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CN206516718U - Laminating machine - Google Patents

Laminating machine Download PDF

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Publication number
CN206516718U
CN206516718U CN201621469443.6U CN201621469443U CN206516718U CN 206516718 U CN206516718 U CN 206516718U CN 201621469443 U CN201621469443 U CN 201621469443U CN 206516718 U CN206516718 U CN 206516718U
Authority
CN
China
Prior art keywords
module
pole piece
platform
stack
material storehouse
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.)
Expired - Fee Related
Application number
CN201621469443.6U
Other languages
Chinese (zh)
Inventor
邓涛
邓会春
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 SANBEN MACHINERY MANUFACTURING Co Ltd
Original Assignee
SHENZHEN SANBEN MACHINERY MANUFACTURING Co Ltd
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by SHENZHEN SANBEN MACHINERY MANUFACTURING Co Ltd filed Critical SHENZHEN SANBEN MACHINERY MANUFACTURING Co Ltd
Priority to CN201621469443.6U priority Critical patent/CN206516718U/en
Application granted granted Critical
Publication of CN206516718U publication Critical patent/CN206516718U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • 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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  • Battery Electrode And Active Subsutance (AREA)

Abstract

The utility model is related to lithium battery processing field, more particularly to laminating machine, including pole piece material storehouse module, feeding module, paste pole piece module, one stack platform module, one puts barrier film module and a housing, the pole piece material storehouse module, feeding module, paste pole piece module, put barrier film module and cut barrier film module be respectively provided with housing, material storehouse module is arranged on the bottom plate of housing, the feeding module is arranged at directly over material storehouse module, the patch pole piece module is arranged at directly over feeding module, the pole piece material storehouse module, the feeding module and the patch pole piece module are provided with two, one pole piece material storehouse module, one feeding module and a patch pole piece module constitute one group of lamination sequence, two groups of lamination sequences are respectively arranged at the both sides of the stack platform module, and it is equal with the distance of the stack platform module;The processing efficiency of the laminating machine is higher.

Description

Laminating machine
【Technical field】
The utility model is related to lithium battery processing field, more particularly to laminating machine.
【Background technology】
The internal structure of lithium battery includes some positive electrode pole pieces and negative electrode pole piece stacked gradually, positive and negative
Separated between electrode plates with barrier film, the processing of positive and negative electrode pole piece needs to carry out in different station, processing
Lithium battery linear positioning, positioning distance are carried out between two stations, simultaneously because need carry out
The paster of multiple positive and negative electrode pole piece, after multiple enlarge-effect so that lithium battery lamination processing efficiency
It is not high.
Meanwhile, laminating machine is before electrode plates are obtained, it is necessary to complete to obtain electrode plates from material storehouse, brush and blow
Positioning of electrode plates and electrode plates etc. is operated, to facilitate attachment module directly to obtain electrode plates
Directly mount afterwards, and aforesaid operations are completed in a station in the prior art, are unfavorable for improving production effect
Rate.
In manufacture field, the operating efficiency of machine is particularly important, and the pursuit to operating efficiency is owned
Manufacturing enterprise seek assiduously, therefore, and two problems of above-mentioned two need further to be improved.
【Utility model content】
In order to overcome above mentioned problem, the utility model proposes the laminating machine of ± 45 ° of circumferentially positionings.
The utility model solve above-mentioned technical problem provide a kind of technical scheme be:A kind of laminating machine is provided,
To the lamination to electrode plates, including pole piece material storehouse module, feeding module, patch pole piece module, one fold
Material platform module, one put barrier film module and a housing, the pole piece material storehouse module, feeding module, patch
Pole piece module, put barrier film module and cut barrier film module and be respectively provided with and in housing, material storehouse module is set
It is placed on the bottom plate of housing, the feeding module is arranged at directly over material storehouse module, the patch pole piece module
It is arranged at directly over feeding module, the pole piece material storehouse module, the feeding module and the patch pole piece
Module is provided with two, a pole piece material storehouse module, a feeding module and an institute
State patch pole piece module and constitute one group of lamination sequence, two groups of lamination sequences are respectively arranged at the stack platform mould
The both sides of group, and it is equal with the distance of the stack platform module.
Preferably, the stack platform module includes a mounting seat, a stack platform and a drive device,
The stack platform is arranged in the mounting seat, and the drive device is included in the stack platform and fixed
The rotating shaft of connection, the drive device drive shaft is rotated, and drives stack platform to be mounted opposite seat rotation.
Preferably, the stack platform it is where relative rotating shaft, with the perpendicular plane of mounting seat in ±
Reciprocally swinging on 45 ° of two working positions, and complete paster in ± 45 ° of two working positions.
Preferably, the stack platform include a platform floor, a landing slab, a platform constant pressure cylinder,
Two platforms fill up cylinder, one first stack of laminations and a second lamination group, and the platform floor is located at two and consolidated
Between fixed board, it is fixed in the rotating shaft of rotary electric machine, the platform constant pressure cylinder is arranged at platform floor
Center, two platforms fill up the both sides that cylinder is arranged at the platform constant pressure cylinder, and the landing slab is set
In on platform constant pressure cylinder.
Preferably, the landing slab includes two platform breach, parallel from the longer edge of the landing slab
Extend in the direction on shorter one side, the length of the platform breach is less than the shorter one side of landing slab, two
Individual platform, which fills up cylinder and corresponds to two breach respectively, to be set, and is filled up in platform under the driving of cylinder, one with
The adaptable thick stick of filling up of platform breach is filled up in the position of platform breach.
Preferably, the first stack of laminations and second lamination group correspond to the lamination of two lamination sequences respectively,
It is respectively arranged at the longer one side side of landing slab.
Preferably, second lamination group is identical with the first stack of laminations structure, and the first stack of laminations and second lamination
The Central Symmetry of the relatively flat platen of group.
Preferably, the first stack of laminations include a synchronous motor, a transmission component, two pressing cylinders and
Two tablettings, two tablettings are individually fixed on two pressing cylinders, are respectively arranged at landing slab longer
The two ends on one side, pressing cylinder is fixed on the upper surface of platform floor, and oscillating motor is fixed on platform floor
Lower surface.
Preferably, transmission component includes a driving wheel, a driven pulley and a conveyer belt, and synchronous motor drives
Dynamic driving wheel is rotated, and driving wheel drives driven pulley to rotate by conveyer belt, be arranged at landing slab it is longer one
Two pressing cylinders at the two ends on side and the tabletting being arranged on realize simultaneously operating by transmission component.
Preferably, the pole piece material storehouse module include a material storehouse motor, a screw mandrel, a storage container,
One carrier plate, two sliding panels and a base, the screw mandrel are connected to material storehouse motor, and
Can being rotated by material storehouse motor;The base is fixed on the bottom plate of the housing,
The storage container 13 is arranged on the base, and the carrier plate is arranged in the storage container, and
The carrier plate can be moved in the storage container, and electrode plates are deposited on the carrier plate, with
The carrier plate moves in the storage container and is constantly delivered to feeding module.
Compared with prior art, the feeding module 20 of the laminating machine 100 employs rotary work station, by existing skill
The operation completed in art in a station is divided into multiple stations, substantially increases the efficiency of lamination, while
+ 45 ° of swing pasters, movement locus is 90 °, and circumferentially positioning, positioning completes one 90 degree apart from short
The positioning time in cycle is 0.6S;Coordinate overall operation to complete once to have pasted positive/negative plate for 1.2S, make lithium electricity
The production efficiency in pond is further enhanced.
【Brief description of the drawings】
Fig. 1 is the overall structure diagram of the utility model laminating machine;
Fig. 2 is the pole piece material storehouse modular structure schematic diagram of the utility model laminating machine;
Fig. 3 is the top view of the feeding module of the utility model laminating machine;
Fig. 4 is the stereogram of the feeding module of the utility model laminating machine;
Fig. 5 is the working state schematic representation of the patch pole piece module of the utility model laminating machine;;
Fig. 6 is the stereogram of the patch pole piece module of the utility model laminating machine;
Fig. 7 is one of stereogram of stack platform module of the utility model laminating machine;
Fig. 8 is the two of the stereogram of the stack platform module of the utility model laminating machine;
Fig. 9 is the three of the stereogram of the stack platform module of the utility model laminating machine.
【Embodiment】
In order that the purpose of this utility model, technical scheme and advantage are more clearly understood, below in conjunction with attached
Figure and embodiment, the utility model is further elaborated.It should be appreciated that described herein
Specific embodiment be only used for explain the utility model, be not used to limit the utility model.
Indicated it is to be appreciated that institute is directional in the utility model embodiment(Such as upper and lower, left and right,
It is forward and backward ...)It is only limitted to the relative position in given view, rather than absolute position.
In addition, in the utility model such as relating to the description of " first ", " second " etc. be only used for describe purpose,
And it is not intended that indicating or implying its relative importance or the implicit number for indicating indicated technical characteristic
Amount.Thus, " first " is defined, the feature of " second " can express or implicitly include at least one and be somebody's turn to do
Feature.In description of the present utility model, " multiple " are meant that at least two, such as two, three etc.,
Unless otherwise specifically defined.
Referring to Fig. 1, the structural representation for showing laminating machine 100 exemplary Fig. 1, the laminating machine
100 are used for the lamination to the positive and negative electrode piece of lithium battery, and it includes pole piece material storehouse module 10, feeding module
20th, patch pole piece module 30, a stack platform module 40, one put the housing 60 of barrier film module 50 and one,
The pole piece material storehouse module 10, feeding module 20, patch pole piece module 30, stack platform module 40 and put
Barrier film module 50 is respectively provided with and in housing 60, material storehouse module 10 is arranged on the bottom plate of housing 60,
To place pole piece, and in lamination from the material outside output pole plate of storehouse module 10, the feeding module 20
It is arranged at directly over material storehouse module 10, to take pole piece from material storehouse module 10, and pole piece is carried out
After predetermined processing operation, send patch pole piece module 30 to and carry out paster, the patch pole piece module 30 is set
It is placed in directly over feeding module 20, and pole piece is obtained from the feeding module 20, carries out corresponding patch pole
Piece is operated, and the stack platform module 40 is installed on the bottom plate of housing 60 by an erecting bed, described to put
Barrier film module 50 is arranged at the top of stack platform module 40, and pole piece is enterprising in the stack platform module 40
Row lamination, it is described put barrier film module 50 to stack platform module 40 convey barrier film, make positive and negative electrode piece it
Between separated with barrier film.
The pole piece material storehouse module 10, the feeding module 20 and the patch pole piece module 30 are respectively provided with
There are two, a pole piece material storehouse module 10, a feeding module 20 and the patch pole
Piece module 30 constitutes one group of lamination sequence, therefore the laminating machine includes two groups of lamination sequences altogether, uses respectively
In the lamination of positive electrode pole piece, negative electrode pole piece.The pole piece material storehouse module 10, the feeding mould
Two groups of lamination sequences that group 20 and the patch pole piece module 30 are constituted are respectively arranged at the stack platform
The both sides of module 40, and, i.e., described stack platform equal with the distance of the stack platform module 40
Module 40 is arranged at the middle position of two groups of lamination sequences.
The structural representation for showing pole piece material storehouse module 10 exemplary Fig. 2, the pole piece material storehouse module
10 are used to store pole piece, and the pole piece material storehouse module 10 of two groups of lamination sequences deposits positive electrode pole piece and negative respectively
Electrode plates, accordingly, carry out the corresponding material storehouse module 10 of lamination sequence of positive electrode pole piece laminating operation
Positive electrode pole piece is deposited, conversely, carrying out the corresponding material storehouse mould of lamination sequence of negative electrode pole piece laminating operation
Group 10 deposits negative electrode pole piece.
The pole piece material storehouse module 10 include a material storehouse motor 11, a screw mandrel, a storage container 13,
One carrier plate 14, two bases 16 of sliding panel 15 and one, the screw mandrel are connected to the material storehouse driving
Motor 11, and being rotated by material storehouse motor 11;The base 16 is fixed on institute
On the bottom plate for stating housing 60, the storage container 13 is arranged on the base 16, the carrier plate 14
It is arranged in the storage container 13, and the carrier plate 14 can be moved in the storage container 13,
Electrode plates are deposited on the carrier plate 14, as the carrier plate 14 is in the storage container 13
Move and constantly outwards conveying.
Specifically, the shape of the storage container 13 and electrode plates is adapted, substantially in four-prism shape,
Four sides of the storage container 13 are engraved structure, and it includes the rib plate 131 of four " L ", point
Not Dui Ying four-prism four seamed edges, 45 rib plates 131 surround to form the memory space.The rib
Plate 131 includes two side plates 133 being arranged in a mutually vertical manner, and middle part hollow out one cunning of formation of side plate 133
Groove 135, adjacent ribs plate 131 constitutes one between being in the chute 135 of two side plates 133 of same side
Slideway, two sliding panels 15 are fixedly connected on the opposite sides of the carrier plate 14, and can be along described
Chute is slided in chute.
The axis of the screw mandrel perpendicular to the plane where the carrier plate 14, and the carrier plate 14 with
The wire rod thread connection, the drive screw of material storehouse motor 11 is rotated, and drives the carrier plate 14
Moved up and down along the axial direction of the screw mandrel.
The structural representation for showing feeding module 20 exemplary Fig. 3, the feeding module 20 is many
Station rotary feeding module, it includes a feeding positioning cylinder 21, a brush blowing apparatus 23, two pole pieces and determined
Position cylinder 25, a pole piece inductor 27 and a rotary work station 29, the rotary work station 29 include multiple phases
In the station mutually worked independently, the present embodiment, including six stations worked independently from each other:First station
291st, the second station 292,3rd station 293, the 4th station 294, the 5th station 295 and the 6th station
296, the station 296 of the first station 291 to the 6th is set gradually along clockwise direction, constitutes a regular hexagon,
Each station occupies a line of regular hexagon.Each station includes a rectangular station board 297, uses
With placement and machined electrode pole piece, the station board 297 of six stations surrounds to form a receiving space, described
Feeding positioning cylinder 21 is arranged in the receiving space, positioned at the center of rotary work station;The brush blows
Device 23 is arranged at the side of station board 297 of the second station 292;Two pole piece positioning cylinders 25 are set
In a diagonal two ends of the station board of 3rd station 293;The pole piece inductor 27 is arranged at the 3rd
Whether the intersection of the station 294 of station 293 and the 4th, come off for detecting electrode pole piece.
First station 291 to take pole piece station, its be arranged at the pole piece material storehouse module 10 just on
Side, is right against the storage container 13 and sets, the electrode plates in storage container 13 are constantly by the first work
Position 291 obtain, specifically, each station is respectively provided with cylinder interface 298, to feeding positioning cylinder
21 connect, when cylinder interface 298 is connected to feeding positioning cylinder 21, and the first station 291 is from pole piece material
Storehouse module 10 adsorbs a piece of electrode plates, and after feeding positioning cylinder 21 departs from interface, electrode plates
Still it is attracted on station board 297.
Second station 292 is that brush blows station, and the first station 291 is obtained after electrode plates, Ji Jiangji
Piece is transferred to the second station 292, and brush blowing apparatus is passed through in the electrode plates of 292 pairs of acquisitions of the second station
23 are handled in the way of hairbrush air-blowing, to prevent from obtaining multiple electrodes pole piece, if in the first station 291
When the electrode plates that obtain be more than a piece of, then unnecessary pole piece can be blown away, only retain a piece of electrode plates
It is delivered to next station.In the present embodiment, the brush blowing apparatus 23 is arranged at the station of the second station 292
The upper end of plate 297.
The 3rd station 293 is positional stations, and electrode plates are positioned in the 3rd station 293,
The positioning is positioned based on diagonal.Two pole piece positioning cylinders 25 are respectively arranged at 3rd station 293
297 1 cornerwise two ends of station board, the positioning to assist electrode pole piece.
4th station 294 is that pole piece takes station away, and electrode plates pass through the first station 291, the second work
After the operation of position 292 and 3rd station 293, taken away in the 4th station 294 by the patch pole piece module 30.
5th station 295 and the 6th station 296 are redundancy station, wait electrode plates to be obtained.
The rotary work station 29 can rotate under the driving of electrode.It should be noted that above-mentioned first station
291st, the second station 292,3rd station 293, the 4th station 294, the 5th station 295 and the 6th station
296 and take pole piece station, brush to blow station, positional stations, pole piece to take pass between station and redundancy station away
It is for relatively, and not exclusively.Only in the inactive state of diagram, the first station 291 is to take pole piece work
Position, the second station 292 is that brush blows station, and 3rd station 293 is positional stations, and the 4th station 294 is
Pole piece takes station away, and the 5th station 295 and the 6th station 296 are redundancy station.In practical operation,
Rotary work station rotates under the driving of electrode, for example, be rotated in a clockwise direction, then the six of rotary work station
Individual station undergoes successively is taking pole piece station to obtain electrode plates, blows station progress brush in brush and blows operation,
Positional stations complete the positioning of electrode plates, and finally when pole piece takes station away, electrode plates are removed, and
After two subsequent redundancy station states, repeat above-mentioned acquisition electrode plates and be removed to electrode plates
One circulation, i.e., in synchronization, respectively have at a station in six stations of the rotary work station 29
In taking pole piece station, brush to blow station, positional stations, pole piece and take the state of station away, while there is two works
Position is in redundancy station state.
In the illustrated embodiment, the first station 291 is in next interval currently to take pole piece station
Station is blown as the rotation of rotary work station is changed into brush, and the second station 292 blows station by current brush and turned
It is changed into positional stations, 3rd station 293 is changed into pole piece by current positional stations and takes station, the 4th away
Station 294 takes station away by current pole piece and is changed into redundancy station, and the 5th station 295 is still redundancy work
Position, and the 6th station 296 is then changed into by redundancy station and takes pole piece station, completes a circulation.
In other embodiments, the rotary work station 29 may not be 6 stations, it is only necessary to meet same
Respectively have in moment, multiple stations of rotary work station 29 station be in take pole piece station, brush blow station,
Positional stations, pole piece take the state of station away, and at least one station is in redundancy station state.
Carried out by the way that each process operation of a process is shared into each station, recycle each
The rotation process of station, takes pole piece, brush to blow operation, positioning, pole piece quilt compared in a station completion
All operations taken away, the feeding module will be shared the time to multiple stations, greatly improve battery
Processing efficiency.
The structural representation for showing patch pole piece module 30 exemplary Fig. 4, the patch pole piece module 30
It is described including an electric rotating machine 31, one absorption motor 33, a swing arm 35 and an adsorbent equipment 37
The one end of swing arm 35 is fixedly connected on the electric rotating machine 31 and can be under the driving of the electric rotating machine 31
Swing, the absorption motor 33 is arranged on the swing arm 35, and the adsorbent equipment 37 is arranged at pendulum
Swing arm 35 can be grown away from the one end of electric rotating machine 31 under the driving of absorption motor 31 along swing arm 35
Direction motion is spent, so that adsorption electrode pole piece, by motor pole piece from the rotary work station 29 of feeding module 20
Pole piece is taken station away and taken away.
The structural representation for showing stack platform module 40 exemplary Fig. 5, the stack platform module
40 include a mounting seat 41, a stack platform 43 and a rotary electric machine 45, and the mounting seat 41 is fixed
In connecting the erecting bed so that the stack platform module 40 is fixed on into the erecting bed.The mounting seat
41 opposite sides are each provided with a fixation version 411, and the stack platform 43 is arranged at two fixed versions 411
Between.The one end of mounting seat 41 is additionally provided with a motor and installs version 413, and the rotary electric machine 45 is installed on electricity
Machine is installed in version 413, and the rotating shaft of rotary electric machine 45 sequentially passes through motor installation version 413 and two fixations
Version 411, the drive shaft of rotary electric machine 45 is rotated, and drives stack platform 43 to be mounted opposite 41 turns of seat
Dynamic, the amplitude of rotation is where the relative rotation rotating shaft of the motor 45 and perpendicular plane of mounting seat 41
In ± 90 ° of angles.
The stack platform 43 includes a platform floor 431, a landing slab 432, a platform constant pressure cylinder
433rd, two platforms fill up cylinder 434, one first stack of laminations 435 and a second lamination group 436, described
Platform floor 431 is located between two fixed plates 411, in the rotating shaft for being fixed on rotary electric machine 45, rotates electricity
Machine 45 is by driving platform floor 431 and then driving whole stack platform 43 relatively rotating 45 turns of motor
It is where axle, with the perpendicular plane of mounting seat 41 in reciprocally swinging on ± 45 ° of two working positions, and
Paster is completed in ± 45 ° of two working positions.The platform constant pressure cylinder 433 is arranged at platform floor 431
Center, two platforms fill up the both sides that cylinder 434 is arranged at the platform constant pressure cylinder 433, described
Landing slab 432 is arranged on platform constant pressure cylinder 433, and the landing slab 432 includes two platform breach 4321,
Extend from direction of the longer edge of the landing slab 432 parallel to shorter one side, the platform lacks
The length of mouth 4321 is less than the shorter one side of landing slab 432, and two platforms are filled up cylinder 434 and corresponded to respectively
Two platform breach 4321 are set, and are filled up in platform under the driving of cylinder 434, one with platform breach phase
What is adapted to fills up thick stick and can fill up in the position of platform breach 4321.First stack of laminations 435 and second lamination group
436 correspond to the lamination of two lamination sequences respectively, are respectively arranged at the longer one side side of landing slab.
First stack of laminations 435 includes a synchronous motor 4351, a transmission component 4353, two pressing cylinders
4355 and two tablettings 4357, two tablettings 4357 are individually fixed on two pressing cylinders 4355,
The two ends on the longer one side of landing slab 432 are respectively arranged at, pressing cylinder 4355 is fixed on platform floor 431
Upper surface, synchronous motor 4351 is fixed on the lower surface of platform floor 431, and transmission component 4353 is wrapped
Include a driving wheel 435a, a driven pulley 435b and a conveyer belt 435c, the driving master of synchronous motor 4351
Driving wheel 435a is rotated, and driving wheel 435a drives driven pulley 435b to rotate by conveyer belt 435c, so that
The tabletting that two pressing cylinders 4355 at the two ends on the longer one side of landing slab must be arranged at and be arranged on
4357 realize simultaneously operating.
Second lamination group 436 is identical with the structure of the first stack of laminations 435, and the first stack of laminations 4435 and second
The Central Symmetry of the relatively flat platen 432 of stack of laminations 436.
Although it is appreciated that above and hereinafter, stack platform is rotated motor driving at ± 45 ° two
Swung between working position, but this should not be understood that position is restricted, it is any can be rotated with drive shaft it is dynamic
Force driving device, as long as can realize that drive shaft is rotated, makes stack platform in ± 45 ° of two working positions
Between swing, including but not limited to bar-link drive, gear driven mechanism, cylinder etc..
The operation that stack platform module 40 is rotated is realized as follows:
In an initial condition, the bar of filling up that cylinder 434 is connected is filled up with platform to fill up in platform breach 4321,
Landing slab 432 is pushed down in four tablettings 4357 of the first stack of laminations 435 and second lamination group 436;Rotate electricity
Machine 45 is started working, by rotating shaft and the driving of platform floor 431, makes stack platform 43 toward first party
To(This sentences the present position of the first stack of laminations 435 for first direction)Swing, swing to+45 ° of amplitude
Afterwards, two tablettings 4357 of the first stack of laminations 435 are pulled open, two pressing cylinders of the first stack of laminations 435
4355 synchronous releases, the correspondence of patch pole piece module 30 carries out patch electrode plates(Such as positive electrode pole piece)Operation,
The adsorbent equipment 37 of patch pole piece module 30 is left after landing slab 432, two pressures of the first stack of laminations 435
Piece 4357 is retracted, two pressing synchronous pressings of cylinder 4355 of the first stack of laminations 435, rotary electric machine 45
Driving repeatedly expects platform 43 toward second direction(The direction of second lamination group 436)Swing, swing to -45 ° of positions
When putting, two tablettings of second lamination group 436 are pulled open, and two pressing cylinders of second lamination group 436 are same
Step is unclamped, and the correspondence of patch pole piece module 30 carries out patch electrode plates(Such as negative electrode pole piece)Operation, pastes pole piece
The adsorbent equipment 37 of module 30 is left after landing slab, and two tablettings of second lamination group 436 are retracted, the
Two pressing cylinder synchronous pressings of two stack of laminations 436, repeatedly material platform 43 is returned to the driving of rotary electric machine 45
Initial position, after electrode plates have been folded, electrode plates are pushed down in four tablettings 4357, now constant pressure cylinder 433
It is depressed, repeats said process until the preset number of plies of lamination, after the completion of lamination, oscillating motor 45 is by stack
Platform 43 swings 90 ° and is straightened to electrode plates, and electrode plates are removed, and fills up the pine of platform air cylinder 434
Open, fill up bar and leave platform breach 4321.
The barrier film module 50 of putting is arranged at the top of stack platform module 40, and is conveyed to stack platform 43
Barrier film, to separate with barrier film between positive and negative electrode pole piece.
When the laminating machine 100 works, the storage electrodes pole piece of pole piece material storehouse module 10, and in the driving of material storehouse
To the delivery electrodes pole piece of feeding module 20 in the presence of motor 11 and carrier plate 14, electrode plates are in feeding
Module 20, which is sequentially passed through, takes pole piece station, brush to blow after the processing of station, positional stations, and work is taken away in pole piece
Position is taken away by patch pole piece module 30, and the adsorbent equipment 37 of patch pole piece module 30 drives in absorption motor 33
Under take station adsorption electrode pole piece away from pole piece, the subsequent driving of electric rotating machine 31 swing arm 35 swings 45 °,
Now rotary electric machine 45 just drives stack platform 43 to turn to close to the direction of the patch pole piece module 30,
Pasting the driving of electric rotating machine 31 swing arm 35 after the paster of pole piece module 30, paster drives adsorbent equipment 37 remote
From stack platform 43, complete before the lamination of a lamination sequence, the driving stack of rotary electric machine 45 platform 43
Lamination is completed toward another lamination sequence.
Compared with prior art, the feeding module 20 of the laminating machine 100 employs rotary work station, will be existing
The operation completed in technology in a station is divided into multiple stations, substantially increases the efficiency of lamination, simultaneously
Paster is swung at+45 °, movement locus is 90 °, and circumferentially positioning, positioning completes one apart from short
90 degree of positioning times in cycle are 0.6S;Coordinate overall operation to complete once to have pasted positive/negative plate for 1.2S, make
The production efficiency of lithium battery is further enhanced.
Preferred embodiment of the present utility model is the foregoing is only, not thereby limits of the present utility model special
Sharp scope, every any modification made within design of the present utility model, equivalent substitution and improvement etc.
It should be included in scope of patent protection of the present utility model.

Claims (10)

1. laminating machine, to the lamination to electrode plates, including pole piece material storehouse module, feeding module, patch pole
Piece module, a stack platform module, one put barrier film module and a housing, the pole piece material storehouse module,
Feeding module, patch pole piece module, put barrier film module and cut barrier film module be respectively provided with housing, its
It is characterised by, material storehouse module is arranged on the bottom plate of housing, the feeding module is arranged at material storehouse mould
Directly over group, the patch pole piece module is arranged at directly over feeding module, the pole piece material storehouse module, institute
State feeding module and the patch pole piece module is provided with two, the pole piece material storehouse module, one
The individual feeding module and a patch pole piece module constitute one group of lamination sequence, two groups of lamination sequences
The both sides of the stack platform module are respectively arranged at, and it is equal with the distance of the stack platform module.
2. the laminating machine as described in claim 1, it is characterised in that the stack platform module includes one
Mounting seat, a stack platform and a drive device, the stack platform are arranged in the mounting seat,
The drive device is included in the rotating shaft that the stack platform is fixedly connected, the drive device drive shaft
Rotate, drive stack platform to be mounted opposite seat rotation.
3. laminating machine as claimed in claim 2, it is characterised in that:The stack platform is in relative rotating shaft
Place, with the perpendicular plane of mounting seat in reciprocally swinging on ± 45 ° of two working positions, and ±
45 ° of two working positions complete paster.
4. the laminating machine as described in claim 3, it is characterised in that the stack platform includes a platform
Bottom plate, a landing slab, a platform constant pressure cylinder, two platforms fill up cylinder, one first stack of laminations and one
Second lamination group, the platform floor is located between two fixed plates, is fixed in rotating shaft, and the platform is permanent
Air cylinder is arranged at the center of platform floor, and two platforms fill up cylinder and are arranged at the platform constant pressure cylinder
Both sides, the landing slab is arranged on platform constant pressure cylinder.
5. the laminating machine as described in claim 4, it is characterised in that the landing slab lacks including two platforms
Mouthful, extend from direction of the longer edge of the landing slab parallel to shorter one side, the platform lacks
The length of mouth is less than the shorter one side of landing slab, and two platforms fill up cylinder and correspond to two breach settings respectively,
Filled up in platform under the driving of cylinder, a thick stick of filling up being adapted with platform breach is filled up in platform breach
Position.
6. the laminating machine as described in claim 4, it is characterised in that the first stack of laminations and second lamination group
The lamination of two lamination sequences is corresponded to respectively, is respectively arranged at the longer one side side of landing slab.
7. laminating machine as claimed in claim 4, it is characterised in that second lamination group and the first stack of laminations
Structure is identical, and the Central Symmetry of the first stack of laminations and the relatively flat platen of second lamination group.
8. the laminating machine as described in claim 7, it is characterised in that the first stack of laminations includes a synchronous electricity
Machine, a transmission component, two pressing cylinders and two tablettings, two tablettings are individually fixed in two pressures
Close on cylinder, be respectively arranged at the two ends on the longer one side of landing slab, pressing cylinder is fixed on platform floor
Upper surface, oscillating motor is fixed on the lower surface of platform floor.
9. the laminating machine as described in claim 8, it is characterised in that transmission component include a driving wheel,
One driven pulley and a conveyer belt, synchronous machine drives driving wheel are rotated, and driving wheel is driven by conveyer belt
Driven pulley is rotated, and is arranged at two pressing cylinders at the two ends on the longer one side of landing slab and is arranged on
Tabletting simultaneously operating is realized by transmission component.
10. the laminating machine as described in claim 1, it is characterised in that the pole piece material storehouse module includes
One material storehouse motor, a screw mandrel, a storage container, a carrier plate, two sliding panels and a base,
The screw mandrel is connected to material storehouse motor, and being rotated by material storehouse motor;
The base is fixed on the bottom plate of the housing, and the storage container 13 is arranged on the base, institute
Carrier plate is stated to be arranged in the storage container, and the carrier plate can be moved in the storage container,
Electrode plates are deposited on the carrier plate, with the carrier plate moved in the storage container without
It is disconnected to be delivered to feeding module.
CN201621469443.6U 2016-12-29 2016-12-29 Laminating machine Expired - Fee Related CN206516718U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201621469443.6U CN206516718U (en) 2016-12-29 2016-12-29 Laminating machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201621469443.6U CN206516718U (en) 2016-12-29 2016-12-29 Laminating machine

Publications (1)

Publication Number Publication Date
CN206516718U true CN206516718U (en) 2017-09-22

Family

ID=59862767

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201621469443.6U Expired - Fee Related CN206516718U (en) 2016-12-29 2016-12-29 Laminating machine

Country Status (1)

Country Link
CN (1) CN206516718U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106505254A (en) * 2016-12-29 2017-03-15 深圳市三本机械有限公司 Laminating machine
CN107069058A (en) * 2016-12-30 2017-08-18 东莞市超鸿自动化设备有限公司 Lamination device

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106505254A (en) * 2016-12-29 2017-03-15 深圳市三本机械有限公司 Laminating machine
CN107069058A (en) * 2016-12-30 2017-08-18 东莞市超鸿自动化设备有限公司 Lamination device

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Granted publication date: 20170922

Termination date: 20201229