Fuel cell assembling method and fuel cell assembling apparatus
US-10511046-B2 · Dec 17, 2019 · US
US11469436B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11469436-B2 |
| Application number | US-202016734357-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jan 5, 2020 |
| Priority date | Jul 14, 2017 |
| Publication date | Oct 11, 2022 |
| Grant date | Oct 11, 2022 |
A practical reading order for non-experts. Skip the full description unless you need deep technical detail.
What the patent document calls the invention.
A short plain-language summary of the technical disclosure.
Who owns or filed the patent and who is credited as inventor.
Filing, priority, publication, and grant dates set the timeline.
The legal scope of protection — read this for what is actually claimed.
Technology tags used to group this patent with similar filings.
Prior art links and similar publications in this corpus.
Official abstract text for this publication.
In order to provide a fuel cell device which can be produced simply and cost-effectively, it is proposed that the fuel cell device comprises the following: a plurality of fuel cell elements which are stacked one on top of another along a stacking direction and form a fuel cell stack; a clamping device for securing the fuel cell elements; a fluid guide unit for supplying fuel and/or oxidizer and/or coolant to the fuel cell elements and/or for removing fuel and/or oxidizer and/or exhaust gas and/or coolant from the fuel cell elements, wherein the clamping device comprises two or more crossmembers which extend at least approximately perpendicularly to the stacking direction, wherein in each case at least one crossmember is arranged at each end of the fuel cell stack, wherein the crossmembers can be drawn towards one another by means of clamping elements and the fuel cell stack can thereby be clamped between the crossmembers.
Opening claim text (preview).
The invention claimed is: 1. A fuel cell device, comprising the following: a plurality of fuel cell elements which are stacked one on top of another along a stacking direction and form a fuel cell stack; a clamping device for securing the fuel cell elements; a fluid guide unit for supplying fuel and/or oxidizer and/or coolant to the fuel cell elements and/or for removing fuel and/or oxidizer and/or exhaust gas and/or coolant from the fuel cell elements, wherein the clamping device comprises two or more crossmembers which extend at least approximately perpendicularly to the stacking direction, wherein in each case at least one crossmember is arranged at each end of the fuel cell stack, wherein the crossmembers are drawable towards one another by means of clamping elements and the fuel cell stack is thereby clampable between the crossmembers, and wherein the clamping device has at least two crossmembers for each of the two ends of the fuel cell stack and/or wherein the crossmembers are drawable towards one another by means of clamping rods. 2. The fuel cell device as claimed in claim 1 , wherein the clamping rods are threaded rods. 3. The fuel cell device as claimed in claim 1 , wherein the clamping elements run completely outside the fuel cell stack. 4. A fuel cell device, comprising the following: a plurality of fuel cell elements which are stacked one on top of another along a stacking direction and form a fuel cell stack; a clamping device for securing the fuel cell elements; a fluid guide unit for supplying fuel and/or oxidizer and/or coolant to the fuel cell elements and/or for removing fuel and/or oxidizer and/or exhaust gas and/or coolant from the fuel cell elements, wherein the clamping device comprises two or more crossmembers which extend at least approximately perpendicularly to the stacking direction, wherein in each case at least one crossmember is arranged at each end of the fuel cell stack, wherein the crossmembers are drawable towards one another by means of clamping elements and the fuel cell stack is thereby clampable between the crossmembers, and wherein the fuel cell stack is provided at one or at both of its ends with a respective end plate made from an electrically insulating material. 5. The fuel cell device as claimed in claim 4 , wherein one end plate or both of the end plates comprises/comprise a flow guide for guiding oxidizer, fuel, exhaust gas and/or coolant, wherein fluid lines for guiding the oxidizer, fuel, exhaust gas and/or coolant are arranged and/or configured so as to be completely separate fluidically from the clamping device. 6. The fuel cell device as claimed in claim 4 , wherein one end plate or both of the end plates each has/have a force transmission structure which transmits a force, which is applied by one or more of the crossmembers, to the fuel cell stack with a predetermined distribution of force, wherein the force transmission structure comprises a honeycomb structure and/or rib structure and/or supporting structure or is formed therefrom. 7. The fuel cell device as claimed in claim 4 , wherein the one end plate or the two end plates each comprises/comprise a pickup receptacle for receiving one pickup unit each, by means of which electrical energy generated in the fuel cell stack is removable, wherein the one end plate or the two end plates electrically insulate the pickup unit arranged in each case thereon and the clamping device from each other. 8. The fuel cell device as claimed in claim 1 , wherein the clamping device has one or two pressure distribution plates which abut directly against end plates of the fuel cell stack and on which the crossmembers indirectly or directly act. 9. The fuel cell device as claimed in claim 8 , wherein the one or more pressure distribution plates is/are arranged in plate receptacles, which are formed substantially complementarily thereto, of the end plates and/or wherein the crossmembers act on the one or the two pressure distribution plates by means of in each case one or more spring elements. 10. The fuel cell device as claimed in claim 1 , wherein fuel, oxidizer, exhaust gas and/or coolant are guidable, by means of an one end plate or two end plates along the stacking direction on at least one crossmember and/or on a pressure distribution plate of the clamping device. 11. A fuel cell device, comprising the following: a plurality of fuel cell elements which are stacked one on top of another along a stacking direction and form a fuel cell stack; a securing device for securing the fuel cell elements; a fluid guide unit for supplying fuel and/or oxidizer and/or coolant to the fuel cell elements and/or for removing fuel and/or oxidizer and/or exhaust gas and/or coolant from the fuel cell elements, wherein the securing device includes two or more crossmembers which extend at least approximately perpendicularly to the stacking direction, wherein the fluid guide unit comprises a basic body which comprises a plurality of fluid lines and connection points for the connection of supply lines and/or removal lines and/or additional components of the fuel cell device, wherein the plurality of fluid lines of the fluid guide unit are formed by recesses formed in the basic body and one or more cover elements covering said recesses, and wherein the basic body and the one cover element or the plurality of cover elements are adhered or connected to one another. 12. The fuel cell device as claimed in claim 11 , wherein the basic body is of integral construction and/or wherein the basic body is configured as a plastics injection-moulded component. 13. The fuel cell device as claimed in claim 11 , wherein the one cover element or the plurality of cover elements is/are arranged on a side of the fluid lines of the fluid guide unit that faces the securing device. 14. The fuel cell device as claimed in claim 11 , wherein the basic body is covered on one side or both sides with respect to the stacking direction by means of in each case one or more cover elements. 15. The fuel cell device as claimed in claim 11 , wherein the fluid guide unit comprises a plurality of fluid lines which each extend through the basic body, one or more cover elements and an end plate of the fuel cell stack and/or wherein the fluid guide unit or the basic body comprises one or more separating devices for separating liquids and/or solids from a gas flow, wherein one or more separating devices are moulded into the basic body and/or are formed by suitable shaping of the basic body. 16. The fuel cell device as claimed in claim 11 , wherein the basic body comprises one or more valve receptacles for receiving one or more valve elements, and/or wherein the basic body comprises one or more sensor element receptacles for receiving one or more sensor elements. 17. The fuel cell device as claimed in claim 11 , wherein the basic body comprises one or more supporting elements for stabilizing and/or reinforcing the basic body and/or the fluid guide unit. 18. The fuel cell device as claimed in claim 11 , wherein the fluid guide unit or the basic body and/or one or more cover elements and/or one or more end plates of the fuel cell device have an at least partially after-treated surface. 19. The fuel cell device as claimed in claim 11 , wherein the fluid guide unit comprises a thermally insulating portion by means of which the securing device and/or the fluid lines and/or one or more separating devices and/or one or more valve elements are thermally separated from the fuel cell stack. 20. The
Means for compression of the fuel cell stacks · CPC title
by condensers, gas-liquid separators or filters · CPC title
Fuel cells · CPC title
Arrangements for sealing external manifolds; Arrangements for mounting external manifolds around a stack · CPC title
Enclosures, casings or containers of fuel cell stacks · CPC title
Related publications grouped by family.
Answers are generated from the same data shown on this page.