Plant (1) for manufacturing solid oxide fuel cells, each cell comprising at least one cathode, one anode and one electrolyte, said anode comprising an anode support and an active anode, said plant comprising a plurality of plant units (10) comprising a depositing and pressing unit (20) configured to produce the anode and the electrolyte from processed raw material by depositing: one or more layers to form said anode support, one or more layers on the anode support to form said active anode; one or more layers on the active anode to form said electrolyte; a first heating unit (30) configured to perform a first heat treatment on the anode and the electrolyte by heating said anode and said electrolyte; a first printing unit (40) configured to at least partially deposit a cathode layer on the electrolyte to define the cathode of the solid oxide fuel cell; a second heating unit (50) configured to perform a second heat treatment on the anode, the electrolyte and the cathode layer by heating them to produce said fuel cell; said plant units (20, 30, 40, 50) being connected in series by means of a belt conveyor (N).
A PLANT FOR CONTINUOUS FLOW MANUFACTURING OF SOLID OXIDE FUEL CELLS / Boccaccini, Dino Norberto; Cannio, Maria; Bonaccorso Alfredo, Damiano. - (2023 Jan 19).
A PLANT FOR CONTINUOUS FLOW MANUFACTURING OF SOLID OXIDE FUEL CELLS
BOCCACCINI DINO NORBERTO;CANNIO MARIA;
2023
Abstract
Plant (1) for manufacturing solid oxide fuel cells, each cell comprising at least one cathode, one anode and one electrolyte, said anode comprising an anode support and an active anode, said plant comprising a plurality of plant units (10) comprising a depositing and pressing unit (20) configured to produce the anode and the electrolyte from processed raw material by depositing: one or more layers to form said anode support, one or more layers on the anode support to form said active anode; one or more layers on the active anode to form said electrolyte; a first heating unit (30) configured to perform a first heat treatment on the anode and the electrolyte by heating said anode and said electrolyte; a first printing unit (40) configured to at least partially deposit a cathode layer on the electrolyte to define the cathode of the solid oxide fuel cell; a second heating unit (50) configured to perform a second heat treatment on the anode, the electrolyte and the cathode layer by heating them to produce said fuel cell; said plant units (20, 30, 40, 50) being connected in series by means of a belt conveyor (N).| File | Dimensione | Formato | |
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