CN104362375B - Cell winding device - Google Patents

Cell winding device Download PDF

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Publication number
CN104362375B
CN104362375B CN201410618558.6A CN201410618558A CN104362375B CN 104362375 B CN104362375 B CN 104362375B CN 201410618558 A CN201410618558 A CN 201410618558A CN 104362375 B CN104362375 B CN 104362375B
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fixed
cylinder
roller
plate
core
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CN104362375A (en
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王燕清
丁华
刘扬
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Wuxi Lead Intelligent Equipment Co Ltd
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Wuxi Lead Intelligent Equipment Co Ltd
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    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01MPROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
    • H01M10/00Secondary cells; Manufacture thereof
    • H01M10/05Accumulators with non-aqueous electrolyte
    • H01M10/058Construction or manufacture
    • 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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  • Engineering & Computer Science (AREA)
  • Manufacturing & Machinery (AREA)
  • Chemical & Material Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Electrochemistry (AREA)
  • General Chemical & Material Sciences (AREA)
  • Winding Of Webs (AREA)

Abstract

The present invention relates to cell winding device, including left pole piece interposer, right pole piece interposer, nip rolls mechanism, cutter mechanism, winding mechanism, first barrier film transfer roller, second barrier film transfer roller, wallboard, described left pole piece interposer is identical with right pole piece interposer structure, left pole piece interposer is provided with pole piece connecting gear, deviation correction mechanism and cutter mechanism, nip rolls mechanism includes left nip rolls drive mechanism, right nip rolls drive mechanism, cutter mechanism includes cutting knife, 7th roller, knife drive mechanism, second pressing plate, pressing plate drive mechanism, described winding mechanism includes the first core, second core, core drive mechanism, described core drive mechanism moves forward and backward with straight line for driving the first core and the second core to rotate, and the first core and the second core flip-flop movement can be simultaneously driven.Present configuration design is ingenious, and winding efficiency is high, and automaticity is high.

Description

Cell winding device
Technical field
The invention belongs to lithium battery winding installation technical field, be specifically related to a kind of cell winding device.
Background technology
After electric core winding completes, need to be quickly by winding.In the prior art, barrier film is easily caused septum end and produces burr when cutting off, affect electric core winding quality, need technological improvement.
Summary of the invention
It is an object of the invention to overcome the deficiencies in the prior art, it is provided that a kind of winding efficiency is high, the winding cell winding device that precision is good, automatization's performance is good.
The technical scheme provided according to the present invention, a kind of cell winding device, including left pole piece interposer, right pole piece interposer, nip rolls mechanism, cut barrier film mechanism, winding mechanism, first barrier film transfer roller, second barrier film transfer roller, wallboard, it is characterized in that: described left pole piece interposer is identical with right pole piece interposer structure, all include the 3rd roller, 4th roller, pole piece connecting gear, deviation correction mechanism, cutter mechanism, wherein, described pole piece connecting gear front end is provided with deviation correction mechanism, described deviation correction mechanism front end is provided with cutter mechanism, described pole piece connecting gear forwards for driving the pole piece between the 3rd roller and the 4th roller, pole piece position between described deviation correction mechanism energy automatic deviation correction the 3rd roller and the 4th roller, described cutter mechanism can realize automatically cutting off pole piece;Described nip rolls mechanism includes left nip rolls, left nip rolls drive mechanism, right nip rolls, right nip rolls drive mechanism, wherein, described right nip rolls is installed on right nip rolls drive mechanism, described right nip rolls drive mechanism drives right nip rolls to move, described right nip rolls offside is provided with left nip rolls, described left nip rolls is installed on left nip rolls drive mechanism, and described left nip rolls drive mechanism drives left nip rolls to move, it is achieved left nip rolls is pressed on right nip rolls;Described barrier film mechanism of cutting includes cutting knife, the 7th roller, knife drive mechanism, the second pressing plate, pressing plate drive mechanism, wherein, described second pressing plate is installed on pressing plate drive mechanism, described pressing plate drive mechanism moves for driving the second pressing plate, described second pressing plate offside is provided with cutting knife, the 7th cylinder, the 7th roller, described 7th roller and cutting knife are installed on knife drive mechanism, described knife drive mechanism is used for driving cutting knife and the 7th roller to move integrally, realizing the 7th roller and be pressed on the second pressing plate, described 7th cylinder can drive cutting knife to move forward and backward;Described winding mechanism includes the first core, the second core, core drive mechanism, and wherein, described core drive mechanism moves forward and backward with straight line for driving the first core and the second core to rotate, and can simultaneously drive the first core and the second core flip-flop movement.
nullAs a further improvement on the present invention,Described pole piece connecting gear includes the first motor、First screw mandrel、First roller、Second roller、First installing plate、Upper inserted sheet plate、Lower inserted sheet plate、4th installing plate、First mounting seat、Second mounting seat、3rd mounting seat、Second guide rod、First cylinder,Wherein,Described first motor output end is connected to the first screw mandrel,And described first screw mandrel is connected with the nut being fixed on the first installing plate,Described first installing plate is slidably connected to the 4th installing plate,Roll connection on described first installing plate and have the first roller and the second roller,It is installed with the first mounting seat on first installing plate on rear side of described second roller,Described 3rd roller rotates and is installed on the first mounting seat,It is provided with the 4th roller below described 3rd roller,Described 4th roller rotates and is installed on the second mounting seat,Described 3rd mounting seat is fixed on the first installing plate,Described first cylinder is fixed on the 3rd mounting seat and described first cylinder piston rod connects the second mounting seat,Fixed second guide rod in described second mounting seat,Described second guide rod is slidably connected to the 3rd mounting seat,Described upper inserted sheet plate is fixedly arranged on the first mounting seat by connecting plate,Described lower inserted sheet plate is fixedly arranged on the second mounting seat by connecting plate.
As a further improvement on the present invention, described deviation correction mechanism includes deflection correction sensor, 5th roller, 6th roller, second installing plate, 3rd cylinder, first bearing, second bearing, 3rd installing plate, second motor, second screw mandrel, second cylinder, 3rd cylinder, wherein, described 3rd installing plate is slidably mounted on the second installing plate, described first bearing and the second bearing are slidably mounted on the 3rd installing plate respectively, described 5th roller rotates and is installed on the first bearing, described 6th roller rotates and is installed on the second bearing, described second cylinder outfan is fixed on the first bearing, described 3rd cylinder outfan is fixed on the second bearing, described second motor is fixed on the second installing plate side, described second motor output end and the second screw mandrel connect, second screw mandrel is bolted in the 3rd installing plate.
nullAs a further improvement on the present invention,Described cutter mechanism includes lower cutter、Upper cutter、Tool rest、Upper slitter fixed plate、First guide rod、First spring、First connecting rod、First pressing plate、4th cylinder,Wherein,Described tool rest is fixed on mounting base,Described lower cutter is fixed on tool rest,Described tool rest upper end is provided with upper slitter fixed plate,Described upper cutter is fixed on upper slitter fixed plate,Fixed first guide rod on described first pressing plate,And described first guide rod is slidably mounted on upper slitter fixed plate,The first guide rod outer sheath between described first pressing plate upper surface and upper slitter fixed plate lower surface is equipped with the first spring,First connecting rod passes upper slitter fixed plate,And first connecting rod lower end is connected to the first pressing plate,Described upper slitter fixed plate fixes the 3rd guide rod,And described 3rd guide rod is slidably connected to tool rest,Described 4th cylinder is fixed on tool rest,And described 4th cylinder piston rod end is connected to upper slitter fixed plate.
nullAs a further improvement on the present invention,Described knife drive mechanism includes three abutments、5th installing plate,Wherein,The 6th cylinder is fixed on described three abutments,The outfan of the 6th cylinder is fixedly connected on the 5th installing plate,The 4th guide rod is fixed on 5th installing plate,And described 4th guide rod is slidably mounted on three abutments,The 7th cylinder is fixed on described 5th installing plate,Described 7th cylinder outfan is fixing connects the first fixed block,Described first fixed block is internally provided with and adds heat pipe,Described first fixed block upper surface is fixing connects cutting knife,Described first fixed block front end is provided with the 7th roller,Described 7th roller rotates and is installed on the 5th installing plate,Described three abutments is slidably mounted on the 6th installing plate,The 5th cylinder is fixed on described three abutments,Described 5th cylinder outfan is fixedly connected on three abutments,Described three abutments is cased with screw rod,Described screw rod one end is bolted in the 6th installing plate,The screw rod other end is provided with step.
As a further improvement on the present invention, described pressing plate drive mechanism includes the 4th bearing, wherein, fixed 9th cylinder on described 4th bearing, 9th cylinder outfan is fixing connects the second pressing plate, and described second pressing plate is provided with the groove for placing cutting knife, and described 4th bearing sliding is installed on the 5th bearing, it is fixed with the 8th cylinder (4.12) on 5th bearing (4.18), and the 8th cylinder piston rod is connected to the 4th bearing.
As a further improvement on the present invention, described left nip rolls drive mechanism is identical with right nip rolls driving mechanism structure, described left nip rolls drive mechanism includes the 3rd motor, the 3rd screw mandrel, the 6th bearing, nip rolls mounting seat, wherein, described 3rd motor is fixed on the 6th bearing, and described 3rd motor output shaft is connected to the 3rd screw mandrel, and described 3rd screw mandrel is spirally connected with the nut in nip rolls mounting seat, described left nip rolls rotates and is installed on nip rolls mounting seat, and described nip rolls mounting seat is slidably mounted on the 6th bearing.
As a further improvement on the present invention, described core driving means includes the 7th bearing, described 7th bearing is fixed on wallboard, described 7th bearing front end is rotatablely equipped with flange with one heart, fixed 8th bearing of connecting plate is passed through in described wallboard front end, the fixed connecting shaft of described flange center and described connecting shaft rotate and are installed on the 8th bearing, described 7th base rear end is rotatablely equipped with the first driven gear with one heart, described flange center is installed with connecting rod and is connected to the first driven gear, described first driven gear and the engagement of the first driving gear, 6th motor output end is fixedly connected on the first driving gear;Described first driven gear central coaxial is rotatablely equipped with second driving shaft and the first power transmission shaft, the first driven pulley is fixed in described second driving shaft one end, the described second driving shaft other end fixes the 3rd driving pulley, the second driven pulley is fixed in described first power transmission shaft one end, the described first power transmission shaft other end fixes the 4th driving pulley, described first driven pulley connects the first driving pulley by conveyer belt, described first driving pulley is connected to the 4th motor output end, described second driven pulley connects the second driving pulley by conveyer belt, second driving pulley is installed on the 5th motor output end;nullThe first core drive mechanism and the second core drive mechanism it is arranged with on described first driven gear,Described first core drive mechanism is identical with the second core driving mechanism structure,Described first core is installed on the first core drive mechanism,Described second core is installed on the second core drive mechanism,Described first core drive mechanism includes the first spline housing、3rd driven pulley,Described 3rd driven pulley rotates and is installed on the first driven gear,First spline housing is installed on the first driven gear,First splined shaft and the first spline housing are connected,Described first fixed 4th mounting seat in splined shaft front end,Described 3rd driven pulley connects the 3rd driving pulley by conveyer belt,Described first core is fixed on the 4th mounting seat,Fixed 5th guide rod between described flange and the first driven gear,Described 4th mounting seat is slidably mounted on the 5th guide rod,Described 7th bearing slides above and is provided with the tenth cylinder,The 13rd cylinder for driving the tenth cylinder to move forward and backward it is installed with on described 7th bearing,Described tenth cylinder outfan and the 4th mounting seat connect,Fixed rotary cylinder on described first driven gear,Described first splined shaft internal slide is provided with the first push rod,Described first push rod outer cover is equipped with the second spring,Described rotary cylinder action clamps the first barrier film and the second barrier film for promoting the first push rod to move forward driving core,The 4th driven pulley in second core drive mechanism rotates and is installed on the first driven gear,Second splined shaft and the spline housing being installed on the 4th driven pulley,Described 4th driven pulley connects the 4th driving pulley by conveyer belt.
As a further improvement on the present invention, fixed connecting plate in described connecting shaft, two detent mechanisms of symmetric design on described connecting plate, described detent mechanism includes the first locating piece, second fixed block, 3rd spring, sliding shoe, wherein, described second fixed block is fixed on connecting plate, described sliding shoe is slidably mounted on the second fixed block, described first locating piece rotates and is installed on sliding shoe, the 3rd spring it is provided with between described sliding shoe and the second fixed block, described first locating piece is provided with hole, location, the hole, location that described first core end can be slidably mounted on the first locating piece;Being installed with guide plate on 8th bearing, guide plate has breach, and fixed 11st cylinder of described guide plate upper end face, described 11st fixed second push pedal of cylinder outfan, when described 11st cylinder piston rod stretches out, described second push pedal is concordant with guide plate;Fixed 12nd cylinder of described guide plate rear surface, the 12nd fixed first push pedal of cylinder outfan, when described 12nd cylinder piston rod stretches out, described first push pedal is concordant with guide plate.
According to the present invention compared with prior art, advantage is: overcomes the defect that winding efficiency is low, winding precision is low, substantially increases electric core winding quality, improve production capacity, thus indirectly reduce production cost.
Accompanying drawing explanation
Fig. 1 is the main TV structure schematic diagram of the present invention.
Fig. 2 is the left pole piece interposer front view in the present invention.
Fig. 3 is the deviation correction mechanism front view in Fig. 2 of the present invention.
Fig. 4 is the cutter mechanism front view in Fig. 2 of the present invention.
Fig. 5 is the left nip rolls drive mechanism front view in the present invention.
Fig. 6 is to cut barrier film mechanism front view in the present invention.
Fig. 7 is to cut barrier film mechanism top view in the present invention.
Fig. 7 is to cut barrier film mechanism top view in the present invention.
Fig. 8 is the winding mechanism front view in the present invention.
Fig. 9 is the winding mechanism top view in the present invention.
nullDescription of reference numerals: 1 left pole piece interposer、2 right pole piece interposers、3 nip rolls mechanisms、4 cut barrier film mechanism、5 winding mechanisms、6 first barrier film transfer rollers、7 second barrier film transfer rollers、8 first barrier films、9 second barrier films、10 wallboards、1.1 first motors、1.2 first screw mandrels、1.3 first rollers、1.4 second rollers、1.5 first installing plates、1.6 the 3rd rollers、1.7 the 4th rollers、1.8 upper inserted sheet plate、1.9 times inserted sheet plates、1.10 the first cylinder、1.11 the 5th rollers、1.12 the 6th rollers、1.13 deflection correction sensor、1.14 the second installing plate、1.15 the second cylinder、1.16 the 3rd cylinders、1.17 the first bearing、1.18 the second bearing、1.19 the 3rd installing plates、1.20 the second motor、1.21 the second screw mandrel、1.22 the 4th cylinders、1.23 tool rest、1.24 lower cutter、1.25 upper slitter fixed plate、1.26 the first guide rod、1.27 the first spring、1.28 first connecting rod、1.29 upper cutter、1.30 the first pressing plate、1.31 mounting base、1.32 the 4th installing plates、1.33 the first mounting seat、1.34 the second mounting seat、1.35 the 3rd mounting seats、1.36 the second guide rod、1.37 the 3rd guide rods、3.1 left nip rolls、3.2 right nip rolls、、3.3 the 3rd screw mandrels、3.4 the 3rd motors、3.5 the 6th bearings、3.6 nip rolls mounting seats、4.1 the 5th cylinders、4.2 screw rod、4.3 three abutments、4.4 the 4th guide rods、4.5 first fixed blocks、4.6 cutting knife、4.7 the 6th cylinders、4.8 the 7th cylinders、4.9 the 7th rollers、4.10 add heat pipe、4.11 the second pressing plate、4.12 the 8th cylinders、4.13 the 9th cylinders、4.14 the 4th bearings、4.15 the 5th installing plates、4.16 the 6th installing plates、4.17 groove、4.18 the 5th bearings、5.1 first driving pulleys、5.2 flange、5.3 the 4th motors、5.4 first driven pulleys、5.5 the 5th motors、5.6 second driving pulleys、5.7 the 3rd driving pulleys、5.8 second driven pulleys、5.9 the 3rd driven pulleys、5.10 the 4th driving pulleys、5.11 the tenth cylinders、5.12 the first core、5.13 the first locating piece、5.14 the 11st cylinders、5.15 the 12nd cylinders、5.16 connecting rod、5.17 the first power transmission shaft、5.18 second driving shaft、5.19 the 4th driven pulleys、5.20 the first driven gear、5.21 the first driving gear、5.22 the 6th motors、5.23 the 13rd cylinder、5.24 rotary cylinder、5.25 the 7th bearings、5.26 the first spline housing、5.27 the first splined shaft、5.28 the second spring、5.29 the second splined shaft、5.30 the 4th mounting seats、5.31 the first push pedal、5.32 the 5th guide rods、5.33 the first push rod、5.34 connecting shaft、5.35 the second fixed block、5.36 connecting plate、5.37 the 3rd springs、5.38 sliding shoe、5.39 the 8th bearings、5.40 guide plate、5.41 the second push pedal、5.42 the 14th cylinders、5.43 the second core.
Detailed description of the invention
Below in conjunction with concrete drawings and Examples, the invention will be further described.
As it can be seen, one cell winding device of the present invention, including left pole piece interposer 1, right pole piece interposer 2, nip rolls mechanism 3, cut barrier film mechanism 4, winding mechanism the 5, first barrier film transfer roller the 6, second barrier film transfer roller 7, wallboard 10.
Described left pole piece interposer 1 is identical with right pole piece interposer 2 structure, all include the 3rd roller the 1.6, the 4th roller 1.7, pole piece connecting gear, deviation correction mechanism, cutter mechanism, wherein, described pole piece connecting gear front end is provided with deviation correction mechanism, described deviation correction mechanism front end is provided with cutter mechanism, described pole piece connecting gear forwards for driving the pole piece between the 3rd roller 1.6 and the 4th roller 1.7, pole piece position between described deviation correction mechanism energy automatic deviation correction the 3rd roller 1.6 and the 4th roller 1.7, described cutter mechanism can realize automatically cutting off pole piece;nullDescribed pole piece connecting gear includes the first motor 1.1、First screw mandrel 1.2、First roller 1.3、Second roller 1.4、First installing plate 1.5、Upper inserted sheet plate 1.8、Lower inserted sheet plate 1.9、4th installing plate 1.32、First mounting seat 1.33、Second mounting seat 1.34、3rd mounting seat 1.35、Second guide rod 1.36、First cylinder 1.10,Wherein,Described first motor 1.1 outfan is connected to the first screw mandrel 1.2,And described first screw mandrel 1.2 is connected with the nut being fixed on the first installing plate 1.5,Described first installing plate 1.5 is slidably connected to the 4th installing plate 1.32,Roll connection on described first installing plate 1.5 and have the first roller 1.3 and the second roller 1.4,It is installed with the first mounting seat 1.33 on first installing plate 1.5 on rear side of described second roller 1.4,Described 3rd roller 1.6 rotates and is installed on the first mounting seat 1.33,It is provided with the 4th roller 1.7 below described 3rd roller 1.6,Described 4th roller 1.7 rotates and is installed on the second mounting seat 1.34,Described 3rd mounting seat 1.35 is fixed on the first installing plate 1.5,Described first cylinder 1.10 is fixed on the 3rd mounting seat 1.35 and described first cylinder 1.10 piston rod connects the second mounting seat 1.34,Fixed second guide rod 1.36 in described second mounting seat 1.34,Described second guide rod 1.36 is slidably connected to the 3rd mounting seat 1.35,Described upper inserted sheet plate 1.8 is fixedly arranged on the first mounting seat 1.33 by connecting plate,Described lower inserted sheet plate 1.9 is fixedly arranged on the second mounting seat 1.34 by connecting plate,Described first motor 1.1 action,The first installing plate 1.5 is driven to move forward and backward,Described first cylinder 1.10 action,The 4th roller 1.7 is driven to be pressed on the 3rd roller 1.6.
nullDescribed deviation correction mechanism includes deflection correction sensor 1.13、5th roller 1.11、6th roller 1.12、Second installing plate 1.14、3rd cylinder 1.16、First bearing 1.17、Second bearing 1.18、3rd installing plate 1.19、Second motor 1.20、Second screw mandrel 1.21、Second cylinder 1.15、3rd cylinder 1.16,Wherein,Described 3rd installing plate 1.19 is slidably mounted on the second installing plate 1.14,Described first bearing 1.17 and the second bearing 1.18 are slidably mounted on the 3rd installing plate 1.19 respectively,Described 5th roller 1.11 rotates and is installed on the first bearing 1.17,Described 6th roller 1.12 rotates and is installed on the second bearing 1.18,Described second cylinder 1.15 outfan is fixed on the first bearing 1.17,Described 3rd cylinder 1.16 outfan is fixed on the second bearing 1.18,Described second motor 1.20 is fixed on the second installing plate 1.14 side,Described second motor 1.20 outfan and the second screw mandrel 1.21 connect,Second screw mandrel 1.21 is bolted in the 3rd installing plate 1.19,Described second motor 1.20 action,Drive the 5th roller 1.11 and the 6th roller 1.12 synchronizing moving,Described second cylinder 1.15 drives the 5th roller 1.11 to move down,Described 3rd cylinder 1.16 drives the 6th roller 1.12 to move up,Its 6th roller 1.12 is made to be pressed on the 5th roller 1.11.
nullDescribed cutter mechanism includes lower cutter 1.24、Upper cutter 1.29、Tool rest 1.23、Upper slitter fixed plate 1.25、First guide rod 1.26、First spring 1.27、First connecting rod 1.28、First pressing plate 1.30、4th cylinder 1.22,Wherein,Described tool rest 1.23 is fixed on mounting base 1.31,Described lower cutter 1.24 is fixed on tool rest 1.23,Described tool rest 1.23 upper end is provided with upper slitter fixed plate 1.25,Described upper cutter 1.29 is fixed on upper slitter fixed plate 1.25,Fixed first guide rod 1.26 on described first pressing plate 1.30,And described first guide rod 1.26 is slidably mounted on upper slitter fixed plate 1.25,The first guide rod 1.26 outer sheath between described first pressing plate 1.30 upper surface and upper slitter fixed plate 1.25 lower surface is equipped with the first spring 1.27,First connecting rod 1.28 is through upper slitter fixed plate 1.25,And first connecting rod 1.28 lower end is connected to the first pressing plate 1.30,Described upper slitter fixed plate 1.25 fixes the 3rd guide rod 1.37,And described 3rd guide rod 1.37 is slidably connected to tool rest 1.23,Described 4th cylinder 1.22 is fixed on tool rest 1.23,And described 4th cylinder 1.22 tailpiece of the piston rod is connected to upper slitter fixed plate 1.25,Described 4th cylinder 1.22 action,Upper cutter 1.29 is driven to move down,Upper cutter 1.29 and lower cutter 1.24 is made to coordinate,Cut off pole piece.
nullDescribed knife drive mechanism includes three abutments 4.3、5th installing plate 4.15,Wherein,The 6th cylinder 4.7 is fixed on described three abutments 4.3,The outfan of the 6th cylinder 4.7 is fixedly connected on the 5th installing plate 4.15,The 4th guide rod 4.4 is fixed on 5th installing plate 4.15,And described 4th guide rod 4.4 is slidably mounted on three abutments 4.3,The 7th cylinder 4.8 is fixed on described 5th installing plate 4.15,Described 7th cylinder 4.8 outfan is fixing connects the first fixed block 4.5,Described first fixed block 4.5 is internally provided with and adds heat pipe 4.10,Described first fixed block 4.5 upper surface is fixing connects cutting knife 4.6,Described first fixed block 4.5 front end is provided with the 7th roller 4.9,Described 7th roller 4.9 rotates and is installed on the 5th installing plate 4.15,Described three abutments 4.3 is slidably mounted on the 6th installing plate 4.16,The 5th cylinder 4.1 is fixed on described three abutments 4.3,Described 5th cylinder 4.1 outfan is fixedly connected on three abutments 4.3,Described three abutments 4.3 is cased with screw rod 4.2,Described screw rod 4.2 one end is bolted in the 6th installing plate 4.16,Screw rod 4.2 other end is provided with step;nullDescribed pressing plate drive mechanism includes the 4th bearing 4.14,Wherein,Fixed 9th cylinder 4.13 on described 4th bearing 4.14,9th cylinder 4.13 outfan is fixing connects the second pressing plate 4.11,Described second pressing plate 4.11 is provided with the groove 4.17 for placing cutting knife 4.6,Described 4th bearing 4.14 is slidably mounted on the 5th bearing 4.18,Described 8th cylinder 4.12 is fixed on the 5th bearing 4.18,And the 8th cylinder 4.12 piston rod be connected to the 4th bearing 4.14,Described 8th cylinder 4.12 and the 9th cylinder 4.13 action,The second pressing plate 4.11 is driven to move,Described 5th cylinder 4.1 and the 6th cylinder 4.7 action,The 7th roller 4.9 is driven to be pressed on the second pressing plate 4.11,Described 7th cylinder 4.8 action,Cutting knife 4.6 is driven to cut off barrier film;Described left nip rolls drive mechanism is identical with right nip rolls driving mechanism structure, described left nip rolls drive mechanism includes the 3rd motor the 3.4, the 3rd screw mandrel the 3.3, the 6th bearing 3.5, nip rolls mounting seat 3.6, wherein, described 3rd motor 3.4 is fixed on the 6th bearing 3.5, described 3rd motor 3.4 output shaft is connected to the 3rd screw mandrel 3.3, described 3rd screw mandrel 3.3 is spirally connected with the nut in nip rolls mounting seat 3.6, left nip rolls 3.1 rotates and is installed on nip rolls mounting seat 3.6, and described nip rolls mounting seat 3.6 is slidably mounted on the 6th bearing 3.5;Described left nip rolls drive mechanism and the action respectively of right nip rolls drive mechanism, drive left nip rolls 3.1 and right nip rolls 3.2 action, make left nip rolls 3.1 be pressed on right nip rolls 3.2 so that it is to clamp the barrier film between left nip rolls 3.1 and right nip rolls 3.2.
nullDescribed winding mechanism 5 includes the first core 5.12、Core drive mechanism,Wherein,Described core driving means includes the 7th bearing 5.25,Described 7th bearing 5.25 is fixed on wallboard 10,Described 7th bearing 5.25 front end is rotatablely equipped with flange 5.2 with one heart,Fixed 8th bearing 5.39 of connecting plate is passed through in described wallboard 10 front end,The fixed connecting shaft in described flange 5.2 center 5.34 and described connecting shaft 5.34 rotate and are installed on the 8th bearing 5.39,Described 7th bearing 5.25 rear end is rotatablely equipped with the first driven gear 5.20 with one heart,Described flange 5.2 center is installed with connecting rod 5.16 and is connected to the first driven gear 5.20,Described first driven gear 5.20 engages with the first driving gear 5.21,Described 6th motor 5.22 outfan is fixedly connected on the first driving gear 5.21,Described first driven gear 5.20 central coaxial is rotatablely equipped with second driving shaft 5.18 and the first power transmission shaft 5.17,The first driven pulley 5.4 is fixed in described second driving shaft 5.18 one end,Described second driving shaft 5.18 other end fixes the 3rd driving pulley 5.7,The second driven pulley 5.8 is fixed in described first power transmission shaft 5.17 one end,Described first power transmission shaft 5.17 other end fixes the 4th driving pulley 5.10,Described first driven pulley 5.4 connects the first driving pulley 5.1 by conveyer belt,Described first driving pulley 5.1 is connected to the 4th motor 5.3 outfan,Described second driven pulley 5.8 connects the second driving pulley 5.6 by conveyer belt,Second driving pulley 5.6 is installed on the 5th motor 5.5 outfan;nullThe first core drive mechanism and the second core drive mechanism it is arranged with on described first driven gear 5.20,Described first core drive mechanism is identical with the second core driving mechanism structure,Described first core drive mechanism includes the first spline housing、3rd driven pulley,Described 3rd driven pulley rotates and is installed on the first driven gear,First spline housing is installed on the first driven gear,First splined shaft and the first spline housing are connected,Described first fixed 4th mounting seat in splined shaft front end,Described 3rd driven pulley connects the 3rd driving pulley by conveyer belt,Described first core 5.12 is fixed on the 4th mounting seat 5.30,Fixed 5th guide rod 5.32 between described flange 5.2 and the first driven gear 5.20,Described 4th mounting seat 5.30 is slidably mounted on the 5th guide rod 5.32,Described 7th bearing 5.25 slides above and is provided with the tenth cylinder 5.11,It is installed with on described 7th bearing 5.25 for driving the tenth the 13rd movable cylinder 5.23 of cylinder 5.11,Described tenth cylinder 5.11 outfan and the 4th mounting seat 5.30 connect,Fixed rotary cylinder 5.24 on described first driven gear 5.20,Described first splined shaft 5.27 internal slide is provided with the first push rod 5.33,Described first push rod 5.33 outer cover is equipped with the second spring 5.28,The action of described rotary cylinder 5.24 clamps the first barrier film 8 and the second barrier film 9 for promoting the first push rod 5.33 to move forward driving the first core 5.12,When rotary cylinder 5.24 is after the first push rod 5.33 is removed,First push rod 5.33 auto-extending,Thus facilitate the battery core discharging in core,The 4th driven pulley in second core drive mechanism rotates and is installed on the first driven gear,Second splined shaft and the spline housing being installed on the 4th driven pulley,Described 4th driven pulley 5.19 connects the 4th driving pulley 5.10 by conveyer belt,Described 4th motor 5.3 action and the 5th motor 5.5 action,Drive the first core 5.12 and the second core 5.43 rotation respectively,Described 6th motor 5.22 action,Drive the first driven gear 5.20 rotary index 180 °,Thus drive the first core 5.12 and the second core 5.43 around connecting rod 5.16 central rotation,Described 13rd cylinder 5.23 action and the action respectively of the 14th cylinder 5.42,In driving the first core 5.12 and the second core 5.43 to be retracted to the 7th bearing 5.25 respectively or stretch out from the 7th bearing 5.25;
Fixed connecting plate 5.36 in described connecting shaft 5.34, two detent mechanisms of symmetric design on described connecting plate 5.36, described detent mechanism includes the first locating piece 5.13, second fixed block 5.35, 3rd spring 5.37, sliding shoe 5.38, wherein, described second fixed block 5.35 is fixed on connecting plate 5.36, described sliding shoe 5.38 is slidably mounted on the second fixed block 5.35, described first locating piece 5.13 rotates and is installed on sliding shoe 5.38, it is provided with the 3rd spring 5.37 between described sliding shoe 5.38 and the second fixed block 5.35, described first locating piece 5.13 is provided with hole, location, described first core 5.12 end can be slidably mounted on the hole, location on the first locating piece 5.13;It is installed with on guide plate 5.40 described in guide plate 5.40 on 8th bearing 5.39 and has breach, and described fixed 11st cylinder 5.14 of guide plate 5.40 upper end face, described 11st fixed second push pedal 5.41 of cylinder 5.14 outfan, when described 11st cylinder 5.14 piston rod stretches out, described second push pedal 5.41 is concordant with guide plate 5.40;Described fixed 12nd cylinder 5.15 of guide plate 5.40 rear surface, the 12nd fixed first push pedal 5.31 of cylinder 5.15 outfan, when described 12nd cylinder 5.15 piston rod stretches out, described first push pedal 5.31 is concordant with guide plate 5.40;Described 11st cylinder 5.14 action, the first locating piece 5.13 is made to stretch out insertion the first core 5.12 end, when the first core 5.12 is around connecting rod 5.16 central rotation to discharge station, described sliding shoe 5.38 fits on guide plate 5.40, when the first core 5.12 rotates to winder station from discharge station, sliding shoe 5.38 does not contacts with guide plate.
Cell winding device work process is as follows:
nullSecond barrier film 9 transmits along the second barrier film transfer roller 7,Described first barrier film 8 transmits along the first barrier film transfer roller 6,Left nip rolls 3.1 and right nip rolls 3.2 are under the effect of left nip rolls drive mechanism and right nip rolls drive mechanism,Clamp the second barrier film 9 and described first barrier film 8,Knife drive mechanism drives the 7th roller 4.9 and the second pressing plate 4.11 action to compress the second barrier film 9 and described first barrier film 8,Winder station and discharge station are set on winding mechanism 5,First core 5.12 action of winder station,The first core 5.12 is made by the second barrier film 9 and to state the first barrier film 8 and clamp,Left pole piece interposer 1 and the action respectively of right pole piece interposer 2,In the first core 5.12 that pole piece is respectively fed on winder station,The first core 5.12 on winder station rotates,Make the second barrier film 9、First barrier film 8 and pole piece coiling are in the first core 5.12,After the first core 5.12 winding on winder station terminates,Left pole piece interposer 1 and the action respectively of right pole piece interposer 2,Pole piece is cut off,First core 5.12 of winder station is rotated to discharge station by winding mechanism 5,In discharge station, the second core 5.43 rotates to winder station,Described knife drive mechanism drives the 7th roller 4.9 and the second pressing plate 4.11 action to compress the second barrier film 9 and the first barrier film 8,Described left nip rolls 3.1 and right nip rolls 3.2 compress the second barrier film 9 and the first barrier film 8,On described winder station, the second core 5.43 clamps the second barrier film 9 and the first barrier film 8,Then knife drive mechanism drives cutting knife 4.6 to cut off the second barrier film 9 and the first barrier film 8,In discharge station first core 5.12 rotate ending the second barrier film 9 and the first barrier film 8 and pass through terminal adhesive tape device by adhesive tape bonding on the second barrier film 9 and the first barrier film 8,And automatic blanking,Simultaneously,Left pole piece interposer 1、The action respectively of right pole piece interposer 2,Pole piece is inserted respectively on winder station in the second core 5.43,Repeat above-mentioned action.
Although the preferred embodiment of the present invention being described above in conjunction with accompanying drawing; but the invention is not limited in above-mentioned detailed description of the invention; above-mentioned detailed description of the invention is only schematically; it is not restrictive; those of ordinary skill in the art is under the enlightenment of the present invention; in the case of without departing from present inventive concept and protective scope of the claims, it is also possible to make the concrete conversion of a lot of form, within these belong to protection scope of the present invention.

Claims (9)

1. cell winding device, including left pole piece interposer (1), right pole piece interposer (2), nip rolls mechanism (3), cut barrier film mechanism (4), winding mechanism (5), the first barrier film transfer roller (6), the second barrier film transfer roller (7), wallboard (10), it is characterised in that:
Described left pole piece interposer (1) is identical with right pole piece interposer (2) structure, all include the 3rd roller (1.6), 4th roller (1.7), pole piece connecting gear, deviation correction mechanism, cutter mechanism, wherein, described pole piece connecting gear front end is provided with deviation correction mechanism, described deviation correction mechanism front end is provided with cutter mechanism, described pole piece connecting gear forwards for driving the pole piece between the 3rd roller (1.6) and the 4th roller (1.7), pole piece position between described deviation correction mechanism energy automatic deviation correction the 3rd roller (1.6) and the 4th roller (1.7), described cutter mechanism can realize automatically cutting off pole piece;
Described nip rolls mechanism (3) includes left nip rolls (3.1), left nip rolls drive mechanism, right nip rolls (3.2), right nip rolls drive mechanism, wherein, described right nip rolls (3.2) is installed on right nip rolls drive mechanism, described right nip rolls drive mechanism drives right nip rolls (3.2) mobile, described right nip rolls (3.2) offside is provided with left nip rolls (3.1), described left nip rolls (3.1) is installed on left nip rolls drive mechanism, described left nip rolls drive mechanism drives left nip rolls (3.1) mobile, it is achieved left nip rolls (3.1) is pressed on right nip rolls (3.2);
nullDescribed barrier film mechanism (4) of cutting includes cutting knife (4.6)、7th roller (4.9)、Knife drive mechanism、Second pressing plate (4.11)、Pressing plate drive mechanism,Wherein,Described second pressing plate (4.11) is installed on pressing plate drive mechanism,Described pressing plate drive mechanism is for driving the second pressing plate (4.11) mobile,Described second pressing plate (4.11) offside is provided with cutting knife (4.6)、7th cylinder (4.8)、7th roller (4.9),Described 7th roller (4.9) and cutting knife (4.6) and the 7th cylinder (4.8) are installed on knife drive mechanism,Described knife drive mechanism is used for driving cutting knife (4.6) and the 7th roller (4.9) to move integrally,Realize the 7th roller (4.9) and be pressed on the second pressing plate (4.11),Described 7th cylinder (4.8) can drive cutting knife (4.6) to move forward and backward;
Described winding mechanism (5) includes the first core (5.12), the second core (5.43), core drive mechanism, wherein, described core drive mechanism moves forward and backward with straight line for driving the first core (5.12) and the second core (5.43) to rotate, and can simultaneously drive the first core (5.12) and the second core (5.43) flip-flop movement.
null2. cell winding device as claimed in claim 1,It is characterized in that: described pole piece connecting gear includes the first motor (1.1)、First screw mandrel (1.2)、First roller (1.3)、Second roller (1.4)、First installing plate (1.5)、Upper inserted sheet plate (1.8)、Lower inserted sheet plate (1.9)、4th installing plate (1.32)、First mounting seat (1.33)、Second mounting seat (1.34)、3rd mounting seat (1.35)、Second guide rod (1.36)、First cylinder (1.10),Wherein,Described first motor (1.1) outfan is connected to the first screw mandrel (1.2),And described first screw mandrel (1.2) is connected with the nut being fixed on the first installing plate (1.5),Described first installing plate (1.5) is slidably connected to the 4th installing plate (1.32),The upper rolling connection of described first installing plate (1.5) has the first roller (1.3) and the second roller (1.4),It is installed with the first mounting seat (1.33) on described second roller (1.4) rear side the first installing plate (1.5),Described 3rd roller (1.6) rotates and is installed on the first mounting seat (1.33),Described 3rd roller (1.6) lower section is provided with the 4th roller (1.7),Described 4th roller (1.7) rotates and is installed on the second mounting seat (1.34),Described 3rd mounting seat (1.35) is fixed on the first installing plate (1.5),Described first cylinder (1.10) is fixed on the 3rd mounting seat (1.35) and described first cylinder (1.10) piston rod connects the second mounting seat (1.34),Upper fixed second guide rod (1.36) of described second mounting seat (1.34),Described second guide rod (1.36) is slidably connected to the 3rd mounting seat (1.35),Described upper inserted sheet plate (1.8) is fixedly arranged on the first mounting seat (1.33) by connecting plate,Described lower inserted sheet plate (1.9) is fixedly arranged on the second mounting seat (1.34) by connecting plate.
null3. cell winding device as claimed in claim 1,It is characterized in that: described deviation correction mechanism includes deflection correction sensor (1.13)、5th roller (1.11)、6th roller (1.12)、Second installing plate (1.14)、3rd cylinder (1.16)、First bearing (1.17)、Second bearing (1.18)、3rd installing plate (1.19)、Second motor (1.20)、Second screw mandrel (1.21)、Second cylinder (1.15)、3rd cylinder (1.16),Wherein,Described 3rd installing plate (1.19) is slidably mounted on the second installing plate (1.14),Described first bearing (1.17) and the second bearing (1.18) are slidably mounted on the 3rd installing plate (1.19) respectively,Described 5th roller (1.11) rotates and is installed on the first bearing (1.17),Described 6th roller (1.12) rotates and is installed on the second bearing (1.18),Described second cylinder (1.15) outfan is fixed on the first bearing (1.17),Described 3rd cylinder (1.16) outfan is fixed on the second bearing (1.18),Described second motor (1.20) is fixed on the second installing plate (1.14) side,Described second motor (1.20) outfan and the second screw mandrel (1.21) connect,Second screw mandrel (1.21) is bolted in the 3rd installing plate (1.19).
null4. cell winding device as claimed in claim 1,It is characterized in that: described cutter mechanism includes lower cutter (1.24)、Upper cutter (1.29)、Tool rest (1.23)、Upper slitter fixed plate (1.25)、First guide rod (1.26)、First spring (1.27)、First connecting rod (1.28)、First pressing plate (1.30)、4th cylinder (1.22),Wherein,Described tool rest (1.23) is fixed on mounting base (1.31),Described lower cutter (1.24) is fixed on tool rest (1.23),Described tool rest (1.23) upper end is provided with upper slitter fixed plate (1.25),Described upper cutter (1.29) is fixed on upper slitter fixed plate (1.25),Upper fixed first guide rod (1.26) of described first pressing plate (1.30),And described first guide rod (1.26) is slidably mounted on upper slitter fixed plate (1.25),The first guide rod (1.26) outer sheath between described first pressing plate (1.30) upper surface and upper slitter fixed plate (1.25) lower surface is equipped with the first spring (1.27),First connecting rod (1.28) passes upper slitter fixed plate (1.25),And first connecting rod (1.28) lower end is connected to the first pressing plate (1.30),Described upper slitter fixed plate (1.25) fixes the 3rd guide rod (1.37),And described 3rd guide rod (1.37) is slidably connected to tool rest (1.23),Described 4th cylinder (1.22) is fixed on tool rest (1.23),And described 4th cylinder (1.22) tailpiece of the piston rod is connected to upper slitter fixed plate (1.25).
null5. cell winding device as claimed in claim 1,It is characterized in that: described knife drive mechanism includes three abutments (4.3)、5th installing plate (4.15),Wherein,The 6th cylinder (4.7) is fixed on described three abutments (4.3),The outfan of the 6th cylinder (4.7) is fixedly connected on the 5th installing plate (4.15),The 4th guide rod (4.4) is fixed on 5th installing plate (4.15),And described 4th guide rod (4.4) is slidably mounted on three abutments (4.3),The 7th cylinder (4.8) is fixed on described 5th installing plate (4.15),Described 7th cylinder (4.8) outfan is fixing connects the first fixed block (4.5),Described first fixed block (4.5) is internally provided with and adds heat pipe (4.10),Described first fixed block (4.5) upper surface is fixing connects cutting knife (4.6),Described first fixed block (4.5) front end is provided with the 7th roller (4.9),Described 7th roller (4.9) rotates and is installed on the 5th installing plate (4.15),Described three abutments (4.3) is slidably mounted on the 6th installing plate (4.16),The 5th cylinder (4.1) is fixed on described three abutments (4.3),Described 5th cylinder (4.1) outfan is fixedly connected on three abutments (4.3),Described three abutments (4.3) is cased with screw rod (4.2),Described screw rod (4.2) one end is bolted in the 6th installing plate (4.16),Screw rod (4.2) other end is provided with step.
6. cell winding device as claimed in claim 1, it is characterized in that: described pressing plate drive mechanism includes the 4th bearing (4.14), wherein, upper fixed 9th cylinder (4.13) of described 4th bearing (4.14), 9th cylinder (4.13) outfan is fixing connects the second pressing plate (4.11), described second pressing plate (4.11) is provided with the groove (4.17) for placing cutting knife (4.6), described 4th bearing (4.14) is slidably mounted on the 5th bearing (4.18), it is fixed with the 8th cylinder (4.12) on 5th bearing (4.18), and the 8th cylinder (4.12) piston rod be connected to the 4th bearing (4.14).
7. cell winding device as claimed in claim 1, it is characterized in that: described left nip rolls drive mechanism is identical with right nip rolls driving mechanism structure, described left nip rolls drive mechanism includes the 3rd motor (3.4), 3rd screw mandrel (3.3), 6th bearing (3.5), nip rolls mounting seat (3.6), wherein, described 3rd motor (3.4) is fixed on the 6th bearing (3.5), described 3rd motor (3.4) output shaft is connected to the 3rd screw mandrel (3.3), described 3rd screw mandrel (3.3) is spirally connected with the nut in nip rolls mounting seat (3.6), described left nip rolls (3.1) rotates and is installed on nip rolls mounting seat (3.6), described nip rolls mounting seat (3.6) is slidably mounted on the 6th bearing (3.5).
null8. cell winding device as claimed in claim 1,It is characterized in that: described core driving means includes the 7th bearing (5.25),Described 7th bearing (5.25) is fixed on wallboard (10),Described 7th bearing (5.25) front end is rotatablely equipped with flange (5.2) with one heart,Fixed 8th bearing (5.39) of connecting plate is passed through in described wallboard (10) front end,The fixed connecting shaft in described flange (5.2) center (5.34) and described connecting shaft (5.34) rotate and are installed on the 8th bearing (5.39),Described 7th bearing (5.25) rear end is rotatablely equipped with the first driven gear (5.20) with one heart,Described flange (5.2) center is installed with connecting rod (5.16) and is connected to the first driven gear (5.20),Described first driven gear (5.20) is engaged with the first driving gear (5.21),6th motor (5.22) outfan is fixedly connected on the first driving gear (5.21);nullDescribed first driven gear (5.20) central coaxial is rotatablely equipped with second driving shaft (5.18) and the first power transmission shaft (5.17),The first driven pulley (5.4) is fixed in described second driving shaft (5.18) one end,Described second driving shaft (5.18) other end fixes the 3rd driving pulley (5.7),The second driven pulley (5.8) is fixed in described first power transmission shaft (5.17) one end,Described first power transmission shaft (5.17) other end fixes the 4th driving pulley (5.10),Described first driven pulley (5.4) connects the first driving pulley (5.1) by conveyer belt,Described first driving pulley (5.1) is connected to the 4th motor (5.3) outfan,Described second driven pulley (5.8) connects the second driving pulley (5.6) by conveyer belt,Second driving pulley (5.6) is installed on the 5th motor (5.5) outfan;
nullThe first core drive mechanism and the second core drive mechanism it is arranged with on described first driven gear (5.20),Described first core drive mechanism is identical with the second core driving mechanism structure,Described first core (5.12) is installed on the first core drive mechanism,Described second core (5.43) is installed on the second core drive mechanism,Described first core drive mechanism includes the first spline housing (5.26)、3rd driven pulley (5.9),Described 3rd driven pulley (5.9) rotates and is installed on the first driven gear (5.20),First spline housing (5.26) is installed on the first driven gear (5.20),First splined shaft (5.27) is connected with the first spline housing (5.26),Fixed 4th mounting seat (5.30) in described first splined shaft (5.27) front end,Described 3rd driven pulley (5.9) connects the 3rd driving pulley (5.7) by conveyer belt,Described first core (5.12) is fixed on the 4th mounting seat (5.30),Fixed 5th guide rod (5.32) between described flange (5.2) and the first driven gear (5.20),Described 4th mounting seat (5.30) is slidably mounted on the 5th guide rod (5.32),Described 7th bearing (5.25) slides above and is provided with the tenth cylinder (5.11),The 13rd cylinder (5.23) for driving the tenth cylinder (5.11) to move forward and backward it is installed with on described 7th bearing (5.25),Described tenth cylinder (5.11) outfan and the 4th mounting seat (5.30) connect,The upper fixed rotary cylinder (5.24) of described first driven gear (5.20),Described first splined shaft (5.27) internal slide is provided with the first push rod (5.33),Described first push rod (5.33) outer cover is equipped with the second spring (5.28),Described rotary cylinder (5.24) action moves forward driving core clamping barrier film for promoting the first push rod (5.33),The 4th driven pulley (5.19) in second core drive mechanism rotates and is installed on the first driven gear (5.20),Second splined shaft (5.29) and the spline housing being installed on the 4th driven pulley (5.19),Described 4th driven pulley (5.19) connects the 4th driving pulley (5.10) by conveyer belt.
null9. cell winding device as claimed in claim 8,It is characterized in that: the upper fixed connecting plate (5.36) of described connecting shaft (5.34),Upper two detent mechanisms of symmetric design of described connecting plate (5.36),Described detent mechanism includes the first locating piece (5.13)、Second fixed block (5.35)、3rd spring (5.37)、Sliding shoe (5.38),Wherein,Described second fixed block (5.35) is fixed on connecting plate (5.36),Described sliding shoe (5.38) is slidably mounted on the second fixed block (5.35),Described first locating piece (5.13) rotates and is installed on sliding shoe (5.38),The 3rd spring (5.37) it is provided with between described sliding shoe (5.38) and the second fixed block (5.35),Described first locating piece (5.13) is provided with hole, location,Described first core (5.12) end can be slidably mounted on the hole, location on the first locating piece (5.13);
It is installed with on guide plate (5.40) described guide plate (5.40) on 8th bearing (5.39) and has breach, and described fixed 11st cylinder (5.14) of guide plate (5.40) upper end face, described 11st fixed second push pedal of cylinder (5.14) outfan (5.41), when described 11st cylinder (5.14) piston rod stretches out, described second push pedal (5.41) is concordant with guide plate (5.40);Fixed 12nd cylinder (5.15) of described guide plate (5.40) rear surface, 12nd fixed first push pedal of cylinder (5.15) outfan (5.31), when described 12nd cylinder (5.15) piston rod stretches out, described first push pedal (5.31) is concordant with guide plate (5.40).
CN201410618558.6A 2014-11-06 2014-11-06 Cell winding device Active CN104362375B (en)

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CN109560332B (en) * 2017-09-27 2020-12-01 东莞市雅康精密机械有限公司 Winding apparatus
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