CN104241699B - A kind of rotary forming and capacity dividing device - Google Patents

A kind of rotary forming and capacity dividing device Download PDF

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Publication number
CN104241699B
CN104241699B CN201410481762.8A CN201410481762A CN104241699B CN 104241699 B CN104241699 B CN 104241699B CN 201410481762 A CN201410481762 A CN 201410481762A CN 104241699 B CN104241699 B CN 104241699B
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battery
partial volume
forming
capacity dividing
volume frame
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CN104241699A (en
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徐敖奎
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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
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01MPROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
    • H01M10/00Secondary cells; Manufacture thereof
    • H01M10/42Methods or arrangements for servicing or maintenance of secondary cells or secondary half-cells
    • H01M10/44Methods for charging or discharging
    • H01M10/446Initial charging measures
    • 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

Abstract

The present invention is applicable to the technical field of a kind of forming and capacity dividing device, disclose a kind of rotary forming and capacity dividing device, including forming and capacity dividing cabinet, forming and capacity dividing cabinet is connected with power supply, also include being located at the battery partial volume frame of forming and capacity dividing side cashier's office in a shop, being located at the conducting slip ring within forming and capacity dividing cabinet, charge and discharge device and drive mechanism, being provided with battery clamp on battery partial volume frame, each battery clamp is equipped with lead-in wire and is connected with charge and discharge device.The one rotary forming and capacity dividing device that the present invention provides, use rotary structure, make each battery on a surfaces of revolution, temperature equalization, thus avoid the temperature impact on battery capacity size, improve the accuracy of partial volume, simultaneously, installation time and the handling time of battery were integrated together in the forming and capacity dividing time, substantially reduce the working time of forming and capacity dividing, improve the automaticity of component capacitive equipment, and then improve combination property and the market competitiveness of component capacitive equipment.

Description

A kind of rotary forming and capacity dividing device
[technical field]
The present invention relates to a kind of forming and capacity dividing device, particularly to a kind of rotary forming and capacity dividing device.
[background technology]
Battery formation and partial volume are important programs in battery manufacturing process.Briefly, battery One-tenth is by battery activated, is state-of-charge by discharge and recharge by cells convert, in order to removal of contamination, improves it The chemistry of active substance electro-chemical activity and electrochemical reaction process;In practice, Battery formation equipment needs with 5, Battery being carried out three chargings, electric discharge in 6 hours, whole process needs manually to operate and monitor.Partial volume be by The capacity requirement of client, separates certified products;In practice, partial volume equipment Inspection goes out the capacity of battery sending and carries Showing, staff and sorts out the battery sorting of different capabilities according to prompting.Chemical conversion and partial volume due to battery It is all prior art, at this, its principle is not elaborated.
Existing battery, composition capacitance device is typically completed by Battery formation grading system.Current forming and capacity dividing Cabinet, substantially relies on and is manually placed on one by one on the fixture of forming and capacity dividing cabinet by battery, make battery Both positive and negative polarity is connected with the both positive and negative polarity of forming and capacity dividing cabinet.Along with the development of lithium ion battery industry, the most go out The component capacitive equipment of existing automatization, connects a needle-bar the both positive and negative polarity of forming and capacity dividing cabinet, will be melted into point The battery held is placed in a pallet, with mechanical hand, the pallet equipped with a lot of batteries is placed on forming and capacity dividing cabinet On needle-bar, make the both positive and negative polarity on the needle-bar of forming and capacity dividing cabinet and the both positive and negative polarity reliable contacts on pallet.But in reality In the operation of border, the component capacitive equipment of this kind of automatization, because a pallet has a lot of battery, there is centre bit Put the difference with marginal position, be a kind of discharge and recharge behavior due to forming and capacity dividing again, big according to charging and discharging currents Little, battery will generate heat, so the temperature of the battery circumferential of tray center is wanted compared with the temperature of edge battery circumferential Higher, and battery capacity plays and temperature has certain relation, so the chemical conversion of this automatization divides It is coarse for being installed with standby.
[summary of the invention]
It is an object of the invention to overcome above-mentioned the deficiencies in the prior art, it is provided that a kind of rotary forming and capacity dividing fills Putting, it aims to solve the problem that, and component capacitive equipment temperature of the prior art is unbalanced, partial volume to lithium ion battery Coarse technical problem.
For achieving the above object, the present invention proposes a kind of rotary forming and capacity dividing device, including forming and capacity dividing Cabinet, described forming and capacity dividing cabinet is connected with power supply, also include being located at forming and capacity dividing side cashier's office in a shop battery partial volume frame, It is located at the conducting slip ring within forming and capacity dividing cabinet, is located at the charge and discharge device above battery partial volume frame and for carrying The drive mechanism that galvanic electricity pond partial volume frame rotates, described battery partial volume frame is slidably connected with conducting slip ring, described Conducting slip ring and forming and capacity dividing cabinet fixing is connected, the axis of described conducting slip ring and the axle of battery partial volume frame Line coincides, and the inside of forming and capacity dividing cabinet is located at by described drive mechanism, and described drive mechanism divides with battery Hold frame to be connected;
Described battery partial volume frame is cylindrical, is provided with central shaft in the center of described battery partial volume frame, The axis of described central shaft and the dead in line of battery partial volume frame, described central shaft downwardly extends and conducts electricity The inner ring of slip ring contacts, and described central shaft upwardly extends and is connected with charge and discharge device, at described electricity The bottom surface of pond partial volume frame is provided with the axis weight of travelling gear, the axis of described travelling gear and battery partial volume frame Closing, be provided with pulley in the bottom surface of described travelling gear, described pulley is sliding with the upper surface of forming and capacity dividing cabinet Dynamic contact, is provided with several for the battery clamp installing battery, Mei Ge electricity on described battery partial volume frame Pond fixture is equipped with lead-in wire and is connected with charge and discharge device, and described lead-in wire is laid on the inside of battery partial volume frame;
Described conducting slip ring and central shaft all use conductive material, described conducting slip ring to be connected with power supply, Described forming and capacity dividing cabinet obtains electric energy by conducting slip ring, and described charge and discharge device is obtained by central shaft Electric energy;
Described drive mechanism includes driving motor and rotating gear, and described driving motor carries for rotating gear For power, the described inner ring rotating gear and travelling gear bites conjunction, described drive gears galvanic electricity pond mutually Partial volume frame is around central shaft rotation.
As preferably, each battery clamp all includes the spring handle for self-contained battery, for clamping electricity The compression spring in pond, the upper clamping fixture seat of both positive and negative polarity contact respectively at the two ends up and down of battery and lower clamp seat with And it is installed in the battery between clamping fixture seat and lower clamp seat, the end of described spring handle stretches out, One end of described compression spring contacts with the top of spring handle, the upper surface of the other end and upper clamping fixture seat Contact, described lower clamp is fixed on battery partial volume frame.
As preferably, described battery clamp is fixed on the lateral surface of battery partial volume frame, described battery Fixture is divided into some rows, and each row's battery clamp is all uniformly distributed around the axis of battery partial volume frame, described The row of battery clamp is less than 10 rows.
As preferably, a diameter of 4M of described battery partial volume frame, described battery clamp is divided into 3 rows, often One row has 120 battery clamps, and what each row's battery clamp was upper and lower is spaced apart 82mm.
As preferably, described drive mechanism is located at around conducting slip ring, the number of described drive mechanism Less than 3.
As preferably, also include that battery transmission belt, described battery transmission belt are located at the front side of forming and capacity dividing cabinet, Described battery transmission belt is vertical with the axis of battery partial volume frame, and described battery transmission belt place plane is the highest Bottom in battery partial volume frame.
As preferably, described forming and capacity dividing cabinet is additionally provided with by the situation of Battery formation partial volume being transmitted based on extremely The wireless transport module of calculation machine.
Beneficial effects of the present invention: compared with prior art, the rotary forming and capacity dividing of one that the present invention provides Device, simple in construction, use rotary structure so that each battery on a surfaces of revolution, temperature Equilibrium, thus avoids the temperature impact on battery capacity size, improves the accuracy of partial volume, meanwhile, Installation time and the handling time of battery were integrated together in the forming and capacity dividing time, substantially reduce chemical conversion point The working time held, improve the automaticity of component capacitive equipment, and then improve component capacitive equipment Combination property and the market competitiveness.
Inventive feature and advantage will combine accompanying drawing by embodiment and be described in detail.
[accompanying drawing explanation]
Fig. 1 is the front view of the embodiment of the present invention;
Fig. 2 is the top view of the embodiment of the present invention;
Fig. 3 is the structural representation of battery clamp in the embodiment of the present invention.
[detailed description of the invention]
For making the object, technical solutions and advantages of the present invention of greater clarity, below by accompanying drawing and real Execute example, the present invention is further elaborated.It is embodied as however, it should be understood that described herein Example only in order to explain the present invention, is not limited to the scope of the present invention.Additionally, in the following description, Eliminate the description to known features and technology, to avoid unnecessarily obscuring idea of the invention.
Refering to Fig. 1 and Fig. 2, the embodiment of the present invention provides a kind of rotary forming and capacity dividing device, including chemical conversion point Holding cabinet 1, forming and capacity dividing cabinet 1 is connected with power supply, also includes the battery partial volume frame being located at above forming and capacity dividing cabinet 1 3, it is located at the conducting slip ring 2 within forming and capacity dividing cabinet 1, is located at the charge and discharge device above battery partial volume frame 3 4 and for driving the drive mechanism 5 that battery partial volume frame 3 rotates, battery partial volume frame 3 slides with conducting slip ring 2 Connecting, conducting slip ring 2 is fixing with forming and capacity dividing cabinet 1 to be connected, the axis of conducting slip ring 2 and battery partial volume frame 3 Axis coincide, the inside of forming and capacity dividing cabinet 1 is located at by drive mechanism 5, drive mechanism 5 and battery partial volume Frame 3 is connected.In this kind of structure, battery partial volume frame 3 can be sliding by conducting slip ring 2 with forming and capacity dividing cabinet 1 It is dynamically connected, say, that battery partial volume frame 3 can be separated from each other with forming and capacity dividing cabinet 1.
Specifically, battery partial volume frame 3 is cylindrical, is provided with central shaft 31 in the center of battery partial volume frame 3, The axis of central shaft 31 and the dead in line of battery partial volume frame 3, central shaft 31 downwardly extends and conducting slip ring 2 Inner ring contact, central shaft 31 upwardly extends and is connected with charge and discharge device 4, at battery partial volume frame 3 Bottom surface is provided with the dead in line of travelling gear 32, the axis of travelling gear 32 and battery partial volume frame 3, in transmission The bottom surface of gear 32 is provided with pulley 33, and pulley 33 contacts with the upper surface slide of forming and capacity dividing cabinet 1, at electricity Pond partial volume frame 3 is provided with several and is all provided with for the battery clamp 6 installing battery 65, each battery clamp 6 Leaded it is connected with charge and discharge device 4.
Embodiments of the invention are for changing that the unbalanced phenomenon of temperature in existing forming and capacity dividing cabinet 1 is made Enter, use revolving battery partial volume frame 3 so that each battery 65 is in the rotation of battery partial volume frame 3 On side, not only maintain temperature equalization, but also improve the heat dispersion of battery partial volume frame 3 so that The temperature of each battery 65 is easier to be maintained on a specified temp, thus avoids temperature to battery 65 The impact of amount of capacity, improves the accuracy of partial volume.
Owing to embodiments of the invention are chemical conversion, partial volume integrated device, therefore in the formation process of battery 65, If needing to set a specific temperature, Producer has only to set up one in the side of battery partial volume frame 3 Heater so that the temperature of the battery 65 of certain part on the surfaces of revolution reaches this temperature, both need not Battery 65 is taken off, it is not required that the structure of battery partial volume frame 3 itself is made adjustment, greatly facilitates life The use of product person.
In order to the technical purpose of the present invention is better achieved, conducting slip ring 2 and central shaft 31 all use conduction material Material, conducting slip ring 2 is connected with power supply, and forming and capacity dividing cabinet 1 obtains electric energy, discharge and recharge by conducting slip ring 2 Device 4 obtains electric energy by central shaft 31, and lead-in wire is laid on the inside of battery partial volume frame 3.It is to say, Conducting slip ring 2 is not only forming and capacity dividing cabinet 1 energy source, is also the energy source of battery partial volume frame 3.This Plant structure substantial amounts of line and supply unit all to be integrated with battery partial volume frame 3, reduce forming and capacity dividing device Volume, reduce the manufacture difficulty of forming and capacity dividing device simultaneously.
Further, drive mechanism 5 includes driving motor 51 and rotating gear 52, drives motor 51 for turning Moving gear 52 provides power, and the inner ring rotating gear 52 and travelling gear 32 bites conjunction, travelling gear 32 mutually Drive battery partial volume frame 3 around central shaft 31 rotation.In this kind of structure, driving motor 51 is battery partial volume The rotation of frame 3 provides power, now, drives motor 51 to control velocity of rotation by forming and capacity dividing cabinet 1.
Referring again to Fig. 3, each battery clamp 6 all include the spring handle 61 for self-contained battery 65, For clamping the compression spring 62 of battery 65, the both positive and negative polarity respectively at the two ends up and down of battery 65 contacts Clamping fixture seat 63 and lower clamp seat 64 and the battery 65 being installed between clamping fixture seat 63 and lower clamp seat 64, The end of spring handle 61 stretches out, one end of compression spring 62 contacts with the top of spring handle 61, The other end and the upper surface of upper clamping fixture seat 63, lower clamp is fixed on battery partial volume frame 3.
When initial unassembled battery 65, spring handle 61 is in top, and compression spring 62 is also Do not compressed.And when assemble 65, spring handle 61 is pulled down into, compression spring 62 quilt Compression so that the upper clamping fixture seat 63 being connected with compression spring 62 is in close contact with the upper end of battery 65, and Compression spring 62 is also fixed on the state compressed by battery 65.Battery 55 after completing forming and capacity dividing When needing to be removed, spring handle 61 is pulled in situ so that the compression spring being connected with spring handle 61 62 decontrol, and in drive, clamping fixture seat 63 separates with the upper end of battery 65, and now battery 65 can be taken by Producer Under.
Specifically, battery clamp 6 is fixed on the lateral surface of battery partial volume frame 3, and battery clamp 6 is divided into Some rows, each row's battery clamp 6 is all uniformly distributed around the axis of battery partial volume frame 3, battery clamp 6 Row less than 10 rows, the row of battery clamp 6 is the most, carries out the battery 65 of forming and capacity dividing also simultaneously The most, thus the forming and capacity dividing efficiency of battery 65 is the highest.
The row of the battery clamp 6 of this kind of structure affects the height of battery partial volume frame 3, due to battery 65 Height is certain, and the row of battery clamp 6 is the most, and the height of battery partial volume frame 3 is the highest, therefore, Producer can adjust the row of battery clamp 6 according to actual production needs.
In an embodiment of the present invention, a diameter of 4M of battery partial volume frame 3, battery clamp 6 is divided into 3 rows, Each row has 120 battery clamps 6, each row's battery clamp about 6 be spaced apart 82mm.Certainly, this A little simply preferred embodiments, are not limitation of the invention, and Producer can be according to actual production Need change, as long as ensureing that all battery clamps 6 are all located at the lateral surface of battery partial volume frame 3.
In an embodiment of the present invention, forming and capacity dividing cabinet 1 is additionally provided with for the situation of Battery formation partial volume being passed Transporting to the wireless transport module of computer, forming and capacity dividing cabinet 1 one aspect controls driving motor 51 i.e. battery and divides Hold the rotary speed of frame 3, on the other hand by data collection during battery 65 partial volume and by wireless or bluetooth Transmission is to extraneous, and extraneous control information back is to forming and capacity dividing cabinet 1 so that the rotary speed of battery partial volume frame 3 Safely controllable.
Further, embodiments of the invention also include that battery transmission belt 7, battery transmission belt 7 are located at chemical conversion point Holding the front side of cabinet 1, battery transmission belt 7 is vertical with the axis of battery partial volume frame 3, battery transmission belt 7 place Plane is not higher than the bottom of battery partial volume frame 3, decreases battery 65 handling time in process of production.
In an embodiment of the present invention, battery 65 is transmitted to battery partial volume frame 3 front by battery transmission belt 7, Battery transmission belt 7 is provided with assembly station, and Producer controls the automation equipments such as mechanical hand on assembly station Assembling and take off battery 65, in the process, the battery 65 on battery partial volume frame 3 still carry out chemical conversion and Partial volume.It is to say, when battery partial volume frame 3 rotates to assembly station, battery 65 is assembled to battery folder In tool 6, start chemical conversion and partial volume;When the battery 65 being complete assembling is pivoted away from by battery partial volume frame 3 During assembly station, it is meant that necessarily have new battery clamp 6 to enter assembly station;When battery 65 is complete After chemical conversion and partial volume, battery partial volume frame 3 rotates again to assembly station, battery 65 quilt in battery clamp 6 Take off, and by battery transmission belt 7 transmission to next processing stations.Rotation due to battery partial volume frame 3 The speed that speed and battery 65 assemble and take off can control, and therefore, can control battery partial volume completely Frame 3 is after rotating a circle, and battery 65 is exactly completed chemical conversion and partial volume, i.e. realizes nonseptate battery 65 The streamline of transmission is taken off in assembling, it is only necessary to simple parameter adjustment, and has only to by outward Boundary can control, and substantially increases the automatization level of forming and capacity dividing device, shortens battery 65 forming and capacity dividing The time of process, so that lithium ion battery 65 production efficiency is substantially improved the most therewith.
Assembly station can also be integrated other pile line operation stations, such as, coding, internal resistance, electricity are installed Pressure detection, the vacuum seal of open formation, encapsulation heat shrinkage film etc., it is simple to battery 65 carries out next step operation, Shorten the passing time between lithium ion battery 65 production process, improve the life of lithium ion battery 65 further Produce efficiency.
The foregoing is only presently preferred embodiments of the present invention, not in order to limit the present invention, all at this Any amendment, equivalent or the improvement etc. made within bright spirit and principle, should be included in the present invention Protection domain within.

Claims (7)

1. a rotary forming and capacity dividing device, including forming and capacity dividing cabinet (1), described forming and capacity dividing cabinet (1) with Power supply is connected, it is characterised in that: also include being located at forming and capacity dividing cabinet (1) top battery partial volume frame (3), It is located at the internal conducting slip ring (2) of forming and capacity dividing cabinet (1), is located at filling of battery partial volume frame (3) top Electric discharge device (4) and be used for the drive mechanism (5) driving battery partial volume frame (3) to rotate, described electricity Pond partial volume frame (3) is slidably connected with conducting slip ring (2), described conducting slip ring (2) and forming and capacity dividing Cabinet (1) is fixing to be connected, the axis of described conducting slip ring (2) and the axis phase of battery partial volume frame (3) Overlapping, described drive mechanism (5) is located at the inside of forming and capacity dividing cabinet (1), described drive mechanism It is connected with battery partial volume frame (3);
Described battery partial volume frame (3) is cylindrical, in the center of described battery partial volume frame (3) It is provided with central shaft (31), the axis of described central shaft (31) and the axis weight of battery partial volume frame (3) Close, the inner ring that described central shaft (31) downwardly extends with conducting slip ring (2) contacts, described in Mandrel (31) upwardly extends and is connected with charge and discharge device (4), at described battery partial volume frame (3) Bottom surface be provided with travelling gear (32), the axis of described travelling gear (32) and battery partial volume frame (3) Dead in line, be provided with pulley (33), described pulley (33) in the bottom surface of described travelling gear (32) Contact with the upper surface slide of forming and capacity dividing cabinet (1), at described battery partial volume frame (3) if on be provided with Dry is used for installing the battery clamp (6) of battery (65), each battery clamp (6) be equipped with lead-in wire with Charge and discharge device (4) is connected, and described lead-in wire is laid on the inside of battery partial volume frame (3);
Described conducting slip ring (2) and central shaft (31) all use conductive material, described conducting slip ring (2) being connected with power supply, described forming and capacity dividing cabinet (1) obtains electric energy, institute by conducting slip ring (2) The charge and discharge device (4) stated obtains electric energy by central shaft (31);
Described drive mechanism (5) includes driving motor (51) and rotating gear (52), and described drives Galvanic electricity machine (51) provides power, described rotation gear (52) and driving cog for rotating gear (52) The inner ring of wheel (32) bites conjunction mutually, described travelling gear (32) drive battery partial volume frame (3) around in Mandrel (31) rotation.
A kind of rotary forming and capacity dividing device the most as claimed in claim 1, it is characterised in that: each battery presss from both sides Tool (6) all includes the spring handle (61) for self-contained battery (65), is used for clamping battery (65) Compression spring (62), both positive and negative polarity with the two ends up and down of battery (65) contacts respectively upper clamping fixture seat (63) And lower clamp seat (64) and be installed in the battery between clamping fixture seat (63) and lower clamp seat (64) (65), the end of described spring handle (61) stretches out, the one of described compression spring (62) End contacts with the top of spring handle (61), the upper surface of the other end and upper clamping fixture seat (63), Described lower clamp is fixed on battery partial volume frame (3).
A kind of rotary forming and capacity dividing device the most as claimed in claim 1 or 2, it is characterised in that: described electricity Pond fixture (6) is fixed on the lateral surface of battery partial volume frame (3), described battery clamp (6) point Some rows, each row's battery clamp (6) is become all to be uniformly distributed around the axis of battery partial volume frame (3), The row of described battery clamp (6) is less than 10 rows.
A kind of rotary forming and capacity dividing device the most as claimed in claim 3, it is characterised in that: described battery divides Holding a diameter of 4m of frame (3), described battery clamp (6) is divided into 3 rows, each row to have 120 electricity Pond fixture (6), what each row's battery clamp (6) was upper and lower is spaced apart 82mm.
A kind of rotary forming and capacity dividing device the most as claimed in claim 1 or 2, it is characterised in that: described biography Motivation structure (5) is located at conducting slip ring (2) around, and the number of described drive mechanism (5) is less than 3.
A kind of rotary forming and capacity dividing device the most as claimed in claim 1 or 2, it is characterised in that: also include electricity Pond transmission belt (7), described battery transmission belt (7) is located at the front side of forming and capacity dividing cabinet (1), described Vertical with the axis of battery partial volume frame (3), the described battery transmission belt (7) of battery transmission belt (7) Place plane is not higher than the bottom of battery partial volume frame (3).
A kind of rotary forming and capacity dividing device the most as claimed in claim 1 or 2, it is characterised in that: described change Become grading system (1) to be additionally provided with for transmit the situation of Battery formation partial volume to computer and be wirelessly transferred mould Block.
CN201410481762.8A 2014-09-19 2014-09-19 A kind of rotary forming and capacity dividing device Active CN104241699B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201410481762.8A CN104241699B (en) 2014-09-19 2014-09-19 A kind of rotary forming and capacity dividing device

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Application Number Priority Date Filing Date Title
CN201410481762.8A CN104241699B (en) 2014-09-19 2014-09-19 A kind of rotary forming and capacity dividing device

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CN104241699B true CN104241699B (en) 2016-08-24

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CN109728335A (en) * 2017-10-27 2019-05-07 苏州瀚川智能科技股份有限公司 A kind of poly-lithium battery forming and capacity dividing equipment mechanism
CN109065937B (en) * 2018-07-09 2024-02-27 惠州市德合盛科技有限公司 Tray type battery capacity-dividing cabinet

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KR101101062B1 (en) * 2010-08-19 2011-12-30 삼성에스디아이 주식회사 Apparatus for charging and discharging
CN202839863U (en) * 2012-09-15 2013-03-27 宁波世捷新能源科技有限公司 Safety device used for lithium ion battery formatting and grading
CN202836104U (en) * 2012-09-24 2013-03-27 浙江普耐德新能源科技有限公司 Battery drying device
CN204130645U (en) * 2014-09-19 2015-01-28 徐敖奎 A kind of rotary forming and capacity dividing device

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