The contribution comprises the investigation of the microstructure and residual stresses in thermally sprayed Mn$_{1.0}$Co$_{1.9}$Fe$_{0.1}$O$_{4.0}$ (MCF) protective coatings for interconnectors of SOFC stacks, deposited on ferritic steel Crofer 22 APU via atmospheric plasma spraying (APS). The coatings are designated to prevent Cr evaporation during high operation temperature of the SOFCs. The local microstructure, pore distributions and pore shapes, phase fractions, micro-hardness, Youngs’ modulus and residual stresses through the coating thickness were characterized in as-sprayed state and compared with longtime (10-100 h) heat-treated samples (700 and 850 C). The results show that the long-term thermal aging treatment causes a success...
Protective coatings are needed for metallic interconnects used in solid oxide fuel cell (SOFC) stack...
Modern solid oxide fuel cells (SOFCs) operate at sufficiently low temperatures to allow the use of a...
A wet powder spraying (WPS) method was applied to prepare protective layers of manganese cobalt spin...
The contribution comprises the investigation of the microstructure and residual stresses in thermall...
Chromium containing steels are widely used as interconnects in solid oxide fuel cell stacks (SOFCs) ...
Dense protective layers are needed to reduce chromium-related degradation in SOFC stacks. In particu...
Dense coatings on metallic interconnectors are necessary to suppress chromium poisoning of SOFC cath...
In solid oxide fuel cells (SOFC) for operating temperatures of 800 °C or below, the use of ferritic ...
Protective coatings are used on ferritic stainless steel interconnectors to prevent the transport of...
Chromium evaporation barriers are frequently used in solid oxide fuel cells to protect the porous ca...
Manganese cobalt oxide spinel doped with Fe2O3 was studied as a protective coating on ferritic stain...
Solid oxide fuel cells (SOFC) are one of the most effective ways to produce electrical energy and ar...
Interconnects employed in solid oxide fuel cells require electrically conductive protective coatings...
Applying atmospherically plasma-sprayed (APS) Mn1.0Co1.9Fe0.1O4 (MCF) protective coatings on interco...
Interconnects employed in solid oxide fuel cells require electrically conductive protective coatings...
Protective coatings are needed for metallic interconnects used in solid oxide fuel cell (SOFC) stack...
Modern solid oxide fuel cells (SOFCs) operate at sufficiently low temperatures to allow the use of a...
A wet powder spraying (WPS) method was applied to prepare protective layers of manganese cobalt spin...
The contribution comprises the investigation of the microstructure and residual stresses in thermall...
Chromium containing steels are widely used as interconnects in solid oxide fuel cell stacks (SOFCs) ...
Dense protective layers are needed to reduce chromium-related degradation in SOFC stacks. In particu...
Dense coatings on metallic interconnectors are necessary to suppress chromium poisoning of SOFC cath...
In solid oxide fuel cells (SOFC) for operating temperatures of 800 °C or below, the use of ferritic ...
Protective coatings are used on ferritic stainless steel interconnectors to prevent the transport of...
Chromium evaporation barriers are frequently used in solid oxide fuel cells to protect the porous ca...
Manganese cobalt oxide spinel doped with Fe2O3 was studied as a protective coating on ferritic stain...
Solid oxide fuel cells (SOFC) are one of the most effective ways to produce electrical energy and ar...
Interconnects employed in solid oxide fuel cells require electrically conductive protective coatings...
Applying atmospherically plasma-sprayed (APS) Mn1.0Co1.9Fe0.1O4 (MCF) protective coatings on interco...
Interconnects employed in solid oxide fuel cells require electrically conductive protective coatings...
Protective coatings are needed for metallic interconnects used in solid oxide fuel cell (SOFC) stack...
Modern solid oxide fuel cells (SOFCs) operate at sufficiently low temperatures to allow the use of a...
A wet powder spraying (WPS) method was applied to prepare protective layers of manganese cobalt spin...