CN201648536U - Zinc electrolytic cathode plate insulated bar side sticking machine with flat plate function - Google Patents

Zinc electrolytic cathode plate insulated bar side sticking machine with flat plate function Download PDF

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Publication number
CN201648536U
CN201648536U CN2010201112317U CN201020111231U CN201648536U CN 201648536 U CN201648536 U CN 201648536U CN 2010201112317 U CN2010201112317 U CN 2010201112317U CN 201020111231 U CN201020111231 U CN 201020111231U CN 201648536 U CN201648536 U CN 201648536U
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China
Prior art keywords
push rod
electrohydraulic push
upper bracket
lower bracket
plate group
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Expired - Lifetime
Application number
CN2010201112317U
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Chinese (zh)
Inventor
陈进
孙成余
韩朝云
黄云东
罗永光
杜亚
肖良珍
胡如忠
黄成彦
蔡荣培
张志江
陈启红
代军
尤贵祥
王俊峰
廖忠
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Yunnan Chihong Zinc and Germanium Co Ltd
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Yunnan Chihong Zinc and Germanium Co Ltd
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Priority to CN2010201112317U priority Critical patent/CN201648536U/en
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P10/00Technologies related to metal processing
    • Y02P10/20Recycling

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Abstract

A zinc electrolytic cathode plate insulated bar side sticking machine with the flat plate function, which is composed of an electrohydraulic push rod apparatus (1), an upper support apparatus (2), a press mould cooling flat plate apparatus (3) and a lower support apparatus (4), the utility model can place one zinc electrolytic cathode plate into the side sticking machine to perform the side sticking of three sides; and the utility model has remarkable advantages of compact structure, high side sticking efficiency, simple operation, convenient maintenance and dependable performance.

Description

A kind of Zinc electrolysis negative plate insulation bar edge-bonding machine with panel function
Technical field:
The utility model belongs to Zinc electrolysis negative plate insulation bar edge-bonding equipment, particularly insulation strip can be glued the equipment of the cooling of limit and negative plate, smoothing.
Background technology: in the process of producing negative plate, need to glue edge strip and be bonded at by heating on the negative plate that heated, after negative plate is stained with insulation strip, in order to finalize the design, better seal, cool off the qualification rate of eliminating the stress raising negative plate that adds thermogenesis.So after negative plate carries out insulation bar edge-bonding, need carry out pressing mold, cooling, smoothing, guarantee the quality of negative plate processing.
Original employing anticathode plate carries out the method for insulation bar edge-bonding, is by artificial pressing mold, inefficiency, and hand labor intensity is big, can not satisfy the requirement that the large-scale industrialization negative plate is produced.
At present still do not have complete negative plate insulation bar edge-bonding equipment anticathode plate to glue limit, cooling, smoothing, influenced the negative plate quality product, caused increase, the waste of material, the inefficiency of energy consumption.
The utility model content: plate is curved in order to overcome behind the negative plate insulation bar edge-bonding just for the utility model, distortion, stopping property are poor, provides a kind of simple to operate, easy to maintenance, sticking limit efficient height, reliable operation to have the Zinc electrolysis negative plate insulation bar edge-bonding equipment of panel function.
The purpose of this utility model is achieved by the following technical solution.
The utility model comprises Electrohydraulic push rod device, upper bracket device, pressing mold cooling board device and lower bracket device composition; Its syndeton is:
A. the included Electrohydraulic push rod of Electrohydraulic push rod device, than bearing, be fastened on the upper bracket device by bolt;
B. the upper bracket device comprises support channel-section steel, support guide stop means, upper bracket plate group; The spacing channel-section steel of support guide lower end has the support guide stop means to be connected with the lower bracket device;
C. pressing mold cooling board device is made of mold device, bed die device; The mold device is welded on the upper bracket plate group, and the bed die device is welded on the lower bracket plate group, and mould drives matched moulds and the die sinking that Electrohydraulic push rod is realized mould up and down by the motor positive and inverse of Electrohydraulic push rod device;
D. included lower bracket plate group, the support of lower bracket device; Lower bracket plate group is by guiding support guide stop means and the upper bracket device links together, lower bracket plate bond pads is on support.
Electrohydraulic push rod device of the present utility model is connected with the mold device; The Electrohydraulic push rod device is realized the steady lifting of negative plate by the guide effect of support guide stop means in lifting process.
The utility model Electrohydraulic push rod device is connected with the upper bracket device by bolt; The upper bracket device is connected with the lower bracket device by the support guide stop means; Pressing mold cooling board device is fixed by welding in upper and lower holder device; Thereby the integral body of connecting into.
The utility model is owing to realize die sinking, the matched moulds control of mould smoothly by trip switch, and the long service life of mould has advantages such as compact construction, simple to operate, advanced technology.Complete machine structure is simple, is convenient to Maintenance and Repair, and the time that fault is got rid of is short, has improved production efficiency.All devices of the utility model are independent fully, and any part of each device is also relatively independent, and independent control guarantees to use and maintenance safety.In use, the sticking limit of the utility model zinc electrolysis cathode edge-bonding machine, cooling, smoothing effect are better.Use is by the reasonable control (recycling) of water coolant, and effectively the conserve water resource is increased economic efficiency.
The beneficial effects of the utility model are, and are 1. simple to operate: realize die sinking, the matched moulds control of mould smoothly by trip switch control,, the long service life of mould, it is better that the utility model zinc electrolysis cathode edge-bonding machine glues limit, cooling, smoothing effect.2. easy to maintenance: complete machine structure is simple, is convenient to Maintenance and Repair, and the time that fault is got rid of is short, has improved production efficiency.3. structure, principle are good: edge-bonding machine cools off board device by pressing mold, clamps negative plate, and the Electrohydraulic push rod device has changed the problem of old-fashioned edge-bonding machine by artificial lifting with the patrix lifting, has reduced labour intensity, has improved production efficiency.4. economical and practical: the utility model adopts stainless steel, and material is better, anticathode plate not damaged, and die life can reach more than 4 years.
Further set forth content of the present utility model below in conjunction with drawings and Examples.
Description of drawings:
Fig. 1 is the schematic block diagram of the utility model negative plate edge-bonding machine;
Fig. 2 is the structural representation of the utility model edge-bonding machine;
Fig. 3 is the left view of Fig. 2.
Embodiment:
The utility model is described in further detail below in conjunction with accompanying drawing.
A kind of Zinc electrolysis negative plate insulation bar edge-bonding machine with panel function is characterized in that: see Fig. 2, Fig. 3 includes by Electrohydraulic push rod device 1, upper bracket device 2, pressing mold cooling board device 3, lower bracket device 4 and forms; Its syndeton is:
A. the included Electrohydraulic push rod 5 of Electrohydraulic push rod device 1, than bearing 6, be fastened on the upper bracket device 2 by bolt;
B. upper bracket device 2 comprises support channel-section steel 7, support guide stop means 8, upper bracket plate group 9; The spacing channel-section steel of support guide 7 lower ends have support guide stop means 8 to be connected with lower bracket device 4;
C. pressing mold cooling board device 3 is made of mold device 10, bed die device 11; Mold device 10 is welded on the upper bracket plate group 9, and bed die device 11 is welded on the lower bracket plate group 12, and mould drives matched moulds and the die sinking that Electrohydraulic push rod 5 is realized mould up and down by the positive revertive control of the motor of Electrohydraulic push rod device 1;
D. included lower bracket plate group 12, the support 13 of lower bracket device 4; Lower bracket plate group is by guiding support guide stop means 8 and upper bracket device 2 links together, lower bracket plate group 12 is welded on the support 13.
The utility model Electrohydraulic push rod device 1 is connected with mold device 10; Electrohydraulic push rod device 1 is realized the steady lifting of negative plate by the guide effect of support guide stop means 8 in lifting process.
The utility model Electrohydraulic push rod device 1 is connected with upper bracket device 2 by bolt; Upper bracket device 2 is connected with lower bracket device 4 by support guide stop means 8; Pressing mold cooling board device 3 is fixed by welding in upper and lower holder device; Thereby the integral body of connecting into.
The utility model is operated the sticking limit process that can finish Zinc electrolysis negative plate both sides and lower end insulation strip each time.
The utility model is operated the sticking limit process that can finish Zinc electrolysis negative plate both sides insulation strip each time.
The utility model principle as shown in Figure 3, Fig. 1, among Fig. 2, the Zinc electrolysis negative plate, insulation strip for the treatment of sticking limit are by sticking limit, process furnace heating back; The negative plate that glues insulation strip is loaded on the mould, descends by gate-controlled switch control driven by motor Electrohydraulic push rod, Electrohydraulic push rod descends and drives upper bracket plate group, mold decline matched moulds and compress and beat recirculated water simultaneously and cool off; Good back to be cooled promotes by gate-controlled switch control driven by motor Electrohydraulic push rod, and Electrohydraulic push rod promotes and drives upper bracket plate group, mold promotes die sinking and closes cooling circulating water simultaneously; The unloading negative plate is on to be tested after the die sinking.This mould be anticathode plate three while gluing, when effectively having reduced electrolysis the cathode-anode plate short circuit has improved electric effect, has improved the plant efficiency of stripping zinc machine.
Owing to adopted above-mentioned series of measures to make the utility model be applicable to the bonding processing of insulation strip of Zinc electrolysis negative plate fully, the raising of the utility model target plate insulation strip bonding quality has very big impetus, have characteristics simple to operate, easy to maintenance, compact conformation, break away from the defective that old-fashioned edge-bonding machine principle falls behind, worker's labour intensity is big, improved simultaneously operating efficiency, the zinc smelting industry has very big popularization space at home.

Claims (3)

1. the Zinc electrolysis negative plate insulation bar edge-bonding machine with panel function is characterized in that: include by Electrohydraulic push rod device (1), upper bracket device (2), pressing mold cooling board device (3), lower bracket device (4) and form; Its syndeton is:
A. the included Electrohydraulic push rod (5) of Electrohydraulic push rod device (1), than bearing (6), be fastened on the upper bracket device (2) by bolt;
B. upper bracket device (2) comprises support channel-section steel (7), support guide stop means (8), upper bracket plate group (9); The spacing channel-section steel of support guide (7) lower end has support guide stop means (8) to be connected with lower bracket device (4);
C. pressing mold cooling board device (3) is made of mold device (10), bed die device (11); Mold device (10) is welded on the upper bracket plate group (9), and bed die device (11) is welded on the lower bracket plate group (12), and mould drives matched moulds and the die sinking that Electrohydraulic push rod (5) is realized mould up and down by the forward and reverse control of the motor of Electrohydraulic push rod device (1);
D. included lower bracket plate group (12), the support (13) of lower bracket device (4); Support guide stop means (8) links together with upper bracket device (2) lower bracket plate group by leading, lower bracket plate group (12) is welded on the support (13).
2. a kind of Zinc electrolysis negative plate insulation bar edge-bonding machine with panel function according to claim 1 is characterized in that: Electrohydraulic push rod device (1) is connected with mold device (10); Electrohydraulic push rod device (1) is realized the steady lifting of negative plate by the guide effect of support guide stop means (8) in lifting process.
3. a kind of Zinc electrolysis negative plate insulation bar edge-bonding machine with panel function according to claim 1 is characterized in that: by bolt Electrohydraulic push rod device (1) is connected with upper bracket device (2); Upper bracket device (2) is connected with lower bracket device (4) by support guide stop means (8); Pressing mold cooling board device (3) is fixed by welding in upper and lower holder device; Thereby the integral body of connecting into.
CN2010201112317U 2010-02-10 2010-02-10 Zinc electrolytic cathode plate insulated bar side sticking machine with flat plate function Expired - Lifetime CN201648536U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2010201112317U CN201648536U (en) 2010-02-10 2010-02-10 Zinc electrolytic cathode plate insulated bar side sticking machine with flat plate function

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2010201112317U CN201648536U (en) 2010-02-10 2010-02-10 Zinc electrolytic cathode plate insulated bar side sticking machine with flat plate function

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101787551A (en) * 2010-02-10 2010-07-28 云南驰宏锌锗股份有限公司 Zinc electrolysis negative plate insulation bar edge-bonding machine with panel function
CN102268698A (en) * 2011-07-06 2011-12-07 昆明理工大学 Edge-pasting and tape-attaching equipment and method for cathode plate for non-ferrous metal electrolysis
CN102304730A (en) * 2011-07-06 2012-01-04 昆明理工大学 Clamp for sticky side sticker of non-ferrous metal electrolytic cathode board

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101787551A (en) * 2010-02-10 2010-07-28 云南驰宏锌锗股份有限公司 Zinc electrolysis negative plate insulation bar edge-bonding machine with panel function
CN102268698A (en) * 2011-07-06 2011-12-07 昆明理工大学 Edge-pasting and tape-attaching equipment and method for cathode plate for non-ferrous metal electrolysis
CN102304730A (en) * 2011-07-06 2012-01-04 昆明理工大学 Clamp for sticky side sticker of non-ferrous metal electrolytic cathode board
CN102268698B (en) * 2011-07-06 2013-07-10 昆明理工大学 Edge-pasting and tape-attaching equipment and method for cathode plate for non-ferrous metal electrolysis
CN102304730B (en) * 2011-07-06 2014-04-02 昆明理工大学 Clamp for sticky side sticker of non-ferrous metal electrolytic cathode board

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C14 Grant of patent or utility model
GR01 Patent grant
AV01 Patent right actively abandoned

Granted publication date: 20101124

Effective date of abandoning: 20111221