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  1. Research Outputs

Influence of fine aggregates on the microstructure, porosity and chemico-mechanical stability of inorganic polymer concretes

Academic Article
Publication Date:
2015
Short description:
Influence of fine aggregates on the microstructure, porosity and chemico-mechanical stability of inorganic polymer concretes / Kamseu, Elie; Ponzoni, Chiara; Tippayasam, Chayanee; Taurino, Rosa; Chaysuwan, Duangrudee; Bignozzi, Maria Chiara; Barbieri, Luisa; Leonelli, Cristina. - In: CONSTRUCTION AND BUILDING MATERIALS. - ISSN 0950-0618. - STAMPA. - 96:(2015), pp. 473-483. [10.1016/j.conbuildmat.2015.08.090]
abstract:
This work investigates the effects of the structure, the bulk chemical composition and amount of the aluminosilicate fines on the strength development, pore refinement, water permeability, moisture control capacity and the microstructure of inorganic polymer concretes (IPC). The amorphous fines, one from pumice and another from recycled glass, presented sponge-like microstructure with tortuous pore network that maintained the presence of fine capillary pores while semi-crystalline feldspar sludge, the third type of fine aggregates used for this study, showed more dense and compact microstructure that explain the higher strength enhancement. Both amorphous and semicrystalline fines contributed to decrease the porosity, improve the strength and microstructure. However, based on the moisture control capacity and the durability indicators, the fine aggregate derived from semicrystalline feldspar was found to be more appropriate and efficient for the development of IPC at short time scale of curing. Pumice fine aggregate was found to be effective only with a long term curing.
Iris type:
Articolo su rivista
Keywords:
Aluminosilicate fines, Inorganic polymer concretes, MicrostructureDurability, Strength, Porosity
List of contributors:
Kamseu, Elie; Ponzoni, Chiara; Tippayasam, Chayanee; Taurino, Rosa; Chaysuwan, Duangrudee; Bignozzi, Maria Chiara; Barbieri, Luisa; Leonelli, Cristina
Authors of the University:
BARBIERI Luisa
LEONELLI Cristina
Handle:
https://iris.unimore.it/handle/11380/1071195
Published in:
CONSTRUCTION AND BUILDING MATERIALS
Journal
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URL

http://www.sciencedirect.com/science/article/pii/S0950061815303032
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