The development of building materials with improved characteristics and their application for increasing structure durability and sustainability is one of the goals in construction sector. The main objective of this paper is to evaluate the influence of nano-silica replacement of cement (2% or 5%) and aggregate type (quartz, barite or its combination 50:50 by volume) on the properties of ultra high performance concrete (UHPC). UHPC with nano-silica and combination of barite and quartz aggregate is composite which has finer pore-size distribution, improvement in compressive and flexural strength and in radiation protection characteristics, with potential usage as building material for hospitals and nuclear facilities. (C) 2016 Elsevier Ltd. ...
This paper seeks to optimize the mechanical and durability properties of ultra-high performance conc...
Concrete is the most widely used building material all around the world which has been undergoing ma...
The sustainable utilization of demolition wastes in the production of building materials is regarded...
The development of building materials with improved characteristics and their application for increa...
The objective of this investigation is to study the effect of nano-silica addition on the fresh and ...
Ultra-high performance concrete (UHPC) is a modern composite material with extremely good mechanical...
In the recent decades, traditional concrete poses a great challenge to the modernization of the cons...
In this paper deals the smart construction with nanoconcrete has the potential to make faster, safer...
: Advanced properties of ultrahigh performance concrete (UHPC), such as high compressive strength, h...
The impacts of nano-silica addition, steel micro-reinforcement, and aggregate type on the mechanical...
Ultra-high performance concrete (UHPC), a kind of composite material characterized by ultra high str...
This paper presents the effect of nano-silica on the hydration and microstructure development of Ult...
Radiation shielding linear attenuation coefficients μ (cm-1) is highly depends on the density of th...
Nano technology in civil field has proved to make the construction faster, cheaper, safer and more v...
Several review studies have been performed on nano-silica-modified concrete, but this study adopted ...
This paper seeks to optimize the mechanical and durability properties of ultra-high performance conc...
Concrete is the most widely used building material all around the world which has been undergoing ma...
The sustainable utilization of demolition wastes in the production of building materials is regarded...
The development of building materials with improved characteristics and their application for increa...
The objective of this investigation is to study the effect of nano-silica addition on the fresh and ...
Ultra-high performance concrete (UHPC) is a modern composite material with extremely good mechanical...
In the recent decades, traditional concrete poses a great challenge to the modernization of the cons...
In this paper deals the smart construction with nanoconcrete has the potential to make faster, safer...
: Advanced properties of ultrahigh performance concrete (UHPC), such as high compressive strength, h...
The impacts of nano-silica addition, steel micro-reinforcement, and aggregate type on the mechanical...
Ultra-high performance concrete (UHPC), a kind of composite material characterized by ultra high str...
This paper presents the effect of nano-silica on the hydration and microstructure development of Ult...
Radiation shielding linear attenuation coefficients μ (cm-1) is highly depends on the density of th...
Nano technology in civil field has proved to make the construction faster, cheaper, safer and more v...
Several review studies have been performed on nano-silica-modified concrete, but this study adopted ...
This paper seeks to optimize the mechanical and durability properties of ultra-high performance conc...
Concrete is the most widely used building material all around the world which has been undergoing ma...
The sustainable utilization of demolition wastes in the production of building materials is regarded...