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Volume and surface fractal dimensions of pore structure by NAD and LT-DSC in calcium sulfoaluminate cement pastes
Tang S.W.1; He Z.1; Cai X.H.1; Cai R.J.1; Zhou W.1; Li Z.J.2; Shao H.Y.2; Wu T.3; Chen E.2
2017-07-15
Source PublicationConstruction and Building Materials
ISSN09500618
Volume143Pages:395-418
Abstract

This paper presents a preliminary work to evaluate influences of water to cement ratio, hydration age and content of superplasticizer on porosity, volume and surface fractal dimensions of pore structure in 56 groups of calcium sulfoaluminate cement pastes by nitrogen adsorption/desorption (NAD) tests and low temperature differential scanning calorimetry (LT-DSC). Additionally, a fractal sponge model is developed to analyze intrinsic relations among porosity, volume and surface fractal dimensions by changing the removed number of cells, iterate steps and number of fractal cells.

KeywordAdsorption Cement Desorption Differential Scanning Calorimetry Fractal Hydration Nitrogen Pore Superplasticizer Water To Cement Ratio
DOI10.1016/j.conbuildmat.2017.03.140
URLView the original
Language英語English
WOS IDWOS:000401042400034
Scopus ID2-s2.0-85016084318
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Document TypeJournal article
CollectionUniversity of Macau
Affiliation1.Wuhan University
2.Hong Kong University of Science and Technology
3.China University of Geosciences, Wuhan
Recommended Citation
GB/T 7714
Tang S.W.,He Z.,Cai X.H.,et al. Volume and surface fractal dimensions of pore structure by NAD and LT-DSC in calcium sulfoaluminate cement pastes[J]. Construction and Building Materials, 2017, 143, 395-418.
APA Tang S.W.., He Z.., Cai X.H.., Cai R.J.., Zhou W.., Li Z.J.., Shao H.Y.., Wu T.., & Chen E. (2017). Volume and surface fractal dimensions of pore structure by NAD and LT-DSC in calcium sulfoaluminate cement pastes. Construction and Building Materials, 143, 395-418.
MLA Tang S.W.,et al."Volume and surface fractal dimensions of pore structure by NAD and LT-DSC in calcium sulfoaluminate cement pastes".Construction and Building Materials 143(2017):395-418.
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