The present paper introduces a new rapid, relevant and reliable (R-3) test to predict the pozzolanic activity of calcined clays with kaolinite contents ranging from 0 to 95%. The test is based on the correlation between the chemical reactivity of calcined clays in a simplified system and the compressive strength of blends in standard mortar. The simplified system consists of calcined clay portlandite and limestone pastes with sulfate and alkali levels adjusted to reproduce the reaction environment of hydrating blended cements. The pastes were hydrated for 6 days at 20 degrees C or for 1 day at 40 degrees C. The chemical reactivity of the calcined clay can be obtained first by measurement of the heat release during reaction using isothermal ...
The reactivity of supplementary cementitious materials (SCMs) is a key issue in the sustainability o...
With 3-5 billion tons cement-produced every year, the cement industry is today the third largest emi...
Gibbsite in tropical kaolinite material greatly influences its reactivity as pozzolanic material. Th...
Although supplementary cementitious materials (SCMs) are now commonly accepted and widely used, cons...
Eight reference clay samples, 4 kaolinitic, 3 smectitic and 1 illitic clay, were purified and therma...
<p>Current research aims to investigate the influence of calcination temperature on the pozzolanic a...
The hydration of cement pastes with addition of a kaolinite rich clay (Clay A) and a calcareous smec...
RILEM TC 267 TRM– “Tests for Reactivity of Supplementary Cementitious Materials” recommends the Rapi...
International audienceRILEM TC 267 TRM– “Tests for Reactivity of Supplementary Cementitious Material...
Portland cement-based materials such as concrete are nowadays the most widely used construction mate...
Calcined clays are gaining increasing interest as future supplementary cementitious materials for th...
Seven reference clays, 4 kaolinitic and 3 smectitic clays, were purified and thermally treated in or...
The influence of thermal activation temperature in the pozzolanic reactivity of low grade kaolinitic...
The use of calcined clays as partial replacement of cement is encouraged since it promotes the reduc...
This paper investigates the decomposition of three clayey structures (kaolinite, illite and montmori...
The reactivity of supplementary cementitious materials (SCMs) is a key issue in the sustainability o...
With 3-5 billion tons cement-produced every year, the cement industry is today the third largest emi...
Gibbsite in tropical kaolinite material greatly influences its reactivity as pozzolanic material. Th...
Although supplementary cementitious materials (SCMs) are now commonly accepted and widely used, cons...
Eight reference clay samples, 4 kaolinitic, 3 smectitic and 1 illitic clay, were purified and therma...
<p>Current research aims to investigate the influence of calcination temperature on the pozzolanic a...
The hydration of cement pastes with addition of a kaolinite rich clay (Clay A) and a calcareous smec...
RILEM TC 267 TRM– “Tests for Reactivity of Supplementary Cementitious Materials” recommends the Rapi...
International audienceRILEM TC 267 TRM– “Tests for Reactivity of Supplementary Cementitious Material...
Portland cement-based materials such as concrete are nowadays the most widely used construction mate...
Calcined clays are gaining increasing interest as future supplementary cementitious materials for th...
Seven reference clays, 4 kaolinitic and 3 smectitic clays, were purified and thermally treated in or...
The influence of thermal activation temperature in the pozzolanic reactivity of low grade kaolinitic...
The use of calcined clays as partial replacement of cement is encouraged since it promotes the reduc...
This paper investigates the decomposition of three clayey structures (kaolinite, illite and montmori...
The reactivity of supplementary cementitious materials (SCMs) is a key issue in the sustainability o...
With 3-5 billion tons cement-produced every year, the cement industry is today the third largest emi...
Gibbsite in tropical kaolinite material greatly influences its reactivity as pozzolanic material. Th...