This is a summary paper on the work being done at the Center for Advanced Cement-Based Materials at Northwestern University on the modification of cement-based materials with nanoparticles, specifically nanoclays, calcium carbonate nanoparticles, and nanosilica. The rheological properties of clay-modified cement-based materials are investigated to understand the influence of nanoclays on thixotropy. The influence of the method of dispersion of calcium carbonate nanoparticles on rate of hydration, setting, and compressive strength are evaluated. And an in-depth study on the mechanisms underlying the influence of nanosilica on the compressive strength gain of fly ash–cement systems is discussed. The motivation behind these studies is that wit...
This paper examines the rheology, hydration kinetics and development of the compressive strength of ...
The article describes the technological features of the manufacture of cement concrete road with car...
This paper investigates the effect of nano particles on the mechanical properties at different ages ...
This study explores the effects of different types of nanoparticles, namely nano-SiO2 (NS), nano-TiO...
The present study is aimed at investigating the combined effects of colloidal nanosilica (CNS) and f...
AbstractThis paper investigates the effect of nano particles on the mechanical properties at differe...
This study explores the effects of different types of nanoparticles, namely nano-SiO2 (NS), nano-TiO...
This study explores the effects of different types of nanoparticles, namely nano-SiO2 (NS), nano-TiO...
This study explores the effects of different types of nanoparticles, namely nano-SiO2 (NS), nano-TiO...
The paper describes modifications of cement paste mixtures using nanosilica to affect their physical...
Recently, nanomaterials (such as nanosilica) are receiving special attention because of their abilit...
AbstractThis paper investigates the effect of nano particles on the mechanical properties at differe...
This study presents the effect of nano silica (NS) and nano calcium carbonate (NC) on the compressiv...
ABSTRACT: Introduction. This research work investigates the combined influence of nano-sized silicon...
AbstractIn this paper, effect of nano-CaCO3 (NC) on properties of cement paste was studied. Experime...
This paper examines the rheology, hydration kinetics and development of the compressive strength of ...
The article describes the technological features of the manufacture of cement concrete road with car...
This paper investigates the effect of nano particles on the mechanical properties at different ages ...
This study explores the effects of different types of nanoparticles, namely nano-SiO2 (NS), nano-TiO...
The present study is aimed at investigating the combined effects of colloidal nanosilica (CNS) and f...
AbstractThis paper investigates the effect of nano particles on the mechanical properties at differe...
This study explores the effects of different types of nanoparticles, namely nano-SiO2 (NS), nano-TiO...
This study explores the effects of different types of nanoparticles, namely nano-SiO2 (NS), nano-TiO...
This study explores the effects of different types of nanoparticles, namely nano-SiO2 (NS), nano-TiO...
The paper describes modifications of cement paste mixtures using nanosilica to affect their physical...
Recently, nanomaterials (such as nanosilica) are receiving special attention because of their abilit...
AbstractThis paper investigates the effect of nano particles on the mechanical properties at differe...
This study presents the effect of nano silica (NS) and nano calcium carbonate (NC) on the compressiv...
ABSTRACT: Introduction. This research work investigates the combined influence of nano-sized silicon...
AbstractIn this paper, effect of nano-CaCO3 (NC) on properties of cement paste was studied. Experime...
This paper examines the rheology, hydration kinetics and development of the compressive strength of ...
The article describes the technological features of the manufacture of cement concrete road with car...
This paper investigates the effect of nano particles on the mechanical properties at different ages ...