Negative plate transfer mechanism

By designing the cathode plate transport mechanism, the combination of the lifting driver and the drive component can realize the automatic lifting and precise transport of the cathode plate, solving the problems of high labor intensity and inaccurate transport of manual transport.

CN223060506UActive Publication Date: 2025-07-04JIANGXI JIANBIAO ELECTROMECHANICAL EQUIP CO LTD
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Patent Information

Application Number
CN202422231354.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-12
Publication Date
2025-07-04
Estimated Expiration
2034-09-12

AI Technical Summary

Technical Problem

In the prior art, the transport of cathode plates requires manual transport, which has high labor intensity and inaccurate transport.

Method used

A cathode plate transport mechanism is designed, and the cathode plate is automatically lifted through the suspension plate by using the lifting driver and the second driving component, and the cathode plate is automatically transported and precisely positioned through the synergy between the first driving component and the second driving component.

Benefits of technology

It realizes automatic lifting and precise transport of the cathode plate, reduces labor intensity, and improves transportation efficiency and accuracy.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223060506U_ABST
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Abstract

The utility model discloses a cathode plate transfer mechanism which comprises a supporting frame, a conveying channel is arranged in the middle of the supporting frame, and a guide rail is arranged on the top of the supporting frame. The transfer frame is provided with a sliding plate which is horizontally arranged on the guide rail in a guiding manner, and guide rail plates which are connected with the sliding plate and are arranged below the sliding plate at intervals; a first driving assembly; a second driving assembly; provided is a plate hanger. The lifting drive drives the plate lifting device to do lifting work, the second driving assembly drives the bearing plate to move so as to drive the plate lifting device to move horizontally, the plate lifting device and the second driving assembly are matched to drive the plate lifting device to move, the negative plate is automatically lifted through the two hooks arranged at intervals, manual operation is not needed, and the labor intensity is reduced; the first driving assembly can drive the sliding plate to move, then the negative plate on the plate hanger is driven to move, and automatic transfer work is achieved. And through cooperation of a lifting driver and a second driving assembly, the transferred negative plate can be moved longitudinally and transversely, and then the negative plate is accurately moved to the designated position.
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Description

Technical Field

[0001] The utility model relates to the technical field of hoisting equipment, and more specifically, to a cathode plate transfer mechanism. Background Art

[0002] The electrolytic cathode plate is a component used in the electrolysis process. It usually serves as the current receiving end and plays a key role in the electrolytic cell. Electrolysis is a process of decomposing or synthesizing chemical substances through an electric current, which is widely used in many fields such as chemical engineering, metallurgy, and environmental protection.

[0003] During the production process of the cathode plate, transportation and transfer work are required. In the prior art, the transfer work is carried out by manual handling. Since the cathode plate is generally made of metal and has a relatively large weight, the labor intensity of manual handling is high. Ordinary hoisting equipment needs to bind the cathode plate, and then manual pushing is required to move the cathode plate to the designated position. The transfer is not accurate and the operation is relatively troublesome. Summary of the Utility Model

[0004] Aiming at the problems existing in the prior art, the purpose of the utility model is to provide a transfer mechanism that can automatically lift and transfer the cathode plate and accurately transfer it to the designated position.

[0005] To solve the above problems, the utility model adopts the following technical solutions. A cathode plate transfer mechanism includes:

[0006] A support frame, the middle part of which is a transportation channel and the top is a guiding track;

[0007] A transfer frame, having a slide plate horizontally and guidingly installed on the guiding track, and guide rail plates connected to the slide plate and spaced below the slide plate, the guide rail plates being located in the transportation channel;

[0008] A first driving component, installed on the slide plate to drive the slide plate to move;

[0009] A bearing plate, horizontally and guidingly installed on the guide rail plates, and the guiding direction is perpendicular to the guiding direction of the slide plate;

[0010] A second driving component, installed on the guide rail plates to drive the bearing plate to move;

[0011] At least one lifting driver, installed on the bearing plate and with the output end facing downwards;

[0012] A hanging plate device, installed at the output end of the lifting driver and having two spaced hooks.

[0013] Preferably, the support frame includes two top beams arranged at intervals, and a plurality of vertical rods installed at the bottom of the top beams. The transportation channel is located between the two top beams, and the guiding track is installed on the two top beams.

[0014] Preferably, the transfer rack further includes a plurality of connecting rods for connecting the guide rail plate and the sliding plate.

[0015] Preferably, there are two guide rail plates arranged at intervals. One end of the two guide rail plates is connected with a reinforcing plate. The bearing plate is guidingly lapped on the two guide rail plates, and the first driving assembly is installed on the reinforcing plate.

[0016] Preferably, the first driving assembly includes a motor and a roller installed at the output end of the motor and drivingly arranged on the inner side of the guiding track.

[0017] Preferably, the hanging plate device includes a cross plate installed at the output end of the lifting driver, and the hooks are installed at both ends of the cross plate.

[0018] Preferably, the hooks are arranged in a stepped manner in several numbers.

[0019] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0020] The hanging plate device can perform lifting work by driving of the lifting drive. The second driving assembly drives the bearing plate to move, and then drives the hanging plate device to move horizontally. The two cooperate to drive the hanging plate device to move and automatically lift the cathode plate by using the two hooks arranged at intervals, without manual operation, reducing the labor intensity. The first driving assembly can drive the sliding plate to move, and then drive the cathode plate on the hanging plate device to move, realizing the automatic transfer work. Moreover, through the cooperation of the lifting driver and the second driving assembly, the transferred cathode plate can be moved longitudinally and horizontally, and then accurately moved to the designated position. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 is a schematic structural diagram of the present utility model;

[0022] Figure 2 is a schematic structural diagram of the present utility model from another aspect;

[0023] Figure 3 is a schematic structural diagram of the hanging plate device hoisting the cathode plate.

[0024] Description of the reference numerals in the drawings:

[0025] 1. Support frame; 11. Transportation channel; 12. Guide rail; 13. Top beam; 14. Vertical pole; 2. Transfer rack; 21. Slide plate; 22. Guide rail plate; 3. First drive assembly; 31. Motor; 32. Roller; 4. Bearing plate; 5. Second drive assembly; 6. Lifting drive; 7. Hanging plate device; 71. Hook; 72. Cross plate; 8. Connecting rod; 9. Cathode plate; 91. Hanging ear. Detailed implementation manners

[0026] The following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0027] Refer to Figure 1-2 , a cathode plate transfer mechanism, comprising: a support frame 1, the middle part of the support frame 1 is a transportation channel 11, and the top is a guide rail 12; a transfer rack 2, having a slide plate 21 horizontally and guidingly installed on the guide rail 12, and guide rail plates 22 connected to the slide plate 21 and spaced apart below the slide plate 21, the guide rail plates 22 are located in the transportation channel 11; a first drive assembly 3, installed on the slide plate 21 to drive the slide plate 21 to move; a bearing plate 4, horizontally and guidingly installed on the guide rail plates 22, and the guiding direction is perpendicular to the guiding direction of the slide plate 21; a second drive assembly 5, installed on the guide rail plates 22 to drive the bearing plate 4 to move; at least one lifting drive 6, installed on the bearing plate 4, and the output end faces downward; a hanging plate device 7, installed on the output end of the lifting drive 6, and having two spaced hooks 71.

[0028] It can be understood that the support frame 1 is the support component of the entire mechanism, which plays a role in suspending and guiding the installation of the transfer frame 2. The support frame 1 can be hoisted and fixed or supported and fixed to the guide rail 12, etc., but not limited to this. The transfer frame 2 is a component that is guided and matched with the guide rail 12 and installs other structures. For example, it can be a component realized by the cooperation of the slide plate 21 and the guide rail plate 22, but not limited to this. The guiding cooperation between the slide plate 21 and the guide rail 12 can adopt shaft-hole guiding, roller 32 guiding, etc., but not limited to this. The first driving component 3 and the second driving component 5 are respectively components that drive the movement of the slide plate 21 and the bearing plate 4. For example, they can be telescopic devices such as cylinders and electric push rods to push and move, or gear-rack transmission cooperation, etc., but not limited to this. The bearing plate 4 is a component for bearing and installing the lifting drive 6 and is guided and matched with the guide rail plate 22. For example, it can adopt a plate structure or a frame structure, etc., but not limited to this. Here, the guiding cooperation between the guide rail plate 22 and the bearing plate 4 can be shaft-hole guiding, roller 32 guiding, screw drive guiding, etc., but not limited to this. The lifting drive 6 is a component that drives the hanging plate device 7 to move up and down. For example, it can be a cylinder or an electric push rod, etc., but not limited to this. The hanging plate device 7 is a component that hoists the cathode plate 9. The hook 71 thereon can be a bent hook shape, a bent shape, an inclined inverted hook shape, etc., but not limited to this.

[0029] With such a setting, referring to Figure 1-3 , the first driving component 3 drives the slide plate 21, and then drives the hanging plate device 7 to move to the position of the cathode plate 9. The lifting drive drives the hanging plate device 7 to perform lifting work. The second driving component 5 drives the bearing plate 4 to move, and then drives the hanging plate device 7 to move horizontally. The two cooperate to drive the hanging plate device 7 to move, and use the two hooks 71 arranged at intervals to automatically hoist the cathode plate 9. Then, the first driving component 3 drives the slide plate 21, and then drives the hanging plate device 7 to transfer the cathode plate 9 to the other end of the support frame 1. Then, through the cooperation of the lowering drive and the second driving component 5, the transferred cathode plate 9 is moved longitudinally and horizontally, and then the cathode plate 9 is accurately moved to the specified position.

[0030] In some embodiments, the support frame 1 includes two top beams 13 arranged at intervals, and a plurality of vertical rods 14 installed at the bottom of the top beams 13. The transportation channel 11 is located between the two top beams 13, and the guide rail 12 is installed on the two top beams 13. It can be seen that the middle parts of the two top beams 13 arranged at intervals can form the transportation channel 11. The vertical rods 14 play a role in supporting the top beams 13, and then the top beams 13 are arranged at a high position.

[0031] In some embodiments, the transfer rack 2 further includes a plurality of connecting rods 8, and the connecting rods 8 are used to connect the guide rail plate 22 and the sliding plate 21. It can be understood that since the guide rail plate 22 and the sliding plate 21 are arranged at an interval up and down, the connecting rod 8 here plays a role of connecting and fixing. The guide rail plate 22 can be a whole plate, and the bearing plate 4 needs to extend out of the guide rail plate 22 at both ends, and the extended parts are connected to the hanging plate device 7. Of course, the guide rail plate 22 can also be arranged at two intervals, one end of the two guide rail plates 22 is connected with a reinforcing plate, the bearing plate 4 is guided and lapped on the two guide rail plates 22, and the first driving assembly 3 is installed on the reinforcing plate. In this way, the hanging plate device 7 can be installed on the bearing plate 4 between the two guide rail plates 22 or on the bearing plate 4 on both sides of the two guide rail plates 22.

[0032] In some embodiments, the first driving assembly 3 includes a motor 31 and a roller 32 installed at the output end of the motor 31 and drivingly arranged inside the guide track 12. It can be understood that the transmission between the roller 32 and the guide rail can be either a direct friction transmission of the pressure roller or a meshing transmission between a gear and a rack, etc., but not limited thereto. In this way, the motor 31 drives the roller 32 to rotate, and then drives the entire sliding plate 21 to move.

[0033] In some embodiments, the hanging plate device 7 includes a horizontal plate 72 installed at the output end of the lifting driver 6, and the hooks 71 are installed at both ends of the horizontal plate 72. It can be understood that since the hanging ears 91 are arranged at intervals at both ends of the cathode plate 9, the hooks 71 also need to be arranged at intervals corresponding to the hanging ears 91, and the horizontal plate 72 plays a role of connecting the hooks 71 at intervals. The horizontal plate 72 can be a plate-like structure or a rod-like structure, but not limited thereto. Further, the hooks 71 are arranged in a stepped manner in several numbers. In this way, according to the length of the cathode plate 9, the hooks 71 at different heights can be used correspondingly.

[0034] The above is only the preferred specific embodiment of the present invention; however, the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution of the present invention and its improved concept, makes an equivalent substitution or change, and should be covered by the protection scope of the present invention.

Claims

1. A cathode plate transfer mechanism, characterized in that, Comprising: A support frame (1), the middle part of the support frame (1) being a transportation passage (11), and the top being a guiding track (12); A transfer frame (2), having a sliding plate (21) horizontally and guidingly installed on the guiding track (12), and a guide rail plate (22) connected to the sliding plate (21) and arranged at intervals below the sliding plate (21), the guide rail plate (22) being located within the transportation passage (11); A first driving assembly (3), installed on the sliding plate (21) to drive the sliding plate (21) to move; A bearing plate (4), horizontally and guidingly installed on the guide rail plate (22), and the guiding direction being perpendicular to the guiding direction of the sliding plate (21); A second driving assembly (5), installed on the guide rail plate (22) to drive the bearing plate (4) to move; A lifting driver (6), at least one being installed on the bearing plate (4), and the output end facing downwards; A hanging plate device (7), installed at the output end of the lifting driver (6), and having two hooks (71) arranged at intervals; 2. The cathode plate transfer mechanism according to claim 1, characterized in that, The support frame (1) includes two top beams (13) arranged at intervals, and a plurality of vertical rods (14) installed at the bottom of the top beams (13), the transportation passage (11) being located between the two top beams (13), and the guiding track (12) being installed on the two top beams (13); 3. The cathode plate transfer mechanism according to claim 1, characterized in that, The transfer frame (2) further includes a plurality of connecting rods (8), and the connecting rods (8) are used to connect the guide rail plate (22) and the sliding plate (21); 4. A cathode plate transfer mechanism according to claim 1, characterized in that, Two guide rail plates (22) are horizontally arranged at intervals, one end of the two guide rail plates (22) being connected with a reinforcing plate (41), the bearing plate (4) being guidingly lapped on the two guide rail plates (22), and the first driving assembly (3) being installed on the reinforcing plate (41); 5. The cathode plate transfer mechanism according to claim 1, wherein The first driving assembly (3) includes a motor (31) and a roller (32) installed at the output end of the motor (31) and in transmission with the inner side of the guiding track (12); 6. The cathode plate transfer mechanism according to claim 1, characterized in that, The hanging plate device (7) includes a cross plate (72) installed at the output end of the lifting driver (6), and the hooks (71) are installed at both ends of the cross plate (72); 7. The cathode plate transfer mechanism according to claim 6, characterized in that, The hooks (71) are arranged in a stepped manner with several;