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Cracking Control on Early-Age Concrete Through Internal Curing

BuchKartoniert, Paperback
343 Seiten
Englisch
Springererschienen am12.07.20242023
This monograph is written based on the author's research on the assessment, control, and repair of cracking of early-age concrete in the recent decade. and explores the variation law and mechanism of early-age cracking resistance of internally cured concrete under continuous restrained condition or uniaxial restrained condition.mehr
Verfügbare Formate
BuchGebunden
EUR171,19
BuchKartoniert, Paperback
EUR171,19
E-BookPDF1 - PDF WatermarkE-Book
EUR160,49

Produkt

KlappentextThis monograph is written based on the author's research on the assessment, control, and repair of cracking of early-age concrete in the recent decade. and explores the variation law and mechanism of early-age cracking resistance of internally cured concrete under continuous restrained condition or uniaxial restrained condition.
Details
ISBN/GTIN978-981-19-8400-6
ProduktartBuch
EinbandartKartoniert, Paperback
Verlag
Erscheinungsjahr2024
Erscheinungsdatum12.07.2024
Auflage2023
Seiten343 Seiten
SpracheEnglisch
Gewicht540 g
IllustrationenIX, 343 p. 228 illus., 193 illus. in color.
Artikel-Nr.56495696

Inhalt/Kritik

Inhaltsverzeichnis
Introduction.- Internal relative humidity of early-age internally cured concrete.- Autogenous shrinkage of early-age internally cured concrete.- Tensile creep of early-age internally cured concrete with SAPs.mehr

Autor

Dejian Shen is a professor at the College of Civil and Transportation Engineering, Hohai University. He has published 1 monograph, more than 160 papers including over 90 SCI-indexed papers (5 ESI highly cited papers and 1 ESI hot paper), and more than 90 patents.

His research interests include:

- Assessment, control, and repair of early-age cracks in reinforced concrete structures

- Seismic performance and design method for prefabricated construction

- FRP technology for repairing damaged and corroded reinforced concrete structures

- Quantum chemical simulation, molecular dynamics simulation and multiscale simulation for concrete.