The high increase in the cost of cement has led to a reduction in concrete production in most developing and under-developed countries. Therefore, the need for a sustainable and cost-effective substitute for cement is necessary. This research focused on the application of dehydroxylated kaolinitic clay in the production of self-compacting concrete for pavement construction. The elemental and oxide composition of the cementitious material (cement and metakaolin) was assessed using atomic absorption spectrometry and a scanning electron microscope was used to determine the particle geometry. Six mixtures of SCC with 0%, 5%, 10%, 15%, 20% and 25% metakaolin replacement were incorporated into this concrete mix. The passing ability,seg...
This study deals with producing high strength self compacting concrete (HSSCC) using locally availa...
Fast progress of present-day concrete practice brings development of new technologies applying new t...
Self compacting concrete is highly flow able yet stable concrete that can spread readily into place ...
This paper investigates the performance of concrete pavement containing kaolin clay with their engin...
This study carried out an experimental design investigating the reaction of mineral admixtures on f...
High strength self-compacting concrete (HSSCC) is one of the concrete innovations that have a high q...
Since the infrastructure is developing tremendously day by day, the use of cement is highly used. In...
The viscosity is the main property of self- compacted concrete (SCC) and using of pozzolan material ...
This study investigated the fresh and hardened properties of Self-Compacting Concrete (SCC) with dif...
Self-Compacting Concrete (SCC) is a fresh concrete which is highly flowable, and it can flow readily...
In this study, commercially available high reactivity Czech metakaolin and calcined impure local k...
The use of cement supplementary materials in structural concrete is widely accepted by the construct...
This research developed a mathematical model and optimization of materials for the development of me...
Metakaolin is considered as one of most promising microfiller with pozzolanic properties in concrete...
This experimental study assessed the strength properties of some selected Portland limestone cement...
This study deals with producing high strength self compacting concrete (HSSCC) using locally availa...
Fast progress of present-day concrete practice brings development of new technologies applying new t...
Self compacting concrete is highly flow able yet stable concrete that can spread readily into place ...
This paper investigates the performance of concrete pavement containing kaolin clay with their engin...
This study carried out an experimental design investigating the reaction of mineral admixtures on f...
High strength self-compacting concrete (HSSCC) is one of the concrete innovations that have a high q...
Since the infrastructure is developing tremendously day by day, the use of cement is highly used. In...
The viscosity is the main property of self- compacted concrete (SCC) and using of pozzolan material ...
This study investigated the fresh and hardened properties of Self-Compacting Concrete (SCC) with dif...
Self-Compacting Concrete (SCC) is a fresh concrete which is highly flowable, and it can flow readily...
In this study, commercially available high reactivity Czech metakaolin and calcined impure local k...
The use of cement supplementary materials in structural concrete is widely accepted by the construct...
This research developed a mathematical model and optimization of materials for the development of me...
Metakaolin is considered as one of most promising microfiller with pozzolanic properties in concrete...
This experimental study assessed the strength properties of some selected Portland limestone cement...
This study deals with producing high strength self compacting concrete (HSSCC) using locally availa...
Fast progress of present-day concrete practice brings development of new technologies applying new t...
Self compacting concrete is highly flow able yet stable concrete that can spread readily into place ...