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Study on Microstructure and Rheological Properties of Cement-Chemical Admixtures-Water Dispersion System at Early Stage

English · Paperback / Softback

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This thesis studies the effects of superplasticizers, polyacrylate latexes and asphalt emulsions, which differ in molecular/particle size from nanometers to microns, on the rheological properties of fresh cement pastes (FCPs), as well as the action mechanisms involved. It systematically investigates the rheological properties and microstructure of cement-based materials, and elucidates the adsorption behaviors of polycarboxylate polymers with different functional groups and their effects on cement hydration. Moreover, it reveals how the working mechanism of naphthalene sulfonate formaldehyde (NSF) differs from that of polycarboxylate ether-based (PCE) superplasticizers. Lastly, it develops a conceptual microstructure model and two rheological equations. These findings lend theoretical support to the development of new chemical admixtures and new, higher-performance, cement-based composites.

Summary


This thesis studies the effects of superplasticizers, polyacrylate latexes and asphalt emulsions, which differ in molecular/particle size from nanometers to microns, on the rheological properties of fresh cement pastes (FCPs), as well as the action mechanisms involved. It systematically investigates the rheological properties and microstructure of cement-based materials, and elucidates the adsorption behaviors of polycarboxylate polymers with different functional groups and their effects on cement hydration. Moreover, it reveals how the working mechanism of naphthalene sulfonate formaldehyde (NSF) differs from that of polycarboxylate ether-based (PCE) superplasticizers. Lastly, it develops a conceptual microstructure model and two rheological equations. These findings lend theoretical support to the development of new chemical admixtures and new, higher-performance, cement-based composites.


Product details

Authors Yanrong Zhang
Publisher Springer, Berlin
 
Content Book
Product form Paperback / Softback
Publication date 01.01.2019
Subject Natural sciences, medicine, IT, technology > Technology > Mechanical engineering, production engineering
 
EAN 9789811351716
ISBN 978-981-1351-71-6
Pages 258
Illustrations XVIII, 258 p. 143 illus., 110 illus. in color.
Dimensions (packing) 15.6 x 23.4 x 1.6 cm
Weight (packing) 436 g
 
Series Springer Theses
Springer Theses
Subjects B, Building, Construction, engineering, Building Construction and Design, Classical and Continuum Physics, Solid Mechanics, Mechanics, Fluid mechanics, Fluid- and Aerodynamics, Fluids, Mechanics, Applied, Heating, lighting, ventilation, Engineering, Architectural, Buildings—Design and construction, Building construction & materials
 

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