Concrete is identified in the literature as a suitable material for thermal energy storage applications, with even innovative application potentials such as storage media in concentrating solar power plants. To ensure a suitable heat transfer among concrete components, the binder material of concrete (cement paste) require further research and understanding to this aim. In particular, the thermal stability of cement paste under temperature cycled conditions arises as a research gap. In this study, ordinary Portland and calcium aluminate cement types were selected using a low water-cement ratio. Thermo-mechanical properties were studied before and after 1, 10, and 25 or 50 thermal cycles at 200 °C, 400 °C, 600 °C, and 800 °C. Although ordina...
This study is aim at investigating the thermal stability of concrete paste blended with ordinary Por...
One commonly used cement type for thermal applications is CAC containing 38–40 % alumina, although t...
This study aims to investigate the effect of thermally treated temperatures up to 800 °C on the phys...
With the ever-expanding presence of solar energy, the design of cost-efficient heat energy storage s...
With the ever-expanding presence of solar energy, the design of cost-efficient heat energy storage s...
Future perspectives to improve the energy efficiency of concentrating solar power (CSP) plants are f...
This paper studies the thermal effects on the mineralogical properties as well as the microstructure...
This paper reports the microstructural changes on a 2 year-old cement paste, unprotected from contac...
In this research, structural-functional integrated cement-based materials were prepared by employing...
In this research, structural-functional integrated cement-based materials were prepared by employing...
Concrete has the potential to become a solution for thermal energy storage (TES) integrated in conce...
Thermal conductivity plays an important role in energy storage when the materials are charging and d...
This paper presents a comparative study on the effects of high temperature (~500°C) on carbonated ca...
Basic physical and mechanical properties of several cement composites are determined as functions of...
This study investigates the effect of thermal cycles on the fracture properties of the cement-based ...
This study is aim at investigating the thermal stability of concrete paste blended with ordinary Por...
One commonly used cement type for thermal applications is CAC containing 38–40 % alumina, although t...
This study aims to investigate the effect of thermally treated temperatures up to 800 °C on the phys...
With the ever-expanding presence of solar energy, the design of cost-efficient heat energy storage s...
With the ever-expanding presence of solar energy, the design of cost-efficient heat energy storage s...
Future perspectives to improve the energy efficiency of concentrating solar power (CSP) plants are f...
This paper studies the thermal effects on the mineralogical properties as well as the microstructure...
This paper reports the microstructural changes on a 2 year-old cement paste, unprotected from contac...
In this research, structural-functional integrated cement-based materials were prepared by employing...
In this research, structural-functional integrated cement-based materials were prepared by employing...
Concrete has the potential to become a solution for thermal energy storage (TES) integrated in conce...
Thermal conductivity plays an important role in energy storage when the materials are charging and d...
This paper presents a comparative study on the effects of high temperature (~500°C) on carbonated ca...
Basic physical and mechanical properties of several cement composites are determined as functions of...
This study investigates the effect of thermal cycles on the fracture properties of the cement-based ...
This study is aim at investigating the thermal stability of concrete paste blended with ordinary Por...
One commonly used cement type for thermal applications is CAC containing 38–40 % alumina, although t...
This study aims to investigate the effect of thermally treated temperatures up to 800 °C on the phys...