Dual atmosphere conditions have been shown to be detrimental for the ferritic stainless steel interconnects used in solid oxide fuel cells (SOFC) under certain conditions. In the present work, we analyze the influence of pre-oxidation on corrosion resistance in dual atmosphere with regard to two parameters: the pre-oxidation time and the pre-oxidation location (pre-oxidation layer on the air-facing side or the hydrogen-facing side). The steel AISI 441 is investigated and pre-oxidation is achieved in air at 800 \ub0C. To examine the influence of pre-oxidation time on corrosion behavior, five different pre-oxidation times are used: 0, 11, 45, 180, and 280 min. The samples are exposed discontinuously to dual atmosphere for 1000 h at 600 \ub0C....
AbstractAISI 441 coated with a double layer coating of 10 nm cerium (inner layer) and 630 nm cobalt ...
In Solid Oxide Fuel Cells (SOFC), interconnects are simultaneously exposed to dual atmosphere condit...
Metallic interconnects in solid oxide fuel cells are exposed to a dual environment: fuel on one side...
Interconnects used in solid oxide fuel cells are subjected to dual atmosphere corrosion at 600 \ub0C...
This study investigates the corrosion of AISI 441 in simulated anode conditions of solid oxide fuel ...
AISI 441 foils of 0.2 mm thickness were exposed in a dual atmosphere setup in which one side was exp...
AbstractAISI 441 foils of 0.2 mm thickness were exposed in a dual atmosphere setup in which one side...
The ferritic stainless steel AISI 441 (EN 1.4509) is exposed for 1000 h to air - 3% H2O on one side ...
Solid oxide fuel cells (SOFC) are energy conversion systems with clean emissions (depending on the f...
Solid oxide cells (SOC) have the potential to revolutionize electricity production by being able to ...
Ferritic stainless steel (FSS) 441 with CoMnO coatings were subjected to solid oxide fuel cell inter...
Metallic interconnects in solid oxide fuel cells are exposed to a dual environment: fuel on one side...
AISI 441 coated. with a double layer coating of 10 nm cerium (inner layer) and 630 nm cobalt was inv...
Solid Oxide Fuel Cells (SOFCs) are systems that convert chemical energy into electrical energy. Thei...
AISI 441 foils of 0.2 mm thickness were exposed in a dual atmosphere setup in which one side was exp...
AbstractAISI 441 coated with a double layer coating of 10 nm cerium (inner layer) and 630 nm cobalt ...
In Solid Oxide Fuel Cells (SOFC), interconnects are simultaneously exposed to dual atmosphere condit...
Metallic interconnects in solid oxide fuel cells are exposed to a dual environment: fuel on one side...
Interconnects used in solid oxide fuel cells are subjected to dual atmosphere corrosion at 600 \ub0C...
This study investigates the corrosion of AISI 441 in simulated anode conditions of solid oxide fuel ...
AISI 441 foils of 0.2 mm thickness were exposed in a dual atmosphere setup in which one side was exp...
AbstractAISI 441 foils of 0.2 mm thickness were exposed in a dual atmosphere setup in which one side...
The ferritic stainless steel AISI 441 (EN 1.4509) is exposed for 1000 h to air - 3% H2O on one side ...
Solid oxide fuel cells (SOFC) are energy conversion systems with clean emissions (depending on the f...
Solid oxide cells (SOC) have the potential to revolutionize electricity production by being able to ...
Ferritic stainless steel (FSS) 441 with CoMnO coatings were subjected to solid oxide fuel cell inter...
Metallic interconnects in solid oxide fuel cells are exposed to a dual environment: fuel on one side...
AISI 441 coated. with a double layer coating of 10 nm cerium (inner layer) and 630 nm cobalt was inv...
Solid Oxide Fuel Cells (SOFCs) are systems that convert chemical energy into electrical energy. Thei...
AISI 441 foils of 0.2 mm thickness were exposed in a dual atmosphere setup in which one side was exp...
AbstractAISI 441 coated with a double layer coating of 10 nm cerium (inner layer) and 630 nm cobalt ...
In Solid Oxide Fuel Cells (SOFC), interconnects are simultaneously exposed to dual atmosphere condit...
Metallic interconnects in solid oxide fuel cells are exposed to a dual environment: fuel on one side...