This study investigates effects of nano silica on short-term drying shrinkage of mortars with palm oil fuel ash (POFA) during the first 28 days of curing. Furthermore, moisture content, hydration volume, and permeability were measured in order to study underlying mechanisms. It was revealed that addition of nano silica to samples with 30% POFA as cement replacement lowered the drying shrinkage by 7.5%. Also, it increased the strength development rate by 15% from 7 to 28 days of curing. Nano silica advantageously affected the shrinkage by refining the microstructure, increasing the hydration volume and lowering free water in cement matrix
Nano-engineering of concrete is a research area gaining significant interest at present. It involves...
The aim of this work was to study the effect of nano silica on the physico-mechanical properties of ...
In this study, the effect of nano silica (NS) on the properties of cement pastes incorporated with o...
Abstract: Palm oil fuel ash (POFA) is an abundant agro-waste material obtained from palm oil process...
The present study focused on enhancing properties of unground palm oil fuel ash (UPOFA) mortars by i...
This study delineates the effects of nano silica on self-compacting concrete (SCC) with high volume ...
Recently, nano-sized additives and supplementary cementing materials (SCM) have shown to improve the...
Mortar is suitable for utilizing in compressed parts such as columns and arches due to its considera...
An experimental study was conducted with objectives to find out the properties of nano sized Palm Oi...
This paper presents the effect of nano silica (NS) on the compressive strength of mortars and concre...
Compared with nanosilica collected in a gaseous state, nanosilica sol has great economic value and a...
The current price of silica fume has a more significant advantage than cement. Application in shotcr...
Integration of cement-based products with nanosized-palm oil fuel ash as supplementary cementing mat...
Cement replacement using pozzolanic materials in nano-sized particles could improve the mechanical a...
Incorporating superabsorbent polymer (SAP), which has the abilities of absorption and desorption in ...
Nano-engineering of concrete is a research area gaining significant interest at present. It involves...
The aim of this work was to study the effect of nano silica on the physico-mechanical properties of ...
In this study, the effect of nano silica (NS) on the properties of cement pastes incorporated with o...
Abstract: Palm oil fuel ash (POFA) is an abundant agro-waste material obtained from palm oil process...
The present study focused on enhancing properties of unground palm oil fuel ash (UPOFA) mortars by i...
This study delineates the effects of nano silica on self-compacting concrete (SCC) with high volume ...
Recently, nano-sized additives and supplementary cementing materials (SCM) have shown to improve the...
Mortar is suitable for utilizing in compressed parts such as columns and arches due to its considera...
An experimental study was conducted with objectives to find out the properties of nano sized Palm Oi...
This paper presents the effect of nano silica (NS) on the compressive strength of mortars and concre...
Compared with nanosilica collected in a gaseous state, nanosilica sol has great economic value and a...
The current price of silica fume has a more significant advantage than cement. Application in shotcr...
Integration of cement-based products with nanosized-palm oil fuel ash as supplementary cementing mat...
Cement replacement using pozzolanic materials in nano-sized particles could improve the mechanical a...
Incorporating superabsorbent polymer (SAP), which has the abilities of absorption and desorption in ...
Nano-engineering of concrete is a research area gaining significant interest at present. It involves...
The aim of this work was to study the effect of nano silica on the physico-mechanical properties of ...
In this study, the effect of nano silica (NS) on the properties of cement pastes incorporated with o...