magnesium potassium phosphate cement with different mixing proportion for repairing concrete structures in severe environment Conference paper
Key Engineering Materials
Authors:  Fu Y.;  Cao X.A.;  Li Z.
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Binder jetting system  Magnesium potassium phosphate cement  Printability  
Factors influencing the mechanical properties of the 3D printed product out of magnesium potassium phosphate cement material Conference paper
Proceedings of the 11th fib International PhD Symposium in Civil Engineering, FIB 2016
Authors:  Cao X.;  Li Z.;  Liang R.;  Sun G.
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Combination degree  Magnesium potassium phosphate cement  Three dimensional printing  
Interface modification and mechanical enhancement of multi-scaled cementitious composites Conference paper
Proceedings of the 11th fib International PhD Symposium in Civil Engineering, FIB 2016
Authors:  Liang R.;  Sun G.;  Cao X.;  Li Z.
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Influence of magnesia-to-phosphate molar ratio on microstructures, mechanical properties and thermal conductivity of magnesium potassium phosphate cement paste with large water-to-solid ratio Journal article
Cement and Concrete Research, 2015,Volume: 68,Page: 1-9
Authors:  Xu B.;  Ma H.;  Li Z.
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Chemically bonded ceramics (D)  Mechanical properties (C)  MgO (D)  Microstructure (B)  Transport properties (C)  
Effects of water content, magnesia-to-phosphate molar ratio and age on pore structure, strength and permeability of magnesium potassium phosphate cement paste Journal article
Materials and Design, 2014,Volume: 64,Page: 497-502
Authors:  Ma H.;  Xu B.;  Liu J.;  Pei H.;  Li Z.
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Chemically bonded ceramics  Compressive strength  Intrinsic permeability  Magnesium potassium phosphate cement  Pore structure  
Magnesium potassium phosphate cement paste: Degree of reaction, porosity and pore structure Journal article
Cement and Concrete Research, 2014,Volume: 65,Page: 96-104
Authors:  Ma H.;  Xu B.;  Li Z.
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Chemically bonded ceramics (D)  Microstructure (B)  Pore size distribution (B)  Reaction (A)  Thermal analysis (B)  
Cementing mechanism of potassium phosphate based magnesium phosphate cement Journal article
Ceramics International, 2012,Volume: 38,Issue: 8,Page: 6281-6288
Authors:  Ding Z.;  Dong B.;  Xing F.;  Han N.;  Li Z.
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Magnesium phosphate cement  Microscopic analysis  Microstructure  Reaction products  
Potentiometric Study of the Formation of Magnesium Potassium Phosphate Hexahydrate Journal article
Journal of Materials in Civil Engineering, 2012,Volume: 24,Issue: 5,Page: 586-591
Authors:  Chau C.K.;  Qiao F.;  Li Z.
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Acid-base reaction  Cement  Intermediate  Magnesium potassium phosphate  Microstructure