CN223280956U - Docking station for electroplating equipment - Google Patents

Docking station for electroplating equipment

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Publication number
CN223280956U
CN223280956U CN202421908670.9U CN202421908670U CN223280956U CN 223280956 U CN223280956 U CN 223280956U CN 202421908670 U CN202421908670 U CN 202421908670U CN 223280956 U CN223280956 U CN 223280956U
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CN
China
Prior art keywords
line
chain
feeding
elevator
docking
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Application number
CN202421908670.9U
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Chinese (zh)
Inventor
成家煜
成梦杰
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WUXI HUANENG SURFACE TREATMENT CO Ltd
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WUXI HUANENG SURFACE TREATMENT CO Ltd
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Priority to CN202421908670.9U priority Critical patent/CN223280956U/en
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Publication of CN223280956U publication Critical patent/CN223280956U/en
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Abstract

The utility model belongs to the technical field of electroplating equipment, and relates to a docking station of electroplating equipment, which comprises a feeding docking line, a lifting machine and a discharging docking line which are sequentially arranged along a feeding direction; the feeding connection line is supported by the weighing sensor to weigh the conveyed material frame, the lifting machine is provided with a transfer conveying line capable of lifting, when the transfer conveying line is positioned at the feeding level, the feeding connection line conveys the material frame to the transfer conveying line, when the lifting machine lifts the transfer conveying line to the discharging level, the transfer conveying line can convey the material frame to the discharging connection line, the discharging connection line is matched with a travelling crane hanger in a workshop, and the travelling crane hanger can carry out position transfer on the material frame on the discharging connection line. The automatic connection of last unloading of electroplating equipment can be solved to this station of plugging into, accomplish full-automatic, unmanned butt joint of cooperation AGV, stereoscopic warehouse.

Description

Connection station of electroplating equipment
Technical Field
The utility model belongs to the technical field of electroplating equipment, and relates to a docking station of the electroplating equipment.
Background
With the economic development, the mechanical industry automation has advanced to electroplating equipment. Full-automatic requirements of electroplating equipment are also becoming more and more vigorous, and the prior art is that feeding and discharging are assisted manually. The full automation and the unmanned requirement of the customer requirements are not met. By adopting the prior art, the labor cost of the equipment user can be reduced. The production efficiency is improved, full automation and no humanization are realized.
Disclosure of Invention
The utility model aims at the problems and provides a docking station of electroplating equipment, which can solve the problem of automatic docking of loading and unloading of the electroplating equipment, is full-automatic, unmanned and matched with unmanned docking of AGVs and stereoscopic warehouses.
According to the technical scheme, the docking station of the electroplating equipment is characterized by comprising a feeding docking line, a lifting machine and a discharging docking line which are sequentially arranged along the feeding direction;
the feeding connection line is supported by a weighing sensor so as to weigh the conveyed material frame;
The lifting machine is provided with a lifting transfer conveying line, and when the transfer conveying line is positioned at a feeding position, the feeding connection line conveys the material frame to the transfer conveying line;
The blanking connection line is matched with a traveling crane hanging tool in a workshop, and the traveling crane hanging tool can transfer positions of a material frame on the blanking connection line.
As a further improvement of the utility model, the feeding connection line comprises a first feeding connection line, the first feeding connection line comprises two first chain conveying lines which are arranged in parallel, a group of first feeding connection line guide pieces are respectively arranged on the outer sides of each first chain conveying line, the bottoms of the first chain conveying lines are supported by a first weighing sensor, the two first chain conveying lines are linked through a first synchronous shaft, synchronous rotation is achieved, and the first synchronous shaft is driven to operate by a first driving component arranged on the side part of the first feeding connection line guide piece.
As a further improvement of the utility model, the elevator comprises two elevator frames which are arranged in parallel, wherein the inner walls of the two sides of each elevator frame are respectively provided with a lifting guide rail along the vertical direction, and the lifting frames are connected to the lifting guide rails in a guiding and matching way;
the bottom plate of the elevator frame is provided with an air cylinder through an air cylinder seat, the piston rod end of the air cylinder is fixedly connected with a chain wheel shaft, two ends of the chain wheel shaft are respectively provided with a chain wheel in a rotating mode, each chain wheel is respectively matched with a chain, one end of each chain is connected with the elevator frame, and the other end of each chain is connected with a chain pull rod of the elevator frame;
the transfer conveying line is arranged on the lifting frame.
As a further improvement of the utility model, the two sides of the transfer conveyor line are respectively provided with transfer conveyor line guide members, and the transfer conveyor line guide members are fixed on the bottom plate of the elevator frame.
As a further improvement of the utility model, the upper end and the lower end of the elevator frame are respectively provided with a buffer.
As a further improvement of the utility model, two sides of the lifting frame are respectively fixedly connected with a fixed guide wheel fixing plate, two groups of roller bearings are arranged on the guide wheel fixing plates in pairs, the two groups of roller bearings are in rolling fit with the two side surfaces of the corresponding lifting guide rail, guide wheels are also arranged on the guide wheel fixing plates, and the guide wheels are in rolling contact with the inner surfaces of the lifting guide rail.
As a further improvement of the utility model, the upper baffle plate is fixed at the upper end of the guide wheel fixing plate, and the lower baffle plate is fixed at the lower end of the guide wheel fixing plate.
As a further improvement of the utility model, the transfer conveyor line comprises a plurality of second chain conveyor lines which are arranged in parallel, the second chain conveyor lines are linked through a second synchronous shaft, and the second synchronous shaft is driven to operate by a second driving assembly.
As a further improvement of the utility model, the blanking connecting line comprises a plurality of third chain conveying lines which are arranged in parallel, the third chain conveying lines are linked through a third synchronizing shaft, and the third synchronizing shaft is driven to operate by a third driving assembly.
The utility model has the technical effects that the utility model has low space occupancy rate, is fully automatic in production and unmanned, can realize unmanned operation of workshops by matching with a three-dimensional warehouse, and is provided with a weighing system, thereby avoiding overweight alarm caused by overweight during manual operation.
Drawings
Fig. 1 is a schematic structural view of the present utility model.
Fig. 2 is a schematic structural view of a feeding connection line in the present utility model.
Fig. 3 is a schematic structural view of the elevator according to the present utility model.
Fig. 4 is a schematic structural diagram of a blanking connection line in the present utility model.
Detailed Description
The following describes the embodiments of the present utility model further with reference to the drawings.
In order that those skilled in the art will better understand the present utility model, a technical solution in the embodiments of the present utility model will be clearly and completely described in the following with reference to the accompanying drawings, in which the described embodiments are only some embodiments of the present utility model, and not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the present utility model without making any inventive effort, shall fall within the scope of the present utility model.
In fig. 1-4, the automatic guided vehicle loading and unloading device comprises an electric cabinet 1, a material frame 2, an AGV transferring trolley 3, a loading connection line 4, a first loading connection line guide 4-11, a first chain conveying line 4-12, a first weighing sensor 4-13, a first driving component 4-14, a lifting machine 5, a lifting machine frame 5-1, a frame supporting foot 5-2, a buffer 5-3, an air cylinder 5-4, a chain wheel shaft 5-5, a lifting guide rail 5-6, a lifting frame 5-7, a guide wheel fixing plate 5-8, an upper baffle plate 5-81, a guide wheel 5-82, a lower baffle plate 5-83, a roller bearing 5-9, a transferring conveying line 5-10, a second chain conveying line 5-11, a second synchronous shaft 5-12, a unloading connection line 6, a driving hanging tool 7 and the like.
As shown in fig. 1-4, the utility model relates to a docking station of electroplating equipment, which comprises a feeding docking line 4, a lifting machine 5 and a discharging docking line 6 which are sequentially arranged along the feeding direction.
The feeding connection line 4 is supported by the weighing sensors 4-13 so as to weigh the conveyed material frame 2.
The elevator 5 is provided with a transfer conveying line 5-10 which can be lifted, when the transfer conveying line 5-10 is positioned at a feeding position, the feeding connection line 4 conveys the material frame 2 to the transfer conveying line 5-10, and when the elevator 5 lifts the transfer conveying line 5-10 to a discharging position, the transfer conveying line 5-10 can convey the material frame 2 to the discharging connection line 6.
The blanking connecting line 6 is matched with a travelling crane hanging tool 7 in a workshop, and the travelling crane hanging tool 7 can transfer the position of the material frame 2 on the blanking connecting line 6.
The feeding connection line 4 comprises two first chain conveying lines 4-12 which are arranged in parallel, a group of first feeding connection line guide members 4-11 are respectively arranged on the outer sides of the first chain conveying lines 4-12, the bottom of each first chain conveying line 4-12 is supported by a first weighing sensor 4-13, the two first chain conveying lines 4-12 are linked through a first synchronizing shaft 4-15, synchronous rotation is achieved, and the first synchronizing shafts 4-15 are driven to operate by a first driving assembly 4-14 arranged on the side portion of each first feeding connection line guide member 4-11.
The elevator 5 comprises two elevator frames 5-1 which are arranged in parallel, the elevator frames 5-1 are supported and fixed through frame supporting feet 5-2, the inner walls of the two sides of each elevator frame 5-1 are respectively provided with an elevator guide rail 5-6 along the vertical direction, and the elevator frames 5-7 are connected to the elevator guide rails 5-6 in a guiding and matching manner.
The bottom plate of the elevator frame 5-1 is provided with an air cylinder 5-4 through an air cylinder seat, the piston rod end of the air cylinder 5-4 is fixedly connected with a chain wheel shaft 5-5, two ends of the chain wheel shaft 5-5 are respectively provided with a chain wheel in a rotating mode, each chain wheel is respectively matched with a chain, one end of each chain is connected with the elevator frame 5-1, and the other end of each chain is connected with a chain pull rod of the elevator frame 5-7.
The transfer conveyor line 5-10 is mounted on the lifting frame 5-7. The transfer conveyor line 5-10 realizes the position transfer of the material frame 2 between the feeding connection line 4 and the discharging connection line 6.
The two sides of the transfer conveyor line 5-10 are respectively transfer conveyor line guides fixed on the bottom plate of the elevator frame 5-1.
The upper end and the lower end of the elevator frame 5-1 are respectively provided with a buffer 5-3, so that the buffer of the elevator frame 5-7 when approaching to the upper end and the lower end in the process of lifting movement can be realized.
The two sides of the lifting frame 5-7 are respectively fixedly connected with a fixed guide wheel fixing plate 5-8, two groups of roller bearings 5-9 are arranged on the guide wheel fixing plate 5-8 in pairs, the two groups of roller bearings 5-9 are in rolling fit with the two side surfaces of the corresponding lifting guide rail 5-6, a guide wheel 5-82 is also arranged on the guide wheel fixing plate 5-8, and the guide wheel 5-82 is in rolling contact with the inner surface of the lifting guide rail 5-6.
The upper baffle 5-81 is fixed at the upper end of the guide wheel fixing plate 5-8, and the lower baffle 5-83 is fixed at the lower end.
The transfer conveyor line 5-10 comprises a plurality of second chain conveyor lines 5-11 which are arranged in parallel, the second chain conveyor lines 5-11 are linked through a second synchronizing shaft 5-12, and the second synchronizing shaft 5-12 is driven to operate by a second driving component.
The blanking connection line 6 comprises a plurality of third chain conveying lines which are arranged in parallel, the third chain conveying lines are linked through a third synchronous shaft, and the third synchronous shaft is driven to operate by a third driving assembly.
When the automatic feeding and discharging device works, the AGV transferring trolley 3 carries the material frame 2 to the position of the feeding connection line 4 of the electroplating line from the three-dimensional warehouse, the AGV transferring trolley 3 lowers the material frame 2 to be horizontally high, the material frame 2 is placed on the feeding connection line 4, the feeding connection line is provided with a weighing system, the AGV transferring trolley transfers away if the weight limiting requirement is not met, the material frame 2 is conveyed to the position of the lifting machine 5, the lifting machine 5 lifts the material frame 2 to be horizontally high to be consistent with the feeding connection line 6, the lifting machine 5 is matched with the feeding connection line 6 to convey the material frame 2 to the feeding end of the feeding connection line 6, the electroplating device crane hanging tool 7 takes away the material frame 2 from the feeding end of the feeding connection line 6, and the feeding end is opposite to the feeding end.
It can be understood that the first driving components 4-14 and the second driving components in the application have the same structure and comprise driving motors, the output shaft mounting chain wheels of the driving motors drive corresponding synchronous shafts to rotate through chains, and the blanking connecting line 6 has the same structure as the transfer conveying line 5-10 and comprises four chain conveying lines.
Finally, it should be noted that the above-mentioned embodiments are only for illustrating the technical solution of the present utility model, and not for limiting the same, and although the present utility model has been described in detail with reference to examples, it should be understood by those skilled in the art that modifications and equivalents may be made to the technical solution of the present utility model without departing from the spirit and scope of the technical solution of the present utility model, and all such modifications and equivalents are intended to be encompassed in the scope of the claims of the present utility model.

Claims (9)

1. The connection station of the electroplating equipment is characterized by comprising a feeding connection line (4), a lifting machine (5) and a discharging connection line (6) which are sequentially arranged along the feeding direction;
The feeding connection line (4) is supported by a weighing sensor (4-13) so as to weigh the conveyed material frame (2);
the lifting machine (5) is provided with a lifting transfer conveyor line (5-10), when the transfer conveyor line (5-10) is positioned at a loading position, the loading connection line (4) conveys the material frame (2) to the transfer conveyor line (5-10), and when the lifting machine (5) lifts the transfer conveyor line (5-10) to a discharging position, the transfer conveyor line (5-10) can convey the material frame (2) to the discharging connection line (6);
The blanking connecting line (6) is matched with a travelling crane hanging tool (7) in a workshop, and the travelling crane hanging tool (7) can transfer the position of the material frame (2) on the blanking connecting line (6).
2. The docking station of electroplating equipment according to claim 1, wherein the feeding docking line (4) comprises a first feeding docking line (4-1), the first feeding docking line (4-1) comprises two first chain conveying lines (4-12) which are arranged in parallel, a group of first feeding docking line guide pieces (4-11) are respectively arranged on the outer sides of each first chain conveying line (4-12), the bottoms of the first chain conveying lines (4-12) are supported by a first weighing sensor (4-13), the two first chain conveying lines (4-12) are connected through a first synchronous shaft (4-15) to realize synchronous rotation, and the first synchronous shaft (4-15) is driven to operate by a first driving assembly (4-14) arranged on the side part of the first feeding docking line guide pieces (4-11).
3. The docking station of electroplating equipment according to claim 1, wherein the elevator (5) comprises two elevator frames (5-1) which are arranged in parallel, the inner walls of two sides of each elevator frame (5-1) are respectively provided with an elevator guide rail (5-6) along the vertical direction, and the elevator frames (5-7) are connected to the elevator guide rails (5-6) in a guiding and matching manner;
The bottom plate of the elevator frame (5-1) is provided with an air cylinder (5-4) through an air cylinder seat, the piston rod end of the air cylinder (5-4) is fixedly connected with a chain wheel shaft (5-5), two ends of the chain wheel shaft (5-5) are respectively provided with a chain wheel in a rotating mode, each chain wheel is respectively matched with a chain, one end of each chain is connected with the elevator frame (5-1), and the other end of each chain is connected with a chain pull rod of the elevator frame (5-7);
The transfer conveyor line (5-10) is arranged on the lifting frame (5-7).
4. A docking station for electroplating equipment according to claim 3, wherein the transfer conveyor line (5-10) is provided with transfer conveyor line guides on both sides, respectively, the transfer conveyor line guides being fixed to the floor of the elevator frame (5-1).
5. A docking station for electroplating apparatus according to claim 3, wherein the upper and lower ends of the elevator frame (5-1) are provided with buffers (5-3) respectively.
6. A docking station of electroplating equipment according to claim 3, wherein two sides of the lifting frame (5-7) are fixedly connected with fixed guide wheel fixing plates (5-8) respectively, two groups of roller bearings (5-9) are arranged on the guide wheel fixing plates (5-8) in pairs, the two groups of roller bearings (5-9) are in rolling fit with two side surfaces of corresponding lifting guide rails (5-6), guide wheels (5-82) are further arranged on the guide wheel fixing plates (5-8), and the guide wheels (5-82) are in rolling contact with the inner surfaces of the lifting guide rails (5-6).
7. A docking station for electroplating apparatus according to claim 6, wherein the upper end of the guide wheel fixing plate (5-8) is fixed with an upper baffle plate (5-81) and the lower end is fixed with a lower baffle plate (5-83).
8. A docking station for electroplating equipment according to claim 3, wherein the transfer conveyor line (5-10) comprises a plurality of second chain conveyor lines (5-11) arranged in parallel with each other, the second chain conveyor lines (5-11) are linked by a second synchronizing shaft (5-12), and the second synchronizing shaft (5-12) is driven to operate by a second driving assembly.
9. The docking station of electroplating equipment according to claim 1, wherein the blanking docking line (6) comprises a plurality of third chain conveying lines which are arranged in parallel with each other, the third chain conveying lines are linked through a third synchronizing shaft, and the third synchronizing shaft is driven to operate by a third driving assembly.
CN202421908670.9U 2024-08-07 2024-08-07 Docking station for electroplating equipment Active CN223280956U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202421908670.9U CN223280956U (en) 2024-08-07 2024-08-07 Docking station for electroplating equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202421908670.9U CN223280956U (en) 2024-08-07 2024-08-07 Docking station for electroplating equipment

Publications (1)

Publication Number Publication Date
CN223280956U true CN223280956U (en) 2025-08-29

Family

ID=96836042

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202421908670.9U Active CN223280956U (en) 2024-08-07 2024-08-07 Docking station for electroplating equipment

Country Status (1)

Country Link
CN (1) CN223280956U (en)

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