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Cement Paste-Aggregate Interfacial Zone in Concrete
Concrete may be modelled to consist of cement paste, pore water and inserts. The inserts may be aggregate particles or fillers, fly ash particles or other pozzolanic materials, reinforcements, and fibres of steel, glass, or natural and synthetic organic materials. As such, different types of interfaces between the inserts and the cement paste may exist. The thesis deals with a study about the cement paste-aggregate interfaces in concrete. It is aimed at examining the microstructural characteristics of these interfacial regions around aggregate particles and their effects on the compressive strength, the adhesive strength of pastes to coarse aggregate particles, the water absorption capacity, and the diffusivity of ions and gases into concretes prepared with and without mineral additions.
Cement Paste-Aggregate Interfacial Zone in Concrete
Concrete may be modelled to consist of cement paste, pore water and inserts. The inserts may be aggregate particles or fillers, fly ash particles or other pozzolanic materials, reinforcements, and fibres of steel, glass, or natural and synthetic organic materials. As such, different types of interfaces between the inserts and the cement paste may exist. The thesis deals with a study about the cement paste-aggregate interfaces in concrete. It is aimed at examining the microstructural characteristics of these interfacial regions around aggregate particles and their effects on the compressive strength, the adhesive strength of pastes to coarse aggregate particles, the water absorption capacity, and the diffusivity of ions and gases into concretes prepared with and without mineral additions.
Cement Paste-Aggregate Interfacial Zone in Concrete
J. A. Larbi (author)
1991
142 pages
Report
No indication
English
Construction Materials, Components, & Equipment , Construction Equipment, Materials, & Supplies , Concretes , Aggregates , Interfaces , Concrete durability , Additives , Theses , Porosity , Portland cements , Slags , Curing , Bonding , Cement aggregate reactions , Water cement ratio , Interfacial tension , Admixtures , Mechanical properties , Permeability , Adhesion , Microstructure , Foreign technology
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