Hoisting and hanging structure for anode guide rod
By using a bridge crane and hoisting structure, the problem of moving the anode guide rod during replacement or maintenance was solved, enabling rapid and convenient movement of the anode guide rod and improving operational efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 重庆天泰铝业股份有限公司
- Filing Date
- 2025-05-27
- Publication Date
- 2026-04-17
AI Technical Summary
In existing technologies, the anode guide rod is not easy to move during replacement or maintenance, which leads to operational difficulties.
A bridge crane and a hoisting structure are used. The hoisting part is connected to the hoisting hole at one end of the anode guide rod through the hoisting part and the operating rod. The bridge crane drives the hoisting part to move, thereby realizing the convenient movement of the anode guide rod.
This enables rapid and convenient movement of the anode guide rod, improving operational efficiency.
Smart Images

Figure CN224132530U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of hoisting and transportation structure technology, specifically to a hoisting and hanging structure for an anode guide rod. Background Technology
[0002] The anode conductor is an important conductive component in the electrolytic aluminum industry, used to connect the anode carbon block and the busbar of the electrolytic cell, ensuring smooth current transmission. Due to its weight and height, the anode conductor is inconvenient to move during replacement or maintenance. Utility Model Content
[0003] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide a hoisting structure for anode guide rods, so as to solve the problem that it is inconvenient to move the anode guide rods when they need to be replaced or repaired.
[0004] To achieve the above objectives, this utility model adopts the following technical solution: a hoisting and hanging structure for an anode guide rod, comprising:
[0005] Bridge crane;
[0006] The mounting part is connected to the bridge crane;
[0007] The operating lever, which cooperates with the hanging part, is used to connect the hanging part to the hoisting hole on one end of the anode guide rod.
[0008] Compared with the prior art, the present invention has the following beneficial effects:
[0009] When using this anode guide rod hoisting and hanging structure, the hanging part is connected to the hoisting hole on one end of the anode guide rod by the operating rod. Then, the hanging part is driven to move by the bridge crane, thereby moving the anode guide rod, making the movement of the anode guide rod quick and convenient. Attached Figure Description
[0010] Figure 1 This is a partial structural schematic diagram of an embodiment of the present utility model;
[0011] Figure 2 for Figure 1 A partial structural diagram;
[0012] Figure 3 This is a schematic diagram of the state of the operating lever in one embodiment of the present invention. Figure 1 ;
[0013] Figure 4 This is a schematic diagram of the state of the operating lever in one embodiment of the present invention. Figure 2 .
[0014] The reference numerals in the accompanying drawings include: hanging part 1, mounting block 11, hanging strip 12, hanging ring 13, limiting rod 14, limiting head 15, operating rod 2, straight rod 21, limiting post 22, adjustable tensioning element 23, elastic tensioning plate 231, traction rope 232, take-up shaft 233, tension spring 234, connecting chain 3, and anode guide rod 4. Detailed Implementation
[0015] The present invention will be further described in detail below through specific embodiments:
[0016] like Figures 1-4 As shown in the figure, this utility model embodiment proposes a hoisting and mounting structure for an anode guide rod, including a bridge crane (not shown in the figure), a mounting part 1 and an operating rod 2. The mounting part 1 is connected to the bridge crane; the operating rod 2 cooperates with the mounting part 1 to connect the mounting part 1 to the hoisting hole on one end of the anode guide rod 4.
[0017] When using this anode guide rod hoisting structure, the hanging part 1 is connected to the hoisting hole on one end of the anode guide rod 4 by the operating rod 2. Then, the hanging part 1 is driven to move by the bridge crane, thereby moving the anode guide rod 4, making the movement of the anode guide rod 4 quick and convenient.
[0018] In this embodiment, the bridge crane is installed on the top of the factory building to provide power for the movement of the anode guide rod 4.
[0019] To better understand this solution, the following section will optimize the mounting section 1 and the operating lever 2.
[0020] First, there is the installation of part 1, such as... Figure 1 and Figure 2 As shown, according to another embodiment of the present invention, the anode guide rod hoisting structure includes a mounting block 11 and a hooking strip 12. The mounting block 11 is connected to a bridge crane and has a hooking ring 13 for cooperating with the operating rod 2. One end of the hooking strip 12 is connected to the mounting block 11 and forms a limiting accommodating area with the mounting block 11. The limiting accommodating area is used to allow the end of the anode guide rod 4 to move into the limiting accommodating area from the gap in the limiting accommodating area when the free end of the hooking strip 12 passes through the hoisting hole.
[0021] Because the anode guide rod 4 is arranged vertically during use, it has a certain height. When it needs to be moved, hold the operating rod 2. One end of the operating rod 2 is embedded in the hook ring 13. Then, the free end of the hook strip 12 can be controlled to pass into the hoisting hole through the operating rod 2. Then, the end of the anode guide rod 4 moves into the notch of the limiting and receiving area. At this time, the bridge crane is running, and the anode guide rod 4 can be moved.
[0022] In this embodiment, the mounting block 11 is L-shaped, and the mounting block 11 and the hanging strip 12 are connected to form a U-shape.
[0023] The free end of the hook strip 12 is pointed to facilitate quick insertion of the free end of the hook strip 12 into the hoisting hole.
[0024] To improve the stability of the connection between the hanging part 1 and the anode guide rod 4, the hanging part 1 also includes a limiting rod 14. The limiting rod 14 is slidably connected to the mounting block 11 and is located at the notch and moves toward or away from the free end of the hanging strip 12. Both ends of the limiting rod 14 are connected to limiting heads 15.
[0025] Before connecting the mounting part 1 to the anode guide rod 4, the limiting rod 14 needs to be moved away from the free end of the hanging strip 12 to open the notch in the limiting receiving area. Then, hold the operating rod 2, with one end of the operating rod 2 embedded in the hanging ring 13. At this time, the limiting rod 14 needs to be kept at a certain tilt angle to prevent the limiting rod 14 from moving closer to the free end of the hanging strip 12 to close the notch in the limiting receiving area. Then, the operating rod 2 is used to control the free end of the hanging strip 12 to pass into the hoisting hole, and the end of the anode guide rod 4 moves into it from the notch in the limiting receiving area. At this time, the mounting block 11 is adjusted to make the limiting rod 14 turn to a vertical state. Under the action of its own weight, the limiting rod 14 moves closer to the free end of the hanging strip 12 to close the notch in the limiting receiving area, ensuring that the anode guide rod 4 is stably attached to the hanging strip 12.
[0026] When it is necessary to detach the anode guide rod 4 from the hanger strip 12, the limiting rod 14 is kept at a certain tilt angle, and the operating rod 2 is used to abut against one of the limiting heads 15, driving the limiting rod 14 to move away from the free end of the hanger strip 12, opening the notch of the limiting accommodating area; then one end of the operating rod 2 is inserted into the hanger ring 13, and the hanger strip 12 can be removed from the lifting hole.
[0027] The two limiting heads 15 ensure that the limiting rod 14 is stably slidably connected to the mounting block 11 without disengaging.
[0028] In this embodiment, there are two hanging parts 1 connected by a connecting chain 3, and the connecting chain 3 is connected to the bridge crane.
[0029] Using two mounting parts 1 allows for the simultaneous mounting and movement of two anode guide rods 4; wherein, the bridge crane is connected to the middle position of the connecting chain 3 via a hook.
[0030] The specific steps are as follows:
[0031] First, ensure that the notches in the two hanging parts 1 are open. Then, use the two operating rods 2 to operate the two hanging parts 1 respectively, so that the hanging strips 12 in the two hanging parts 1 pass through the lifting holes on the two anode guide rods 4 one by one.
[0032] Then the bridge crane operates, lifting the two anode guide rods 4 upward. During this process, the limit rods 14 in the two hanging parts 1 are converted to a vertical state and move towards the free end of the corresponding hanging strip 12 to close the corresponding notch.
[0033] After being lifted to a certain height, the bridge crane drives the two anode guide rods 4 to move horizontally to the destination;
[0034] The rear axle crane drives the two anode guide rods 4 to move downwards and lie flat at the destination. At this time, the limit rod 14 can be manually slid to open the notch, and then the hook strip 12 is moved out of the corresponding hoisting hole to disengage from the connection.
[0035] Then there's lever 2, such as... Figure 3 and Figure 4 As shown, according to another embodiment of the present invention, the anode guide rod hoisting structure includes an operating rod 2 comprising a straight rod 21 and a limiting post 22, wherein the limiting post 22 is connected to the side wall of one end of the straight rod 21.
[0036] By holding one end of the straight rod 21, the limiting post 22 is inserted into the hook ring 13. The hook strip 12 can then be inserted into or removed from the lifting hole by adjusting the operating rod 2. Its structure is simple.
[0037] To improve the stability of the limiting post 22 when inserted into the lifting hole, and to make it easier to operate the hook strip 12 by adjusting the operating rod 2, the operating rod 2 may also include an adjustable tensioning member 23. The adjustable tensioning member 23 is disposed between the limiting post 22 and the straight rod 21, and is used to tighten or loosen the tensioning member within the hook ring 13 when the limiting post 22 is inserted into the hook ring 13. When the limiting post 22 is inserted into the lifting hole, the adjustable tensioning member 23 is adjusted to tighten the tensioning member within the hook ring 13, ensuring a stable fit between the limiting post 22 and the hook ring 13.
[0038] Based on the above solution:
[0039] The adjustable tensioning member 23 includes elastic tensioning plates 231 and an adjustment part. There are two elastic tensioning plates 231 arranged facing each other on the outer side of one end of the limiting post 22. One end of the two elastic tensioning plates 231 is rotatably connected to the limiting post 22, and the other end of the two elastic tensioning plates 231 is connected by a tensioning spring 234. The adjustment part is connected between the ends of the two elastic tensioning plates 231 and the tensioning spring 234.
[0040] In this embodiment, the adjustment part includes a traction rope 232 and a take-up shaft 233. The traction rope 232 has three ends, with two ends connected to two elastic tension plates 231 in a one-to-one correspondence. The take-up shaft 233 is rotatably connected to the side wall of the straight rod 21 away from the limiting post 22, and the other end of the traction rope 232 is wound around the take-up shaft 233.
[0041] Specifically, an installation channel is formed within the straight rod 21 and the limiting post 22 to allow the traction rope 232 to pass freely.
[0042] After the limiting post 22 is inserted into the hook ring 13, the take-up shaft 233 is rotated to release the traction rope 232. At this time, the tension spring 234 unfolds to cause the two elastic tension plates 231 to move apart. The two elastic tension plates 231 are then tensioned in the hook ring 13, which improves the connection stability of the limiting post 22 in the hook ring 13 and makes it easier to insert the hook strip 12 into or remove it from the lifting hole.
[0043] When the limiting post 22 needs to be disengaged from the hook ring 13, the take-up shaft 233 is rotated in the opposite direction to take in the traction rope 232, driving the two elastic tension plates 231 to move towards each other. The two elastic tension plates 231 close together and disengage from the hook ring 13, and the tension spring 234 contracts. At this time, the limiting post 22 can be easily pushed out of the hook ring 13 by moving the straight rod 21.
[0044] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model and are not intended to limit it. Although this utility model has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of this utility model without departing from the spirit and scope of the technical solutions of this utility model, and all such modifications or substitutions should be covered within the scope of the claims of this utility model.
Claims
1. A hoisting and mounting structure for an anode guide rod, characterized in that, include: Bridge crane; The mounting part is connected to the bridge crane; The operating lever, which cooperates with the hanging part, is used to connect the hanging part to the hoisting hole on one end of the anode guide rod.
2. The hoisting and hanging structure for an anode rod according to claim 1, characterized by The mounting part includes: Mounting block, which is connected to the bridge crane and has a mounting ring for cooperating with the operating lever; The hanging strip has one end connected to the mounting block and forms a limiting accommodating area with the mounting block. The limiting accommodating area is used to allow the end of the anode guide rod to move into the limiting accommodating area from the gap in the limiting accommodating area when the free end of the hanging strip is inserted into the lifting hole.
3. The hoisting and hanging structure for an anode rod according to claim 2, characterized by The mounting section also includes: A limiting rod is slidably connected to the mounting block and is located at the notch, moving towards or away from the free end of the hook strip. Both ends of the limiting rod are connected to limiting heads.
4. The hoisting and hanging structure for an anode rod according to claim 2, characterized by The free end of the hook strip is pointed.
5. The hoisting and hanging structure for an anode rod according to any one of claims 1 to 4, characterized in that, The mounting section has two parts connected by a connecting chain, which is then attached to the bridge crane.
6. The hoisting and hanging structure for an anode rod according to claim 1, characterized by The control lever includes: Straight rod; A limiting post is connected to the side wall of one end of the straight rod; An adjustable tensioning element is disposed between a limiting post and a straight rod, and is used to tighten or loosen tension within the hook ring when the limiting post is inserted into the hook ring.
7. The hoisting and hanging structure for an anode rod according to claim 6, characterized by The adjustable tensioner includes: The elastic tensioning plate has two elastic tensioning plates arranged facing each other on the outer side of one end of the limiting post. One end of the two elastic tensioning plates is rotatably connected to the limiting post, and the other end of the two elastic tensioning plates is connected by a tensioning spring. An adjustment section is connected between the two elastic tension plates and the end of the tension spring.
8. The hoisting and hanging structure for an anode rod according to claim 7, characterized by The adjustment unit includes: The traction rope has three ends, with each end connected to one of the two elastic tensioning plates. A take-up spool is rotatably connected to the side wall of the straight rod away from the limiting post, and the other end of the traction rope is wound around the take-up spool.