Battery with open bottom
20180019480 ยท 2018-01-18
Assignee
Inventors
Cpc classification
International classification
Abstract
Disclosed is a battery with an open bottom, comprising a battery assembly and an electrolyte storage box for accommodating an electrolyte. Said battery assembly comprises at least one battery pack, and said at least one battery pack can move between a first position and a second position relative to said electrolyte storage box; in the first position, said at least one battery pack contacts said electrolyte so as to enable said battery with an open bottom to generate electricity, and in the second position, said at least one battery pack is separated from said electrolyte such that said battery with an open bottom is turned off. The battery pack of the battery with an open bottom in the present invention can move between the first and the second positions relative to the electrolyte storage box so as to rapidly contact and react with the electrolyte.
Claims
1. A battery with an open bottom, comprising: a battery assembly, wherein the battery assembly includes at least one battery pack; an electrolyte storage box for accommodating an electrolyte; wherein the at least one battery pack can move between a first position and a second position relative to said electrolyte storage box; in the first position, said at least one battery pack, contacts said electrolyte so as to enable said battery with an open bottom to generate electricity; and in the second position, said at least one battery pack is separated from said electrolyte such that said battery with an open bottom is turned off
2. The battery with an open bottom according to claim 1, further comprising: a control device; wherein when said at least one battery pack is in the first position, said control device is snap-fitted with said battery assembly and said electrolyte storage box, such that said battery assembly is fixed in said electrolyte storage box and reacts with said electrolyte; and when said at least one battery pack is in the second position, said control device is unlocked from said electrolyte storage box, such that said battery assembly is separated from said electrolyte storage box and from said electrolyte.
3. The battery with an open bottom according to claim 1, wherein said at least one battery pack comprises: a battery main body; and a reaction chamber; wherein said reaction chamber is connected to said electrolyte storage box; and said battery main body is located inside said reaction chamber.
4. The battery with an open, bottom according to claim 3, wherein said at least one battery pack further comprises: an air chamber connected to said reaction chamber; and a first opening and a second opening which are both connected to said air chamber; wherein said air chamber is configured to let air enter front said first opening; said battery main body is configured to be isolated from said electrolyte by said air chamber; and said at least one battery pack is configured to discharge the air via said second opening.
5. The battery with an open bottom according to claim 4, wherein said at least one battery pack further comprises: a condensed water collection volume, for collecting the water generated during the exchange of hot air and cold air; wherein said condensed water collection volume is located on the side of said air chamber close to said second opening.
6. The battery with an open bottom according to claim 4, wherein said battery assembly comprises: a plurality of battery packs; and an upper cover, provided with an air inlet and an air let; wherein the first opening of one of said plurality of battery packs is connected to said air inlet; and the second opening of one of said plurality of battery packs is connected to said air outlet.
7. The battery with an open bottom according to claim 4, wherein said plurality of battery packs is mounted on said upper cover in sequence; and the first and second openings of each of said battery packs correspond to the first and second openings of an adjacent one of said battery packs so as to realize the ventilation inside said plurality of battery packs.
8. The battery with an open bottom according to claim 1, wherein said at least one battery pack comprises at least one lower division plate; and the distance from a lower end of said at least one lower division plate to the bottom of said electrolyte storage box is 1-50 mm.
9. The battery with an open bottom according to claim 8, wherein the height of said lower division plate is 30-300 mm.
10. The battery with an open bottom according to claim 8, wherein said at least one battery pack comprises at least one upper division plate; and the height of said upper division plate is 30-300 mm.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0018]
[0019]
[0020]
[0021]
[0022] In the figures: 100. battery with an open bottom; 10. electrolyte storage box; 20. battery assembly; 22. upper cover; 220. air inlet; 222. air outlet; 24. battery pack; 240. battery main body; 241. first opening; 242. air chamber; 243. second opening; 244. reaction chamber; 246. condensed water collection volume; 247. upper division plate; 248. lower division plate; 30. electrolyte; 40. control device; 42. snap-fit part.
DETAILED DESCRIPTION
[0023] With reference to
[0024] Said battery assembly 20 comprises an upper cover 22 and a plurality of battery packs 24. Said upper cover 22 is provided with an air inlet 220 and an air outlet 222. Each of said battery packs 24 comprises a battery main body 240, an upper division plate 247, and a lower division plate 248. Each of said battery packs 24 is provided with a first opening 241, an air chamber 242, a second opening 243, a reaction chamber 244 and a condensed water collection volume 246. Said first opening 241 and said second opening 243 are connected to said air chamber 242. Said air chamber 242 is connected to said reaction chamber 244. Said battery main body 240 is located inside said reaction chamber 244. Said condensed water collection volume 246 is located on a side of said second opening 243. In one embodiment, the height of said upper division plate 247 and said lower division plate 248 is 30-300 mm. Each of said control devices 40 is provided with a snap-fit part 42.
[0025] When assembling said battery with an open bottom 100, said plurality of battery packs 24 are mounted on said upper cover 22, and the first opening 241 and said second opening 243 of each of said battery packs 24 correspond to the first opening 241 and said second opening 243 of an adjacent battery pack 24. The first opening 241 of said battery pack 24 is connected to the air inlet 220 of said upper cover 22. The second opening 243 of said battery pack 24 is connected to the air outlet 222 of said upper cover 22. In one embodiment, said plurality of battery packs 24 is arranged substantially in parallel.
[0026] With futher reference to
[0027] When said battery with art open bottom 100 is to be turned off, said two control devices 40 are unlocked from said electrolyte storage box 10. Said battery assembly 20 moves to a second position relative to said electrolyte storage box 10 under the action of the buoyancy force from said electrolyte 30. At this time, said plurality of battery packs 24 is separated from said electrolyte 30, and said battery with an open bottom 100 is turned off.
[0028] Said battery pack 24 of said battery with an open bottom 100 can move between said first and second positions relative to said electrolyte storage box 10 so as to rapidly contact and react with said electrolyte 30 and enable said battery 100 to generate electricity or to be rapidly separated from said electrolyte 30 for turning off said battery 100.
[0029] For a person skilled in the art, a variety of other corresponding modifications and variations can be made according to the above-described technical solutions and concepts, and all the modifications and variations shall fail within the scope of protection of the claims of the present invention.