CN104003022A - Feeding mechanism for button cell packaging machine - Google Patents

Feeding mechanism for button cell packaging machine Download PDF

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Publication number
CN104003022A
CN104003022A CN201410169603.4A CN201410169603A CN104003022A CN 104003022 A CN104003022 A CN 104003022A CN 201410169603 A CN201410169603 A CN 201410169603A CN 104003022 A CN104003022 A CN 104003022A
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China
Prior art keywords
battery
cell
shell
transfer
feed
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Application number
CN201410169603.4A
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Chinese (zh)
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CN104003022B (en
Inventor
陈茂开
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WENZHOU BOYANG PACKAGING MACHINERY CO Ltd
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WENZHOU BOYANG PACKAGING MACHINERY CO Ltd
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Priority to CN201410169603.4A priority Critical patent/CN104003022B/en
Publication of CN104003022A publication Critical patent/CN104003022A/en
Application granted granted Critical
Publication of CN104003022B publication Critical patent/CN104003022B/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The invention discloses an improved invention of a feeding mechanism for a button cell packaging machine. The feeding mechanism comprises a rack, and is characterized in that a cell feeding device, a blister recovery device, a cell loading device, a cell conveying belt and a material storage seat are arranged on the rack; a die box for placing cells is arranged on the cell conveying belt; the material storage seat is arranged at one side of the cell conveying belt; the cell feeding device and the cell loading device are arranged at the front end and the rear end of the cell conveying belt respectively; a guide column for a cell absorption seat to transversally move between the material storage seat and the cell conveying belt, and for a blister absorption seat to transversally move between the material storage seat and the blister recovery device is arranged on the rack; the cell absorption seat and the blister absorption seat are connected with a power source for driving the same to move up and down respectively. The feeding mechanism disclosed by the invention realizes automatic feeding for button cells, saves manual operations, increases working efficiency, and reduces production cost.

Description

A kind of feed mechanism of button cell wrapping machine
Technical field
What the present invention relates to is a kind of improvement invention of button cell wrapping machine, particularly be a kind of feed mechanism of button cell wrapping machine.
Background technology
Existing button cell generally adopts paper-plastic package, because button cell volume is little, has the problem of carrying inconvenience, being difficult to marshalling.At present, the battery of button cell wrapping machine is all by manually feeding in raw material, and by manual, battery is put into plastic housing one by one, then carries out heat sealed package moulding.Therefore, existing button cell wrapping machine exists process velocity slow, the problem that production efficiency is low, and current workman's difficulty of advertising for workers, and wage is high, and this has increased again the productive costs of producer undoubtedly.
Summary of the invention
In view of the technical matters that background technology exists, technical matters to be solved by this invention is to provide the feed mechanism of the button cell wrapping machine of a kind of energy automatic feeding, saves manual operation, reduces production costs, and enhances productivity.
In order to solve the problems of the technologies described above, the present invention adopts following technical scheme to realize: the feed mechanism of this kind of button cell wrapping machine, include frame, it is characterized in that described frame is provided with battery pay-off, cell-shell regenerative apparatus, battery feeding device, battery load-transfer device and material Storage tray, described battery load-transfer device is provided with the mold box that placing battery is used, material Storage tray is arranged on a side of battery load-transfer device, described battery pay-off and battery feeding device are separately positioned on the front-end and back-end of battery load-transfer device, described battery pay-off includes battery suction base and is arranged on the battery suction nozzle on battery suction base, described cell-shell regenerative apparatus includes cell-shell and reclaims seat, cell-shell suction base and be arranged on the cell-shell suction nozzle on cell-shell suction base, described battery suction nozzle is all connected with source of the gas with cell-shell suction nozzle, described frame is provided with and for battery suction base, at transverse shifting between material Storage tray and battery load-transfer device and for cell-shell suction base, at material Storage tray and cell-shell, reclaims the guide pillar of transverse shifting between seat, described guide pillar is arranged on material Storage tray, battery load-transfer device and cell-shell reclaim the top of seat, described cell-shell suction base and battery suction base move by drive disk assembly synchronous horizontal on guide pillar, described battery suction base is connected with driving its propulsion source moving up and down separately respectively with cell-shell suction base.
Described battery load-transfer device is divided into successively feed zone, charging zone and battery and mold box is delivered to the recovery area of feed zone after reinforced, and the battery load-transfer device of described recovery area is contrary with the throughput direction of the battery load-transfer device of feed zone.
Described battery load-transfer device is provided with and limits the guide rail that mold box is arranged, and the periphery of described battery load-transfer device is provided with the guide plate that mold box is carried out to spacing guiding.
Described feed zone includes blowing portion and delivery section, and the mold box of described blowing portion is corresponding with the battery suction nozzle on battery suction base, and the two ends of described blowing portion are provided with the gear template of blowing portion isolation, and described gear template is connected with lift cylinder.
Both sides on the battery load-transfer device of described delivery section are provided with the vibrating mass that makes mold box marshalling.
The push-and-pull cylinder that described vibrating mass includes push pedal and drives push pedal to move.
The mold box of described charging zone is corresponding with the suction nozzle of battery feeding device, and the two ends of described charging zone are also provided with the gear template of charging zone isolation, and described gear template is connected with lift cylinder.
Described drive disk assembly is ball-screw, and the screw rod of described ball-screw is parallel with guide pillar, and the nut of described ball-screw is connected with battery suction base with cell-shell suction base.
Described propulsion source is lift cylinder.
Described battery feeding device include drive that suction nozzle moves turn prelude part.
The present invention by battery pay-off by battery in material Storage tray is delivered to the mold box on battery load-transfer device, by mold box, make the battery proper alignment of little on battery load-transfer device, and after by battery load-transfer device again battery deliver to battery feeding device place and feed in raw material, in material Storage tray, remaining bulb shell is delivered to cell-shell by cell-shell regenerative apparatus and is reclaimed a seat centralized recovery.The present invention adopts full-automatic mechanical-type feeding, has save manual operation, has improved work efficiency, has reduced productive costs.The throughput direction of the feed direction of battery load-transfer device of the present invention and the recovery of mold box is contrary, and after battery feeds in raw material like this, mold box is by battery load-transfer device the automatic recovery, thereby realizes circulation material conveying; The arrangement of described battery in material cell-shell is fixing, but during packing, battery-arrangements is different, the present invention is by the guide plate restriction of the guide rail on battery load-transfer device and periphery, the arrangement of standard mold box, make the arrangement of battery on battery load-transfer device meet arrangement mode required while packing, battery feeding device just can directly take out by battery the plastics cell-shell of putting into moulding like this, meanwhile, mold box being directed to feed zone recycles and reuses; Described gear template is by blowing portion and other zone isolation, so not only avoid mold box stacking in course of conveying, and when blowing, make the arrangement position of mold box of blowing portion corresponding one by one with battery suction nozzle, assurance blowing is accurate, and the gear template of described charging zone also plays same effect; The present invention promotes mold box by vibrating mass left and right, and slight vibration can make mold box marshalling.
Accompanying drawing explanation
Below in conjunction with accompanying drawing, further describe principle of work of the present invention and details thereof.
Fig. 1 is structural representation of the present invention.
Fig. 2 is schematic top plan view of the present invention.
Fig. 3 is the structural representation of cell-shell regenerative apparatus of the present invention.
The specific embodiment
With reference to accompanying drawing, the feed mechanism of this kind of button cell wrapping machine, include frame 20, described frame is provided with battery pay-off 11, cell-shell regenerative apparatus 16, battery feeding device 21, battery load-transfer device 5 and material Storage tray 28, described battery load-transfer device 5 is provided with the mold box 8 that placing battery is used, and battery 19 is carried on battery load-transfer device 5 by mold box 8; Described battery load-transfer device 5 is provided with and limits the guide rail 2 that mold box is arranged, and the periphery of described battery load-transfer device 5 is provided with the guide plate 3 that mold box is carried out to spacing guiding; Described battery load-transfer device 5 is divided into successively feed zone 4, charging zone 9 and battery and mold box is delivered to the recovery area 6 of feed zone after reinforced, and the battery load-transfer device of described recovery area 6 is contrary with the throughput direction of the battery load-transfer device of feed zone 4; Described material Storage tray 28 is arranged on a side of battery load-transfer device 5, described battery pay-off 11 and battery feeding device 21 are separately positioned on the front-end and back-end of battery load-transfer device 5, be that battery pay-off 11 is corresponding with the position of feed zone 4, described battery feeding device 21 is corresponding with the position of charging zone 9.
Described battery pay-off 11 includes battery suction base 13 and is arranged on the battery suction nozzle 12 on battery suction base, described cell-shell regenerative apparatus 16 includes cell-shell and reclaims seat 27, cell-shell suction base 27 and be arranged on the cell-shell suction nozzle 18 on cell-shell suction base, described battery suction nozzle 12 is all connected with source of the gas with cell-shell suction nozzle 18, described frame is provided with and for battery suction base 13, at transverse shifting between material Storage tray and battery load-transfer device and for cell-shell suction base 17, at material Storage tray and cell-shell, reclaims the guide pillar 29 of transverse shifting between seat, described guide pillar 29 is arranged on material Storage tray 28, battery load-transfer device 5 and cell-shell reclaim the top of seat 27, described cell-shell suction base 17 moves by drive disk assembly synchronous horizontal on guide pillar 29 with battery suction base 13, drive disk assembly described in the present embodiment is ball-screw, not shown in FIG., the screw rod of described ball-screw and guide pillar 29 are set in parallel in frame, screw rod is connected with motor-driven, the nut of described ball-screw is connected with battery suction base with cell-shell suction base, bolt rotary, make nut on screw rod, make traveling priority, nut drives cell-shell suction base 17 and battery suction base 13 to laterally move along guide pillar 29, described battery suction base 13 is connected with driving its propulsion source moving up and down separately respectively with cell-shell suction base 17, described propulsion source can adopt lift cylinder, be that lift cylinder drives battery suction base 13 and cell-shell suction base 17 to move up and down.Described battery feeding device 21 includes suction nozzle 22 and drives that suction nozzle moves turns prelude part.Turning prelude part is prior art, be widely used in paper-plastic packing machine, such as the patent No. is 201110163819.6, denomination of invention is that rotary order mechanism > > and the patent No. of < < mass transport is 201320284073.9, denomination of invention is turning order device > > and all can realizing the conveying to battery of < < paper-plastic packing machine, therefore, at this, just repeat no more the concrete structure that turns prelude part.
Described feed zone 4 includes blowing portion 1 and delivery section 7, the mold box of described blowing portion 1 is corresponding with the battery suction nozzle 12 on battery suction base, and the two ends of described blowing portion 1 are provided with the gear template 15 of blowing portion isolation, and described gear template 15 is connected with lift cylinder 14; Both sides on the battery load-transfer device of described delivery section 7 are provided with the vibrating mass that makes mold box marshalling, vibrating mass not shown in FIG.; The push-and-pull cylinder that described vibrating mass includes push pedal and drives push pedal to move, push pedal slightly promotes mold box, impels mold box marshalling, avoids stacking.The mold box of described charging zone 9 is corresponding with the suction nozzle 22 of battery feeding device, and the two ends of described charging zone 9 are also provided with the gear template 25 of charging zone isolation, and described gear template is connected with lift cylinder 24.
With reference to Fig. 2, button cell 19 is to leave in cell-shell 26 to be stacked in material Storage tray 28 at first, cell-shell 26 is interior can place four row's batteries, one row has five batteries, when the battery in a cell-shell is delivered on the mold box 8 on battery load-transfer device 5, the width of the battery load-transfer device 5 at this place must hold five mold boxes of a row, but after packing moulding, in a packing, may only there be two batteries, therefore, when reinforced, for accurate positioning, precisely reinforced, on the battery load-transfer device of charging zone 9, a discharge is put two batteries and is advisable, the present invention limits mold box by guide rail 2 and guide plate 3 exactly and arrange specification on battery load-transfer device 5, in the blowing portion 1 of feed zone, the width of the battery load-transfer device that guide plate 3 limits is just large, can hold five mold boxes of a row, and longitudinally isolated by guide rail 2, during then through the delivery section 7 of feed zone, guide plate 3 is progressively that a row holds two mold boxes by the reduced width of battery load-transfer device, and so, when charging zone 9, the mold box on battery load-transfer device is two of rows, and number of batteries required when reinforced with battery is identical, and guide plate 3 guides to recovery area 6 by completing reinforced mold box, recovery area 6 is contrary with the throughput direction of feed zone 4, and mold box is sent to again feed zone 4, so can be reused, without manual operation.
During the machine work, the cell-shell 26 that button cell is housed is deposited in material Storage tray 28, electric motor starting, bolt rotary, drive nut moves, make battery suction base 13 and cell-shell suction base 17 along guide pillar 29, move to respectively the top of material Storage tray 28 and cell-shell recovery seat 27, battery suction base 13 and cell-shell suction base 17 move down under the drive of different lift cylinders, battery suction nozzle 12 on battery suction base holds the battery in the cell-shell in material Storage tray 28, now cell-shell 26 is interior without battery, for bulb shell, cell-shell suction nozzle 18 on cell-shell suction base is decontroled the bulb shell having adsorbed, then lift cylinder drives respectively battery suction base and cell-shell suction base to reset, motor reversal, drive nut oppositely to move, , make battery suction base and cell-shell suction base move to respectively the blowing portion 1 of battery load-transfer device feed zone and the top of material Storage tray 28 along guide pillar 29, lift cylinder makes battery suction base 13 and cell-shell suction base 17 move down again, now the battery suction nozzle 12 on battery suction base unclamps the battery of absorption, battery is placed on the mold box 8 on battery load-transfer device, it is to be recycled that cell-shell suction nozzle 18 on cell-shell suction base holds bulb shell etc., this rear motor is forward again, by making battery suction base and cell-shell suction base, deliver to the top of material Storage tray 28 and cell-shell recovery seat 27, so come and go, repeat feeding work.
When battery 19 is sent on mold box 8, the gear template 15 at blowing portion 1 two ends is isolated blowing portion, make mold box and the isolation of other mold boxes of blowing portion 1, the quantity of the mold box of blowing portion 1 is consistent with the quantity of battery suction nozzle 12, the battery that guarantees like this 12 absorption of battery suction nozzle is all sent on the mold box 8 of blowing portion 1, and backstop template 15 is opened, the mold box 8 that fills battery enters delivery section 7, mold box is patted, is pushed in the push pedal of delivery section gently, make mold box enter smoothly comparatively narrow charging zone 9, also avoid mold box stacking; Mold box enters charging zone 9, when reinforced, the gear template 25 at this place is by the mold box isolation of charging zone, and the suction nozzle 22 of feeding device is by the battery absorption in mold box, then by turning prelude part, feed in raw material, after battery is removed, gear template 25 is opened, and empty mold box is continued to be carried, guide plate 3 guides to recovery area 6 by mold box 8, the battery load-transfer device of recovery area 6 is contrary with the throughput direction of the battery load-transfer device of feed zone, just mold box is recycled to feed zone 4, proceeds feeding work.

Claims (10)

1. the feed mechanism of a button cell wrapping machine, include frame (20), it is characterized in that described frame is provided with battery pay-off (11), cell-shell regenerative apparatus (16), battery feeding device (31), battery load-transfer device (5) and material Storage tray (28), described battery load-transfer device (5) is provided with the mold box (8) that placing battery is used, material Storage tray (28) is arranged on a side of battery load-transfer device (5), described battery pay-off (11) and battery feeding device (21) are separately positioned on the front-end and back-end of battery load-transfer device (5), described battery pay-off (11) includes battery suction base (13) and is arranged on the battery suction nozzle (12) on battery suction base, described cell-shell regenerative apparatus (16) includes cell-shell and reclaims seat (27), cell-shell suction base (17) and be arranged on the cell-shell suction nozzle (18) on cell-shell suction base, described battery suction nozzle (12) is all connected with source of the gas with cell-shell suction nozzle (18), described frame is provided with and for battery suction base (13), at transverse shifting between material Storage tray and battery load-transfer device and for cell-shell suction base (17), at material Storage tray and cell-shell, reclaims the guide pillar (29) of transverse shifting between seat, described guide pillar (29) is arranged on material Storage tray (28), battery load-transfer device (5) and cell-shell reclaim the top of seat (27), described cell-shell suction base (17) moves by drive disk assembly synchronous horizontal on guide pillar with battery suction base (13), described battery suction base (13) is connected with driving its propulsion source moving up and down separately respectively with cell-shell suction base (17).
2. the feed mechanism of button cell wrapping machine according to claim 1, it is characterized in that described battery load-transfer device (5) is divided into successively feed zone (4), charging zone (9) and battery and mold box is delivered to the recovery area (6) of feed zone after reinforced, the battery load-transfer device of described recovery area (6) is contrary with the throughput direction of the battery load-transfer device of feed zone (4).
3. the feed mechanism of button cell wrapping machine according to claim 2, it is characterized in that described battery load-transfer device (5) is provided with the guide rail (2) that limits mold box arrangement, and the periphery of described battery load-transfer device is provided with the guide plate (3) that mold box is carried out to spacing guiding.
4. the feed mechanism of button cell wrapping machine according to claim 2, it is characterized in that described feed zone (4) includes blowing portion (1) and delivery section (7), the mold box of described blowing portion is corresponding with the battery suction nozzle on battery suction base, and the two ends of described blowing portion are provided with the gear template (15) of blowing portion isolation, and described gear template is connected with lift cylinder (14).
5. the feed mechanism of button cell wrapping machine according to claim 4, is characterized in that the both sides on the battery load-transfer device of described delivery section (7) are provided with the vibrating mass that makes mold box marshalling.
6. the feed mechanism of button cell wrapping machine according to claim 5, is characterized in that the push-and-pull cylinder that described vibrating mass includes push pedal and drives push pedal to move.
7. the feed mechanism of button cell wrapping machine according to claim 2, the mold box that it is characterized in that described charging zone (9) is corresponding with the suction nozzle of battery feeding device, and the two ends of described charging zone are also provided with the gear template (25) of charging zone isolation, and described gear template is connected with lift cylinder (24).
8. the feed mechanism of button cell wrapping machine according to claim 1, is characterized in that described drive disk assembly is ball-screw, and the screw rod of described ball-screw is parallel with guide pillar, and the nut of described ball-screw is connected with battery suction base with cell-shell suction base.
9. the feed mechanism of button cell wrapping machine according to claim 1, is characterized in that described propulsion source is lift cylinder.
10. according to the feed mechanism of the button cell wrapping machine described in claim 1 or 7, it is characterized in that described battery feeding device include drive that suction nozzle moves turn prelude part.
CN201410169603.4A 2014-04-25 2014-04-25 A kind of feed mechanism of button cell wrapping machine Expired - Fee Related CN104003022B (en)

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Application Number Priority Date Filing Date Title
CN201410169603.4A CN104003022B (en) 2014-04-25 2014-04-25 A kind of feed mechanism of button cell wrapping machine

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Application Number Priority Date Filing Date Title
CN201410169603.4A CN104003022B (en) 2014-04-25 2014-04-25 A kind of feed mechanism of button cell wrapping machine

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CN104003022B CN104003022B (en) 2016-04-20

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107572046A (en) * 2017-10-16 2018-01-12 东莞市盈合精密塑胶有限公司 One kind production charger glue shell automatic machinery

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2299065A (en) * 1995-03-18 1996-09-25 Truetzschler Gmbh & Co Kg Can-handling system in a textile installation
CN1801503A (en) * 2005-12-05 2006-07-12 天津工业大学 Automatic sealing loader for button cell
CN103443002A (en) * 2011-03-31 2013-12-11 Khs有限责任公司 Storage device
CN103612899A (en) * 2013-11-12 2014-03-05 中银(宁波)电池有限公司 Novel battery supporting cup arraying device
CN203780853U (en) * 2014-04-25 2014-08-20 温州博扬包装机械有限公司 Feeding mechanism for button cell packing machine

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2299065A (en) * 1995-03-18 1996-09-25 Truetzschler Gmbh & Co Kg Can-handling system in a textile installation
CN1801503A (en) * 2005-12-05 2006-07-12 天津工业大学 Automatic sealing loader for button cell
CN103443002A (en) * 2011-03-31 2013-12-11 Khs有限责任公司 Storage device
CN103612899A (en) * 2013-11-12 2014-03-05 中银(宁波)电池有限公司 Novel battery supporting cup arraying device
CN203780853U (en) * 2014-04-25 2014-08-20 温州博扬包装机械有限公司 Feeding mechanism for button cell packing machine

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107572046A (en) * 2017-10-16 2018-01-12 东莞市盈合精密塑胶有限公司 One kind production charger glue shell automatic machinery
CN107572046B (en) * 2017-10-16 2019-04-19 东莞市盈合精密塑胶有限公司 A kind of production charger rubber shell automatic machinery

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