This paper discusses the structure and properties of a compression seal, Thermiculite 866, that is providing excellent service with SOFC development groups around the world. That performance is ilustrated by data showing the robustness and durability of the seal achieved during extended testing by a customer in his stack. The paper then goes on to introduce a new material , Thermiculite 866 LS , that has been developed to allow stack sealing at very low gaskets stresses. The performance of the new material at 700 'C in simulated stack service is illustrated
Solid oxide fuel cell (SOFC) technology is critical to several national initiatives. Solid State Ene...
Basic requirements for a sealant are good bonding to the materials of interest, chemical stability i...
This paper describes the design and development of a composite seal for SOFC to produce a hermetic j...
This paper discusses the structure and properties of a compression seal, Thermiculite 866, that is p...
Sealing properties and compression properties of two mica‐based materials, Thermiculite 866 and Stat...
With the growing footprint of solid oxide fuel cell stacks, there is a need to extend the operating ...
SOFC stack seals need to be correctly dimensioned to achieve a gas tight stack with low electrical c...
In solid oxide fuel cell systems, the stack is the primary component whose performance and lifetime ...
Compression seals based on metal/mica composites were investigated under solid oxide fuel cell (SOFC...
A functioning SOFC requires different type of seals such as metal-metal, metal-ceramic, and ceramic-...
A reversible solid oxide cell (RSOC) integrating solid oxide fuel (SOFC) and a solid oxide electroly...
One of the critical challenges facing planar solid oxide fuel cell (SOFC) technology is the need for...
Hermetic sealing is a key requirement for the operation of solid oxide fuel cell (SOFC) stacks in a ...
Sealing was identified as one of main technical barriers in the commercialization of advanced planar...
Planar solid oxide fuel cells (SOFCs) are capable of achieving higher power density than tubular SOF...
Solid oxide fuel cell (SOFC) technology is critical to several national initiatives. Solid State Ene...
Basic requirements for a sealant are good bonding to the materials of interest, chemical stability i...
This paper describes the design and development of a composite seal for SOFC to produce a hermetic j...
This paper discusses the structure and properties of a compression seal, Thermiculite 866, that is p...
Sealing properties and compression properties of two mica‐based materials, Thermiculite 866 and Stat...
With the growing footprint of solid oxide fuel cell stacks, there is a need to extend the operating ...
SOFC stack seals need to be correctly dimensioned to achieve a gas tight stack with low electrical c...
In solid oxide fuel cell systems, the stack is the primary component whose performance and lifetime ...
Compression seals based on metal/mica composites were investigated under solid oxide fuel cell (SOFC...
A functioning SOFC requires different type of seals such as metal-metal, metal-ceramic, and ceramic-...
A reversible solid oxide cell (RSOC) integrating solid oxide fuel (SOFC) and a solid oxide electroly...
One of the critical challenges facing planar solid oxide fuel cell (SOFC) technology is the need for...
Hermetic sealing is a key requirement for the operation of solid oxide fuel cell (SOFC) stacks in a ...
Sealing was identified as one of main technical barriers in the commercialization of advanced planar...
Planar solid oxide fuel cells (SOFCs) are capable of achieving higher power density than tubular SOF...
Solid oxide fuel cell (SOFC) technology is critical to several national initiatives. Solid State Ene...
Basic requirements for a sealant are good bonding to the materials of interest, chemical stability i...
This paper describes the design and development of a composite seal for SOFC to produce a hermetic j...