CN210103375U - Go out installation group suitable for copper nickel - Google Patents

Go out installation group suitable for copper nickel Download PDF

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Publication number
CN210103375U
CN210103375U CN201920685390.9U CN201920685390U CN210103375U CN 210103375 U CN210103375 U CN 210103375U CN 201920685390 U CN201920685390 U CN 201920685390U CN 210103375 U CN210103375 U CN 210103375U
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China
Prior art keywords
area
overturning
oil cylinder
copper
nickel
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CN201920685390.9U
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Inventor
翟富兵
李江平
罗建江
王天兵
艾克拜.那斯尔丁
范海刚
郭磊
徐永生
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FUKANG REFINERY OF XINJIANG XINXIN MINING INDUSTRY Co Ltd
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FUKANG REFINERY OF XINJIANG XINXIN MINING INDUSTRY Co Ltd
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Priority to CN201920685390.9U priority Critical patent/CN210103375U/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

Abstract

The utility model discloses a loading and unloading unit suitable for copper and nickel, wherein a plate feeding area is connected with a transferring area; a turnover area is arranged below the transfer area and is connected with a lead screw lifting mechanism; the screw rod lifting mechanism is used for driving the overturning area to lift; the overturning area is also connected with an overturning oil cylinder; the overturning oil cylinder is used for driving the overturning area to overturn; one side of the overturning area is provided with an overturning transfer frame, and the overturning transfer frame is connected with a relay oil cylinder; the relay oil cylinder is used for driving the turnover transfer frame to lift. The utility model discloses a awarding board district, transportation district, upset district, hydraulic pressure station and lead screw elevating system steadily to realize the dress, having the small investment, being favorable to the maintenance and alleviateing workman intensity of labour, after being suitable for smelting enterprise's electrolysis or electrodeposition, copper and nickel board go out the dress. The manual work of the original automatic unit is reduced to 3 persons by 8 persons, the labor cost is reduced, and the automatic electrolytic cell has the advantages of simple operation, convenient maintenance, quick cell discharge and high utilization rate of the electrolytic cell.

Description

Go out installation group suitable for copper nickel
Technical Field
The utility model relates to a smelt technical field, specifically speaking, in particular to go out dress unit suitable for copper, nickel.
Background
After electrolysis or electrodeposition is adopted in metallurgical mines and smelting enterprises adopting wet metallurgy, copper and nickel plates are hoisted out of an electrolytic bath and then hoisted into an out-loading assembly for loading. The purpose is to realize rapid transportation, shorten the time of discharging the electrolytic bath and improve the utilization rate of the electrolytic bath. The loading and unloading work is also the most important work category of smelting enterprises, and the work is the most labor-intensive work when the mechanical automation is not available.
At present, domestic enterprises make initial equipment or make a set of initial equipment and an automatic unit. Because the investment of the automatic machine set is large, the actual utilization rate is low for enterprises with low annual output, and the equipment utilization rate is low.
SUMMERY OF THE UTILITY MODEL
In order to solve the problem of the prior art, the embodiment of the utility model provides a go out dress unit suitable for copper nickel. The technical scheme is as follows:
in one aspect, a shipment unit suitable for copper nickel is provided, includes: a plate feeding area, a transferring area and a turning area;
the plate-feeding area is connected with the transfer area; the turnover area is arranged below the transfer area and is connected with a lead screw lifting mechanism; the lead screw lifting mechanism is used for driving the overturning area to lift; the overturning area is also connected with an overturning oil cylinder; the overturning oil cylinder is used for driving the overturning area to overturn; one side of the overturning area is provided with an overturning transfer frame, and the overturning transfer frame is connected with a relay oil cylinder; the relay oil cylinder is used for driving the turnover transfer frame to lift;
wherein, be provided with on awarding the board district and award the board sprocket, be provided with the transportation sprocket on the transportation district.
Further, the plate feeding chain wheel of the plate feeding area adopts a 32A chain;
the transfer chain wheel of the transfer area adopts a double-pitch 216A chain.
Furthermore, a turnover oil cylinder of the turnover area adopts a hydraulic oil cylinder; the hydraulic oil cylinder is a single-action oil cylinder.
Furthermore, the relay oil cylinder is provided with an upper limit and a lower limit, and the upper limit and the lower limit are used for controlling the lifting interval of the turnover transfer frame.
Furthermore, the relay oil cylinder adopts a photoelectric proximity switch.
The embodiment of the utility model provides a beneficial effect that technical scheme brought is:
the utility model discloses a awarding board district, transportation district, upset district, hydraulic pressure station and lead screw elevating system steadily to realize the dress, having the small investment, being favorable to the maintenance and alleviateing workman intensity of labour, after being suitable for smelting enterprise's electrolysis or electrodeposition, copper and nickel board go out the dress. The manual work of the original automatic unit is reduced to 3 persons by 8 persons, the labor cost is reduced, and the automatic electrolytic cell has the advantages of simple operation, convenient maintenance, quick cell discharge and high utilization rate of the electrolytic cell.
Drawings
In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the drawings needed to be used in the description of the embodiments will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and it is obvious for those skilled in the art to obtain other drawings without creative efforts.
Fig. 1 is a front view of a discharging unit suitable for copper nickel according to an embodiment of the present invention;
fig. 2 is a top view of a discharging unit suitable for copper nickel according to an embodiment of the present invention;
fig. 3 is a side view of a discharging unit suitable for copper nickel according to an embodiment of the present invention;
fig. 4 is a schematic view of a transfer sprocket according to an embodiment of the present invention.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention clearer, embodiments of the present invention will be described in further detail below with reference to the accompanying drawings.
The utility model provides a go out dress unit suitable for copper nickel, refer to fig. 1-4, include: a plate feeding area 1, a transferring area 2 and a turning area 3;
the plate feeding area 1 is connected with the transfer area 2; the overturning area 3 is arranged below the transferring area 2, and the overturning area 3 is connected with a screw rod lifting mechanism 7; the lead screw lifting mechanism 7 is used for driving the overturning area 3 to lift; the overturning area is also connected with an overturning oil cylinder 4; the overturning oil cylinder 4 is used for driving the overturning area 3 to overturn; a turnover transfer frame 5 is arranged on one side of the turnover area 3, and the turnover transfer frame 5 is connected with a relay oil cylinder 6; the relay oil cylinder 6 is used for driving the turnover transfer frame 5 to lift;
wherein, be provided with on awarding the board district 1 and award the board sprocket, be provided with the transportation sprocket on the transportation district 2.
Further, the plate feeding chain wheel of the plate feeding area 1 adopts a 32A chain;
referring to fig. 4, the transfer sprockets of the transfer zone 2 employ a double pitch 216A chain.
Further, a turnover oil cylinder 4 of the turnover area 3 adopts a hydraulic oil cylinder; the hydraulic oil cylinder is a single-action oil cylinder.
Furthermore, an upper limit and a lower limit are arranged on the relay oil cylinder 6 and used for controlling the lifting interval of the turnover transfer frame.
Furthermore, the relay oil cylinder adopts a photoelectric proximity switch.
In this embodiment, the copper plate is designed according to the copper plate size specification by combining the actual design and manufacturing, and the copper plate is produced, for example, with the length of 960mm by 860mm, the length of the copper rod of 30, and L of 1060 mm. The two sides between the copper plate and the copper rod are only provided with a gap of 100mm, and the assembly and disassembly of the nickel plate can also be realized as long as the assembly and disassembly of the copper plate are realized. The selection of a suitable chain in the plate-feeding zone already satisfies the cell polar spacing, for example: the embodiment adopts 32A chains to solve the problem that the electrolytic cell copper plate is taken out of the cell after the inter-polar distance is removedPutPut on awarding the board chain, both guaranteed the extraction of putting up the frame, guarantee again that the material is awarding putting of board chain. The transfer zone employs a double pitch 216A chain. The working mode is as follows: after the materials are placed in the plate feeding area, the materials pass through a driving device. The copper plate is caused to start moving towards the transfer area, and at the moment, on the plate feeding driving device, the embodiment designs a set of independent operation chain wheels, and the driving force of the independent operation chain wheels is provided with power from the transfer area. The materials are driven by the plate feeding chain and are concentrated to the transfer area. After the transfer area is concentrated, the copper bars can be extracted in the area through the lifting device, and the work is finished.
And (4) entering a turnover area, starting a hydraulic oil pump, driving a hydraulic cylinder to turn over, and adopting a single-action oil cylinder as the hydraulic oil cylinder due to the limitation of the operation condition of the transfer forklift. The oil cylinder adopts a mode depending on the height of the whole discharging and loading frame, and if the height is too high, the oil cylinder is not beneficial to the transportation of a forklift. Thus, single-acting cylinders are used in this region. The material is lifted by utilizing the additionally arranged screw rod lifting mechanism, and the copper rod can be conveniently extracted by the lifting height. And then the copper plate integrally falls on the roll-over stand through a lead screw lifting device. And then starting the hydraulic station, wherein the oil cylinder works, when the material turns over for more than 145 degrees, a forming switch is additionally arranged, and the hydraulic station stops working when running to the position to finish the lowering process. Then, a relay oil cylinder is utilized, an upper limit and a lower limit are additionally arranged on the oil cylinder, and a photoelectric proximity switch is adopted to ensure the normal operation of the lifting of the relay oil cylinder. At the moment, the copper plate in the turnover area is stably placed by the relay oil cylinder, so that the copper plate is prevented from splashing and falling irregularly due to falling of materials, and the reverse transportation of a forklift is facilitated.
In the embodiment, a simple and practical loading and unloading unit is designed by combining the actual conditions of a production workshop. The initial assembly aims at solving the labor intensity and improving the production operation. The final electrolysis or electrodeposition products produced by each smelting enterprise are inconsistent in size and specification.
The embodiment of the utility model provides a beneficial effect that technical scheme brought is:
the utility model discloses a awarding board district, transportation district, upset district, hydraulic pressure station and lead screw elevating system steadily to realize the dress, having the small investment, being favorable to the maintenance and alleviateing workman intensity of labour, after being suitable for smelting enterprise's electrolysis or electrodeposition, copper and nickel board go out the dress. The manual work of the original automatic unit is reduced to 3 persons by 8 persons, the labor cost is reduced, and the automatic electrolytic cell has the advantages of simple operation, convenient maintenance, quick cell discharge and high utilization rate of the electrolytic cell.
The above description is only for the preferred embodiment of the present invention, and should not be construed as limiting the present invention, and any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention should be included within the protection scope of the present invention.

Claims (5)

1. The utility model provides a go out dress unit suitable for copper nickel which characterized in that includes: a plate feeding area, a transferring area and a turning area;
the plate-feeding area is connected with the transfer area; the turnover area is arranged below the transfer area and is connected with a lead screw lifting mechanism; the lead screw lifting mechanism is used for driving the overturning area to lift; the overturning area is also connected with an overturning oil cylinder; the overturning oil cylinder is used for driving the overturning area to overturn; one side of the overturning area is provided with an overturning transfer frame, and the overturning transfer frame is connected with a relay oil cylinder; the relay oil cylinder is used for driving the turnover transfer frame to lift;
wherein, be provided with on awarding the board district and award the board sprocket, be provided with the transportation sprocket on the transportation district.
2. The discharging and loading unit suitable for copper and nickel as claimed in claim 1, wherein the plate feeding chain wheel of the plate feeding area adopts a 32A chain;
the transfer chain wheel of the transfer area adopts a double-pitch 216A chain.
3. The discharging and loading unit suitable for copper and nickel according to claim 1, wherein the overturning oil cylinder of the overturning area adopts a hydraulic oil cylinder; the hydraulic oil cylinder is a single-action oil cylinder.
4. The discharging and loading unit suitable for copper nickel as claimed in claim 1, wherein the relay cylinder is provided with an upper limit and a lower limit for controlling a lifting interval of the turnover transport frame.
5. The copper-nickel discharging and assembling unit suitable for the copper-nickel discharging and assembling unit is characterized in that the relay oil cylinder adopts a photoelectric proximity switch.
CN201920685390.9U 2019-05-14 2019-05-14 Go out installation group suitable for copper nickel Active CN210103375U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920685390.9U CN210103375U (en) 2019-05-14 2019-05-14 Go out installation group suitable for copper nickel

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920685390.9U CN210103375U (en) 2019-05-14 2019-05-14 Go out installation group suitable for copper nickel

Publications (1)

Publication Number Publication Date
CN210103375U true CN210103375U (en) 2020-02-21

Family

ID=69539878

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920685390.9U Active CN210103375U (en) 2019-05-14 2019-05-14 Go out installation group suitable for copper nickel

Country Status (1)

Country Link
CN (1) CN210103375U (en)

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