Anti-falling anode clamp for multifunctional electrolysis crown block

By using mechanical locking fixture design on the electrolytic multi-function trolley, the long extrusion plate is clamped and fixed to the anode by using the tooth transmission mechanism, the problem of hydraulic leakage causing the anode to fall off and improve the safety and stability during the lifting process.

CN222907345UActive Publication Date: 2025-05-27云南宏泰新型材料有限公司
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Patent Information

Application Number
CN202421990612.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-16
Publication Date
2025-05-27
Estimated Expiration
2034-08-16

AI Technical Summary

Technical Problem

The existing electrolytic multi-function trolley hydraulic clamping method has the risk of leakage, resulting in the problem of anode falling off.

Method used

The mechanically locked fixture design is adopted, and the gear transmission mechanism of the rotating wheel, driving gear, worm and guide shaft is used to clamp and fix the anode to avoid hydraulic leakage.

Benefits of technology

It effectively avoids the anode peeling problem caused by hydraulic leakage, and improves safety and stability during lifting.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of electrolysis, and discloses an electrolysis multifunctional crown block anti-falling anode clamp which comprises a frame, a long extrusion plate is connected in the frame in a sliding mode, a lead shaft is connected to the outer side of the long extrusion plate in a threaded mode, the lead shaft penetrates through the frame and extends to the outer side of the frame, and the lead shaft is connected with the frame in a rotating mode. A worm gear is fixedly mounted on the outer side, located on the frame, of the lead shaft, a worm is meshed with one side of the worm gear, and a supporting ring is fixedly mounted on the edge of the frame; according to the anti-falling anode clamp for the multifunctional crown block for electrolysis, driving gears on the two sides can be driven to rotate through rotation of a rotating wheel, then a worm can be driven to rotate through gear transmission, a worm wheel can be driven to rotate through rotation of the worm, and finally a lead shaft can be driven to rotate; and therefore, the two long extrusion plates can clamp and fix the anode from the two sides, and the problem that the anode falls off due to hydraulic pressure leakage during hydraulic clamping can be avoided.
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Description

Technical Field

[0001] The utility model relates to the field of electrolysis, and specifically relates to an anti-drop anode fixture for an electrolysis multi-functional overhead crane. Background Technique

[0002] When the electrolysis multi-functional overhead crane hoists an anode, first operate the fixture to clamp the anode, and then lift the fixture to the top beam of the overhead crane for movement. During the movement of the fixture on the top beam, situations such as collisions caused by misoperations or large-scale shaking caused by sudden stops may occur.

[0003] The existing patent for an anti-drop anode fixture for an electrolysis multi-functional overhead crane (CN219792195 U) includes a bracket. A clamping part is fixedly installed at the bottom of the bracket. The clamping part includes clamping arms. A hydraulic clamp for locking the clamping arms is provided on the bracket. The hydraulic clamp is connected to a plunger pump through an oil pipe. The plunger pump is arranged at the top of the bracket. The plunger pump includes a plunger arranged at the top of the plunger pump; by providing a plunger pump, a hydraulic clamp, etc., when the fixture rises to contact the top beam of the overhead crane, the hydraulic clamp locks the clamping arms, so that when the fixture collides or shakes, the lifted anode will not fall, which is safer and avoids casualties of personnel and damage to equipment.

[0004] The clamping method in this patent uses hydraulics. Since there is a risk of hydraulic leakage, leakage during clamping will cause the anode to fall off. Content of the Utility Model

[0005] (1) Technical Problem to be Solved

[0006] Aiming at the deficiencies of the prior art, the utility model provides an anti-drop anode fixture for an electrolysis multi-functional overhead crane, which has the advantage of mechanical locking and solves the problem of anode dropping caused by hydraulic leakage during hydraulic clamping.

[0007] (2) Technical Solution

[0008] To achieve the above object, the utility model provides the following technical solution: an anti-drop anode fixture for an electrolysis multi-functional overhead crane, including a frame. A long extrusion plate is slidably connected inside the frame. A lead screw is threadedly connected to the outside of the long extrusion plate. The lead screw penetrates through the frame and extends to the outside of the frame. The lead screw is rotatably connected to the frame. A worm gear is fixedly installed on the outside of the frame where the lead screw is located. A worm is meshed with one side of the worm gear. A support ring is fixedly installed at the edge of the frame. The support ring is rotatably connected to the worm. A driven gear is fixedly installed at one end of the worm. A connecting frame is fixedly installed on the outside of the short end of the frame. A rotating shaft is rotatably connected to the middle of the connecting frame. Driving gears are fixedly installed at both ends of the rotating shaft. The driving gears are meshed with the driven gear. A rotating wheel is fixedly installed on the outer surface of the rotating shaft.

[0009] In some embodiments, an outer shell is sleeved on the outer surfaces of the driving gear and the driven gear, and the outer shell is fixedly connected to the frame.

[0010] In some embodiments, a limiting groove is formed inside the frame, limiting blocks are fixedly installed on both sides of the long extrusion plate, and the limiting blocks are slidably connected inside the limiting groove.

[0011] In some embodiments, inclined extrusion platforms are slidably connected to both sides inside the frame, a vertical extrusion platform is slidably connected to the middle of the inclined extrusion platforms, a connecting rod is fixedly installed at the top end of the vertical extrusion platform, a connecting plate is fixedly installed on the upper surface of the frame, the connecting rod penetrates through the connecting plate, a sliding rod is slidably connected to the middle of the connecting plate, a connecting block is fixedly installed at the bottom end of the sliding rod and at the bottom end of the connecting plate, and the top ends of the sliding rod and the connecting rod are fixedly connected through a hoisting plate.

[0012] In some embodiments, a hoisting ring is fixedly installed at the top end of the hoisting plate.

[0013] In some embodiments, a positioning hole is formed on one side of the inclined extrusion platform close to the frame, and a return spring is fixedly connected between the positioning hole and the frame and between the vertical extrusion platform and the frame.

[0014] (III) Beneficial effects

[0015] Compared with the prior art, the present utility model provides an anti-dropping anode fixture for an electrolytic multi-functional overhead crane, which has the following beneficial effects:

[0016] 1. For this anti-dropping anode fixture of the electrolytic multi-functional overhead crane, by rotating the rotating wheel, the driving gears on both sides can be driven to rotate, and then the worm can be driven to rotate by means of gear transmission. By the rotation of the worm, the worm gear can be driven to rotate, and finally the lead screw can be driven to rotate, so that the two long extrusion plates can clamp and fix the anode from both sides, thus avoiding the problem of anode dropping caused by hydraulic leakage during hydraulic clamping.

[0017] 2. For this anti-dropping anode fixture of the electrolytic multi-functional overhead crane, by providing a vertical extrusion platform and an inclined extrusion platform, the vertical extrusion platform can be pulled upward during the hoisting process, so as to squeeze the inclined extrusion platform. Through the displacement of the inclined extrusion platform, the inclined extrusion platform can squeeze and clamp the anode as long as it is in the hoisting state. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 is a schematic structural diagram of the present utility model;

[0019] Figure 2 is a schematic connection diagram of the inclined extrusion platform of the present utility model;

[0020] Figure 3Schematic diagram of the connection of the connecting plate of the present utility model;

[0021] Figure 4 Schematic diagram of the connection of the frame of the present utility model.

[0022] In the figure:

[0023] 1. Frame; 2. Long extrusion plate; 3. Lead screw; 4. Worm gear; 5. Worm; 6. Support ring; 7. Driven gear; 8. Connecting frame; 9. Rotating shaft; 10. Driving gear; 11. Rotating wheel; 12. Outer shell; 13. Limit groove; 14. Limit block; 15. Inclined extrusion table; 16. Vertical extrusion table; 17. Connecting rod; 18. Connecting plate; 19. Sliding rod; 20. Connecting block; 21. Lifting plate; 22. Lifting ring; 23. Positioning hole; 24. Return spring. Specific embodiments

[0024] Next, the technical solutions in the embodiments of the present application will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present application.

[0025] It should be noted that all the directional indications in the embodiments of the present application are only used to explain the relative positional relationship and movement conditions between components in a specific posture. If this specific posture changes, the directional indication will also change accordingly.

[0026] In the present application, unless otherwise clearly defined and limited, terms such as "connection" and "fixation" shall be understood in a broad sense. For example, "fixation" can be a fixed connection, a detachable connection, or integrated; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two components or the interaction relationship between two components, unless otherwise clearly limited. For those of ordinary skill in the art, the specific meanings of the above terms in the present application can be understood according to specific circumstances.

[0027] By rotating the rotating wheel 11, the driving gears 10 on both sides can be driven to rotate, and then the worm 5 can be driven to rotate by means of gear transmission. By rotating the worm 5, the worm gear 4 can be driven to rotate, and finally the lead screw 3 can be driven to rotate, so that the two long pressing plates 2 can clamp and fix the anode from both sides. At the same time, a vertical pressing table 16 and an inclined pressing table 15 are provided. During the hoisting process, the vertical pressing table 16 can be pulled upward, so that the inclined pressing table 15 can be pressed. As long as the inclined pressing table 15 is in the hoisting state, the anode can be pressed and clamped and fixed.

[0028] In the related art, the clamping method uses hydraulic pressure. Since there is a risk of hydraulic leakage, the anode will fall off if leakage occurs during clamping.

[0029] In order to solve the problems in the related art to a certain extent, the embodiment of the present application provides an anti-falling anode fixture for an electrolytic multi-functional overhead crane. When in use, only the rotating wheel 11 needs to be rotated, and the long pressing plates 2 on both sides can clamp and fix the anode through transmission, avoiding falling off.

[0030] The present application will be described below with reference to the accompanying drawings and specific embodiments:

[0031] Combined with Figures 1-4 The embodiment of the present application provides an anti-falling anode fixture for an electrolytic multi-functional overhead crane, including a frame 1. A long pressing plate 2 is slidably connected inside the frame 1. A lead screw 3 is threadedly connected to the outside of the long pressing plate 2. The lead screw 3 passes through the frame 1 and extends to the outside of the frame 1. The lead screw 3 is rotatably connected to the frame 1. A worm gear 4 is fixedly installed on the outside of the frame 1 of the lead screw 3. A worm 5 is engaged with one side of the worm gear 4. A support ring 6 is fixedly installed at the edge of the frame 1. The support ring 6 is rotatably connected to the worm 5. A driven gear 7 is fixedly installed at one end of the worm 5. A connecting frame 8 is fixedly installed on the outside of the short end of the frame 1. A rotating shaft 9 is rotatably connected to the middle of the connecting frame 8. Driving gears 10 are fixedly installed at both ends of the rotating shaft 9. The driving gears 10 are engaged with the driven gear 7. A rotating wheel 11 is fixedly installed on the outer surface of the rotating shaft 9.

[0032] Specifically, a housing 12 is sleeved on the outer surfaces of the driving gear 10 and the driven gear 7. The housing 12 is fixedly connected to the frame 1. Such a setting can facilitate the filling of grease.

[0033] In some embodiments, a limiting groove 13 is opened inside the frame 1. Limiting blocks 14 are fixedly installed on both sides of the long pressing plate 2. The limiting blocks 14 are slidably connected inside the limiting groove 13. Such a setting can limit the rotation of the long pressing plate 2.

[0034] In some embodiments, inclined extrusion platforms 15 are slidably connected to both inner sides of the frame 1. A vertical extrusion platform 16 is slidably connected to the middle of the inclined extrusion platform 15. A connecting rod 17 is fixedly installed at the top end of the vertical extrusion platform 16. A connecting plate 18 is fixedly installed on the upper surface of the frame 1. The connecting rod 17 passes through the connecting plate 18. A sliding rod 19 is slidably connected to the middle of the connecting plate 18. A connecting block 20 is fixedly installed at the bottom end of the sliding rod 19, which is located at the bottom end of the connecting plate 18. The top ends of the sliding rod 19 and the connecting rod 17 are fixedly connected by a lifting plate 21. Through this setting, it can be ensured that the inclined extrusion platform 15 can always extrude and fix the anode during the lifting process.

[0035] Specifically, a lifting ring 22 is fixedly installed at the top end of the lifting plate 21. Through this setting, it is convenient for lifting.

[0036] In some embodiments, a positioning hole 23 is formed on one side of the inclined extrusion platform 15 close to the frame 1. The positioning hole 23 and the frame 1, as well as the vertical extrusion platform 16 and the frame 1, are fixedly connected by a return spring 24. Through this setting, self-resetting can be achieved after the lifting is completed.

[0037] In the description of this specification, the description with reference to terms such as "one embodiment", "some embodiments", "example", "specific example", or "some examples" means that the specific features, structures, materials, or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present application. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described can be combined in any one or more embodiments or examples in a suitable manner. In addition, those skilled in the art can combine and combine the different embodiments or examples described in this specification.

[0038] In addition, the technical solutions between the various embodiments can be combined with each other, but it must be based on the ability of those of ordinary skill in the art to implement. When the combination of technical solutions results in contradictions or cannot be implemented, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection required by this application.

[0039] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. An electrolytic multifunctional overhead crane anti-drop anode fixture, comprising a frame (1), characterized in that: The frame (1) is slidably connected to a long extrusion plate (2) on the inside, the long extrusion plate (2) is threadedly connected to a lead shaft (3) on the outside, the lead shaft (3) penetrates the frame (1) and extends to the outside of the frame (1), the lead shaft (3) is rotatably connected to the frame (1), and a worm gear (4) is fixedly mounted on the lead shaft (3) on the outside of the frame (1); A worm (5) is meshed with one side of the worm wheel (4); a support ring (6) is fixedly mounted on the edge of the frame (1); the support ring (6) is rotatably connected to the worm (5); a driven gear (7) is fixedly mounted on one end of the worm (5); a connecting frame (8) is fixedly mounted on the outer side of the short end of the frame (1); a rotating shaft (9) is rotatably connected to the middle of the connecting frame (8); driving gears (10) are fixedly mounted on both ends of the rotating shaft (9); the driving gear (10) is meshed with the driven gear (7); and a rotating wheel (11) is fixedly mounted on the outer surface of the rotating shaft (9).

2. The electrolytic multifunctional overhead crane anti-dropping anode clamp according to claim 1, characterized in that: The outer surfaces of the driving gear (10) and the driven gear (7) are sleeved with a housing (12), and the housing (12) is fixedly connected to the frame (1).

3. The electrolytic multifunctional overhead crane anti-dropping anode clamp according to claim 1, characterized in that: A limiting groove (13) is provided inside the frame (1), and limiting blocks (14) are fixedly installed on both sides of the long extrusion plate (2), and the limiting blocks (14) are slidably connected inside the limiting groove (13).

4. The electrolytic multifunctional overhead crane anti-dropping anode clamp according to claim 1, characterized in that: The inner sides of the frame (1) are slidably connected with an inclined extrusion platform (15), the middle part of the inclined extrusion platform (15) is slidably connected with a vertical extrusion platform (16), the top of the vertical extrusion platform (16) is fixedly installed with a connecting rod (17), the upper surface of the frame (1) is fixedly installed with a connecting plate (18), the connecting rod (17) passes through the connecting plate (18), the middle part of the connecting plate (18) is slidably connected with a sliding rod (19), the bottom end of the sliding rod (19) is located at the bottom end of the connecting plate (18) and is fixedly installed with a connecting block (20), and the top ends of the sliding rod (19) and the connecting rod (17) are fixedly connected via a hanging plate (21).

5. The electrolytic multifunctional overhead crane anti-dropping anode clamp according to claim 4, characterized in that: A lifting ring (22) is fixedly mounted on the top end of the lifting plate (21).

6. The electrolytic multifunctional overhead crane anti-dropping anode clamp according to claim 4 or 5, characterized in that: A positioning hole (23) is provided on one side of the inclined extrusion platform (15) close to the frame (1); the positioning hole (23) and the frame (1) as well as the vertical extrusion platform (16) and the frame (1) are fixedly connected via a return spring (24).

Citation Information

Patent Citations

  • Anti-falling anode clamp of multifunctional electrolysis crown block

    CN219792195U