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Magnesia phosphate cement composite bipolar plates for passive type direct methanol fuel cells Journal article
Energy, 2019,Page: 80-87
Authors:  Hao W.;  Ma H.;  Sun G.;  Li Z.
Favorite | View/Download:19/0 | TC[WOS]:1 TC[Scopus]:2 | Submit date:2019/04/08
Bipolar plates (BPs)  Direct methanol fuel cells (DMFCs)  Magnesia phosphate cement (MPC) composite  Passive type  
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
Favorite | View/Download:14/0 | TC[WOS]:45 TC[Scopus]:62 | Submit date:2018/10/30
Magnesium potassium phosphate cement  Fly ash  Compressive strength  Micro-characteristics  Reactivity  
Remarkable mechanical enhancement achieved by interfacial strengthening of organic/inorganic/fiber composites Journal article
CONSTRUCTION AND BUILDING MATERIALS, 2017,Volume: 142,Page: 7-10
Authors:  Sun, Guoxing;  Liang, Rui;  Lu, Zeyu;  Shi, Tiansheng;  Geng, Ping;  Li, Zongjin
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Polymer  Fiber  Interpenetration network  Interfacial strengthening  Flexural strength  
Steel corrosion in magnesia-phosphate cement concrete beams Journal article
Magazine of Concrete Research, 2017,Volume: 69,Issue: 1,Page: 35-45
Authors:  Zhang J.;  Ma H.;  Pei H.;  Li Z.
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Beams & Girders  Durability-related properties  Reinforcement  
Influence of cenospheres on properties of magnesium oxychloride cement-based composites Journal article
Materials and Structures/Materiaux et Constructions, 2016,Volume: 49,Issue: 4,Page: 1319-1326
Authors:  Xu B.;  Ma H.;  Hu C.;  Li Z.
Favorite | View/Download:7/0 | TC[WOS]:22 TC[Scopus]:41 | Submit date:2019/04/08
Cenospheres  Compressive strength  Magnesium oxychloride cement (MOC)-based composite  Thermal conductivity  Water resistance property  
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)  
Modeling magnesia-phosphate cement paste at the micro-scale Journal article
Materials Letters, 2014,Volume: 125,Page: 15-18
Authors:  Ma H.;  Xu B.;  Lu Y.;  Li Z.
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Ceramics  Magnesia-phosphate cement  Microstructure  Pore size distribution  Simulation and modeling  
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.
Favorite | View/Download:7/0 | TC[WOS]:83 TC[Scopus]:105 | Submit date:2019/04/08
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.
Favorite | View/Download:4/0 | TC[WOS]:80 TC[Scopus]:108 | Submit date:2019/04/08
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.
Favorite | View/Download:7/0 | TC[WOS]:77 TC[Scopus]:109 | Submit date:2019/04/08
Magnesium phosphate cement  Microscopic analysis  Microstructure  Reaction products