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Self-Compacting Alkali-Activated Materials: Progress and Perspectives
by
Huang, Xiaoxian
, Chen, Xuling
, Sun, Zengqing
, Fan, Xiaohui
, Gan, Min
, Ji, Zhiyun
, Tang, Qingyu
in
alkali-activated materials
/ By products
/ Cement
/ Concrete
/ Construction
/ durability
/ High temperature
/ Investigations
/ Mechanical properties
/ mechanical strength
/ Nanoparticles
/ Review
/ Rice
/ self-compacting
/ Shear strength
/ Water treatment
/ workability
2021
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Self-Compacting Alkali-Activated Materials: Progress and Perspectives
by
Huang, Xiaoxian
, Chen, Xuling
, Sun, Zengqing
, Fan, Xiaohui
, Gan, Min
, Ji, Zhiyun
, Tang, Qingyu
in
alkali-activated materials
/ By products
/ Cement
/ Concrete
/ Construction
/ durability
/ High temperature
/ Investigations
/ Mechanical properties
/ mechanical strength
/ Nanoparticles
/ Review
/ Rice
/ self-compacting
/ Shear strength
/ Water treatment
/ workability
2021
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Do you wish to request the book?
Self-Compacting Alkali-Activated Materials: Progress and Perspectives
by
Huang, Xiaoxian
, Chen, Xuling
, Sun, Zengqing
, Fan, Xiaohui
, Gan, Min
, Ji, Zhiyun
, Tang, Qingyu
in
alkali-activated materials
/ By products
/ Cement
/ Concrete
/ Construction
/ durability
/ High temperature
/ Investigations
/ Mechanical properties
/ mechanical strength
/ Nanoparticles
/ Review
/ Rice
/ self-compacting
/ Shear strength
/ Water treatment
/ workability
2021
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Self-Compacting Alkali-Activated Materials: Progress and Perspectives
Journal Article
Self-Compacting Alkali-Activated Materials: Progress and Perspectives
2021
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Overview
Alkali-activated materials (AAMs) are considered to be alternative cementitious materials for civil infrastructures. Nowadays, efforts have been made in developing AAMs with self-compacting ability. The obtained self-compacting AAMs (SCAAMs) accomplish superior passing and filling properties as well as excellent mechanical and environmental advantages. This work critically revisits recent progresses in SCAAMs including mixture proportions, fresh properties, mechanical strength, microstructure, acid and sulfate resistance, high temperature behaviors, impact resistance and interface shear strength. To facilitate direct comparison and interpretation of data from different publications, mixture proportions were normalized in terms of the content of key reactive components from precursors and activators, and correlation with mechanical behaviors was made. Moreover, special attention was paid to current research challenges and perspectives to promote further investigation and field application of SCAAMs as advanced construction material.
Publisher
MDPI AG,MDPI
Subject
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