Porosity is an important part of cement paste microstructure, which significantly influences the mechanical properties (especially durability and strength) of cement-based materials. Electrochemical impedance spectroscopy (EIS) is a non-destructive method used to measure the pore system utilizing a range of frequencies of electric current, which is fed to the cement paste by stainless steel electrodes. The pore volume is obtained from the pore resistance and the matrix capacitance measured by EIS. This paper deals with the evaluation of porosity based on resistance values from EIS on a sample of pure CEM I 42.5R Portland cement paste at 3 different hydration times (age 7, 14, 28 days)
Harsh Canadian winters cause many problems in reinforced concrete structures due to damaging freezin...
This paper describes the results of a study investigating early age changes in pore structure of alk...
The AC impedance spectroscopy (ACIS) is an electrochemical technique used to characterize materials ...
Understanding the hydration and microstructural evolution of cement has been a controversial subject...
In this paper, the characteristics of AC impedance spectroscopy of cement paste immersed in chloride...
AC impedance techniques have been recently applied to investigate the electrical properties of hydra...
Understanding the complexity of the chemical and microstructural evolution of cement during hydratio...
The complexity of the chemical and microstructural evolution of cement during the hydration process ...
In this study, two new approaches for pore structure assessment of cement paste are investigated and...
The electrical properties of Portland cement, and cements containing supplementary cementitious mate...
This study focuses on understanding the electrochemical behavior of cement-based materials. Electroc...
This study focuses on understanding the electrochemical behavior of cement-based materials. Electroc...
As a non-destructive method, AC impedance spectroscopy is a promising technique for the characteriza...
The early-age properties of nano-metakaolin (NMK) cement paste were examined from 15 min to 24 h, co...
In this study, the impact of water-to-cement (w/c) ratios of belite calcium sulfoaluminate cement (B...
Harsh Canadian winters cause many problems in reinforced concrete structures due to damaging freezin...
This paper describes the results of a study investigating early age changes in pore structure of alk...
The AC impedance spectroscopy (ACIS) is an electrochemical technique used to characterize materials ...
Understanding the hydration and microstructural evolution of cement has been a controversial subject...
In this paper, the characteristics of AC impedance spectroscopy of cement paste immersed in chloride...
AC impedance techniques have been recently applied to investigate the electrical properties of hydra...
Understanding the complexity of the chemical and microstructural evolution of cement during hydratio...
The complexity of the chemical and microstructural evolution of cement during the hydration process ...
In this study, two new approaches for pore structure assessment of cement paste are investigated and...
The electrical properties of Portland cement, and cements containing supplementary cementitious mate...
This study focuses on understanding the electrochemical behavior of cement-based materials. Electroc...
This study focuses on understanding the electrochemical behavior of cement-based materials. Electroc...
As a non-destructive method, AC impedance spectroscopy is a promising technique for the characteriza...
The early-age properties of nano-metakaolin (NMK) cement paste were examined from 15 min to 24 h, co...
In this study, the impact of water-to-cement (w/c) ratios of belite calcium sulfoaluminate cement (B...
Harsh Canadian winters cause many problems in reinforced concrete structures due to damaging freezin...
This paper describes the results of a study investigating early age changes in pore structure of alk...
The AC impedance spectroscopy (ACIS) is an electrochemical technique used to characterize materials ...