One of the key requirements for the application of planar solid oxide fuel cells is the hermetical sealing of ceramic and metallic stack-components. Gas tightness and associated mechanical integrity of the sealants are therefore key prerequisites for reliable operation over the lifetime of the stack. To withstand mechanical stresses generated by the differences in thermal expansion of the involved materials as well as non-equilibrium thermal conditions upon heating and cooling, joining with metals rather than brittle glass-ceramics is considered to be advantageous. Hence, as one of the joining possibilities for SOFCs of planar design reactive air brazing of the ceramic cell into a metallic frame has gained increasing interest and proofed it...
Solid oxide fuel cells (SOFCs) have a high application potential due to the evolved demands in a glo...
The reliable operation of solid oxide fuel cell stacks (SOFCs) depends strongly on the structural in...
Reactive air brazing (RAB) is a promising technology to join metals and ceramics in air. RAB brazes ...
The mechanical integrity of solid oxide fuel cells (SOFC) and the long-term stability underoperating...
Development of planar solid oxide fuel cell systems for automotive application is mostly driven by l...
Solid oxide fuel cells (SOFC) consist of ceramic and metallic components which have to be joined and...
The microstructure evolution dependent deformation and damage mechanisms of reactive air brazed meta...
Recently there has been a great deal of interest in research development and commercialization of so...
In this paper, a novel 95Ag-2.5Ge-2.5Si (in wt %) filler is utilized for brazing yttria-stabilized z...
Reactive air brazing has been widely used in fabricating solid oxide fuel/electrolysis cell (SOFC/SO...
A notched bimaterial bar bend test was applied to identify weak interfaces that influence the thermo...
Ceramic insulation layers in combination with air braze filler metals were investigated as material ...
Planar solid oxide fuel cells (SOFCs) are capable of achieving higher power density than tubular SOF...
The BMW Group and partners are developing a solid oxid fuell cell (SOFC) as an auxiliary power unit ...
Solid oxide fuel cell (SOFC) stacks are extremely vulnerable to mechanical failures in any of their ...
Solid oxide fuel cells (SOFCs) have a high application potential due to the evolved demands in a glo...
The reliable operation of solid oxide fuel cell stacks (SOFCs) depends strongly on the structural in...
Reactive air brazing (RAB) is a promising technology to join metals and ceramics in air. RAB brazes ...
The mechanical integrity of solid oxide fuel cells (SOFC) and the long-term stability underoperating...
Development of planar solid oxide fuel cell systems for automotive application is mostly driven by l...
Solid oxide fuel cells (SOFC) consist of ceramic and metallic components which have to be joined and...
The microstructure evolution dependent deformation and damage mechanisms of reactive air brazed meta...
Recently there has been a great deal of interest in research development and commercialization of so...
In this paper, a novel 95Ag-2.5Ge-2.5Si (in wt %) filler is utilized for brazing yttria-stabilized z...
Reactive air brazing has been widely used in fabricating solid oxide fuel/electrolysis cell (SOFC/SO...
A notched bimaterial bar bend test was applied to identify weak interfaces that influence the thermo...
Ceramic insulation layers in combination with air braze filler metals were investigated as material ...
Planar solid oxide fuel cells (SOFCs) are capable of achieving higher power density than tubular SOF...
The BMW Group and partners are developing a solid oxid fuell cell (SOFC) as an auxiliary power unit ...
Solid oxide fuel cell (SOFC) stacks are extremely vulnerable to mechanical failures in any of their ...
Solid oxide fuel cells (SOFCs) have a high application potential due to the evolved demands in a glo...
The reliable operation of solid oxide fuel cell stacks (SOFCs) depends strongly on the structural in...
Reactive air brazing (RAB) is a promising technology to join metals and ceramics in air. RAB brazes ...