CN202626317U - Automatic plate feeding device for electrolytic manganese automation stripping production line - Google Patents

Automatic plate feeding device for electrolytic manganese automation stripping production line Download PDF

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Publication number
CN202626317U
CN202626317U CN 201220289088 CN201220289088U CN202626317U CN 202626317 U CN202626317 U CN 202626317U CN 201220289088 CN201220289088 CN 201220289088 CN 201220289088 U CN201220289088 U CN 201220289088U CN 202626317 U CN202626317 U CN 202626317U
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CN
China
Prior art keywords
sprocket wheel
chock
electrolytic manganese
production line
axle
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Withdrawn - After Issue
Application number
CN 201220289088
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Chinese (zh)
Inventor
杨颂初
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XIANGTAN DAZHONG RECTIFIER MANUFACTURING CO LTD
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XIANGTAN DAZHONG RECTIFIER MANUFACTURING CO LTD
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Priority to CN 201220289088 priority Critical patent/CN202626317U/en
Application granted granted Critical
Publication of CN202626317U publication Critical patent/CN202626317U/en
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Abstract

The utility model discloses an automatic plate feeding device for an electrolytic manganese automation stripping production line, which mainly solves the technical problems of difficulty in well combination between the conventional electrolytic negative plate manganese stripping machine and a computer-controlled electrolytic manganese negative plate ultrasonic cleaning machine and the like. According to key points of the technical scheme, the device comprises a plate conveying frame (1), wherein 1 to 2 power devices (11) with speed change capability are arranged on the lower part of the plate conveying frame (1); chain wheels (15) are arranged on the output shafts of the power devices (11); the upper part of the plate conveying frame (1) is symmetrically provided with 2 bearing seats I (8) and symmetrically provided with 2 bearing seats II (5); the chain wheels (15) are arranged at the two ends of shaft cores (9) which are arranged in the bearing seats I (8); rotating shafts (14) are arranged in the bearing seats II (5); and a plurality of guiding plates (4) are connected between a plurality of vertical columns (3) which are arranged beside a roller mechanism (2). The device has the advantages of small size, simple structure, convenience in use and high reliability, and can be widely applied to the electrolytic manganese automation stripping production line.

Description

What production line was peeled off in the electrolytic manganese robotization advances panel assembly automatically
Technical field
What production line was peeled off in a kind of electrolytic manganese robotization that the utility model relates to the metallurgical electrolysis industry advances panel assembly automatically.
Background technology
At present, relate to the peeling off of oven dry, manganese plating layer of electrolytic manganese negative plate in the technological process of production of electrolytic manganese, the manganese plating layer is peeled off the matting of dirt on the negative plate of back; Strive before our company the peeling off of electrolytic manganese negative plate manganese plating layer, design and improved the patented product manganese stripping machine for electrolytic cathode, patent " manganese stripping machine for electrolytic cathode " (number of patent application: 200910044145.0; 201020585706.6); It has replaced artificial stripping manganese with mechanize stripping manganese, has alleviated working strength of workers, has significantly improved production efficiency; For electrolytic manganese production enterprise accepts extensively, for this enterprise and electrolytic manganese production enterprise have created good economic benefit.Peel off on the negative plate of back aspect the cleaning of dirt at the manganese plating layer; Design and improved the patented product Ultrasonic Cleaners before our company; Patent " computer control electrolytic manganese negative plate Ultrasonic Cleaners " (number of patent application: 201110116812.9); Through adopting ultrasonic cleaning to replace artificial cleaning, the staff is freed from arduous Working environment, improved working efficiency simultaneously.But manganese stripping machine for electrolytic cathode is difficult to and computer control electrolytic manganese negative plate Ultrasonic Cleaners combine well.
Summary of the invention
Bring into play better working efficiency aborning in order to make manganese stripping machine for electrolytic cathode and computer control electrolytic manganese negative plate Ultrasonic Cleaners; Reduce the working strength of workers of piecing together benefit with machinery; Create the good work situation of electrolytic manganese production; Our company's independent research the electrolytic manganese robotization peel off production line, organically with the peeling off of the oven dry of electrolytic manganese negative plate, negative plate manganese plating layer, operations such as the cleaning of negative plate are incorporated into the electrolytic manganese robotization and peel off on the production line; Realized the robotization of the full technical process of electrolytic manganese stripping process, and to electrolytic manganese the robotization patent of having peeled off the production line application.The purpose of the utility model provide a kind of be used for that the electrolytic manganese robotization peels off production line advance panel assembly automatically.
The utility model solves the technical scheme that its technical problem adopted: it comprises input board frame 1, and the bottom of input board frame 1 is equipped with the power 11 that the 1-2 platform has variable speed capability, and the output shaft of power 11 is provided with sprocket wheel 15; The top symmetry of input board frame 1 is installed 2 chock I 8 and with symmetry 2 chock II 5 is installed; Be provided with a core 9 in the chock I 8, sprocket wheel 15 is installed at the two ends of axle core 9, is provided with rotating shaft 14 in the chock II 5; One end of rotating shaft 14 is installed sprocket wheel 15 the other ends shift fork dish 6 is installed; Between the sprocket wheel 15 of axle core 9 inboards and the shift fork dish 6 in the rotating shaft 14 slide bar 7 is set, the rear end of slide bar 7 extends to the opposite side of shift fork dish 6, and the rear end of slide bar 7 is over against the idler wheel mechanism 2 that is installed in input board frame 1 middle part; Installation shaft I 16 and axle II 17 on the crossbeam 12 at input board frame 1 middle part; The sprocket wheel 15 of axle on the I 16 is connected with sprocket wheel 15 on the power 11 through chain 10; Axle I 16 is provided with a plurality of circle wheels 13; The sprocket wheel 15 of axle on the II 17 is connected with sprocket wheel 15 on the power 11 through chain 10, and 2 sprocket wheels 15 on the II 17 connect the sprocket wheel 15 in 5 rotating shafts 14 of 2 chock II respectively through chain 10; Main shaft 18 is installed at the middle part of input board frame 1, and the sprocket wheel 15 on the main shaft 18 is connected with sprocket wheel 15 on power 11 output shafts through chain 10, and two sprocket wheels 15 on the main shaft 18 connect the sprocket wheel 15 on 8 cores 9 of 2 chock I respectively; Said idler wheel mechanism 2 sides are provided with several columns 3, connect several piece shoe 4 between several columns 3.
The said idler wheel mechanism 2 of the utility model comprises support 19; The a plurality of chocks 20 of one row are set on the support 19; Chock 20 connects roller bearing 22 through bearing, and an end of roller bearing 22 is installed 1-2 sprocket wheel 15, and the other end of roller bearing 22 is installed roller 21; Sprocket wheel 15 on the adjacent roller bearing 22 is connected by chain 10, and wherein the sprocket wheel 15 on the roller bearing 22 is connected with power 11.At least 2 of said slide bar 7 quantity.On the sprocket wheel 15 of 8 cores of said chock I, 9 inboards the chain 10 of carrying negative plate is installed.
The beneficial effect of the utility model is: it is the key innovation parts that production line is peeled off in the electrolytic manganese robotization, has guaranteed that the electrolytic manganese robotization peels off the full-automation production of production line; Through adopting the shift fork dish to separate negative plate, realized that the timing of negative plate divides plate and conveying; Through the principle of the utilization movement of falling object, realized that 90 of negative plate spends automatic break-in campaign of moment, reach negative plate and got into manganese stripping machine automatically, fast, efficiently, accurately.It is little, simple in structure, easy to use that it has a volume, the advantage that safety is high.It can be widely used in the electrolytic manganese robotization and peel off on the production line.
Description of drawings
Fig. 1 is the structural representation of the utility model.
Fig. 2 is the plan structure synoptic diagram of Fig. 1.
Fig. 3 is the local structure for amplifying synoptic diagram of Fig. 1.
Among the figure: 1-input board frame, 2-idler wheel mechanism, 3-column, 4-shoe, 5-chock II, 6-shift fork dish; The 7-slide bar, 8-chock I, 9-axle core, 10-chain 10,11-power, 12-crossbeam; 13-circle wheel, 14-rotating shaft, 15-sprocket wheel, 16-axle I, 17-axle II; The 18-main shaft, 19-support, 20-chock, 21-roller, 22-roller bearing.
Embodiment
Below in conjunction with accompanying drawing and embodiment the utility model is explained further details.
Embodiment 1; When the electrolytic manganese robotization is peeled off production line when in running order; 11 work of two power, power output, power 11 drives main shaft 18 rotations; Main shaft 18 drives the axle core 9 speed rotation together in two 2 chock I 8, and the sprocket wheel 15 on the diaxon core 9 drives chain 10 motions of carrying negative plate respectively; Another power 11 drives axle I 16 and 17 rotations of axle II simultaneously, circle wheel 13 rotations on the axle I 16, and the sprocket wheel 15 on the axle II 17 drives rotating shaft 14 rotations in 2 chock II 5 through chain 10, and two rotating shafts 14 drive shift fork dish 6 respectively and rotate synchronously.When moving to chock I 8 with the negative plate of manganese layer, the sprocket wheel 15 of chain 10 on axle core 9 changes the directions motion, the pole at negative plate two ends be slipped to automatically dock with chain 10 two slide bars 7 on; Negative plate glides rapidly between the slide bar 7 of two inclinations; When sliding to two shift fork dishes, 6 outsides of rotation under the negative plate, the shift fork of two shift fork dishes 6 hooks the pole at negative plate two ends simultaneously, with separating the polylith negative plate of a negative plate from slide bar 7; And the shift fork dish 6 of warp rotation is with the opposite side of negative electrode plate hook to shift fork dish 6; Under action of gravity, negative plate breaks away from shift fork dish 6, drops to along the rear end that two slide bars 7 tilt on row's roller 21 of idler wheel mechanism 2 rotations; Guide is formed in end by shoe on the column 34 and two slide bars 7; The base of negative plate is sent into manganese stripping machine with negative plate along guide under the effect of the roller 21 of several rotations that are arranged in a row, realized that 90 degree break-in timing automatic of negative plate are carried.Realized the robotization that negative plate gets into manganese stripping machine.In order to prevent that negative plate from falling the 21 last times of roller of idler wheel mechanism 2 and producing and depart from, in the negative plate dropping process, several circle wheels 13 on the axle I 16 drive the base of negative plates, and the anticathode plate plays the correcting effect.Consult Fig. 1 to Fig. 3.
Embodiment 2; The said idler wheel mechanism 2 of the utility model comprises support 19, and a plurality of chocks 20 of a row are set on the support 19, and chock 20 connects roller bearing 22 through bearing; One end of roller bearing 22 is installed 1-2 sprocket wheel 15; The other end of roller bearing 22 is installed roller 21, and the sprocket wheel 15 on the adjacent roller bearing 22 is connected by chain 10, and wherein the sprocket wheel 15 on the roller bearing 22 is connected with power 11.Consult Fig. 1 to Fig. 3, all the other are with embodiment 1.
Embodiment 3, at least 2 of said slide bar 7 quantity of the utility model.Consult Fig. 1 to Fig. 3, all the other are with above-mentioned embodiment 1 or 2.
Embodiment 4, on the sprocket wheel 15 of 8 cores of the said chock I of the utility model, 9 inboards the chain 10 of carrying negative plate are installed.Consult Fig. 1 to Fig. 3, all the other are with above-mentioned embodiment 1 or 2.
The utility model is the research and development product innovation of electrolytic manganese industry, and the structure partial in product moves to maturity process is changed, and all belongs to the protection domain of the utility model.

Claims (4)

1. what production line was peeled off in an electrolytic manganese robotization advances panel assembly automatically; It is characterized in that: it comprises input board frame (1); The bottom of input board frame (1) is equipped with the power (11) that the 1-2 platform has variable speed capability, and the output shaft of power (11) is provided with sprocket wheel (15); The top symmetry of input board frame (1) is installed by 2 chock I (8) and symmetry is installed 2 chock II (5); Be provided with a core (9) in the chock I (8); Sprocket wheel (15) is installed at the two ends of axle core (9); Be provided with rotating shaft (14) in the chock II (5), an end of rotating shaft (14) is installed sprocket wheel (15) the other end shift fork dish (6) is installed, and between sprocket wheel (15) that axle core (9) is inboard and the shift fork dish (6) in the rotating shaft (14) slide bar (7) is set; The rear end of slide bar (7) extends to the opposite side of shift fork dish (6), and the rear end of slide bar (7) is over against the idler wheel mechanism (2) that is installed in input board frame (1) middle part; The crossbeam (12) at input board frame (1) middle part is gone up installation shaft I (16) and axle II (17); Sprocket wheel (15) on axle I (16) is connected with sprocket wheel (15) on the power (11) through chain (10); Axle I (16) is provided with a plurality of circle wheels (13); Sprocket wheel (15) on axle II (17) is connected with sprocket wheel (15) on the power (11) through chain (10), and 2 sprocket wheels (15) on the II (17) connect the sprocket wheel (15) in 2 chock II (5) rotating shafts (14) respectively through chain (10); Main shaft (18) is installed at the middle part of input board frame (1); Sprocket wheel (15) on the main shaft (18) is connected with sprocket wheel (15) on power (11) output shaft through chain (10), and two sprocket wheels (15) on the main shaft (18) connect the sprocket wheel (15) on 2 chock I (8) axle cores (9) respectively; Said idler wheel mechanism (2) is other to be provided with several columns (3), connects several piece shoe (4) between several columns (3).
2. what production line was peeled off in said electrolytic manganese robotization according to claim 1 advances panel assembly automatically; It is characterized in that said idler wheel mechanism (2) comprises support (19); One row's a plurality of chocks (20) are set on the support (19); Chock (20) connects roller bearing (22) through bearing, and an end of roller bearing (22) is installed 1-2 sprocket wheel (15), and the other end of roller bearing (22) is installed roller (21); Sprocket wheel (15) on the adjacent roller bearing (22) is connected by chain (10), and wherein the sprocket wheel (15) on the roller bearing (22) is connected with power (11).
3. what production line was peeled off in said electrolytic manganese robotization according to claim 1 advances panel assembly automatically, it is characterized in that at least 2 of said slide bar (7) quantity.
4. what production line was peeled off in said electrolytic manganese robotization according to claim 1 advances panel assembly automatically, it is characterized in that the inboard sprocket wheel (15) of said chock I (8) axle core (9) is gone up the chain (10) of carrying negative plate is installed.
CN 201220289088 2012-06-19 2012-06-19 Automatic plate feeding device for electrolytic manganese automation stripping production line Withdrawn - After Issue CN202626317U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 201220289088 CN202626317U (en) 2012-06-19 2012-06-19 Automatic plate feeding device for electrolytic manganese automation stripping production line

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 201220289088 CN202626317U (en) 2012-06-19 2012-06-19 Automatic plate feeding device for electrolytic manganese automation stripping production line

Publications (1)

Publication Number Publication Date
CN202626317U true CN202626317U (en) 2012-12-26

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102851710A (en) * 2012-02-07 2013-01-02 湘潭大众整流器制造有限公司 Automatic plate feeding apparatus used in electrolytic manganese automatic stripping production line
CN103526229A (en) * 2013-09-27 2014-01-22 盐城市电子设备厂有限公司 Loading system on electrolytic manganese or zinc production line
CN114182297A (en) * 2022-01-16 2022-03-15 宜昌市烨赫机械制造有限公司 Automatic plate arranging machine for electrolytic manganese negative plate

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102851710A (en) * 2012-02-07 2013-01-02 湘潭大众整流器制造有限公司 Automatic plate feeding apparatus used in electrolytic manganese automatic stripping production line
CN102851710B (en) * 2012-02-07 2015-03-11 湘潭大众整流器制造有限公司 Automatic plate feeding apparatus used in electrolytic manganese automatic stripping production line
CN103526229A (en) * 2013-09-27 2014-01-22 盐城市电子设备厂有限公司 Loading system on electrolytic manganese or zinc production line
CN103526229B (en) * 2013-09-27 2016-05-18 盐城市电子设备厂有限公司 The feeding system of electrolytic manganese or zinc production line
CN114182297A (en) * 2022-01-16 2022-03-15 宜昌市烨赫机械制造有限公司 Automatic plate arranging machine for electrolytic manganese negative plate

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GR01 Patent grant
AV01 Patent right actively abandoned

Granted publication date: 20121226

Effective date of abandoning: 20150311

RGAV Abandon patent right to avoid regrant