One of the solutions for overheating the interior in the summer without increasing energy consumption is the integration of phase change material (PCM) into interior plasters. However, adding PCM to plasters deteriorates their properties and thus their usability. The aim of this paper is to determine how the microencapsulated PCM affects the mechanical, thermal, and fire properties of plasters and how much PCM can be added to the plaster. Two sets of samples were prepared: in set S, part of the aggregate was replaced by PCM; and in set R, only PCM was added. The bulk density, flexural strength, compressive strength, tensile strength perpendicular to the surface, thermal conductivity coefficient, specific heat capacity, melting, and solidifi...
Incorporating phase change materials (PCM) in plasters is an effective solution both for more effici...
Phase Change Materials (PCM) have many commercial applications, including in buildings to reduce coo...
The built environment increasingly includes innovative material aimed at drastically reducing energy...
One of the solutions for overheating the interior in the summer without increasing energy consumptio...
Phase Change Materials (PCM) can be used for thermal energy storage, aiming to enhance building ener...
Building materials with incorporated Phase Change Materials (PCM) are meant to increase heat storage...
International audienceThis paper presents the thermal and mechanical characterizations of a composit...
Phase change materials are a promising strategy to reduce energy consumption in a wide range of appl...
tPhase change materials are a promising strategy to reduce energy consumption in a wide range of app...
The building sector is one of the highest energy consumers representing around 30% of total energy u...
Energy storage using organic phase change materials (PCMs) has attracted significant attention in r...
This paper reviews the development of latent heat storage Phase Change Material (PCM) containing pla...
Phase change materials (PCMs) have been used in the development of building materials with higher th...
New trends in building energy efficiency include thermal storage in building elements that can be ac...
Composite materials containing phase change materials (PCMs) are obtained by mixing PCM microcapsule...
Incorporating phase change materials (PCM) in plasters is an effective solution both for more effici...
Phase Change Materials (PCM) have many commercial applications, including in buildings to reduce coo...
The built environment increasingly includes innovative material aimed at drastically reducing energy...
One of the solutions for overheating the interior in the summer without increasing energy consumptio...
Phase Change Materials (PCM) can be used for thermal energy storage, aiming to enhance building ener...
Building materials with incorporated Phase Change Materials (PCM) are meant to increase heat storage...
International audienceThis paper presents the thermal and mechanical characterizations of a composit...
Phase change materials are a promising strategy to reduce energy consumption in a wide range of appl...
tPhase change materials are a promising strategy to reduce energy consumption in a wide range of app...
The building sector is one of the highest energy consumers representing around 30% of total energy u...
Energy storage using organic phase change materials (PCMs) has attracted significant attention in r...
This paper reviews the development of latent heat storage Phase Change Material (PCM) containing pla...
Phase change materials (PCMs) have been used in the development of building materials with higher th...
New trends in building energy efficiency include thermal storage in building elements that can be ac...
Composite materials containing phase change materials (PCMs) are obtained by mixing PCM microcapsule...
Incorporating phase change materials (PCM) in plasters is an effective solution both for more effici...
Phase Change Materials (PCM) have many commercial applications, including in buildings to reduce coo...
The built environment increasingly includes innovative material aimed at drastically reducing energy...