The aim of this two-part work is to propose a model for the corrosion mechanism of ferrous alloys in high-temperature aqueous environments. In the first part of the work, experimental results of the electrochemical behaviour of pure Fe, pure Cr, Fe–12%Cr alloy and Fe–25%Cr alloy during the initial stage of oxide film formation at 200 °C are compared to those obtained at room temperature. The results have been obtained by using voltammetry, electrochemical impedance spectroscopy (EIS), contact electric resistance (CER) and contact electric impedance (CEI) techniques. An increase of temperature from room temperature up to 200 °C has been found to result in higher currents in the passive region for all the materials. The CER, EIS and CEI resul...
To understand the hot corrosion mechanism of materials it is of significance to establish electroche...
The application of a mixed conduction model and a new contact electric impedance (CEI) technique to ...
The application of a mixed conduction model and a new contact electric impedance (CEI) technique to ...
The aim of this two-part work is to propose a model for the corrosion mechanism of ferrous alloys in...
This paper describes the electrochemical behavior of oxide films formed on pure Ni, pure Cr, and Ni-...
The behaviour of oxide films formed on Ni- and Fe-based alloys in different environments has been st...
The oxide films formed on AISI 316L(NG) in the temperature range 150-300°C have been characterized b...
The oxide films formed on AISI 316L(NG) in the temperature range 150-300°C have been characterized b...
This paper describes an extension of the mixed-conduction model to predict quantitatively the electr...
A quantitative approach to evaluate the effect of the passive film on the corrosion resistance of fe...
This paper describes an extension of the mixed-conduction model to predict quantitatively the electr...
A quantitative approach to evaluate the effect of the passive film on the corrosion resistance of fe...
This paper discusses the application of the recently introduced mixed-conduction model (MCM) to desc...
This paper discusses the application of the recently introduced mixed-conduction model (MCM) to desc...
The behaviour of oxide films formed on Ni- and Fe-based alloys in different environments has been st...
To understand the hot corrosion mechanism of materials it is of significance to establish electroche...
The application of a mixed conduction model and a new contact electric impedance (CEI) technique to ...
The application of a mixed conduction model and a new contact electric impedance (CEI) technique to ...
The aim of this two-part work is to propose a model for the corrosion mechanism of ferrous alloys in...
This paper describes the electrochemical behavior of oxide films formed on pure Ni, pure Cr, and Ni-...
The behaviour of oxide films formed on Ni- and Fe-based alloys in different environments has been st...
The oxide films formed on AISI 316L(NG) in the temperature range 150-300°C have been characterized b...
The oxide films formed on AISI 316L(NG) in the temperature range 150-300°C have been characterized b...
This paper describes an extension of the mixed-conduction model to predict quantitatively the electr...
A quantitative approach to evaluate the effect of the passive film on the corrosion resistance of fe...
This paper describes an extension of the mixed-conduction model to predict quantitatively the electr...
A quantitative approach to evaluate the effect of the passive film on the corrosion resistance of fe...
This paper discusses the application of the recently introduced mixed-conduction model (MCM) to desc...
This paper discusses the application of the recently introduced mixed-conduction model (MCM) to desc...
The behaviour of oxide films formed on Ni- and Fe-based alloys in different environments has been st...
To understand the hot corrosion mechanism of materials it is of significance to establish electroche...
The application of a mixed conduction model and a new contact electric impedance (CEI) technique to ...
The application of a mixed conduction model and a new contact electric impedance (CEI) technique to ...