Microcapsules consisting of paraffin wax cores with a melting point of approximately 42 °C and a melamine-formaldehyde resin shell were synthesized using in situ polymerization. These microcapsules have a uniform distribution with a spherical shape and an average diameter of approximately 15 μm. The thickness of the shell was approximately 1.5 μm. Shape-stabilized phase change materials (PCM) based on high-density polyethylene (HDPE) mixed with micro-encapsulated paraffin wax were prepared and investigated for application in thermal energy storage. The distribution of the capsules within the HDPE matrix was uniform without any tendency toward agglomeration. The microencapsulated paraffin wax acts as a high-latent-heat material, whereas the ...
Reliable data on the thermophysical properties of commercial Phase Change Materials (PCMs) is fundam...
Microencapsulated phase change material (microPCM) has been widely used as a thermal energy storage,...
Reliable data on the thermophysical properties of commercial Phase Change Materials (PCMs) is fundam...
A modified in situ polymerization microencapsulation procedure for the preparation of microcapsules ...
The present work is specifically focused on the form stability of paraffin as a phase change materia...
Phase change material (PCM) composites based on low-density polyethylene (LDPE) with paraffin waxes ...
To prepare the phase change materials for efficient low-temperature latent heat storage, microcapsul...
Shape stabilised phase change materials (SSPCMs) based on a high density poly(ethylene)(hv-HDPE) wit...
This work focuses on the study of heat transfer mechanisms in composites materials which may be used...
Microencapsulated paraffin wax with polyaniline shells is synthesised as thermal energy storage mate...
Microencapsulated paraffin wax with polyaniline shells is synthesised as thermal energy storage mate...
In this study, two different types of Phase Change Materials (PCM) suitable for Thermal Energy Stora...
Shape stabilised phase change materials (SSPCMs) based on a high density poly(ethylene)(hv-HDPE) wit...
Shape stabilised phase change materials (SSPCMs) based on high density polyethylene (HDPE) with high...
Microencapsulation of paraffin wax with Polyaniline (PAn) Shell was synthesized as thermal energy st...
Reliable data on the thermophysical properties of commercial Phase Change Materials (PCMs) is fundam...
Microencapsulated phase change material (microPCM) has been widely used as a thermal energy storage,...
Reliable data on the thermophysical properties of commercial Phase Change Materials (PCMs) is fundam...
A modified in situ polymerization microencapsulation procedure for the preparation of microcapsules ...
The present work is specifically focused on the form stability of paraffin as a phase change materia...
Phase change material (PCM) composites based on low-density polyethylene (LDPE) with paraffin waxes ...
To prepare the phase change materials for efficient low-temperature latent heat storage, microcapsul...
Shape stabilised phase change materials (SSPCMs) based on a high density poly(ethylene)(hv-HDPE) wit...
This work focuses on the study of heat transfer mechanisms in composites materials which may be used...
Microencapsulated paraffin wax with polyaniline shells is synthesised as thermal energy storage mate...
Microencapsulated paraffin wax with polyaniline shells is synthesised as thermal energy storage mate...
In this study, two different types of Phase Change Materials (PCM) suitable for Thermal Energy Stora...
Shape stabilised phase change materials (SSPCMs) based on a high density poly(ethylene)(hv-HDPE) wit...
Shape stabilised phase change materials (SSPCMs) based on high density polyethylene (HDPE) with high...
Microencapsulation of paraffin wax with Polyaniline (PAn) Shell was synthesized as thermal energy st...
Reliable data on the thermophysical properties of commercial Phase Change Materials (PCMs) is fundam...
Microencapsulated phase change material (microPCM) has been widely used as a thermal energy storage,...
Reliable data on the thermophysical properties of commercial Phase Change Materials (PCMs) is fundam...