CN116062489B - Double-pole plate feeding and separating system and method - Google Patents

Double-pole plate feeding and separating system and method Download PDF

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Publication number
CN116062489B
CN116062489B CN202310286568.3A CN202310286568A CN116062489B CN 116062489 B CN116062489 B CN 116062489B CN 202310286568 A CN202310286568 A CN 202310286568A CN 116062489 B CN116062489 B CN 116062489B
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China
Prior art keywords
piece
drive
bipolar plate
separating
lifting
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CN202310286568.3A
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Chinese (zh)
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CN116062489A (en
Inventor
姜巍
王文强
黎国忠
陈龙
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Suzhou Sicui Acoustooptic Micro Nano Technology Research Institute Co ltd
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Suzhou Sicui Acoustooptic Micro Nano Technology Research Institute Co ltd
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Publication of CN116062489A publication Critical patent/CN116062489A/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G61/00Use of pick-up or transfer devices or of manipulators for stacking or de-stacking articles not otherwise provided for
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G59/00De-stacking of articles
    • B65G59/02De-stacking from the top of the stack
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G2201/00Indexing codes relating to handling devices, e.g. conveyors, characterised by the type of product or load being conveyed or handled
    • B65G2201/02Articles
    • B65G2201/0214Articles of special size, shape or weigh
    • B65G2201/022Flat
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E60/00Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
    • Y02E60/30Hydrogen technology
    • Y02E60/50Fuel cells

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Abstract

The application relates to the technical field of bipolar plate production, in particular to a bipolar plate feeding and separating system and a bipolar plate feeding and separating method, wherein the bipolar plate feeding and separating system comprises a storage component, a separating component and a conveying component; the material storage assembly comprises a material storage barrel and a lifting component arranged in the material storage barrel, the material storage barrel is used for placing the bipolar plate, the surface of the bipolar plate is parallel to the bottom surface of the material storage barrel, and the lifting component is used for placing the bipolar plate and lifting the bipolar plate; a frame is arranged above the storage vat, a separating and stretching assembly is arranged above the storage vat and is connected with the frame, the separating and stretching assembly comprises a separating and stretching piece, a clamping piece and a stirring piece, the separating and stretching piece is arranged on one side of the storage vat, the clamping piece is connected to one side of the frame, which is close to the separating and stretching piece, the clamping piece is used for clamping the separated and stretched plate, the stirring piece is arranged above the separating and stretching piece, and the stirring piece is rotationally connected to the frame and is used for stirring the bipolar plate to the conveying assembly; the conveying component is arranged on one side of the clamping piece. This application has the effect of being convenient for carry bipolar plate, improvement production efficiency.

Description

Double-pole plate feeding and separating system and method
Technical Field
The application relates to the technical field of bipolar plate production, in particular to a bipolar plate feeding and separating system and a bipolar plate feeding and separating method.
Background
Bipolar plates are one of the important components of fuel cells for providing gas and liquid flow channels, separating hydrogen from oxygen, conducting electrical current, dissipating heat, structural support, and the like.
The bipolar plates, together with the membrane electrode, seal assembly, collector plate, and end plates, typically form a fuel cell, and the bipolar plates provide gas flow channels to prevent hydrogen and oxygen in the cell gas chamber from crossing and to establish a current path between the anode and cathode electrodes in series to produce the fuel cell.
In the prior art, when bipolar plates are produced in a combined way, the bipolar plates are required to be sequentially placed on a conveyor belt for conveying, the bipolar plates are conveyed to a processing position through the conveyor belt, and the bipolar plates are usually placed on the conveyor belt for manual operation.
For the above related art, there are technical drawbacks as follows: operators are inconvenient to take the bipolar plates and have low efficiency, so that the bipolar plates are inconvenient to convey, and the production efficiency is reduced.
Disclosure of Invention
In order to facilitate conveying of bipolar plates and improve production efficiency, the application provides a bipolar plate feeding and separating system and a bipolar plate feeding and separating method.
The bipolar plate feeding and separating system and the bipolar plate feeding and separating method adopt the following technical scheme:
a bipolar plate feeding and separating system and method comprises a storage component, a separating component and a conveying component; the storage assembly comprises a storage barrel and a lifting component arranged in the storage barrel, the storage barrel is used for placing the bipolar plate, the surface of the bipolar plate is parallel to the bottom surface of the storage barrel, and the lifting component is used for placing the bipolar plate and lifting the bipolar plate; the device comprises a storage vat, a frame, a separating assembly, a stirring assembly and a bipolar plate, wherein the frame is arranged above the storage vat; the conveying assembly is arranged on one side of the clamping piece and is used for conveying and feeding the plates.
Through adopting above-mentioned technical scheme, pile up a plurality of bipolar plates and place in the storage vat, divide the piece to every bipolar plate to the back of opening, the lifting of corresponding height is just carried out to the bipolar plate in the storage vat to the lifting part to make the operation that divides the piece to the bipolar plate to open the back, the clamping part carries out the centre gripping to the bipolar plate after opening, stir the piece and stir the bipolar plate and make the one end and the conveying subassembly butt of bipolar plate, under the effect of frictional force, bipolar plate gets into conveying subassembly and conveying subassembly transports bipolar plate, thereby be convenient for carry bipolar plate, improvement production efficiency.
Optionally, the lifting part includes lifting plate and lifting drive, and lifting plate sliding connection is in the storage vat, and the lifting drive is located between the bottom of lifting plate in the storage vat, and the lifting drive is used for lifting plate.
By adopting the technical scheme, the lifting drive is started to lift the lifting plate, each bipolar plate is separated by the lifting drive, the lifting drive corresponds to the same distance as the thickness of one bipolar plate, and the bipolar plate is separated by the separating piece conveniently.
Optionally, the storage subassembly is provided with two, and two storage subassemblies end to end are equipped with drive assembly below two storage subassemblies, and drive assembly is used for driving two storage subassemblies reciprocating motion.
Through adopting above-mentioned technical scheme, set up two storage components, after bipolar plate in one of them storage vat divides the open and ends, drive assembly can drive another storage vat and change the storage vat that current division was ended to shorten the time to the material loading in the storage vat, with this material loading efficiency that improves.
Optionally, stir the piece and include driving lever and a plurality of plectrum, the driving lever rotates to be connected in the frame, and driving lever one end is equipped with first drive, and first drive is used for driving the driving lever and rotates, and a plurality of plectrums are along driving lever circumference setting, leave the lifting chamber between every two plectrums.
Through adopting above-mentioned technical scheme, stir when the piece stirs bipolar plate, start first drive, first drive drives the driving lever and rotates, and the driving lever drives the plectrum and accept bipolar plate for bipolar plate is located the lifting intracavity and moves along with the rotation of plectrum, is convenient for convey bipolar plate to the conveying subassembly on.
Optionally, the holder includes grip block, centre gripping drive and lift drive, the spout has been seted up to one side that the frame is close to the driving lever, and the grip block is located the spout and can follow the spout and go up and down, and the spout slope sets up, and the incline direction of spout is close to the driving lever gradually until being located the driving lever top, and the centre gripping drive is connected with the grip block, and the centre gripping drive is used for driving the centre gripping block and is close to or keep away from the central axis of storage vat, and lift drive is connected with the centre gripping drive, and lift drive is used for driving the centre gripping drive and goes up and down.
Through adopting above-mentioned technical scheme, bipolar plate divides after opening, and the centre gripping drive drives the grip block and carries out the centre gripping to bipolar plate, after the centre gripping bipolar plate, and lift drive drives centre gripping drive and grip block together and is close to the conveying subassembly, until bipolar plate and conveying subassembly butt, the bipolar plate of being convenient for be accurate places on conveying subassembly.
Optionally, the frame is equipped with the gag lever post in the one end that the storage vat was kept away from the piece of stirring above, and the both ends of gag lever post are equipped with the installation piece respectively, and the installation piece can be followed the frame and goes up and down, is equipped with the elastic component on the installation piece, and elastic component one end is connected with the installation piece, and the other end is connected with the frame, and the compression direction of elastic component is the same with the direction of lifting of installation piece.
Through adopting above-mentioned technical scheme, the gag lever post passes through installation piece and elastic component elastic connection in the frame, and when bipolar plate divides to open, the gag lever post can block the one end that bipolar plate is close to the gag lever post to the bipolar plate is close to the one end that divides to open the piece and divides to open, and the gag lever post can also verify the lifting distance of bipolar plate, is convenient for observe the bipolar plate and is close to the distance that divides to open the piece.
Optionally, the storage vat bottom is equipped with the moving part, and the moving part is used for removing the storage vat, drive assembly is including rack and the gear of locating the storage vat bottom, and the rack transversely sets up in two storage vat bottoms, gear and rack engagement are equipped with the second drive on the gear, and the storage vat below is located in the second drive, and the second drive is used for driving gear rotation.
Through adopting above-mentioned technical scheme, when changing the storage vat, start the second drive, the second drive drives gear rotation, and the gear drives rack horizontal migration, and the rack removes then drives the storage vat and removes, is convenient for change the storage vat.
Optionally, the frame is equipped with the limiting plate in gag lever post department, and storage vat is close to gag lever post department and is equipped with the butt board, butt board can with the limiting plate butt.
Through adopting above-mentioned technical scheme, limiting plate can prescribe a limit to the position of removal storage vat, is convenient for remove the storage vat to divide the subassembly below.
On the other hand, the application also provides an operation step suitable for the bipolar plate feeding and separating system.
A bipolar plate feeding and separating method comprises the following operation steps:
s1, stacking a plurality of bipolar plates in a storage barrel, and enabling one end of each bipolar plate to be positioned below a limiting rod, wherein the symmetrical end of each bipolar plate is close to a separating piece;
s2, starting a separating piece and a first drive, wherein the separating piece blows up one end of the bipolar plate, and meanwhile, the first drive drives a deflector rod to rotate, and the deflector sheet supports the blown bipolar plate;
s3, clamping one end of the bipolar plate, which is blown up, by the clamping piece, and driving the bipolar plate to abut against the conveying assembly by using the clamping drive;
and S4, carrying and conveying the bipolar plates by the conveying assembly.
Through adopting above-mentioned technical scheme, divide and stretch out the piece and carry bipolar plate to the conveying subassembly by clamping part and stirring piece after carrying out the branch to bipolar plate in the storage vat, carry bipolar plate by conveying subassembly at last to be convenient for carry bipolar plate, improve production efficiency.
In summary, the present application includes at least one of the following beneficial technical effects.
Through setting up the storage vat, can place a plurality of bipolar plates in the storage vat, make a plurality of bipolar plates in pile up the state, then the lifting subassembly lifts bipolar plate, until bipolar plate lifts to divide one side of the piece, divide after the piece divides the bipolar plate to open, stir piece and holder and carry out the short distance to bipolar plate, make bipolar plate be close to the conveying subassembly and with conveying subassembly butt, carry bipolar plate by conveying subassembly at last, high-efficient transport bipolar plate improves production efficiency; through setting up the storage vat into two and set up drive assembly in the storage vat below, drive assembly can drive two storage vaults and take turns to the operation in the piece below of dividing, improves the speed of changing the storage vat to improve bipolar plate's material loading efficiency.
Drawings
Fig. 1 is a schematic diagram of the overall structure of a bipolar plate feeding and separating system.
Fig. 2 is a perspective cross-sectional view of a bipolar plate loading and dispensing system in accordance with an embodiment of the present application.
Fig. 3 is a partial front cross-sectional view of a bipolar plate loading and dispensing system in accordance with an embodiment of the present application.
Fig. 4 is a partial front cross-sectional view of a bipolar plate loading and dispensing system in accordance with an embodiment of the present application.
Fig. 5 is an enlarged view of a portion a in fig. 3.
Fig. 6 is a schematic structural view of the separating member and the toggle member of the present application.
Fig. 7 is a perspective cross-sectional view of another view of a bipolar plate loading and dispensing system in accordance with an embodiment of the present application.
Reference numerals: 1. a storage assembly; 11. a storage barrel; 111. a moving member; 112. an abutting plate; 12. a lifting member; 121. a lifting plate; 122. lifting and driving; 2. a separating assembly; 21. separating pieces; 22. a clamping member; 221. a clamping block; 222. clamping driving; 223. lifting driving; 23. a toggle member; 231. a deflector rod; 232. a pulling piece; 233. a first drive; 24. a lifting cavity; 3. a transfer assembly; 4. a frame; 41. a limiting plate; 42. a chute; 5. a drive assembly; 51. a rack; 52. a gear; 53. a second drive; 6. a limit rod; 61. a mounting block; 62. an elastic member; 7. a bipolar plate.
Detailed Description
The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to fig. 1 to 7 of the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, but not all embodiments.
The embodiment of the application discloses a bipolar plate feeding and separating system and a bipolar plate feeding and separating method.
Referring to fig. 1 and 2, a bipolar plate feeding and separating system and method comprises a storage component 1, a separating component 2 and a conveying component 3; the storage component 1 comprises a storage barrel 11 and a lifting part 12 arranged in the storage barrel 11, wherein the storage barrel 11 is used for placing the bipolar plate 7, the surface of the bipolar plate 7 is parallel to the bottom surface of the storage barrel 11, and the lifting part 12 is used for placing the bipolar plate 7 and lifting the bipolar plate 7; a frame 4 is arranged above the storage barrel 11.
Referring to fig. 2 and 3, the separating assembly 2 is arranged above the storage vat 11 and is connected with the frame 4, the separating assembly 2 comprises a separating piece 21, a clamping piece 22 and a poking piece 23, the separating piece 21 is a pneumatic plate separating device, the separating piece 21 is arranged on one side of the storage vat 11, the separating piece 21 can separate a plurality of plates stacked in the storage vat 11, the clamping piece 22 is slidably connected to one side of the frame 4 close to the separating piece 21, the clamping piece 22 is used for clamping the separated plates, the poking piece 23 is arranged above the separating piece 21, and the poking piece 23 is rotatably connected to the frame 4 and is used for poking the bipolar plate 7 to the conveying assembly 3; the conveying component 3 is arranged on the frame 4, the conveying component 3 is arranged on one side of the clamping piece 22, the conveying component 3 is used for conveying and feeding plates, the conveying component 3 can be a baffle type conveying belt or a common conveying belt, the conveying component 3 in the embodiment is a belt type conveying belt, two groups of belt type conveying belts are arranged in the embodiment, one group of belt type conveying belts is close to the stirring piece 23 and is obliquely arranged, the lower end of the belt type conveying belts is close to the stirring piece 23 and is convenient for carrying the bipolar plate 7 into the conveying component 3, the other group of belt type conveying belts are horizontally arranged and are used for conveying the bipolar plate 7, meanwhile, in order to improve friction between the bipolar plate 7 and the conveying belt, a rubber layer is adhered on the surface of the belt type conveying belt, and is used for increasing friction between the bipolar plate 7 and the conveying belt, so that the stirring piece 23 and the clamping piece 22 can push the bipolar plate 7 into the conveying component 3.
Referring to fig. 3, the lifting component 12 includes a lifting plate 121 and a lifting drive 122, the lifting plate 121 is slidably connected in the storage vat 11, the peripheral side wall of the lifting plate 121 is attached to the inner side wall of the storage vat 11, the lifting drive 122 is located between the lifting plate 121 and the bottom of the storage vat 11, the lifting drive 122 is used for lifting the lifting plate 121, the lifting drive 122 can be a cylinder or a jack, in this embodiment, the lifting drive 122 is four jacks uniformly distributed below the lifting plate 121, a plc controller is electrically connected to the jacks, and the plc controller is convenient for setting each ejection path of the jack according to different bipolar plates 7.
Referring to fig. 3 and 4, two storage components 1 are provided, the two storage components 1 are connected end to end, a driving component 5 is arranged below the two storage components 1, and the driving component 5 is used for driving the two storage components 1 to reciprocate. The bottom of the storage vat 11 is provided with a moving part 111, the moving part 111 is used for moving the storage vat 11, the moving part 111 can be four directional pulleys or four brake universal wheels, and in the embodiment, the moving part 111 is four directional pulleys. Wherein, the storage vat 11 in two storage components 1 laminating each other, storage vat 11 is the cuboid form, frame 4 is close to storage vat 11 left position integrated into one piece and has limiting plate 41, storage vat 11 is close to gag lever post 6 department welding has the butt board 112, butt board 112 can with limiting plate 41 butt to when butt board 112 and limiting plate 41 laminating, be equipped with the lateral wall and the limiting plate 41 parallel and level of butt board 112 in the storage vat 11, thereby be convenient for bipolar plate 7 lifting, reduce the possibility of bipolar plate 7 joint in limiting plate 41 department.
Referring to fig. 3, the driving assembly 5 includes a rack 51 and a gear 52 disposed at the bottom of the storage tanks 11, the rack 51 is fixedly connected to the bottom of the storage tanks 11 through bolts, the rack 51 is transversely disposed at the bottoms of the two storage tanks 11, the gear 52 is meshed with the rack 51, the gear 52 is disposed below the rack 51 through a fixing seat, a second drive 53 is connected to the gear 52 through a key, the second drive 53 is a servo motor, and the second drive 53 is used for driving the gear 52 to rotate. The second drive 53 rotates to drive the gear 52 to rotate so as to drive the rack 51 to move, and the storage barrels 11 are driven by the moving piece 111 to move when the rack 51 moves, so that the two storage barrels 11 are driven to feed under the separating piece 21 respectively.
Referring to fig. 5 and 6, the toggle member 23 includes a toggle lever 231 and a plurality of toggle plates 232, the toggle lever 231 is rotatably connected to the frame 4 through a rotating shaft, one end of the toggle lever 231 is provided with a first drive 233, the first drive 233 is a servo motor, the first drive 233 is connected with the toggle lever 231 through a coupling, and the first drive 233 is used for driving the toggle lever 231 to rotate; in this embodiment, the number of the shifting sheets 232 is five, the five shifting sheets 232 are circumferentially arranged along the rotation axis of the shifting lever 231, the shifting sheets 232 are arc-shaped rubber sheets with upward inner concave surfaces, a lifting cavity 24 is reserved between every two shifting sheets 232, one end of the bipolar plate 7 after being separated can enter the lifting cavity 24, and when the shifting lever 231 rotates, the shifting lever 231 lifts the bipolar plate 7 again, so that one end of the bipolar plate 7 is close to the conveying assembly 3.
Referring to fig. 6 and 7, the clamping member 22 includes a clamping block 221, a clamping drive 222 and a lifting drive 223, a sliding groove 42 is formed in one side, close to the deflector rod 231, of the frame 4, the sliding groove 42 is obliquely arranged, the inclined direction of the sliding groove 42 gradually approaches to the deflector rod 231 until being located above the deflector rod 231, the clamping block 221 is located in the sliding groove 42 and can slide along the sliding groove 42, the sliding direction of the clamping block 221 gradually approaches to the deflector rod 231, the clamping drive 222 is fixedly connected with the clamping block 221 through bolts, the clamping drive 222 is horizontally arranged in the sliding groove 42, the clamping drive 222 is used for driving the clamping block 221 to approach to or far away from the central axis of the storage barrel 11, the lifting drive 223 is fixedly connected with the clamping drive 222 through a fixing seat, the advancing direction of the lifting drive 223 is the same as the sliding direction of the clamping block 221, the lifting drive 223 is used for driving the clamping drive 222 to lift, and the clamping drive 222 and the lifting drive 223 are cylinders. In order to improve the stability of clamping the bipolar plate 7 and moving the bipolar plate 7, two clamping pieces 22 are provided, the two clamping pieces 22 are symmetrically arranged on the frame 4, the clamping driving piece 221 is driven by the clamping driving piece 222 to clamp the bipolar plate 7, and the lifting driving piece 223 ejects the clamping driving piece 222 and the clamping piece 221 after the clamping piece 221 clamps the bipolar plate 7, so that the bipolar plate 7 is close to the conveying assembly 3, and the bipolar plate 7 is convenient to convey.
Referring to fig. 7, the frame 4 is rotatably connected with a stop lever 6 through a rotating shaft at one end, far away from the stirring piece 23, above the storage vat 11, two ends of the stop lever 6 are respectively provided with an installation block 61, two ends of the stop lever 6 are respectively rotatably connected with the installation block 61, the installation block 61 is slidably connected on the frame 4 in a sliding block and sliding groove mode, the installation block 61 can ascend and descend along the frame 4, an elastic piece 62 is welded on the installation block 61, the elastic piece 62 is a spring, one end of the elastic piece 62 is welded with the installation block 61, the other end of the elastic piece 62 is welded with the frame 4, and the compression direction of the elastic piece 62 is the same as the lifting direction of the installation block 61. The limit rod 6 can abut against the bipolar plate 7, does not influence the movable range of the bipolar plate 7, and plays a certain guiding role on the bipolar plate 7.
The implementation principle of the bipolar plate feeding and separating system and the bipolar plate feeding and separating method provided by the embodiment of the application is as follows: stacking a plurality of bipolar plates 7 in a storage bucket 11, attaching a limiting plate 41 to an abutting plate 112, starting a separating piece 21, blowing the bipolar plates 7 to separate by the separating piece 21, clamping the bipolar plates 7 by a clamping piece 22 and conveying the bipolar plates 7 in a short distance, attaching one end of the bipolar plates 7 to a conveying assembly 3, and conveying the bipolar plates 7 by the conveying assembly 3; after the bipolar plates 7 in one storage vat 11 are conveyed, the driving assembly 5 is started to move the storage vat 11, the other storage assembly 1 filled with a plurality of bipolar plates 7 is moved to the lower part of the separating piece 21 to separate the bipolar plates again, and the bipolar plates 7 are additionally arranged in the storage vat 11 to wait for the storage vat 11 to be moved again, so that the bipolar plates 7 are conveyed conveniently, and the production efficiency is improved.
In addition, the application also discloses the operation steps of the bipolar plate feeding and separating method:
s1, stacking a plurality of bipolar plates 7 in a storage bucket 11, wherein one end of the bipolar plates 7 is positioned below a limiting rod 6, and the other end symmetrical to the limiting rod 6 is close to a separating piece 21, so that the separating piece 21 can separate the stacked bipolar plates 7 conveniently;
s2, starting the separating piece 21 and the first drive 233, wherein the separating piece 21 blows up one end of the bipolar plate 7, the first drive 233 drives the deflector rod 231 to rotate, and the deflector piece 232 supports and dials the blown bipolar plate 7 to enable the bipolar plate 7 to be close to the conveying assembly 3;
s3, clamping one end of the bipolar plate 7 blown up by the clamping piece 22, starting the lifting drive 223, and driving the clamping drive 222 and the clamping block 221 by the lifting drive 223 to move the bipolar plate 7, so that one end of the bipolar plate 7 is close to the conveying assembly 3 until the bipolar plate is abutted against the conveying assembly 3;
s31, after the bipolar plates 7 in one storage vat 11 are conveyed, starting the driving assembly 5, so that the driving assembly 5 drives the other storage vat 11 with the bipolar plates 7 to move below the separating piece 21, and the bipolar plates 7 are continuously separated and conveyed, so that the feeding speed in the storage vat 11 is shortened, and the conveying efficiency of the bipolar plates 7 is further improved;
and S4, carrying and conveying the bipolar plate 7 by the conveying assembly 3.
The foregoing is only a preferred embodiment of the present invention, but the scope of the present invention is not limited thereto, and any person skilled in the art, who is within the scope of the present invention, should make equivalent substitutions or modifications according to the technical scheme of the present invention and the inventive concept thereof, and should be covered by the scope of the present invention.

Claims (5)

1. A bipolar plate material loading divides system of opening which characterized in that: comprises a storage component (1), a separating component (2) and a conveying component (3);
the storage component (1) comprises a storage vat (11) and a lifting part (12) arranged in the storage vat (11), wherein the storage vat (11) is used for placing the bipolar plate (7), the surface of the bipolar plate (7) is parallel to the bottom surface of the storage vat (11), and the lifting part (12) is used for placing the bipolar plate (7) and lifting the bipolar plate (7);
the automatic double-pole plate conveying device is characterized in that a rack (4) is arranged above the storage vat (11), the separating assembly (2) is arranged above the storage vat (11) and is connected with the rack (4), the separating assembly (2) comprises a separating piece (21), a clamping piece (22) and a stirring piece (23), the separating piece (21) is arranged on one side of the storage vat (11) and is used for separating a plurality of plates stacked in the storage vat (11), the clamping piece (22) is slidably connected to one side, close to the separating piece (21), of the rack (4), the clamping piece (22) is used for clamping the separated plates, the stirring piece (23) is arranged above the separating piece (21), and the stirring piece (23) is rotatably connected to the rack (4) and is used for stirring the double-pole plate (7) to the conveying assembly (3);
the stirring piece (23) comprises a stirring rod (231) and a plurality of stirring sheets (232), the stirring rod (231) is rotationally connected to the rack (4), a first drive (233) is arranged at one end of the stirring rod (231), the first drive (233) is used for driving the stirring rod (231) to rotate, the stirring sheets (232) are circumferentially arranged along the stirring rod (231), and a lifting cavity (24) is reserved between every two stirring sheets (232);
the conveying assembly (3) is arranged on one side of the clamping piece (22), and the conveying assembly (3) is used for conveying and feeding the plates;
the clamping piece (22) comprises a clamping block (221), a clamping drive (222) and a lifting drive (223), wherein a chute (42) is formed in one side, close to the deflector rod (231), of the frame (4), the clamping block (221) is positioned in the chute (42) and can ascend and descend along the chute (42), the chute (42) is obliquely arranged, the inclined direction of the chute (42) gradually approaches the deflector rod (231) until being positioned above the deflector rod (231), the clamping drive (222) is connected with the clamping block (221), the clamping drive (222) is used for driving the clamping block (221) to approach or depart from the central axis of the storage barrel (11), the lifting drive (223) is connected with the clamping drive (222), and the lifting drive (223) is used for driving the clamping drive (222) to ascend and descend;
the frame (4) is provided with a limit rod (6) at one end, far away from the stirring piece (23), above the storage vat (11), two ends of the limit rod (6) are respectively provided with a mounting block (61), the mounting blocks (61) can be lifted along the frame (4), the mounting blocks (61) are provided with elastic pieces (62), one ends of the elastic pieces (62) are connected with the mounting blocks (61), the other ends of the elastic pieces (62) are connected with the frame (4), and the compression direction of the elastic pieces (62) is the same as the lifting direction of the mounting blocks (61);
the frame (4) is equipped with limiting plate (41) in gag lever post (6) department, and storage vat (11) are close to gag lever post (6) department and are equipped with butt board (112), butt board (112) can with limiting plate (41) butt.
2. A bipolar plate loading and separating system as in claim 1, wherein: the lifting part (12) comprises a lifting plate (121) and a lifting drive (122), the lifting plate (121) is connected in the storage barrel (11) in a sliding mode, the lifting drive (122) is located between the lifting plate (121) and the bottom of the storage barrel (11), and the lifting drive (122) is used for lifting the lifting plate (121).
3. A bipolar plate loading and separating system as in claim 1, wherein: the storage assembly (1) is provided with two, and two storage assemblies (1) are connected end to end, and two storage assemblies (1) below is equipped with drive assembly (5), and drive assembly (5) are used for driving two storage assemblies (1) reciprocating motion.
4. A bipolar plate loading and separating system as in claim 3, wherein: the storage vat (11) bottom is equipped with moving part (111), and moving part (111) are used for removing storage vat (11), drive assembly (5) are including rack (51) and gear (52) of locating storage vat (11) bottom, and rack (51) transversely set up in two storage vat (11) bottoms, and gear (52) and rack (51) meshing are equipped with second drive (53) on gear (52), and storage vat (11) below is located to second drive (53), and second drive (53) are used for driving gear (52) rotation.
5. A bipolar plate feeding and separating method for using the feeding and separating system as claimed in any one of claims 1-4, characterized in that the using method is as follows:
s1, stacking a plurality of bipolar plates (7) in a storage barrel (11), and enabling one end of the bipolar plates (7) to be positioned below a limiting rod (6) and the symmetrical end of the bipolar plates to be close to a separating piece (21);
s2, starting a separating piece (21) and a first drive (233), wherein the separating piece (21) blows up one end of the bipolar plate (7), and simultaneously the first drive (233) drives a deflector rod (231) to rotate, and the deflector piece (232) supports the blown bipolar plate (7);
s3, clamping one end of the bipolar plate (7) blown up by the clamping piece (22), and driving the bipolar plate (7) to be abutted with the conveying assembly (3) by using the clamping drive (222);
and S4, carrying and conveying the bipolar plate (7) by the conveying assembly (3).
CN202310286568.3A 2023-03-23 2023-03-23 Double-pole plate feeding and separating system and method Active CN116062489B (en)

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