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Fiber-reinforced cementitious composites incorporating glass cenospheres – Mechanical properties and microstructure Journal article
Construction and Building Materials, 2017,Volume: 154,Page: 529-538
Authors:  Hanif A.;  Parthasarathy P.;  Lu Z.;  Sun M.;  Li Z.
Favorite |  | TC[WOS]:24 TC[Scopus]:29 | Submit date:2019/04/08
Cement  Composites  Flexural Behavior  Glass Cenosphere  Mechanical Properties  Microstructure  
Statistical nanoindentation technique in application to hardened cement pastes: Influences of material microstructure and analysis method Journal article
Construction and Building Materials, 2016,Volume: 113,Page: 306-316
Authors:  Hu C.;  Gao Y.;  Zhang Y.;  Li Z.
Favorite |  | TC[WOS]:27 TC[Scopus]:28 | Submit date:2019/04/08
Composition  Hardened cement paste  Mechanical properties  Micromechanics  Microstructure  Statistical analysis  
Micromechanical investigation of magnesium oxychloride cement paste Journal article
Construction and Building Materials, 2016,Volume: 105,Page: 496-502
Authors:  Hu C.;  Xu B.;  Ma H.;  Chen B.;  Li Z.
Favorite |  | TC[WOS]:28 TC[Scopus]:31 | Submit date:2019/04/08
Magnesium oxychloride (MOC) cement  Micromechanical properties  Microstructure  Multiscale modeling  
Two-scale modeling of the capillary network in hydrated cement paste Journal article
Construction and Building Materials, 2014,Volume: 64,Page: 11-21
Authors:  Ma H.;  Hou D.;  Lu Y.;  Li Z.
Favorite |  | TC[WOS]:44 TC[Scopus]:45 | Submit date:2019/04/08
Capillary pore  Cement paste  Degree of hydration  Microstructure  Outer C-S-H layer  Status-oriented model  
Research on the microstructure formation of polyacrylate latex modified mortars Journal article
Construction and Building Materials, 2013,Volume: 47,Page: 1381-1394
Authors:  Tian Y.;  Jin X.-Y.;  Jin N.-G.;  Zhao R.;  Li Z.-J.;  Ma H.-Y.
Favorite |  | TC[WOS]:36 TC[Scopus]:39 | Submit date:2019/04/08
Mechanism of polymer modification  Microstructure  Polymer latex  Polymer modified mortar  Surfactant  
Study on hydration process of early-age concrete using embedded active acoustic and non-contact complex resistivity methods Journal article
Construction and Building Materials, 2013,Volume: 46,Page: 183-192
Authors:  Lu Y.;  Zhang J.;  Li Z.
Favorite |  | TC[WOS]:27 TC[Scopus]:30 | Submit date:2019/04/08
Acoustic  Concrete  Frequency  Hydration  Microstructure  Resistivity  
Prediction of standard compressive strength of cement by the electrical resistivity measurement Journal article
Construction and Building Materials, 2012,Volume: 31,Page: 341-346
Authors:  Wei X.;  Xiao L.;  Li Z.
Favorite |  | TC[WOS]:56 TC[Scopus]:72 | Submit date:2019/04/08
Cement  Hydration  Microstructure  Resistivity  Standard compressive strength  
Microstructure of magnesium potassium phosphate cement Journal article
Construction and Building Materials, 2011,Volume: 25,Issue: 6,Page: 2911-2917
Authors:  Chau C.K.;  Qiao F.;  Li Z.
Favorite |  | TC[WOS]:109 TC[Scopus]:125 | Submit date:2019/04/08
Acid-base reaction  Cement  Magnesium potassium phosphate  Microstructure  
Effects of lignin cellulose and expansive agent on microstructure and macro-property of polymer-modified mortar containing fly ash Journal article
Construction and Building Materials, 2009,Volume: 23,Issue: 6,Page: 2467-2471
Authors:  Liuquan Q.;  Dongxu L.;  Zongjin L.
Favorite |  | TC[WOS]:4 TC[Scopus]:6 | Submit date:2019/04/08
Expansive agent  Lignin cellulose  Macro-property  Microstructure  Polymer-modified mortar  Variance analysis  
Impact properties of geopolymer based extrudates incorporated with fly ash and PVA short fiber Journal article
Construction and Building Materials, 2008,Volume: 22,Issue: 3,Page: 370-383
Authors:  Yunsheng Z.;  Wei S.;  Zongjin L.;  Xiangming Z.;  Eddie;  Chungkong C.
Favorite |  | TC[WOS]:128 TC[Scopus]:152 | Submit date:2019/04/08
Durability  Extrusion technique  Fly ash  Geopolymeric cement  Impact properties  Microstructure  PVA short fiber  Rheological behavior