IP Library › Granted Patent US 11,316,224
Granted Patent B2
US 11,316,224 · App. 16/360,757 · Granted Apr 26, 2022

Battery arrangement for the load-bearing structural integration of batteries into a vehicle

Inventors: Kristian Zimmermann (Munich, DE); Florian Dorn (Dietramszell, DE)
Assignee: Airbus Defence and Space GmbH
H01M50/20B60L50/66B64D27/24B64G1/425H01M10/613H01M10/625H01M10/6556H01M50/242H01M50/249B60L2200/10H01M50/209H01M50/213H01M2220/20
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Quick Facts
Patent No.
US 11,316,224
App. No.
16/360,757
Filed
Mar 21, 2019
Granted
Apr 26, 2022
Kind
B2
Art Unit
1725
USPC
429/99
Abstract

A battery arrangement for the load-bearing structural integration of batteries into a vehicle, in particular an aircraft or spacecraft, includes two cover plates having battery holders and batteries, which are held on both sides between the cover plates by the battery holders, wherein the batteries are arranged in battery rows along the cover plates, wherein the batteries in the battery rows are each aligned at a slope angle relative to the cover plates in order to absorb and transmit loads, and wherein the slope angle in the battery rows has positive and negative values.

Claims (47)

1. A battery arrangement for load-bearing structural integration of batteries into a vehicle, the battery arrangement comprising:

two cover plates, each comprising:

a plurality of current collectors in a form of rails; and

a plurality of battery holders attached to each of the plurality of current collectors; and

a plurality of batteries, which are held between the cover plates;

wherein the batteries are arranged in battery rows that are arranged next to each other and extend along the cover plates;

wherein each battery is in contact, on opposing longitudinal ends thereof, with a corresponding one of the current collectors of each of the cover plates and, on opposing lateral sides thereof, with a corresponding one of the battery holders of each of the cover plates;

wherein each battery in a same battery row contacts a different current collector of the same cover plate;

wherein the batteries in each of the battery rows are all aligned at a same slope angle relative to the cover plates to absorb and transmit loads; and

wherein all of the batteries in a first proportion of the battery rows have a positive slope angle and all of the batteries in a second proportion of the battery rows have a negative slope angle.

2. The battery arrangement according to claim 1 , wherein the slope angle in successive battery rows alternately has only a positive value or a negative value.

3. The battery arrangement according to claim 1 , wherein a magnitude of the slope angle has values greater than 0° and less than 90°.

4. The battery arrangement according to claim 1 , wherein a magnitude of the slope angle is 45°.

5. The battery arrangement according to claim 1 , wherein a third proportion of the batteries is arranged in intermediate battery rows, the intermediate battery rows being situated between the battery rows of the first and second proportions, and wherein the batteries in the intermediate battery rows are aligned at a slope angle of 90° relative to the cover plates.

6. The battery arrangement according to claim 1 , comprising:

shear walls, which connect the cover plates to each other, wherein two battery rows in each case are separated by one shear wall, wherein the shear walls are each at least one of a thermal distributor and a safety wall.

7. The battery arrangement according to claim 1 , wherein the batteries are mounted on both sides positively or in a materially integral manner in the battery holders.

8. The battery arrangement according to claim 1 , wherein the batteries are cylindrical and the battery holders have a curved profile to receive cylindrical batteries.

9. The battery arrangement according to claim 1 , wherein at least one of the cover plates is a cooling plate.

10. The battery arrangement according to claim 9 , wherein the cooling plate is formed with one or more channels.

11. The battery arrangement according to claim 1 , wherein the battery arrangement is a load-bearing structural component for an aircraft or spacecraft.

12. The battery arrangement according to claim 11 , wherein the battery arrangement is at least one of the group consisting of a side wall, floor panel, ceiling panel, skin area, wing spar, wing rib, and wing covering.

13. The battery arrangement according to claim 1 , wherein the batteries are prismatic and the battery holders are configured to receive prismatic batteries.

14. An aircraft or spacecraft having a battery arrangement for load-bearing structural integration of batteries into the aircraft or spacecraft, the battery arrangement comprising:

two cover plates, each comprising:

a plurality of current collectors in a form of rails; and

a plurality of battery holders attached to each of the plurality of current collectors; and

a plurality of batteries, which are held between the cover plates;

wherein the batteries are arranged in battery rows that are arranged next to each other and extend along the cover plates;

wherein each battery is in contact, on opposing longitudinal ends thereof, with a corresponding one of the current collectors of each of the cover plates and, on opposing lateral sides thereof, with a corresponding one of the battery holders of each of the cover plates;

wherein each battery in a same battery row contacts a different current collector of the same cover plate;

wherein the batteries in each of the battery rows are all aligned at a same slope angle relative to the cover plates to absorb and transmit loads; and

wherein all of the batteries in a first proportion of the battery rows have a positive slope angle and all of the batteries in a second proportion of the battery rows have a negative slope angle.

15. The aircraft or spacecraft according to claim 14 , wherein the battery arrangement forms a load-bearing constituent of a load-bearing structural component of the aircraft or spacecraft.

16. A battery arrangement for load-bearing structural integration of batteries into a vehicle, the battery arrangement comprising:

two cover plates, each comprising:

a plurality of current collectors in a form of rails; and

a plurality of battery holders attached to each of the plurality of current collectors;

a plurality of batteries that are held between the cover plates and are aligned at a slope angle relative to the cover plates to absorb and transmit loads;

a first battery row comprising a first subset of the plurality of batteries, which are arranged next to each other in a row and extend along the cover plates, wherein all batteries in the first battery row are aligned such that the slope angle is a positive slope angle; and

a second battery row comprising a second subset of the plurality of batteries, which are arranged next to each other in a row and extend along the cover plates, wherein all batteries in the second battery row are aligned such that the slope angle is a negative slope angle;

wherein each battery is in contact, on opposing longitudinal ends thereof, with a corresponding one of the current collectors of each of the cover plates and, on opposing lateral sides thereof, with a corresponding one of the battery holders of each of the cover plates;

wherein each battery in a same battery row contacts a different current collector of the same cover plate; and

wherein the first battery row and the second battery row are adjacent to each other and both contact the cover plates.

17. The battery arrangement according to claim 16 , wherein the slope angle for adjacent battery rows alternates between a positive slope value and a negative slope value.

18. The battery arrangement according to claim 16 , wherein the battery arrangement is a load-bearing structural component for an aircraft or spacecraft.

19. An aircraft or spacecraft having at least one battery arrangement according to claim 16 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 6, 2019
From: ZIMMERMANN, KRISTIAN; DORN, FLORIAN
To: AIRBUS DEFENCE AND SPACE GMBH
Reel/Frame 049090/0268 →
Priority Claims (1)
DE 10 2018 204 420.1 · Mar 22, 2018 · national
Continuity (1)
Related Publication 20190296300A1 · Sep 26, 2019
Cited By (3)
US 12,384,514 US 12,451,556 US 12,542,325