CN106684307A - Automatic liquid-injecting device for battery - Google Patents

Automatic liquid-injecting device for battery Download PDF

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Publication number
CN106684307A
CN106684307A CN201611259950.1A CN201611259950A CN106684307A CN 106684307 A CN106684307 A CN 106684307A CN 201611259950 A CN201611259950 A CN 201611259950A CN 106684307 A CN106684307 A CN 106684307A
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CN
China
Prior art keywords
electrokinetic cell
battery
fluid injection
fixture
liquid
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
CN201611259950.1A
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Chinese (zh)
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CN106684307B (en
Inventor
何仁雄
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
SHENZHEN HENGRUIXING AUTOMATION EQUIPMENT CO Ltd
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SHENZHEN HENGRUIXING AUTOMATION EQUIPMENT CO Ltd
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Priority to CN201611259950.1A priority Critical patent/CN106684307B/en
Publication of CN106684307A publication Critical patent/CN106684307A/en
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Publication of CN106684307B publication Critical patent/CN106684307B/en
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    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01MPROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
    • H01M50/00Constructional details or processes of manufacture of the non-active parts of electrochemical cells other than fuel cells, e.g. hybrid cells
    • H01M50/60Arrangements or processes for filling or topping-up with liquids; Arrangements or processes for draining liquids from casings
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01MPROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
    • H01M10/00Secondary cells; Manufacture thereof
    • H01M10/04Construction or manufacture in general
    • H01M10/0404Machines for assembling batteries
    • 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
    • Y02E60/10Energy storage using batteries
    • 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
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P70/00Climate change mitigation technologies in the production process for final industrial or consumer products
    • Y02P70/50Manufacturing or production processes characterised by the final manufactured product

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  • Chemical & Material Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Electrochemistry (AREA)
  • General Chemical & Material Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Manufacturing & Machinery (AREA)
  • Secondary Cells (AREA)
  • Filling, Topping-Up Batteries (AREA)

Abstract

The invention belongs to the field of battery production equipment and especially relates to an automatic liquid-injecting device for a battery. A conveying slot which extends along an X direction is formed in a support platform; a liquid injecting position, a plurality of vacuum standing positions and a plurality of natural standing positions are formed on the conveying slot; power batteries are placed in positioning slots of power battery clamps; a plurality of power battery clamps are conveyed from the front end to the tail end of the conveying slot by a first X-directional conveying mechanism; electrolyte is injected into the power battery on the power battery clamp on the liquid injecting position through a battery liquid injecting device; the power batteries on the power battery clamps on the vacuum standing positions are vacuumized through the corresponding vacuumizing devices; the power batteries on the power battery clamps on the natural standing positions naturally stand; and multiple stations work simultaneously, so that the production efficiency is increased, and the whole structure is compact.

Description

Battery automatic fluid injection equipment
Technical field
The invention belongs to battery production equipment field, more particularly to battery automatic fluid injection equipment.
Background technology
The features such as electrokinetic cell has big specific energy height, specific power, long service life, working range width, has been applied to In pure electronic gas car, hybrid vehicle and fuel cell car.Using existing battery automatic fluid injection equipment, electrokinetic cell clamping On fixture, fixture is transmitted by transporter, fluid injection is carried out to the battery on fixture by battery liquid-filling device, by vacuum extractor Vacuum standing is carried out to battery, overall structure takes up room, and production efficiency is relatively low.
The content of the invention
It is an object of the invention to provide a kind of battery automatic fluid injection equipment, it is intended to solve existing battery automatic fluid injection equipment The technical problem that overall structure takes up room and production efficiency is relatively low.
The present invention is achieved in that battery automatic fluid injection equipment, including:
Electrokinetic cell fixture with some locating slots;
For transmitting the transporter of the electrokinetic cell fixture, it includes the support for having along X to the conveying trough for extending Platform and by positioned at the conveying trough front end electrokinetic cell fixture push to the conveying trough end an X to conveyer Structure, if the conveying trough be sequentially formed between its front end and end a fluid injection position, dry vacuum stand position it is naturally quiet with some Set;
Battery liquid-filling device at the fluid injection position;And
Correspond the vacuum extractor at vacuum standing position.
Having the technical effect that relative to prior art of the invention, supporting table has along X to the conveying trough for extending, and transmits flute profile If Cheng Youyi fluid injections position, dry vacuum stand position and stand position naturally with some, electrokinetic cell is positioned over the positioning of electrokinetic cell fixture Groove.Some electrokinetic cell fixtures are sent to end, the power current of fluid injection position to connecting gear by an X by the front end of conveying trough Electrokinetic cell on the fixture of pond injects electrolyte by battery liquid-filling device, if dry vacuum is stood on the electrokinetic cell fixture of position Electrokinetic cell is by corresponding vacuum extractor evacuation, and the electrokinetic cell of some electrokinetic cell fixtures for standing position naturally is naturally quiet Put, multistation is carried out simultaneously, production efficiency is improved, compact overall structure.
Description of the drawings
Fig. 1 is the three-dimensional installation diagram of battery automatic fluid injection equipment provided in an embodiment of the present invention;
Fig. 2 be Fig. 1 battery automatic fluid injection equipment in close to clamping position partial enlarged drawing;
Fig. 3 be Fig. 1 battery automatic fluid injection equipment in close to unloading clip position partial enlarged drawing;
Fig. 4 is the three-dimensional installation diagram of another angle of the battery automatic fluid injection equipment of Fig. 1;
Fig. 5 be Fig. 4 battery automatic fluid injection equipment in close to clamping position partial enlarged drawing;
Fig. 6 is the sectional view along line A-A of the battery automatic fluid injection equipment of Fig. 2;
Fig. 7 be Fig. 2 battery automatic fluid injection equipment in structural representation from the X that applies to connecting gear;
Fig. 8 be Fig. 2 battery automatic fluid injection equipment in structural representation from the 3rd X that applies to connecting gear;
Fig. 9 be Fig. 1 battery automatic fluid injection equipment in the three-dimensional installation diagram of electrokinetic cell fixture applied;
Figure 10 is the three-dimensional exploded view of the electrokinetic cell fixture of Fig. 9;
Figure 11 is the sectional view of the electrokinetic cell fixture of Fig. 9;
Figure 12 be Fig. 9 electrokinetic cell fixture in the sliding chute seat applied, the first sliding part, the second sliding part it is elastic with first The three-dimensional installation diagram of part;
Figure 13 is the three-dimensional exploded view of the electrokinetic cell fixture of Figure 12;
Figure 14 is the further three-dimensional exploded view of the electrokinetic cell fixture of Figure 13;
Figure 15 be Fig. 1 battery automatic fluid injection equipment in the three-dimensional installation diagram of battery liquid-filling device applied;
Figure 16 is the three-dimensional installation diagram of another angle of the battery liquid-filling device of Figure 15;
Figure 17 is the partial sectional view of the battery liquid-filling device of Figure 15.
Specific embodiment
In order that the objects, technical solutions and advantages of the present invention become more apparent, it is right below in conjunction with drawings and Examples The present invention is further elaborated.It should be appreciated that specific embodiment described herein is only to explain the present invention, and It is not used in the restriction present invention.
Refer to Fig. 1 to Fig. 3, Fig. 9, battery automatic fluid injection equipment provided in an embodiment of the present invention, including with some fixed The electrokinetic cell fixture 100 of position groove 191;For transmitting the transporter 300 of electrokinetic cell fixture 100, it include have along X to The supporting table 310 of the conveying trough 311 of extension and transmission will be pushed to positioned at the electrokinetic cell fixture 100 of front end of conveying trough 311 To connecting gear 330, conveying trough 311 is sequentially formed with a fluid injection position to first X of the end of groove 311 between its front end and end If 310c, dry vacuum stand position 310d and stand position 310e naturally with some;Battery liquid-filling device at the 310c of fluid injection position 200;And one-to-one corresponding stands the vacuum extractor 400 at the 310d of position located at vacuum.
Supporting table 310 has along X to the conveying trough 311 for extending, and conveying trough 311 is formed with fluid injection position 310c, a Ruo Ganzhen Sky stands position 310d and stands position 310e naturally with some, and electrokinetic cell 900 is positioned over the locating slot 191 of electrokinetic cell fixture 100. Some electrokinetic cell fixtures 100 are sent to end, fluid injection position to connecting gear 330 by an X by the front end of conveying trough 311 Electrokinetic cell 900 on the electrokinetic cell fixture 100 of 310c injects electrolyte by battery liquid-filling device 200, if dry vacuum is quiet Electrokinetic cell 900 on the electrokinetic cell fixture 100 of set 310d is by the evacuation of corresponding vacuum extractor 400, some natures The electrokinetic cell 900 for standing the electrokinetic cell fixture 100 of position 310e stands naturally, and multistation is carried out simultaneously, and production efficiency is improved, Compact overall structure.
X to, Y-direction, three directions of Z-direction are mutually perpendicular to two-by-two.Wherein, X is to the flow direction for being electrokinetic cell fixture 100. Vacuum extractor 400 includes the Z-direction actuator 401 that output Z-direction is moved, the vacuum moved by the drives edge Z-direction of Z-direction actuator 401 Case 402.Vacuum tank 402 is moved down so that the electrokinetic cell fixture 100 of the dynamic battery 900 of clamping is sealed in vacuum tank 402, To the evacuation of vacuum tank 402, realize to the evacuation of electrokinetic cell 900 so that electrolyte more preferably absorbs.
Further, supporting table 310 has the clamping position 310a and unloading clip position 310b being oppositely arranged, before conveying trough 311 Adjacent to clamping position 310a, adjacent to unloading clip position 310b, transporter 300 is also included located at unloading clip for the end of conveying trough 311 at end The returning machine of clamping position 310a is sent between the 310b and clamping position 310a of position and by the electrokinetic cell fixture 100 of unloading clip position 310b Structure 350.Clamping position 310a is used for feeding device 600 or manually electrokinetic cell 900 is positioned over into electrokinetic cell fixture 100.Unload Folder position 310b is used for blanking device 700 or manually takes out electrokinetic cell 900 from power battery clamp 100.Electrokinetic cell 900 As electrokinetic cell fixture 100 is transmitted by transporter 300.Passback mechanism 350 is back to empty electrokinetic cell fixture 100 Clamping position 310a, improve production efficiency.
Further, Fig. 3, Fig. 5 are referred to, transporter 300 also includes to press from both sides positioned at the electrokinetic cell of clamping position 310a Tool 100 pushes to the first Y-direction connecting gear 320 of the front end of conveying trough 311 and presss from both sides the electrokinetic cell of the end of conveying trough 311 Tool 100 pushes to the second Y-direction connecting gear 340 of unloading clip position 310b.The electrokinetic cell fixture of the clamping position 310a of supporting table 310 After the dynamic battery 900 of 100 clampings, the front end of conveying trough 311 is sent to by the first Y-direction connecting gear 320.First X is to transmission Electrokinetic cell fixture 100 at the front end of conveying trough 311 is sent to the end of conveying trough 311 by mechanism 330, dynamic on period fixture The experience fluid injection of power battery 900, vacuum stand, stand naturally.Again unloading clip position 310b is sent to by the second Y-direction connecting gear 340.Should The transporter 300 of electrokinetic cell fixture 100 configures less dynamical element, overall linearly arrangement, compact conformation, production efficiency It is high.
Further, supporting table 310 offers the first hollow slots 312 extended along Y-direction at the front end of conveying trough 311, Located at the lower section of supporting table 310, the first Y-direction connecting gear 320 is provided with for propulsion power electricity first Y-direction connecting gear 320 First allocated catch 321 of pond fixture 100, the first allocated catch 321 is arranged in the first hollow slots 312.Program compact conformation, can be by power Battery clamp 100 is pushed to the front end of conveying trough 311 by clamping position 310a.First Y-direction connecting gear 320 is cylinder, easily control System.The output shaft of the first Y-direction connecting gear 320 is provided with Z-direction actuator 322, and Z-direction actuator 322 is driven in the first allocated catch 321 Lower movement.When the first allocated catch 321 is passed through in the first hollow slots 312, the first allocated catch 321 can propulsion power battery clamp 100; When first allocated catch 321 is retracted to the first hollow slots 312, avoidance starts power battery clamp 100.Two correspondences of the first allocated catch 321 are worn Located at two the first hollow slots 312, with propulsion power battery clamp 100.Z-direction actuator 322 is cylinder.
Further, please refer to Fig. 2, Fig. 7, supporting table 310 is offered along X to prolonging at the front end of conveying trough 311 The second hollow slots 313 stretched, to connecting gear 330 located at the lower section of supporting table 310, an X is on connecting gear 330 for an X The second allocated catch 331 for propulsion power battery clamp 100 is provided with, the second allocated catch 331 is arranged in the second hollow slots 313.The party Multiple electrokinetic cell fixtures 100 can be pushed to end by case compact conformation by the front end of conveying trough 311.First X is to connecting gear 330 is cylinder, is easily controlled.First X to the output shaft of connecting gear 330 is provided with contiguous block 332, and the second allocated catch 331 is rotated It is connected on contiguous block 332, an elastic component 333 is connected between the second allocated catch 331 and contiguous block 332, the second allocated catch 331 is initial It is obliquely installed.Second allocated catch 331 toward the front end of conveying trough 311 move when, second allocated catch 331 that offsets of electrokinetic cell fixture 100 makes It is pushed, the compress energy storage of elastic component 333;After the allocated catch 331 of electrokinetic cell fixture 100 and second, the elongation of elastic component 333 and pushing and withstanding the Two allocated catches 331 so that the second allocated catch 331 can be towards the end movement of conveying trough 311 with propulsion power battery clamp 100.Four second The correspondence of allocated catch 331 is arranged in four the second hollow slots 313, with propulsion power battery clamp 100.
Further, Fig. 3 is referred to, supporting table 310 offers the 3rd along Y-direction extension in the end of conveying trough 311 Hollow slots 314, the second Y-direction connecting gear 340 located at the lower section of supporting table 310, the second Y-direction connecting gear 340 be provided with for 3rd allocated catch 341 of propulsion power battery clamp 100, the 3rd allocated catch 341 is arranged in the 3rd hollow slots 314.Second Y-direction conveyer Electrokinetic cell fixture 100 can be pushed to unloading clip position 310b by structure 340 by the end of conveying trough 311, and concrete structure refers to the first Y-direction Connecting gear 320.
Further, returning mechanism 350 includes located at the conveyer belt between unloading clip position 310b and clamping position 310a and is used for Drive the rotating drive part of conveyer belt work.The program easily assembling and control, after the unloading clip of electrokinetic cell 900, returns mechanism Empty electrokinetic cell fixture 100 is back to clamping position 310a by 350.
Further, also include that the electrokinetic cell fixture 100 for will be close in the end of conveying trough 311 pushes to transmission 2nd X of the end of groove 311 is to connecting gear 360.Electrokinetic cell fixture 100 and transmission close to the end of conveying trough 311 Frictional force between groove may be larger, and the 2nd X of configuration is easy to for electrokinetic cell fixture 100 to push to biography to connecting gear 360 Send the end of groove 311.
Further, supporting table 310 is offered along X to the 4th hollow slots 315 for extending in the end of conveying trough 311, To connecting gear 360 located at the lower section of supporting table 310, the 2nd X to connecting gear 360 is provided with for propulsion power electricity 2nd X 4th allocated catch 361 of pond fixture 100, the 4th allocated catch 361 is arranged in the 4th hollow slots 315.Concrete structure refers to an X to biography Send mechanism 330.
Further, please refer to Fig. 8, also include for the electrokinetic cell fixture 100 of passback mechanism 350 end to be pushed away Deliver to the 3rd X of clamping position 310a to connecting gear 370, for by the electrokinetic cell fixture 100 of unloading clip position 310b push to by 4th X of passback mechanism 350 front end is to connecting gear 380.3rd X to connecting gear 370 include along X from X to output mobile to Actuator 371, from X to drives edge X of actuator 371 to mobile fixed seat 372, be rotationally connected with fixed seat 372 and be used for 5th allocated catch 373 of pushing and withstanding electrokinetic cell fixture 100, the elastic component 374 being connected between the 5th allocated catch 373 and fixed seat 372. X to actuator 371 is cylinder, is easily controlled.When fixed seat 372 is toward the movement of passback mechanism 350, the 5th allocated catch 373 is abutted In electrokinetic cell fixture 100, the compress energy storage of elastic component 374;When 5th allocated catch 373 is located away from electrokinetic cell fixture 100, elastic component 374 extend and abutment arms 181 are resetted make it can be towards clamping position 310a pushing and withstanding electrokinetic cells fixture 100.The quantity of fixed seat 372 For two, located at opposite sides.The 5th allocated catch 373 and elastic component 374, reliable propulsion power electricity are equipped with each fixed seat 372 Pond fixture 100.4th X to the structure of connecting gear 380 refers to the 3rd X to connecting gear 370.
Further, Fig. 2, Fig. 3 are referred to, the bottom surface of conveying trough 311 is provided with along X to the guide ribs 316 for extending.Power The bottom of battery clamp 100 is provided with multi-directional ball 117, it is possible to decrease the friction between the bottom surface of electrokinetic cell fixture 100 and conveying trough 311 Power.
Further, Fig. 5 is referred to, is also included for stopping that the electrokinetic cell fixture 100 in passback mechanism 350 is sent to The blocking mechanism 391 of clamping position 310a.Blocking mechanism 391 stops electrokinetic cell fixture 100, makes the electrokinetic cell of clamping position 310a Fixture 100 can be by feeding device or artificial clamping electrokinetic cell 900.
Further, Fig. 1 to Fig. 3 is referred to, is also included for rotating the electrokinetic cell fixture 100 at the 310a of clamping position First rotating mechanism 392 and the second rotating mechanism 393 for rotating the electrokinetic cell fixture 100 at the 310b of unloading clip position.Power The both sides of battery clamp 100 can clamping electrokinetic cell 900.The electrokinetic cell fixture 100 of the 310a wherein side dress in clamping position After accompanying electrokinetic cell 900, the rotary power battery clamp 100 of the first rotating mechanism 392, in order to electrokinetic cell fixture 100 Other side clamping electrokinetic cell 900.In unloading clip position, the wherein side of electrokinetic cell fixture 100 of 310b is loaded and unloaded from electrokinetic cell After 900, the rotary power battery clamp 100 of the second rotating mechanism 393 is dynamic to unload to the other side of electrokinetic cell fixture 100 Power battery 900.The more electrokinetic cells 900 of clamping on same electrokinetic cell 900, improve work efficiency.
Further, Fig. 9 to Figure 11 is referred to, electrokinetic cell fixture 100 includes that base 110 and base 110 are oppositely arranged Liquid injecting box 120, the liquid injecting mouth 121 located at liquid injecting box 120, the keeper on base 110 and for forming locating slot 191 190 and for liquid injecting mouth 121 to be pressed to the hold-down mechanism of the liquid injection hole 901 of electrokinetic cell 900 on base 110.Base 110 is made For the carrier of liquid injecting box 120, keeper 190 and hold-down mechanism.Hold-down mechanism makes liquid injecting mouth 121 press to power on base 110 The liquid injection hole 901 of battery 900, liquid injection hole 901 and the liquid injecting mouth 121 of electrokinetic cell 900 can align sealing, the electricity of liquid injecting box 120 Solution liquid injects battery by liquid injecting mouth 121.
Further, please refer to Figure 12 to Figure 14, hold-down mechanism includes the sliding chute seat 130 on base 110, sliding Offer in groove seat 130 along the first chute 1331 of Z-direction extension and along X to the second chute 1332 for extending;Hold-down mechanism Also include on the liquid injecting box 120 and be slideably positioned in the first sliding part 140 of the first chute 1331 and be slideably positioned in the Second sliding part 150 of two chutes 1332, the first sliding part 140 is provided with the first latch 141, opens up on the second sliding part 150 There is the first guiding groove 151 passed through for the first latch 141, the first latch 141 is slideably positioned in the first guiding groove 151 to drive One sliding part 140 is slideably positioned in the first chute 1331.
Electrokinetic cell 900 is supported in base 110, the second sliding part 150 along X to it is mobile when, the first latch 141 slidably connects The first guiding groove 151 of the second sliding part 150 is connected to, the first latch 141 drives the first sliding part 140 to move along Z-direction so that with The liquid injecting box 120 of the connection of the first sliding part 140 is moved along Z-direction.When the first sliding part 140 is moved near the position of base 110, The liquid injection hole 901 of electrokinetic cell 900 and liquid injecting mouth 121 can align sealing, and electrokinetic cell 900 is pressed in base 110 and liquid injecting mouth Between 121, the electrolyte of liquid injecting box 120 injects battery by liquid injecting mouth 121.Bottom is away from when the first sliding part 140 is moved to 110 positions of seat, electrokinetic cell 900 can be unclamped in liquid injecting mouth 121.The electrokinetic cell fixture 100 is easy to operate, production efficiency compared with It is high.
On sliding chute seat 130, the first chute 1331 is connected with the second chute 1332.First sliding part 140 and second is slided Moving part 150 is plate-like, compact conformation.Sliding chute seat 130 is externally provided with a baffle plate 135135, allows the first sliding part 140 and second to slide Moving part 150 is defined in respective slide slots.Sliding chute seat 130, the first sliding part 140, the second sliding part 150, baffle plate 135135 are formed One compressing structure.Two compressing structures are provided between base 110 and liquid injecting box 120, the opposite sides of base 110 is distributed in, are allowed Liquid injecting mouth 121 is reliable to compress electrokinetic cell 900.
The linear, arc of first guiding groove 151 or other curves.First guiding groove 151 has relative to the low of base 110 Position 151a and high position 151b.First latch 141 is moved to low level 151a, i.e. the first sliding part 140 and is moved to low level 151a, square The liquid injection hole 901 of electrokinetic cell 900 aligns sealing with liquid injecting mouth 121, and square power battery 900 is pressed in base 110 and fluid injection Between mouth 121.First latch 141 is moved to high-order 151b, i.e. the first sliding part 140 and is moved to high-order 151b, square power current The liquid injection hole 901 in pond 900 is separated with liquid injecting mouth 121, you can take out square power battery 900.
Further, also include for the first sliding part 140 to be pushed away into the first elastic component 160 on base 110, first The two ends of elastic component 160 are connected to the sliding part 140 of base 110 and first.Move down along Z-direction in the first sliding part 140 When, the first elastic component 160 compresses and stores elastic potential energy.When the first sliding part 140 is moved upwardly by along Z-direction, the first elastic component 160 extend and discharge elastic potential energy, are easy to the first sliding part of pushing and withstanding 140 upwards and liquid injecting box 120.
Further, sliding chute seat 130 is including the support arm 131 being connected on base 110, for the first chute 1331 of formation With the body 133 of the second chute 1332 and the connecting portion 132 being connected between support arm 131 and body 133, on support arm 131 Via 1311 is offered, the first elastic component 160 is arranged in via 1311.The structure is easily worked, compact conformation.First sliding part 140 bottom is connected with the locating dowel 142 extended along Z-direction, and the first elastic component 160 is spring, and the first elastic component 160 is sheathed on fixed Beyond the post 142 of position, the structure is easily assembled.The bottom of the first sliding part 140 is connected with two locating dowels 142, is accordingly arranged with Two the first elastic components 160, to the first sliding part 140 more elastic potential energys are provided.It is to be appreciated that the first elastic component 160 is also The elastomer or other elastic components of elastomeric material making can be adopted.
Further, sliding chute seat 130 is provided with the second latch 134, offers along square power current on the first sliding part 140 The second guiding groove 143 that the short transverse in pond 900 extends, offers the length along square power battery 900 on the second sliding part 150 The 3rd guiding groove 152 that degree direction extends, the second latch 134 is sequentially passed through in the second guiding groove 143 and the 3rd guiding groove 152. Second latch 134 is arranged in successively the second guiding groove 143 and the 3rd guiding groove 152.Along X to mobile second sliding part 150 when, Second latch 134 also drives the first sliding part 140 to move along Z-direction.First latch 141 and the second latch 134 drive first simultaneously Sliding part 140 is moved along Z-direction, allows the reliable mobile of the first sliding part 140, it is to avoid the stuck situation of the first sliding part 140.
Further, base 110 is provided with guide holder 171, and guide holder 171 has the gathering sill extended along Z-direction, liquid injecting box 120 are provided with the guide post 172 extended along Z-direction, and guide post 172 is slidably connected to gathering sill.The program causes the liquid injecting box 120 can Steadily move along Z-direction.Specifically, four ends of base 110 are respectively disposed with a guide holder 171, and are correspondingly provided with guiding Bar 172 so that liquid injecting box 120 can steadily be moved along Z-direction.
Further, Figure 10, Figure 11 are referred to, liquid injecting box 120 has the fluid injection chamber 122 in array distribution, each fluid injection Chamber 122 is respectively connected with a liquid injecting mouth 121, base 110 be provided with for by the pushing and withstanding of square power battery 900 in corresponding liquid injecting mouth 121 penetrating mechanism 180.The program can be to the reliable location of the multiple square power batteries 900 simultaneously fluid injection of array arrangement.Liquid injecting box 120 have a lid, offer on lid and the one-to-one liquid injection port in fluid injection chamber 122, and it is right to be plugged in for the second injection head 242 Liquid injection port is answered to realize feed flow.
Further, base 110 has and the one-to-one mounting groove 111 of liquid injecting mouth 121, the bottom of each mounting groove 111 Face is convexly equipped with the first supporting part 112, and the first supporting part 112 is oppositely arranged with corresponding liquid injecting mouth 121, and penetrating mechanism 180 includes The abutment arms for being contained in mounting groove 111 and being supported on the first supporting part 112 181, two are respectively arranged on the first supporting part 112 Second elastic component 182 of both sides and the locating part 183 for abutment arms 181 to be limited in mounting groove 111, the second elastic component 182 Two ends be connected to the bottom surface of abutment arms 181 and mounting groove 111 respectively.
Square power battery 900 is positioned at the mounting groove 111 of base 110 by keeper 190, and abutment arms 181 are supported in The first supporting part 112 in mounting groove 111, and mounting groove 111 is limited in by locating part 183, the bottom surface of square power battery 900 is supported It is connected in abutment arms 181, the second elastic component 182 of the both sides of the first supporting part 112 pushes up abutment arms 181, by square power The top surface pushing and withstanding of battery 900 is to liquid injecting mouth 121, even if square power battery 900 has working height error, battery case top surface adds Work is uneven, the liquid injection hole 901 of square power battery 900 not on centerline, liquid injection hole 901 and the note of square power battery 900 Liquid mouth 121 also can align sealing so that the reliable location of square power battery 900, electrolyte is sufficiently injected battery, the side for being produced Shape electrokinetic cell 900 is up to standard, and electrolyte consumption is reduced.
Further, the bottom surface of mounting groove 111 is convexly equipped with the second supporting part 115, the top surface and second of the first supporting part 112 The either flush of supporting part 115.The program is easy to abutment arms 181 to be steadily positioned over mounting groove 111 so that square power battery 900 are positioned over precalculated position.Not on centerline, the first supporting part 112 is away from the liquid injection hole 901 of square power battery 900 The entrance of the locating slot 191 of keeper 190 is arranged, entrance of second supporting part 115 close to the locating slot 191 of keeper 190 Arrange, be easy to arrange injection nozzle.
Further, the bottom of the cross sectional shape of mounting groove 111, the cross sectional shape of abutment arms 181 and square power battery 900 Face shape is adapted.Program compact conformation.Specifically, three's cross sectional shape is rectangle.
Further, base 110 is provided with the keeper for square power battery 900 to be positioned at mounting groove 111 190, the locating slot 191 for accommodating square power battery 900 is offered on keeper 190.The program is easily worked, and it is right to be easy to Square power battery 900 is positioned.
Further, keeper 190 offers the locating slot 191 in column-shaped distribution, is formed between adjacent positioned groove 191 Spaced walls, spaced walls are provided with guide surface close to the porch of locating slot 191, are easy to square power battery 900 by locating slot 191 entrance is entered.
Further, abutment arms 181 are provided with guide surface close to the porch of locating slot 191, are easy to square power current Pond 900 is entered by the entrance of locating slot 191.
Further, grafting arm 192 is offered on keeper 190, is offered on base 110 for the grafting of grafting arm 192 Inserting groove 116.The program is easy to that keeper 190 is assemblied on base 110.
Further, the first installing hole 1811 is offered in abutment arms 181, is offered on the bottom surface of mounting groove 111 and The second relative installing hole 113 of one installing hole 1811, the two ends of the second elastic component 182 are connected to corresponding first installing hole 1811 and second installing hole 113.It is easy to the assembling of the second elastic component 182.
Further, gag lever post 184 is inserted with the first installing hole 1811, elastic component is spring, and elastic component is sheathed on limit Beyond the bar 184 of position.The program is easy to elastic component to be positioned at the first installing hole 1811.It is to be appreciated that elastic component can also be to adopt The elastomer made of elastomeric material or other elastic components.
Further, the holding tank 114 extended along Y-direction, holding tank 114 and the phase of mounting groove 111 are offered on base 110 Logical, abutment arms 181 are in shaft-like corresponding to spacing hole 1812, locating part 183 is offered at holding tank 114, and locating part 183 is arranged in Holding tank 114 is with spacing hole 1812 so that abutment arms 181 are limited in mounting groove 111.The program is easily assembled, compact conformation.Limit Position part 183 allows abutment arms 181 to move up and down at mounting groove 111, realizes that short transverse is spacing.
Further, Fig. 2, Fig. 8, Figure 12 are referred to, on the second sliding part 150 jack 153 is offered;At the 310a of clamping position First driving means 510 are provided with, first driving means 510 include the first Y-direction actuator 511 and for driving the first Y-direction to drive Along X to a mobile X to actuator 512, the first Y-direction actuator 511 has pluggable the first Y-direction in jack 153 to part 511 Output shaft.First driving means 510 are used to control the hold-down mechanism in the electrokinetic cell fixture 100 of clamping position 310a.In clamping Position 310a is stopped after free electrokinetic cell fixture 100, and the first Y-direction output shaft in the first Y-direction actuator 511 is plugged in second The jack 153 of sliding part 150;First X to actuator 512 drives the first Y-direction actuator 511 along X to movement, that is, drive a Y To output shaft along X to movement, realize the second sliding part 150 along X to movement, further hold-down mechanism is controlled.On the contrary, Hold-down mechanism liquid injecting mouth 121 can be made to be located away from the liquid injection hole 901 of electrokinetic cell 900 on base 110.Electrokinetic cell fixture 100 has Have back to the two row locating slots 191 for arranging, in clamping position, the wherein string locating slot 191 of the electrokinetic cell fixture 100 of 310a is filled After accompanying electrokinetic cell 900, before the work rotation of the first rotating mechanism 392, it is dynamic that hold-down mechanism causes liquid injecting mouth 121 to be pressed in The liquid injection hole 901 of power battery 900, it is to avoid electrokinetic cell 900 flies out fixture when the first rotating mechanism 392 works.First Y-direction drives Part 511, the first Y-direction actuator 511 are cylinder, are easily controlled.
Fig. 3 is referred to, the second driving means 520 are provided with the 310b of unloading clip position, the second driving means 520 include the second Y-direction Actuator 521 and for drive the second Y-direction actuator 521 along X to the 2nd mobile X to actuator 522, the second Y-direction actuator 521 have pluggable the second Y-direction output shaft in jack 153.Second driving means 520 are used to control the power of unloading clip position 310b Hold-down mechanism in battery clamp 100.Concrete structure refers to first driving means 510.
Further, Figure 15 to Figure 17 is referred to, battery liquid-filling device 200 includes installing rack 210, is located in column-shaped and installs Some feed flow branch roads 220 on frame 210, each feed flow branch road 220 includes the appearance with upper port 2211 Yu lower port 2212 Device 221, the first switch valve 222 for being connected to upper port 2211 and the second switch valve 223 for being connected to lower port 2212, container 221 offer a connecting hole 2213, and connecting hole 2213 is connected by the first control valve with a vacuum source;Battery liquid-filling device 200 include first straight line drive component 230 on the installing rack 210, drive mobile the by first straight line drive component 230 One injection head 241 and the second injection head 242 connected one to one with the outlet of second switch valve 223.
First switch valve 222 is closed, and second switch valve 223 is opened, and after the second injection head 242 is sealed, vacuum source work is right Battery vacuum-pumping, can slow down the situation that there is more bubble in injected electrolyte.First switch valve 222 is opened, second switch Valve 223 is closed, and first straight line drive component 230 drives the first injection head 241 to be moved to each fluid injection position 310c, the first injection head Quantitative electrolyte is injected the first switch valve 222 of each feed flow branch road 220 by 241 successively, and electrolyte enters correspondence container 221 In.Second switch valve 223 is opened, and the electrolyte in container 221 is most laggard with the second injection head 242 through second switch valve 223 Enter battery.The battery liquid-filling device 200 pairs accurately, can guarantee that fluid injection concordance with batch battery liquid-filling amount.
In each feed flow branch road 220, first switch valve 222, container 221 are from top to bottom arranged with second switch valve 223, It is easy to the injection and flowing of electrolyte.The outlet of second switch valve 223 is connected with the second injection head 242 by connecting tube.
Further, area of section of the area of section of upper port 2211 more than lower port 2212.The program can improve electricity Solution liquid enters the efficiency of container 221.
Further, first switch valve 222 be ball valve, the first switch valve 222 in the feed flow branch road 220 of same row Valve rod 2221 between be connected with parallel-crank mechanism 251, and the parallel-crank mechanism 251 by the first drive mechanism 252 Drive.The program is easily controlled.In some feed flow branch roads 220 of same row, the valve rod 2221 of first switch valve 222 is respectively connected with one Crank 2511, and the initial angle of all cranks 2511 is identical, the end of all cranks 2511 is all connected on a connecting rod 2512, All cranks 2511 constitute a parallel-crank mechanism 251 with connecting rod 2512.Wherein a crank 2511 is connected to the first driving machine Structure 252, realizes the swing of crank 2511, and then realizes the switch of first switch valve 222 in some feed flow branch roads 220 of same row. First drive mechanism 252 is cylinder, is easily controlled.
Further, second switch valve 223 be ball valve, the second switch valve 223 in the feed flow branch road 220 of same row Valve rod 2231 between be connected with parallel-crank mechanism 251, and the parallel-crank mechanism 251 by the second drive mechanism 253 Drive.The situation of second switch valve 223 refers to first switch valve 222.
Further, first straight line drive component 230 includes rotating drive part 231, drives rotation by rotating drive part 231 Belt wheel 232 and the engaged transmission of belt wheel 232 Timing Belt 233 and the sliding part 234 that is fixed on Timing Belt 233, the first injection 241 are installed on sliding part 234.The structure is easily controlled, accurate positioning.Rotating drive part 231 is motor, is easily controlled.
Further, the slide block 212 that installing rack 210 is provided with slide rail 211 and is slidably mounted on slide rail 211, sliding part 234 are fixed on slide block 212.The program can allow sliding part 234 steadily mobile so that the first injection head 241 is accurate to up to each note Liquid level 310c.
Further, the columns of feed flow branch road 220 is two, and two row feed flow branch roads 220 are separately arranged, and sliding part 234 is pacified Equipped with two the first injection heads 241, per one first injection head 241 corresponding to the feed flow branch road 220 of same row.The program can be improved The efficiency of fluid injection.
Further, at least two sliding parts 234 are fixed with belt wheel 232, while to more feed flows of feed flow branch road 220, Improve work efficiency.
Further, mounting seat 261 for installing all second injection heads 242 is also included and located at installing rack 210 And for the second straight line drive component 262 of the movement of drive installation seat 261.The drive installation seat 261 of second straight line drive component 262 Move along the vertical direction so that the second injection head 242 aligns the input port of corresponding liquid injecting box 120.Second straight line drive component 262 For cylinder, it is easily controlled.
Further, connecting hole 2213 is connected by the second control valve with a positive pressure source.After fluid injection, first switch valve 222 close and second switch valve 223 is opened, positive pressure source work, electrolyte is pressed into battery.Positive pressure source adopts nitrogen.
Further, the first injection head 241 is connected with the 3rd switch valve 243.3rd switch valve 243 is used to control the first note Penetrate 241 break-make.
Further, it is provided with container 221 for stopping that electrolyte is entered the stop of connecting hole 2213 by lower port 2212 Structure 270.First switch valve 222 is closed, and second switch valve 223 is opened, and after the second injection head 242 is sealed, vacuum source work is right Battery vacuum-pumping, the electrolyte in battery is altered in container 221 by second switch valve 223 and lower port 2212, barrier structure 270 can stop that electrolyte enters connecting hole 2213, and the battery liquid-filling device 200 is avoided that to electrolyte reflux during battery vacuum-pumping Cause subsequently to inject the situation of more electrolyte to vacuum source, reduce electrolyte loss, reduces cost.
Further, barrier structure 270 is included for will guide to container 221 from the electrolyte of upper port 2211 First guiding wall 271 of wall, located at the lower section of the first guiding wall 271 and for the electrolyte on the inwall for collecting container 221 Second guiding wall 272, located at the lower section of the second guiding wall 272 and for will be collected by the second guiding wall 272 electrolyte guiding The 3rd guiding wall 273 to the inwall of container 221.Electrolyte is entered by the upper port 2211 of container 221, first by the first guiding Wall 271 is guided to the inwall of container 221, then is guided to the center portion thereof point by the second guiding wall 272, then will by the 3rd guiding wall 273 Electrolyte is guided to the inwall of container 221.When vacuum source works, the electrolyte in battery is by second switch valve 223 and lower end Mouth 2212 is altered in container 221, and electrolyte is stopped by each guiding wall.
Further, the vertical sectional shape of the first guiding wall 271 is in inverted V-shaped, and the outer rim of the first guiding wall 271 is opened Some first pod apertures 2711 are provided with, the outer rim of the first guiding wall 271 is connected to the inwall of container 221.First guiding wall 271 is in Upside down funnel shape, the structure is easily worked and assembling.First guiding wall 271 can also be other shapes.
Further, the vertical sectional shape of the second guiding wall 272 is in the shape of the letter V, and the middle part of the second guiding wall 272 offers Two pod apertures 2721, the outer rim of the second guiding wall 272 is connected to the inwall of container 221;The vertical sectional shape of the 3rd guiding wall 273 In inverted V-shaped, the middle part of the 3rd guiding wall 273 offers the 3rd pod apertures being connected with the second pod apertures 2721 2731, the outer rim of the 3rd guiding wall 273 is connected to the inwall of container 221.Second guiding wall 272 is in funnel-form, the 3rd guiding wall 273 is in upside down funnel shape, and the structure is easily worked and assembling.Second guiding wall 272, the 3rd guiding wall 273 can also be other Shape.
Further, Fig. 1 to Fig. 3 is referred to, electrokinetic cell fixture 100 has back to the two row locating slots 191 for arranging, electricity Pond automatic fluid injection equipment is also included for rotating the first rotating mechanism 392 of the electrokinetic cell fixture 100 at the 310a of clamping position, using Second rotating mechanism 393 of the electrokinetic cell fixture 100 at rotation unloading clip position 310b.Feeding device 600 is by electrokinetic cell 900 It is sent at the 310a of clamping position after the wherein string locating slot 191 of electrokinetic cell fixture 100, the rotary power of the first rotating mechanism 392 Battery clamp 100 so that feeding device 600 can transmit electrokinetic cell 900 to other string locating slot 191.Transporter 300 is passed Electrokinetic cell fixture 100 is sent, fluid injection, vacuum is carried out to the battery on fixture successively and is stood, stands naturally.Blanking device 700 will After electrokinetic cell 900 at the 310b of unloading clip position in the wherein string locating slot 191 of electrokinetic cell fixture 100 is unloaded, the second whirler The rotary power battery clamp 100 of structure 393 so that blanking device 700 can unload the electrokinetic cell 900 of other string locating slot 191 From.The electrokinetic cell fixture 100 of the battery automatic fluid injection equipment can clamp more battery, and same time produces number of batteries Increase, work efficiency is higher.First rotating mechanism 392, the second rotating mechanism 393 are rotary cylinder, are easily controlled.
Further, Fig. 3, Fig. 5, Fig. 6 are referred to, supporting table 310 offers the first breach 317 at the 310a of clamping position, The first jacking mechanism 501 for jack-up electrokinetic cell fixture 100 is installed at first breach 317, the first rotating mechanism 392 by First jacking mechanism 501 drives movement.After first jacking mechanism 501 is by the jack-up of electrokinetic cell fixture 100 of clamping position 310a, the The rotary power battery clamp 100 of one rotating mechanism 392, it is to avoid fixture is interfered with the grade of supporting table 310 parts.First jacking mechanism 501 is cylinder, is easily controlled.Supporting table 310 offers the second breach 319 at the 310b of unloading clip position, installs at the second breach 319 Have for the second jacking mechanism of jack-up electrokinetic cell fixture 100, the second rotating mechanism 393 is driven by the second jacking mechanism and moved It is dynamic.The structure of the second rotating mechanism 393 refers to the first jacking mechanism 501.
Further, please refer to Fig. 2, feeding device 600 includes the first barcode scanning Weighing mechanism 610, for by power Battery 900 transport the first transport vehicle 620 to the first barcode scanning Weighing mechanism 610, arrange close to clamping position 310a second Transport vehicle 630, for the electrokinetic cell 900 in the first transport vehicle 620 to be transferred to successively into the first barcode scanning Weighing mechanism 610 and First mechanical hand 640 of two transport vehicle 630, the electrokinetic cell 900 in the second transport vehicle 630 is advanced it is dynamic at the 310a of clamping position The propulsive mechanism 650 of the locating slot 191 of power battery clamp 100.First barcode scanning Weighing mechanism 610 includes barcode scanning machine 611 and weighs Machine 612, barcode scanning machine 611 is scanned to electrokinetic cell 900, and weigher 612 is weighed to electrokinetic cell 900, by information taken to industry control Machine, then reservoir quantity is obtained with the information operation of the second scanning Weighing mechanism collection, whether detection electrokinetic cell 900 is up to standard.First Carriage transports electrokinetic cell 900 to the first barcode scanning Weighing mechanism 610 along Y-direction movement, and the first mechanical hand 640 is by power current Pond 900 is transferred to the first barcode scanning Weighing mechanism 610 and carries out after barcode scanning weighs, being transferred to the second carriage, the movement of the second carriage Electrokinetic cell 900 is transported to propulsive mechanism 650, propulsive mechanism 650 is by one group of thrust power battery clamp of electrokinetic cell 900 100 locating slot 191.The program is easily controlled, high working efficiency.First carriage, the second carriage adopt synchronous pulley Mechanism drives.First mechanical hand 640 includes impeller 641 for propulsion power battery 900, for driving impeller 641 along Z To mobile Z-direction actuator 642 and for driving Z-direction actuator 642 along X to mobile X to actuator 643.Z-direction actuator 642nd, X is cylinder to actuator 643.Propulsive mechanism 650 is cylinder.
Fig. 3 is referred to, blanking device 700 includes the electrokinetic cell of the electrokinetic cell fixture 100 at absorption unloading clip position 310b 900 adsorbing mechanism 710, the second barcode scanning Weighing mechanism 720, for the electrokinetic cell adsorbed by adsorbing mechanism 710 900 to be transported The 3rd transport vehicle 730 at second barcode scanning Weighing mechanism 720, electrokinetic cell 900 is claimed in the 3rd transport vehicle 730 and the second barcode scanning The second mechanical hand 740 shifted between heavy-duty machine structure 720.Electrokinetic cell fixture 100 at the absorption unloading clip position 310b of adsorbing mechanism 710 The transport vehicle 730 of electrokinetic cell 900 to the 3rd, the 3rd transport vehicle 730 transports electrokinetic cell 900 to the second mechanical hand 740, The transfer barcode scanning of electrokinetic cell 900 to the second of two mechanical hand 740 Weighing mechanism 720.Adsorbing mechanism 710 is vacuum adsorption mechanism 710, Driven to actuator from an X and moved.Second barcode scanning Weighing mechanism 720 is similar to that first yard of Weighing mechanism.3rd transport Car 730 is taken turns 232 mechanisms and is driven using Timing Belt 233.Second mechanical hand 740 includes the holder for clamping electrokinetic cell 900 741st, for driving holder 741 along X to mobile X to actuator 742 and for driving what X was moved to actuator 742 along Y-direction Y-direction actuator 743.X to actuator 742, Y-direction actuator 743 are cylinder.
These are only presently preferred embodiments of the present invention, not to limit the present invention, all spirit in the present invention and Any modification, equivalent and improvement for being made within principle etc., should be included within the scope of the present invention.

Claims (10)

1. battery automatic fluid injection equipment, it is characterised in that include:
Electrokinetic cell fixture with some locating slots;
For transmitting the transporter of the electrokinetic cell fixture, it include have along X to extend conveying trough supporting table and Electrokinetic cell fixture positioned at the front end of the conveying trough is pushed to an X of end of the conveying trough to connecting gear, If the conveying trough is sequentially formed with a fluid injection position, dry vacuum between its front end and end and stands position with some standings naturally Position;
Battery liquid-filling device at the fluid injection position;And
Correspond the vacuum extractor at vacuum standing position.
2. battery automatic fluid injection equipment as claimed in claim 1, it is characterised in that the supporting table has the dress being oppositely arranged Folder position and unloading clip position, adjacent to the clamping position, the end of the conveying trough is adjacent to the unloading clip for the front end of the conveying trough Position, the transporter also includes being located between the unloading clip position and the clamping position and presss from both sides the electrokinetic cell of the unloading clip position Tool is sent to the passback mechanism of the clamping position.
3. battery automatic fluid injection equipment as claimed in claim 2, it is characterised in that the transporter also includes that institute will be located at State clamping position electrokinetic cell fixture push to the conveying trough front end the first Y-direction connecting gear and by the conveying trough The electrokinetic cell fixture of end pushes to the second Y-direction connecting gear of the unloading clip position.
4. the battery automatic fluid injection equipment as described in any one of claims 1 to 3, it is characterised in that the electrokinetic cell fixture The liquid injecting box that is oppositely arranged including base and the base, the liquid injecting mouth located at the liquid injecting box, on the base and use In the keeper for forming the locating slot and for the liquid injecting mouth to be pressed to into the liquid injection hole of electrokinetic cell on the base Hold-down mechanism.
5. battery automatic fluid injection equipment as claimed in claim 4, it is characterised in that the hold-down mechanism is included located at the bottom Sliding chute seat on seat, offers along the first chute of Z-direction extension and along X to the second chute for extending on the sliding chute seat; The hold-down mechanism also includes on the liquid injecting box and is slideably positioned in first sliding part and cunning of first chute Dynamic the second sliding part for being arranged at second chute, first sliding part is provided with the first latch, second sliding part On offer the first guiding groove passed through for first latch, first latch be slideably positioned in first guiding groove with First sliding part is driven to be slideably positioned in first chute.
6. square power battery fixture as claimed in claim 5, it is characterised in that the sliding chute seat is provided with the second latch, The second guiding groove extended along the short transverse of the square power battery is offered on first sliding part, described second slides The 3rd guiding groove extended along the length direction of the square power battery is offered on moving part, second latch is sequentially passed through In second guiding groove and the 3rd guiding groove.
7. the battery automatic fluid injection equipment as described in any one of claims 1 to 3, it is characterised in that the battery liquid-filling device Including installing rack, some feed flow branch roads in column-shaped on the installing rack, each feed flow branch road is included with upper The container of port and lower port, it is connected to the first switch valve of the upper port and is connected to the second switch of the lower port Valve, the container offers a connecting hole, and the connecting hole is connected by the first control valve with a vacuum source;The battery note Liquid device includes the first straight line drive component being located on the installing rack, drives movement by the first straight line drive component First injection head and the second injection head connected one to one with the outlet of the second switch valve of the feed flow branch road.
8. battery automatic fluid injection equipment as claimed in claim 7, it is characterised in that the columns of the feed flow branch road is two, two Arrange the feed flow branch road separately to arrange;The first straight line drive component is including rotating drive part, by the rotating drive part The Timing Belt for driving the belt wheel and belt wheel engaged transmission for rotating and the sliding part being fixed on the Timing Belt, the cunning There are two first injection heads, the feed flow branch road of each first injection head corresponding to same row on moving part.
9. the battery automatic fluid injection equipment as described in any one of claims 1 to 3, it is characterised in that the electrokinetic cell fixture With back to the two row locating slots for arranging, the battery automatic fluid injection equipment is also included for described in rotating at clamping position First rotating mechanism of electrokinetic cell fixture, the second rotating mechanism for rotating the electrokinetic cell fixture at the unloading clip position.
10. battery automatic fluid injection equipment as claimed in claim 9, it is characterised in that the supporting table is at the clamping position The first breach is offered, first indentation, there is provided with for the first jacking mechanism of electrokinetic cell fixture described in jack-up, institute State the first rotating mechanism and movement is driven by first jacking mechanism;The supporting table offers second at the unloading clip position and lacks Mouthful, second indentation, there is provided with for the second jacking mechanism of electrokinetic cell fixture described in jack-up, second whirler Structure is driven by second jacking mechanism and is moved.
CN201611259950.1A 2016-12-30 2016-12-30 Automatic liquid filling equipment for battery Active CN106684307B (en)

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