Fuel cell stack assembly device and control method
US-9991546-B2 · Jun 5, 2018 · US
US11545712B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11545712-B2 |
| Application number | US-201816623046-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jun 19, 2018 |
| Priority date | Jun 22, 2017 |
| Publication date | Jan 3, 2023 |
| Grant date | Jan 3, 2023 |
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The present invention relates to: a shape correction device for a frame body; and a method for manufacturing an electrolyte film/electrode structure that is provided with a resin frame for a fuel cell. A shape correction device, which corrects the shape of a frame body that is provided with a rectangular opening, is equipped with a pressing mechanism that applies, to each side of the frame body, a pressing force directed from the inner side to the outer side of the opening. The pressing mechanism may have a first bar and a second bar, which apply the pressing force by being in contact with inner wall surfaces of each side of the frame body.
Opening claim text (preview).
What is claim is: 1. A method of producing a fuel cell resin frame equipped membrane electrode assembly, the method comprising: a molding step of molding, using a die, a resin frame body having a rectangular opening at substantially a center of the frame body; a correcting step of correcting a shape of the frame body by applying a pressing force oriented from an inside to an outside of the opening by a pressing mechanism; a maintaining step of maintaining the corrected shape of the frame body by a frame body holder configured to hold an outer peripheral side of the frame body in a thickness direction; and a joining step of, in a state where the frame body is held by the frame body holder, joining a peripheral portion of the opening and an outer peripheral portion of a membrane, wherein in the correcting step, firstly, the pressing force is applied to only a short side of the frame body, and then the pressing force is applied also to a long side the frame body. 2. A method of producing a fuel cell resin frame equipped membrane electrode assembly, the method comprising: a molding step of molding, using a die, a resin frame body having a rectangular opening at substantially a center of the frame body; a correcting step of correcting a shape of the frame body by applying a pressing force oriented from an inside to an outside of the opening by a pressing mechanism; a maintaining step of maintaining the corrected shape of the frame body by a frame body holder configured to hold an outer peripheral side of the frame body in a thickness direction; and a joining step of, in a state where the frame body is held by the frame body holder, joining a peripheral portion of the opening and an outer peripheral portion of a membrane, wherein in the correcting step, firstly, the pressing force is applied to any one of a short side and a long side of the frame body, and then the pressing force is applied also to another of the short side and the long side of the frame body, the maintaining step is performed while the frame body is held by the frame body holder in a manner that a holder side engagement portion provided for the frame body holder is engaged with a frame body side engagement portion provided for the frame body, to perform the joining step in a state where relative movement of the frame body at least toward an inner peripheral side of the frame body holder is restricted, in the maintaining step, the frame body side engagement portion in a form of a protrusion is engaged with the holder side engagement portion in a form of a recess, the method further comprising an impregnation joining step of, after the joining step, releasing holding of the frame body by the frame body holder, melting an impregnation protrusion provided in the frame body on a side closer to the opening than the frame body side engagement portion to form molten resin, and impregnating the outer peripheral portion of the membrane electrode assembly with the molten resin to form an impregnation joint portion while restricting flow of the molten resin toward the outer peripheral side of the frame body by the frame body side engagement portion.
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