Open Journal of Civil Engineering

Open Journal of Civil Engineering

ISSN Print: 2164-3164
ISSN Online: 2164-3172
www.scirp.org/journal/ojce
E-mail: ojce@scirp.org
"Using Colloidal Nano Silica to Enhance the Performance of Cementitious Mortars"
written by Achraf Ayad, Aly Said,
published by Open Journal of Civil Engineering, Vol.8 No.1, 2018
has been cited by the following article(s):
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[1] Combined Effect of Coal Fly Ash (CFA) and Nanosilica (nS) on the Strength Parameters and Microstructural Properties of Eco-Friendly Concrete
Energies, 2023
[2] Influence of Water with Oxygen and Ozone Micro-Nano Bubbles on Concrete Physical Properties
Frańczak, D Barnat-Hunek, K Materak… - Materials, 2022
[3] Optimizing the Use of Supplementary Cementitious Materials by Incorporating Small Dosages of Colloidal Nano-Silica
2022
[4] An approach to effectively improve the interfacial bonding of paste–limestone by incorporating different nanomaterials
Composites Part B: Engineering, 2022
[5] Experimental study on mechanical properties and durability of grafted nano-SiO2 modified rice straw fiber reinforced concrete
Construction and Building Materials, 2022
[6] Effect of nano-silica on mechanical, microstructural and durability properties of cement-based materials: A review
Journal of Building Engineering, 2022
[7] Effects of nano silica on the properties of cement-based materials: A comprehensive review
2021
[8] Alkali-Silica Reactivity and Strength of Mortars with Expanded Slate, Expanded Glass or Perlite
2021
[9] Effect of Nano-Silica on the Properties of Concrete and Its Interaction with Slag
2020
[10] STRENGTH DEVELOPMENT CHARACTERISTICS AND MICROSTRUCTURAL PROPERTIES OF HIGH STRENGTH CONCRETE HAVING OPTIMAL NANOSILICA …
2020
[11] ENHANCING THE PERFORMANCE OF CONCRETE BY USING NANO SILICA
2019
[12] Enhance the Performance of Polymer Concrete Using Nano Materials
International Journal of Applied Engineering Research, 2019
[13] Influence of Nanosilica on Mechanical Properties, Sorptivity, and Microstructure of Lightweight Concrete
2019
[14] Calcium Hydroxide, Magnesium Hydroxide, Silicon Dioxide Nanoparticles and Their Combinations as Consolidants for Traditional Substrates
Arredondo
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