CN102709583B - Laminating machine capable of driving film discharging by rotary loading - Google Patents

Laminating machine capable of driving film discharging by rotary loading Download PDF

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Publication number
CN102709583B
CN102709583B CN201210206428.2A CN201210206428A CN102709583B CN 102709583 B CN102709583 B CN 102709583B CN 201210206428 A CN201210206428 A CN 201210206428A CN 102709583 B CN102709583 B CN 102709583B
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Prior art keywords
pole piece
barrier film
traffic cycle
folding
positive
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CN201210206428.2A
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CN102709583A (en
Inventor
陈保成
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Dongguan Yakang Precision Machinery Co Ltd
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Dongguan Yakang Precision Machinery Co Ltd
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    • 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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  • Folding Of Thin Sheet-Like Materials, Special Discharging Devices, And Others (AREA)
  • Sheets, Magazines, And Separation Thereof (AREA)

Abstract

The invention relates to a laminating machine capable of driving film discharging by rotary loading. The laminating machine comprises a rotary loading mechanism, a positive pole piece trough, a positive pole piece calibration console, a negative pole piece trough, a negative pole piece calibration console, a lamination table and a film discharging mechanism, wherein the rotary loading mechanism is used for transferring pole pieces, and a big turntable which rotates in a reciprocating manner and is provided with four feeding arms is arranged at the upper part of the rotary loading mechanism; the positive pole piece trough, the positive pole piece calibration console, the negative pole piece trough, the negative pole piece calibration console and the lamination table are distributed along the periphery of the rotary loading mechanism; and the film discharging mechanism is arranged above the lamination table and driven by the big turntable which rotates in a reciprocating manner. When the big turntable rotates in a reciprocating manner, the two front feeding arms are used for respectively transferring positive pole pieces in the positive pole piece trough and negative pole pieces in the negative pole piece trough into the positive pole piece calibration console and the negative pole piece calibration console to be positioned; and the two rear feeding arms are used for respectively transferring the positioned positive pole pieces in the positive pole piece calibration console and the positioned negative pole pieces in the negative pole piece calibration console onto the lamination table and enabling the positive pole pieces and the negative pole pieces to be sequentially and alternately laminated with repeated Z-shaped films intermittently discharged by the film discharging mechanism. The laminating machine disclosed by the invention is simple in mechanisms for loading, transferring and laminating the positive pole pieces and the negative pole pieces in the circumferential direction, small in motion inertia, more stable in operation, small in occupied area and low in manufacturing cost.

Description

Rotary loading drives the laminating machine of film blowing
Technical field
The present invention relates to battery manufacturing equipment technical field, particularly relate to the battery core manufacturing technology field of battery, be specifically related to a kind of pole piece material loading and barrier film blowing of battery core, and the method stacked successively and device for pilling thereof.
Background technology
The laminating machine of prior art comprises: feed mechanism after the positive plate discharge mechanism of pole piece material loading part, positive plate front feeding mechanism, positive plate detent mechanism, positive plate, and negative plate discharge mechanism, negative plate front feeding mechanism, negative plate detent mechanism, feed mechanism after negative plate; And stacking mechanism, barrier film discharge mechanism, barrier film are corrected detent mechanism, front Material moving device, are cut off barrier film mechanism, barrier film winding mechanism, rear Material moving device, rubberizing mechanism of paper etc.
The material loading of the laminating machine of prior art is rectilinearly-movable, and feed mechanism needs reciprocating motion, and drive the motor of feed mechanism to need forward and reverse rotation, whole drive system is commutating always, starts, accelerates, slows down, brakes, commutating, changes and so forth.
The shortcoming of the laminating machine of prior art is: 1, mechanism is more, complex structure, and floor space is large.2, the inertia of moving component is large, and mechanism's speed of service is slow, and the production efficiency of equipment is low.3, the manufacturing cost of laminating machine is high, and the production cycle is long, difficult in maintenance.
Summary of the invention
The technical problem to be solved in the present invention is: the deficiency existed for above-mentioned existing laminating machine technology, provides a kind of laminating machine of battery core pole piece rotary loading.
The present invention is directed to the problems referred to above and the technical scheme that proposes is: rotary loading drives the laminating machine of film blowing, and comprise the rotary feeding mechanism for transferring pole piece, the top of rotary feeding mechanism is provided with the traffic cycle with four feeding arms of reciprocating rotation; Also comprise the circumferential distribution along rotary feeding mechanism, positive plate hopper, the positive plate calibration console of positive plate hopper side; Negative plate hopper, the negative plate calibration console of negative plate hopper side; And the lamination stacking table between two pole piece calibration consoles; And above lamination stacking table, the barrier film discharge mechanism driven by the traffic cycle of reciprocating rotation; During described traffic cycle reciprocating rotation, the larger front feeding arm of two angles, by the positive and negative plate in positive and negative plate hopper, is transplanted on positive and negative plate calibration console respectively and positions; The less rear feeding arm of another two angles, by positive and negative plate oriented in positive and negative plate calibration console, is transplanted on the barrier film that " Z " repeatedly shape that lamination stacking table and barrier film discharge mechanism interval release folds respectively and is stacked alternately successively.
The below of described feeding arm end is respectively arranged with pole piece sucker; At two extreme positions of traffic cycle reciprocating rotation, four pole piece suckers are corresponding lamination stacking table, positive plate calibration console, negative plate calibration console, positive plate hopper or negative plate hopper below it respectively, and four pole piece suckers rise after absorption pole piece or after placing pole piece.
Drive when described barrier film discharge mechanism is provided with traffic cycle reciprocating rotation, for the slip cylinder group of the folding blowing of barrier film interval; Described traffic cycle is provided with the barrier film blowing shifting block promoting the rectilinear movement of slip cylinder group horizontal reciprocating.
The shifting block rail plate radially slided relative to traffic cycle reciprocating rotation is provided with between described barrier film blowing shifting block and traffic cycle, shifting block rail plate is arranged radially at after two of traffic cycle between feeding arm, and barrier film blowing shifting block is arranged on traffic cycle by shifting block rail plate; During traffic cycle reciprocating rotation, at two extreme positions of traffic cycle reciprocating rotation, barrier film blowing shifting block slides into the solstics at the center of distance rotating disk reciprocating rotation, and slip cylinder group is at two extreme positions of reciprocating linear movement; In the centre position of traffic cycle reciprocating rotation, barrier film blowing shifting block slides into the closest approach at the center of distance rotating disk reciprocating rotation, and slip cylinder group is in the centre position of reciprocating linear movement.
Described barrier film discharge mechanism is also provided with and is in transmission connection with cylinder group of sliding, for controlling the folding and unfolding deflector roll of membrane tension.
Described folding and unfolding deflector roll is connected with slip cylinder group by folding and unfolding connecting rod; The upper end thereof of folding and unfolding connecting rod is in the inner of folding and unfolding deflector roll, and the lower end of folding and unfolding connecting rod is hinged on the inner of slip cylinder group; When slip cylinder group horizontal reciprocating moves linearly, the lower end of folding and unfolding connecting rod is along with the swing of slip cylinder group reciprocal horizontal, and the reciprocal vertical that the upper end of folding and unfolding connecting rod drives folding and unfolding deflector roll to realize folding and unfolding barrier film moves.
The bottom of described rotary feeding mechanism is provided with the Cam splitter driving traffic cycle reciprocating rotation and lifting; Described pole piece sucker is by the dynamic lifting of the feeding arm straps of traffic cycle.
Described shifting block rail plate is arranged radially at after two of traffic cycle between feeding arm, and described barrier film blowing shifting block is arranged on traffic cycle by shifting block rail plate.
Compared with existing laminating machine technology, adopt technical solution of the present invention, driven the reciprocally swinging of four feeding arms and the method for lifting of traffic cycle by Cam splitter, the advantage realize positive and negative plate circumferencial direction feeding, move material, stacking is as follows.
1. the unidirectional constant speed running of motor transmission mechanism, lamination efficiency improves nearly one times.
2. the structure of feed mechanism is simple, and movement inertia is little, operates steadily, and noise is little.
3. the floor space of whole equipment is little, and coefficient of safety is high.
4. low cost of manufacture, saving steel, maintenance and repair are simple and easy.
5. barrier film blowing constant tension, blowing precision is high.
Accompanying drawing explanation
Below the content expressed by each width accompanying drawing of this specification and the mark in figure are briefly described.
Fig. 1 is the structural representation that rotary loading of the present invention drives the laminating machine embodiment of film blowing.
Fig. 2 is the schematic diagram that rotary loading of the present invention drives the laminating machine embodiment discharge mechanism of film blowing.
Figure comprises: rotary feeding mechanism, front feeding arm 11, rear feeding arm 12, pole piece sucker 13, positive plate hopper 14, positive plate calibration console 15, negative plate hopper 16, negative plate calibration console 17, lamination stacking table 18, Cam splitter 19; Barrier film discharge mechanism, slip cylinder group 21, barrier film blowing shifting block 22, shifting block rail plate 23, folding and unfolding deflector roll 24, folding and unfolding connecting rod 25, cylinder group slide rail 26, deflector roll slide rail 27.
Embodiment
In order to further illustrate principle of the present invention and structure, existing by reference to the accompanying drawings to a preferred embodiment of the present invention will be described in detail.
Fig. 1 is the structural representation that rotary loading of the present invention drives the laminating machine embodiment of film blowing, and Fig. 2 is the schematic diagram of laminating machine embodiment discharge mechanism.
As shown in the figure, rotary loading of the present invention drives the laminating machine of film blowing, comprises the rotary feeding mechanism for battery pole piece transfer.Adopt Cam splitter to drive traffic cycle reciprocating rotation, with four feeding arms on traffic cycle, what wherein two angles were maximum is front feeding arm 11, and what another two angles were minimum is rear feeding arm 12.Traffic cycle is positioned at the top of rotary feeding mechanism, and Cam splitter 19 is positioned at the bottom of rotary feeding mechanism.
Along the periphery of rotary feeding mechanism, be distributed with respectively, positive plate hopper 14, the positive plate calibration console 15 of positive plate hopper 14 side, negative plate hopper 16, the negative plate calibration console 17 of negative plate hopper 16 side; And the lamination stacking table 18 between two pole piece calibration consoles.
Above lamination stacking table 18, the barrier film discharge mechanism that the traffic cycle being provided with reciprocating rotation drives.During traffic cycle reciprocating rotation, two front feeding arms 11, by the positive and negative plate in positive and negative plate hopper, are transplanted on positive and negative plate calibration console respectively and position; After another two, feeding arm 12 is by positive and negative plate oriented in positive and negative plate calibration console, is transplanted on lamination stacking table 18 respectively, and is stacked alternately successively with the barrier film that " Z " repeatedly shape that barrier film discharge mechanism interval is released folds.
The below of feeding arm end is respectively arranged with pole piece sucker 13.At two extreme positions of traffic cycle reciprocating rotation, four pole piece suckers 13 respectively corresponding lamination stacking table 18, positive plate calibration console 15, negative plate calibration console 17, positive plate hopper 14 or negative plate hopper 16, four pole piece suckers 13 below it after absorption pole piece or rise after putting down pole piece.
Drive when the barrier film discharge mechanism of laminating machine is provided with traffic cycle reciprocating rotation, for the slip cylinder group 21 of the folding blowing of barrier film interval.Between traffic cycle and slip cylinder group 21, be provided with the barrier film blowing shifting block 22 driving and stir the rectilinear movement of slip cylinder group 21 horizontal reciprocating.
The shifting block rail plate 23 radially slided relative to traffic cycle reciprocating rotation is provided with between barrier film blowing shifting block 22 and traffic cycle.Shifting block rail plate 23 is arranged radially at after two of traffic cycle between feeding arm 12, and barrier film blowing shifting block 22 is arranged on traffic cycle by shifting block rail plate 23.Barrier film blowing shifting block 22 drive stir slip cylinder group 21 move along cylinder group slide rail 26 reciprocating linear time, barrier film blowing shifting block 22 back and forth radially slides relative to the center of traffic cycle reciprocating rotation.
During traffic cycle reciprocating rotation, at two extreme positions of traffic cycle reciprocating rotation, barrier film blowing shifting block 22 slides into the solstics at the center of distance rotating disk reciprocating rotation, and slip cylinder group 21 is at two extreme positions of reciprocating linear movement; In the centre position of traffic cycle reciprocating rotation, barrier film blowing shifting block 22 slides into the closest approach at the center of distance rotating disk reciprocating rotation, and slip cylinder group 21 is in the centre position of reciprocating linear movement.
Barrier film discharge mechanism is also provided with and is in transmission connection with cylinder group 21 of sliding, for controlling the folding and unfolding deflector roll 24 of membrane tension.Folding and unfolding deflector roll 24 can move up and down along deflector roll slide rail 27, and folding and unfolding deflector roll 24 is connected with slip cylinder group 21 by folding and unfolding connecting rod 25; The upper end thereof of folding and unfolding connecting rod 25 is in the inner of folding and unfolding deflector roll 24, and the lower end of folding and unfolding connecting rod 25 is hinged on the inner of slip cylinder group 21; When slip cylinder group 21 horizontal reciprocating moves linearly, the lower end of folding and unfolding connecting rod 25 moves horizontally toward 21 again along with slip cylinder group, and the reciprocal vertical that the upper end of folding and unfolding connecting rod 25 drives folding and unfolding deflector roll 25 to realize folding and unfolding barrier film moves.
Rotary loading of the present invention drives the operation principle of the laminating machine of film blowing.
1. referring to Fig. 1, when the traffic cycle of rotary feeding mechanism rises at shown position: the pole piece sucker 13 below the front feeding arm 11 in left side can draw a slice negative plate in negative plate hopper 16, the pole piece sucker 13 below the rear feeding arm 12 is simultaneously by pinpoint negative plate absorption in negative plate calibration console 17; The positive plate of absorption is placed on after on lamination stacking table 18 and rises by the pole piece sucker 13 below the rear feeding arm 12 on right side, and a slice positive plate of absorption is placed in positive plate calibration console 15 and rises behind location by the pole piece sucker 13 below the front feeding arm 11 simultaneously.
2. then, when the traffic cycle of rotary feeding mechanism rotates clockwise a station decline: the negative plate of absorption is placed in negative plate calibration console 17 and locates by the pole piece sucker 13 below the front feeding arm 11 in left side, a slice negative plate of absorption overlays on lamination stacking table 15 by the pole piece sucker 14 below the rear feeding arm 12 simultaneously, and the positive plate below the barrier film folded with " Z " shape overlaps; 13, pole piece sucker below the rear feeding arm 12 on right side is drawn positive plate and to be calibrated in 15 pinpoint positive plate, and the pole piece sucker 13 below the rear feeding arm 12 on right side simultaneously draws a slice positive plate in positive plate hopper 14.
3. after Cam splitter 19 drives traffic cycle to rise, when rotating counterclockwise a station decline: the positive plate of absorption will be stacked on lamination stacking table 18 by the pole piece sucker 13 below the rear feeding arm 12 on right side, negative plate below the barrier film folded with " Z " shape overlaps, and a slice positive plate of absorption is placed in positive plate calibration console 15 and locates by the pole piece sucker 13 below the front feeding arm 11 simultaneously; Equally, the pole piece sucker 13 below the rear feeding arm 12 in left side is got back in negative plate calibration console 17 and is gone to draw negative plate, and the pole piece sucker below the front feeding arm 11 in simultaneously left side is got back in negative plate hopper 16 and gone to draw a slice negative plate.
Rotary feeding mechanism so circulates repeatedly, realizes the object that positive and negative plate is drawn respectively, located, stacks.
4. when the traffic cycle reciprocating rotation of rotary feeding mechanism, slip cylinder group 21 horizontal reciprocating that the barrier film blowing shifting block 22 be slidably connected with traffic cycle is stirred in barrier film discharge mechanism moves linearly, reach and make barrier film be the folding blowing of " Z " shape, two kinds of pole pieces are separated.
5. the power of slip cylinder group 21 reciprocating linear movement is passed to folding and unfolding deflector roll 24 by folding and unfolding connecting rod 25, makes folding and unfolding deflector roll 24 move along with slip cylinder group 21 reciprocating linear and produce up and down reciprocatingly vertically movement.Thus barrier film is realized to the function of retractable, ensure that the constant tension force of barrier film.
Foregoing; be only preferred embodiment of the present invention; not for limiting embodiment of the present invention; those of ordinary skill in the art are according to central scope of the present invention and spirit; can carry out corresponding flexible or amendment very easily, therefore protection scope of the present invention should be as the criterion with the protection range required by claims.

Claims (1)

1. rotary loading drives the laminating machine of film blowing, it is characterized in that:
Comprise the rotary feeding mechanism for transferring pole piece, the top of rotary feeding mechanism is provided with the traffic cycle with four feeding arms of reciprocating rotation;
Also comprise the circumferential distribution along rotary feeding mechanism, positive plate hopper, the positive plate calibration console of positive plate hopper side; Negative plate hopper, the negative plate calibration console of negative plate hopper side; Lamination stacking table between two pole piece calibration consoles; And above lamination stacking table, the barrier film discharge mechanism driven by the traffic cycle of reciprocating rotation;
Drive when described barrier film discharge mechanism is provided with traffic cycle reciprocating rotation, for the slip cylinder group of the folding blowing of barrier film interval;
Described traffic cycle is provided with the barrier film blowing shifting block promoting the rectilinear movement of slip cylinder group horizontal reciprocating; The shifting block rail plate radially slided relative to traffic cycle reciprocating rotation is provided with between described barrier film blowing shifting block and traffic cycle, shifting block rail plate is arranged radially at after two of traffic cycle between feeding arm, and barrier film blowing shifting block is arranged on traffic cycle by shifting block rail plate;
During described traffic cycle reciprocating rotation, the larger front feeding arm of two angles, by the positive and negative plate in positive and negative plate hopper, is transplanted on positive and negative plate calibration console respectively and positions; The less rear feeding arm of another two angles, by positive and negative plate oriented in positive and negative plate calibration console, is transplanted on the barrier film that " Z " repeatedly shape that lamination stacking table and barrier film discharge mechanism interval release folds respectively and is stacked alternately successively; At two extreme positions of traffic cycle reciprocating rotation, barrier film blowing shifting block slides into the solstics at the center of distance rotating disk reciprocating rotation, and slip cylinder group is at two extreme positions of reciprocating linear movement; In the centre position of traffic cycle reciprocating rotation, barrier film blowing shifting block slides into the closest approach at the center of distance rotating disk reciprocating rotation, and slip cylinder group is in the centre position of reciprocating linear movement.
2. according to laminating machine according to claim 1, it is characterized in that, the below of described feeding arm end is respectively arranged with pole piece sucker;
At two extreme positions of traffic cycle reciprocating rotation, four pole piece suckers are corresponding lamination stacking table, positive plate calibration console, negative plate calibration console, positive plate hopper or negative plate hopper below it respectively, and four pole piece suckers rise after absorption pole piece or after placing pole piece.
3. according to laminating machine according to claim 1, it is characterized in that, described barrier film discharge mechanism is also provided with and is in transmission connection with cylinder group of sliding, for controlling the folding and unfolding deflector roll of membrane tension.
4. according to laminating machine according to claim 3, it is characterized in that, described folding and unfolding deflector roll is connected with slip cylinder group by folding and unfolding connecting rod;
The upper end thereof of folding and unfolding connecting rod is in the inner of folding and unfolding deflector roll, and the lower end of folding and unfolding connecting rod is hinged on the inner of slip cylinder group;
When slip cylinder group horizontal reciprocating moves linearly, the lower end of folding and unfolding connecting rod is along with the swing of slip cylinder group reciprocal horizontal, and the reciprocal vertical that the upper end of folding and unfolding connecting rod drives folding and unfolding deflector roll to realize folding and unfolding barrier film moves.
5. according to laminating machine according to claim 2, it is characterized in that, the bottom of described rotary feeding mechanism is provided with the Cam splitter driving traffic cycle reciprocating rotation and lifting; Described pole piece sucker is by the dynamic lifting of the feeding arm straps of traffic cycle.
CN201210206428.2A 2012-06-20 2012-06-20 Laminating machine capable of driving film discharging by rotary loading Active CN102709583B (en)

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CN202797149U (en) * 2012-06-20 2013-03-13 东莞市雅康精密机械有限公司 Laminating machine adopting rotary loading to drive thin film to place material

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