This paper presents an analysis of research results for silica aerogel cement composites over the past twenty years. Recently, two trends in the development of these composites have been noted, towards structural applications and towards ultralight composites for coatings and renders. Ongoing research shows that important aspects of cementitious composites with good mechanical performance are the proper selection of aggregates and improved adhesion at the silica aerogel–cement binder interface, which will guarantee high compressive strength with the lowest possible thermal conductivity. The best physicomechanical performance of aerogel cement composites with low thermal conductivity below 0.03 W/(m·K) was obtained when cenospheres and aerog...
This article aims at the development of durable cement-based lightweight aggregate composites, with ...
Silica aerogels are gaining significant importance and have attracted considerable interest due to t...
The Institute for Structural Concrete (ISC) at the University of Duisburg-Essen developed in coopera...
In pursuit of producing an environment-friendly, lightweight, and thermally insulating cement-based ...
Thermal insulating composites help to reduce the total power consumption in a building by creating a...
Current massive wall-building materials can be characterized by having either low thermal conductivi...
AbstractCurrent massive wall-building materials can be characterized by having either low thermal co...
Cities or towns are having a higher temperature compared to the rural area and it is known as urban ...
Silica aerogel possesses an ultra-low thermal conductivity by virtue of its nano-structure. Owing to...
Lightweight concretes with thermal insulation properties and good compressive strength can be produc...
In this research, an attempt was made to investigate effects of expanded perlite aggregate grain siz...
Thermal conductivity is an important material property in the energy design process of the buildings...
Improving the thermal insulating performance of porous building materials is of great practical sign...
This paper presents the use of hydrophobic silica aerogel (HSA) and hydrophilic fly ash cenosphere (...
Silica Aerogel composites are ultra-low density, highly porous foam-like materials that exhibit exce...
This article aims at the development of durable cement-based lightweight aggregate composites, with ...
Silica aerogels are gaining significant importance and have attracted considerable interest due to t...
The Institute for Structural Concrete (ISC) at the University of Duisburg-Essen developed in coopera...
In pursuit of producing an environment-friendly, lightweight, and thermally insulating cement-based ...
Thermal insulating composites help to reduce the total power consumption in a building by creating a...
Current massive wall-building materials can be characterized by having either low thermal conductivi...
AbstractCurrent massive wall-building materials can be characterized by having either low thermal co...
Cities or towns are having a higher temperature compared to the rural area and it is known as urban ...
Silica aerogel possesses an ultra-low thermal conductivity by virtue of its nano-structure. Owing to...
Lightweight concretes with thermal insulation properties and good compressive strength can be produc...
In this research, an attempt was made to investigate effects of expanded perlite aggregate grain siz...
Thermal conductivity is an important material property in the energy design process of the buildings...
Improving the thermal insulating performance of porous building materials is of great practical sign...
This paper presents the use of hydrophobic silica aerogel (HSA) and hydrophilic fly ash cenosphere (...
Silica Aerogel composites are ultra-low density, highly porous foam-like materials that exhibit exce...
This article aims at the development of durable cement-based lightweight aggregate composites, with ...
Silica aerogels are gaining significant importance and have attracted considerable interest due to t...
The Institute for Structural Concrete (ISC) at the University of Duisburg-Essen developed in coopera...