An effective, dense and well adherent coating was produced on 430SS that has the result of significantly reducing the oxidation rate of this alloy at elevated temperatures. The coating is essentially a Mn-Co-O spinel, applied in powder form, and compacted to improve its green density. A simplified model is presented that allows an assessment of the effects of the contact and scale geometries. For 850 C, an ASR can be predicted of approximately 0.5 cm2, after 50,000hrs in air, taking in to account a factor of 10 penalty for unfavorable contact geometries. The effect of the densified Mn-Co spinel coating is to reduce significantly Cr2O3 sub-scale formation, lower the thermal expansion mismatch, and increase the electronic conductivity of the ...
Different combinations of protective and contacting layers are investigated to decrease a long-term ...
A wet powder spraying (WPS) method was applied to prepare protective layers of manganese cobalt spin...
range of 500oC- 800oC, which brings wider materials choice for the interconnect. Ferritic stainless ...
An effective, dense and well adherent coating was produced on 430SS that has the result of signific...
As part of an effort to develop cost-effective ferritic stainless steel-based interconnects for soli...
The high operating temperature of solid oxide fuel cells (SOFCs) provides good fuel flexibility whic...
Ferritic stainless steels are promising candidates for IT-SOFC interconnect applications due to thei...
In solid oxide fuel cells (SOC) for operating temperatures of 800 degrees C or below, the interconne...
Chromium poisoning is a well-known degradation mechanism in solid oxide fuel cell (SOFC) stacks. Sta...
Manganese cobalt spinel oxides are promising materials for protective coatings for solid oxide fuel ...
Protective coatings are needed for metallic interconnects used in solid oxide fuel cell (SOFC) stack...
Ferritic stainless steels are being considered as potential interconnect materials for solid oxide f...
The major degradation issues of solid oxide fuel cells (SOFC) are associated with the oxide scale gr...
Solid oxide fuel cells (SOFC) are one of the most effective ways to produce electrical energy and ar...
Ferritic stainless steels are promising candidates for IT-SOFC interconnect applications due to thei...
Different combinations of protective and contacting layers are investigated to decrease a long-term ...
A wet powder spraying (WPS) method was applied to prepare protective layers of manganese cobalt spin...
range of 500oC- 800oC, which brings wider materials choice for the interconnect. Ferritic stainless ...
An effective, dense and well adherent coating was produced on 430SS that has the result of signific...
As part of an effort to develop cost-effective ferritic stainless steel-based interconnects for soli...
The high operating temperature of solid oxide fuel cells (SOFCs) provides good fuel flexibility whic...
Ferritic stainless steels are promising candidates for IT-SOFC interconnect applications due to thei...
In solid oxide fuel cells (SOC) for operating temperatures of 800 degrees C or below, the interconne...
Chromium poisoning is a well-known degradation mechanism in solid oxide fuel cell (SOFC) stacks. Sta...
Manganese cobalt spinel oxides are promising materials for protective coatings for solid oxide fuel ...
Protective coatings are needed for metallic interconnects used in solid oxide fuel cell (SOFC) stack...
Ferritic stainless steels are being considered as potential interconnect materials for solid oxide f...
The major degradation issues of solid oxide fuel cells (SOFC) are associated with the oxide scale gr...
Solid oxide fuel cells (SOFC) are one of the most effective ways to produce electrical energy and ar...
Ferritic stainless steels are promising candidates for IT-SOFC interconnect applications due to thei...
Different combinations of protective and contacting layers are investigated to decrease a long-term ...
A wet powder spraying (WPS) method was applied to prepare protective layers of manganese cobalt spin...
range of 500oC- 800oC, which brings wider materials choice for the interconnect. Ferritic stainless ...