摘要:
An electrochemical cell including at least one dense solid electrolyte body (3A), at least two dense interconnectors (2A) for collecting current passing the cell, cathodes (4A) and anodes (5A). The dense solid electrolyte body or bodies (3A) and the dense interconnectors (2A) constitute a structural body in which a plurality of first gas flow channels (6A) and a plurality of second gas flow channels (7A) both extend in a given direction and are each defined and surrounded by a part of one solid electrolyte body (3A) and a part of one interconnector (2A). The anodes (5A) are formed on respective walls of the solid electrolyte body or bodies and the interconnectors defining the respective first gas flow channels, while the cathodes (4A) are formed on respective walls defining the respective second gas flow channels. Every anode is opposed to an adjacent cathode or adjacent cathodes via a solid electrolyte body (3A), and every cathode is opposed to an adjacent anode or adjacent anodes via a solid electrolyte body (3A).
摘要:
A layered sintered body for an electrochemical cell which is a planar-type layered sintered body composed of an electrode and a separator stacked thereon, wherein a plurality of gas flow passages are formed by coupling grooves formed on the electrode and the separator. Even when this electrochemical cell is subjected to repetition of a cooling-heating cycle, an increase of internal resistance on and around the boundary between the separator and electrode can be restrained and layer separation and development of cracks at the joint boundary can be prevented.
摘要:
A sintered laminated structure including a plurality of ceramic layers (2,3) made of ceramic materials different from one another, wherein each of the ceramic layers is provided with through-holes (4,5) passing through it.
摘要:
An electrochemical cell including at least one dense solid electrolyte body (3A), at least two dense interconnectors (2A) for collecting current passing the cell, cathodes (4A) and anodes (5A). The dense solid electrolyte body or bodies (3A) and the dense interconnectors (2A) constitute a structural body in which a plurality of first gas flow channels (6A) and a plurality of second gas flow channels (7A) both extend in a given direction and are each defined and surrounded by a part of one solid electrolyte body (3A) and a part of one interconnector (2A). The anodes (5A) are formed on respective walls of the solid electrolyte body or bodies and the interconnectors defining the respective first gas flow channels, while the cathodes (4A) are formed on respective walls defining the respective second gas flow channels. Every anode is opposed to an adjacent cathode or adjacent cathodes via a solid electrolyte body (3A), and every cathode is opposed to an adjacent anode or adjacent anodes via a solid electrolyte body (3A).
摘要:
A layered sintered body for an electrochemical cell which is a planar-type layered sintered body composed of an electrode and a separator stacked thereon, wherein a plurality of gas flow passages are formed by coupling grooves formed on the electrode and the separator. Even when this electrochemical cell is subjected to repetition of a cooling-heating cycle, an increase of internal resistance on and around the boundary between the separator and electrode can be restrained and layer separation and development of cracks at the joint boundary can be prevented.
摘要:
An excellent electrically conductive ceramic film having a large size and surface area, a complicated configuration and a high electrical conductivity can be provided by the present melt spray method. The method comprises melt spraying a raw material of an electrically conductive ceramic on a substrate to form a melt spray film, and heat treating the melt spray film to produce the electrically conductive ceramic film.
摘要:
An electrochemical cell including at least one dense solid electrolyte body (3A), at least two dense interconnectors (2A) for collecting current passing the cell, cathodes (4A) and anodes (5A). The dense solid electrolyte body or bodies (3A) and the dense interconnectors (2A) constitute a structural body in which a plurality of first gas flow channels (6A) and a plurality of second gas flow channels (7A) both extend in a given direction and are each defined and surrounded by a part of one solid electrolyte body (3A) and a part of one interconnector (2A). The anodes (5A) are formed on respective walls of the solid electrolyte body or bodies and the interconnectors defining the respective first gas flow channels, while the cathodes (4A) are formed on respective walls defining the respective second gas flow channels. Every anode is opposed to an adjacent cathode or adjacent cathodes via a solid electrolyte body (3A), and every cathode is opposed to an adjacent anode or adjacent anodes via a solid electrolyte body (3A).
摘要:
A self-supporting type substrate for an electrochemical cell, said substrate comprising at least one electrode of the electrochemical cell having a honeycomb ceramic structure, said honeycomb ceramic structure comprising a wall portion on which a film of a solid electrolyte is to be formed. A process for producing a self-supporting type substrate for an electrochemical cell, said process comprising the steps of preparing a first body for forming a ceramic layer to constitute one of electrodes of the electrochemical cell and a second body for forming a ceramic layer to constitute an interconnector, forming a molded body by simultaneously feeding said first and second bodies into a die to form a honeycomb ceramic structure, and firing the molded body is also disclosed.
摘要:
Provided is a carbonaceous material having an oxidation-resistant protective layer which is substantially not oxidized at a temperature of at least 800°C in the air. The oxidation-resistant protective layer preferably comprises a plurality of layers and at least one layer of them is a boron-containing layer on which a layer comprising glass or ceramic is formed. The carbonaceous material preferably comprises a C/C composite, an Si-SiC composite material or an SiC composite material. A method for producing the carbonaceous material is also provided.