CN214731679U - Electrolytic copper plate storage system - Google Patents
Electrolytic copper plate storage system Download PDFInfo
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- CN214731679U CN214731679U CN202023240349.2U CN202023240349U CN214731679U CN 214731679 U CN214731679 U CN 214731679U CN 202023240349 U CN202023240349 U CN 202023240349U CN 214731679 U CN214731679 U CN 214731679U
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Abstract
The utility model provides an electrolytic copper plate storage system, which solves the problems that the loading, unloading and storage workload of electrolytic copper is large, the production efficiency is influenced and the intellectualization is low in the prior art; the technical scheme for solving the technical problem comprises a warehousing port for receiving incoming materials; the storage part is used for stacking and storing incoming materials; the transfer part is used for transporting incoming materials and discharging materials; the warehouse outlet is used for outputting materials; the management system is used for receiving incoming material information and discharging information and controlling the action of the transfer part, the warehousing port and the ex-warehouse port are arranged oppositely, and the storage part adopts a multi-layer furnace platform; the utility model discloses intelligent degree is high, can realize automatic warehouse entry, automatic warehouse exit, very big improvement work efficiency.
Description
Technical Field
The utility model belongs to the technical field of electrolysis copper storage, especially, electrolysis copper storage system.
Background
The electrolytic copper plate stack is a main raw material used in the copper alloy fusion casting process, and is a plate stack consisting of a copper plate with the length and width of 700-.
At present, purchased electrolytic copper plate stacks are unloaded by a manual forklift and then transported to a designated storage place for storage, and two battens are manually placed between every two stacks, so that the fork legs can conveniently withdraw. When the device is used, the device is transported to a smelting production area by a manual forklift, then is lifted to a furnace platform by a traveling crane, and is added into a smelting furnace by manual operation.
The mode needs a forklift worker to follow up with the shift production for 24 hours, and the production speed of smelting is influenced when the feeding is not in time.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing an electrolysis copper storage system to it is big to the loading and unloading storage work load of electrolysis copper among the solution prior art, influences production efficiency, the lower problem of intellectuality.
The utility model provides an electrolytic copper plate storage system, which solves the technical problem that the technical proposal comprises a warehouse entry used for receiving incoming materials; the storage part is used for stacking and storing incoming materials; the transfer part is used for transporting incoming materials and discharging materials; the warehouse outlet is used for outputting materials; and the management system is used for receiving incoming material information and discharging information and controlling the action of the transfer part, the warehousing port and the ex-warehouse port are arranged oppositely, and the storage part adopts a multilayer furnace platform.
Preferably, the portion of transporting including installing the portable frame of transporting around the storage portion, the portable frame of transporting on be equipped with a plurality of driving that can follow the portable frame of transporting and remove.
Preferably, the transfer portion include a plurality of AGV trucks, the furnace platform on be equipped with a plurality of brackets that are used for supporting the material, the bracket is arranged in an array, the AGV truck can walk between adjacent bracket.
Preferably, the transfer portion include a plurality of material groups, a plurality of material groups arrange side by side, the material group has a plurality of translation dollies that become one row to constitute, the translation dolly can follow the warehouse entry mouth direction and remove to the warehouse exit mouth direction.
Preferably, the translation trolley moves by chain plate conveying.
Preferably, the storage part is provided with a plurality of different storage areas for storing different incoming materials, each storage area is provided with an identification, and each storage area is provided with an induction device.
Preferably, the incoming material information includes, but is not limited to, incoming material type, incoming material weight, and incoming material time.
Preferably, the discharging information includes, but is not limited to, discharging type, discharging weight and discharging time.
To sum up, the utility model adopts the following form for management; 1. the intelligent warehouse is combined with the intelligent travelling frame, the electrolytic copper plate stack is tiled on the two-layer electric furnace platform, and the intelligent travelling frame is used at the upper part of the electrolytic copper plate stack to realize automatic warehouse-in and warehouse-out operation;
2. the special AGV is used for realizing automatic warehousing and ex-warehouse operation in a mode of combining the special bracket and the AGV;
3. the electrolytic copper plate stack is conveyed to a warehouse inlet by the AGV, conveyed to a warehouse outlet by the stepping trolley and then conveyed to a material conveying line by the AGV.
4. The electrolytic copper plate stack is conveyed to a warehousing port by the AGV, conveyed to a delivery port by a conveying chain and conveyed to a material conveying line by the AGV;
the utility model discloses can realize the automatic management mode of putting in storage, intelligent storage, automatic warehouse exit of raw materials, realize intelligent production, improve material storage transfer efficiency, reduce intensity of labour, manage more accurately.
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 schematic top view of the overall structure of the present invention when the transfer frame is used as the transfer part;
FIG. 2 is a front view of the present invention in FIG. 1;
FIG. 3 is a schematic top view of the overall structure of the AGV transporting section according to the present invention;
figure 4 is a front view of the present invention in figure 3;
fig. 5 is a schematic structural view of the translation trolley of the present invention.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
As can be seen from the attached drawings 1-5, the utility model comprises a warehouse entry 1 for receiving incoming materials; a storage part 2 for stacking and storing incoming materials; the transfer part 3 is used for transporting incoming materials and discharging materials; the warehouse outlet 4 is used for outputting materials; management system for receive supplied materials information and ejection of compact information and control the action of transfer portion 3, warehouse entry 1 and 4 mutual dispositions of leaving warehouse of mouth, storage portion 2 adopt multilayer stove platform 5, arrange the feeding of electrolysis copper through management system overall and store and the ejection of compact use, the in-process need not artifical the participation, improvement work efficiency and reduction amount of labour that can be very big.
The utility model discloses a one of them embodiment does, transfer portion 3 is including installing 2 transport overhead mansard 6 in storage portion all around, transport overhead mansard 6 on be equipped with a plurality of driving 7 that can follow the removal of transporting overhead mansard 6, in this embodiment, when the repository design, overhead mansard through the eminence is as transfer portion 3, overhead mansard 6 is transported in the design of this kind of structure in the storehouse, the put position of electrolysis copper need be considered when the design to transport overhead mansard 6, adopt this kind of structural space high-usage, the driving does not occupy the floor area, can improve the memory space of electrolysis copper.
Another embodiment of the transfer part 3 of the present invention is; transfer portion 3 includes a plurality of AGV carrier 8, furnace platform 5 on be equipped with a plurality of brackets 9 that are used for supporting the material, bracket 9 is arranged and is arranged, AGV carrier 8 can walk between adjacent bracket 9, bracket 9 and AGV carrier 8 cooperate the use, the size of bracket 9 needs to make according to AGV carrier 8's size, when using, AGV carrier 8 is walked in the storehouse by control system's instruction, carry out the action of 1 feeding in warehouse entry and 4 ejection of compact of warehouse exit, this kind of form AGV carrier can walk in the middle of the bracket, dispose WMS warehouse management system, realize that the automatic storehouse of plate pile is put in, intelligent storage, get the operation of material warehouse exit automatically.
The utility model discloses a another embodiment does, transfer portion 3 includes a plurality of material groups, a plurality of material groups arrange side by side, the material group has a plurality of one-row translation dolly 10 to constitute, translation dolly 10 can follow 1 direction of warehouse entry to 4 directions of warehouse exit, as shown in figure 5, the electrolysis copper sheet buttress is placed on one row of translation dolly, by the translation dolly with the electrolysis copper sheet buttress by the entry move to the export, in this embodiment, can use at warehouse entry 1 and 2 position collocation AGV 8 of warehouse exit, make the AGV dolly need not get into the storage area, reduced AGV 8's use amount, translation dolly 10's removal can adopt the link joint to carry.
The storage part 2 is provided with a plurality of different storage areas for storing different incoming materials, each storage area is provided with an identification, and each storage area is provided with an induction device.
The incoming material information includes, but is not limited to, incoming material type, incoming material weight, and incoming material time.
The discharging information includes but is not limited to discharging type, discharging weight and discharging time.
The utility model discloses a form that intelligent storehouse and AGV dolly, intelligent truss combined realizes that the automatic management mode of putting in storage, intelligent storage, automatic warehouse exit of raw materials realizes intelligent production.
The foregoing is a preferred embodiment of the present invention, and it should be noted that, for those skilled in the art, a plurality of improvements and decorations can be made without departing from the principle of the present invention, and these improvements and decorations are also considered as the protection scope of the present invention.
Claims (8)
1. An electrolytic copper plate storage system is characterized by comprising a warehousing port for receiving incoming materials; the storage part is used for stacking and storing incoming materials; the transfer part is used for transporting incoming materials and discharging materials; the warehouse outlet is used for outputting materials; and the management system is used for receiving incoming material information and discharging information and controlling the action of the transfer part, the warehousing port and the ex-warehouse port are arranged oppositely, and the storage part adopts a multilayer furnace platform.
2. The electrolytic copper plate storage system according to claim 1, wherein the transfer section comprises a transfer frame mounted around the storage section, and the transfer frame is provided with a plurality of traveling cranes capable of moving along the transfer frame.
3. The electrolytic copper plate storage system according to claim 1, wherein said transfer portion comprises a plurality of AGV trucks, said furnace platform having a plurality of carriages for supporting the material, said carriages being arranged in an array, said AGV trucks being capable of traveling between adjacent carriages.
4. The electrolytic copper plate storage system according to claim 1, wherein the transfer section comprises a plurality of material groups, the material groups are arranged side by side, the material groups are composed of a plurality of translation trolleys arranged in a row, and the translation trolleys can move from the direction of the warehousing port to the direction of the warehousing port.
5. The electrolytic copper plate storage system according to claim 4, wherein the movement of the translation carriage is carried by chain plates.
6. The electrolytic copper plate storage system according to claim 1, wherein the storage section is provided with a plurality of different storage areas for storing different incoming materials, each of the storage areas is provided with a mark, and each of the storage areas is provided with a sensing device.
7. The electrolytic copper plate storage system according to claim 1, wherein said incoming material information includes, but is not limited to, incoming material type, incoming material weight, incoming material time.
8. The electrolytic copper plate storage system according to claim 1, wherein the discharge information includes, but is not limited to, discharge type, discharge weight, and discharge time.
Priority Applications (1)
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CN202023240349.2U CN214731679U (en) | 2020-12-29 | 2020-12-29 | Electrolytic copper plate storage system |
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CN202023240349.2U CN214731679U (en) | 2020-12-29 | 2020-12-29 | Electrolytic copper plate storage system |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN114590509A (en) * | 2022-04-01 | 2022-06-07 | 江苏迪飞达电子有限公司 | Pressing process hoisting and transferring system and transferring equipment control method |
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2020
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN114590509A (en) * | 2022-04-01 | 2022-06-07 | 江苏迪飞达电子有限公司 | Pressing process hoisting and transferring system and transferring equipment control method |
CN114590509B (en) * | 2022-04-01 | 2023-08-08 | 江苏迪飞达电子有限公司 | Hoisting and transferring system for pressing process and transferring equipment control method |
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