Anode plate cross beam casting mold

By introducing a ball screw and ball nut adjustment assembly into the casting mold for the anode plate beam, the problem of non-adjustable mold depth was solved, enabling the processing of anode plate beams of different thicknesses using the same mold and improving production efficiency.

CN223506180UActive Publication Date: 2025-11-04INNER MONGOLIA XINGAN COPPER & ZINC SMELTING CO LTD
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Patent Information

Application Number
CN202421811249.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-30
Publication Date
2025-11-04
Estimated Expiration
2034-07-30

AI Technical Summary

Technical Problem

The existing anode plate beam mold cannot adjust the groove depth according to different needs, which means that the same mold can only process anode plate beams of the same thickness, affecting production efficiency.

Method used

A casting mold for anode plate crossbeams is designed, employing a ball screw and ball nut adjustment assembly. The depth of the mold cavity is adjustable via a rocker handle and set screw. Combined with the sliding connection of the left and right molds, anode plate crossbeams of different thicknesses can be processed using the same mold.

Benefits of technology

This allows the same mold to process anode plate beams of different thicknesses, thus improving production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

An anode plate beam casting mold comprises a left mold fixed to the upper portion of a rack and a right mold slidably connected to the upper portion of the rack, casting cavities are formed in the inner side of the left mold and the inner side of the right mold respectively and comprise the upper casting cavity and the lower casting cavity, and an adjusting plate is slidably connected into the lower casting cavity. And a ball screw is arranged in the center of the back of the adjusting plate, extends to the exteriors of the corresponding left mold and right mold and is in threaded connection with a ball nut. The adjusting assemblies capable of adjusting the depth are arranged in the left die and the right die respectively, so that the problem that one die cannot be used for multiple purposes is fundamentally solved, the same die can be used for machining anode plate cross beams with different thicknesses, and the production efficiency is greatly improved.
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Description

Technical Field

[0001] This utility model relates to the field of electrolysis equipment, specifically to a casting mold for an anode plate crossbeam. Background Technology

[0002] An anode plate is a versatile metal plate, usually made of aluminum or titanium. In electrochemical processes, the anode plate acts as the anode, guiding current to the cathode in the electrolyte solution, thereby realizing the electrochemical reaction.

[0003] The anode plate is composed of a crossbeam and an alloy plate. During the manufacturing process of the crossbeam, electrolytic lead needs to be added to an electric furnace, heated and melted, and then the molten electrolytic lead is poured into the anode plate crossbeam mold. After the lead liquid cools and solidifies, the anode plate crossbeam is demolded and removed. When using this type of crossbeam mold, because the depth of the groove is fixed, the same crossbeam mold can only process anode plate crossbeams with the same thickness and groove depth. It is impossible to change the groove depth according to different needs, and it is impossible to process anode plate crossbeams of different thicknesses with the same mold. When making anode plate crossbeams of different thicknesses, molds of corresponding sizes are required, which greatly affects production efficiency. Utility Model Content

[0004] To address the aforementioned problems, this utility model provides a casting mold for an anode plate beam.

[0005] This utility model is achieved through the following technical solution:

[0006] A casting mold for an anode plate crossbeam includes a left mold fixed to the upper part of a frame and a right mold slidably connected to the upper part of the frame. The left mold and the right mold are respectively provided with casting cavities on their inner sides. The casting cavity includes an upper casting cavity and a lower casting cavity. An adjusting plate is slidably connected in the lower casting cavity. A ball screw is provided at the center of the back of the adjusting plate. The ball screw extends to the outside of the corresponding left mold and right mold and is threaded with a ball nut.

[0007] Alternatively, grooves may be provided on the two side walls inside the lower casting cavity.

[0008] Alternatively, sliders matching the grooves are provided on both sides of the adjustment plate.

[0009] Alternatively, mounting grooves are fixedly provided on the back of the left and right molds, and ball nuts are rotatably connected in the mounting grooves. A handle is provided on the end face of the ball nut to facilitate its rotation.

[0010] Alternatively, a set screw is provided on the outside of the mounting groove to prevent the ball nut from rotating.

[0011] Alternatively, the sidewall of the adjustment plate may be tightly fitted with the corresponding lower casting cavity.

[0012] Compared with existing technologies, the beneficial effects of this utility model are: by setting adjustable components that can adjust the depth in the left mold and the right mold respectively, this utility model fundamentally solves the problem of not being able to use one mold for multiple purposes, and realizes that the same mold can process anode plate beams of different thicknesses, which greatly improves production efficiency. Attached Figure Description

[0013] Figure 1 This is a schematic diagram of the structure of this utility model;

[0014] Figure 2 This is a schematic diagram of the structure of this utility model;

[0015] Figure 3 This is a magnified schematic diagram of a part of the utility model;

[0016] Figure 4 This is a schematic diagram of the anode plate;

[0017] In the diagram: 1. Frame; 2. Left mold; 3. Right mold; 4. Adjusting plate; 5. Lead screw; 6. Handwheel; 7. Slide groove; 8. Slider; 9. Ball screw; 10. Mounting groove; 11. Ball nut; 12. Handle; 13. Ejector screw; 14. Alloy plate; 15. Crossbeam. Detailed Implementation

[0018] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments:

[0019] like Figure 1 , 2 As shown in Figure 3, an anode plate crossbeam casting mold includes a left mold 2 fixed to the upper part of the frame 1 and a right mold 3 slidably connected to the upper part of the frame 1. The left mold 2 and the right mold 3 are respectively provided with casting cavities on their inner sides. The casting cavity includes an upper casting cavity 32 and a lower casting cavity 31. An adjusting plate 4 is slidably connected in the lower casting cavity 31. A ball screw 9 is provided at the center of the back of the adjusting plate 4. The ball screw 9 extends to the outside of the corresponding left mold 2 and right mold 3 and is threadedly connected with a ball nut 11.

[0020] like Figure 3 As shown, grooves 7 are provided on both sides of the inner sidewalls of the lower casting cavity 31.

[0021] like Figure 3 As shown, sliders 8 that match the slide grooves 7 are provided on both sides of the adjusting plate 4.

[0022] like Figure 1 , 2 As shown in Figures 1 and 3, mounting grooves 10 are fixedly provided on the back of the left mold 2 and the right mold 3. A ball nut 11 is rotatably connected in the mounting groove 10, and a rocker handle 12 is provided on the end face of the ball nut 11 to facilitate its rotation.

[0023] like Figure 3 As shown, a set screw 13 is provided on the outside of the mounting groove 10 to prevent the ball nut 11 from rotating.

[0024] like Figure 1 , 2 As shown, the side wall of the adjustment plate 4 is tightly fitted with the corresponding lower casting cavity 31.

[0025] The implementation principle of the anode plate crossbeam casting mold in this application embodiment is as follows:

[0026] Before manufacturing the crossbeam 15, first rotate the ball nut 11 by the crank handle 12. When the ball nut 11 is rotated, the ball screw 9 will move. During the movement of the ball screw 9, the adjusting plate 4 will move. When the adjusting plate 4 moves, the depth inside the left mold 2 and the right mold 3 will change. When the appropriate depth is reached (the depth inside the left mold 2 and the right mold 3 is adjusted according to the site conditions), stop rotating the ball nut 11. Then tighten the set screw 13 to fix the ball nut 11 to prevent the ball nut 11 from moving and causing the depth inside the left mold 2 and the right mold 3 to change.

[0027] After adjustment, turn handwheel 6 to move right mold 3 to the left and fit it tightly against left mold 2. After the fit is tight, prepare to make crossbeam 15. During the process, pour molten lead into the interior from the casting port. After cooling, demold and remove burrs and casting port. Then connect and fix it with alloy plate 14 to form anode plate.

[0028] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.

Claims

1. A casting mold for an anode plate crossbeam, comprising a left mold (2) fixed to the upper part of a frame (1) and a right mold (3) slidably connected to the upper part of the frame (1), wherein the left mold (2) and the right mold (3) are respectively provided with casting cavities on their inner sides, the casting cavities comprising an upper casting cavity (32) and a lower casting cavity (31), characterized in that: An adjusting plate (4) is slidably connected inside the lower casting cavity (31). A ball screw (9) is provided at the center of the back of the adjusting plate (4). The ball screw (9) extends to the outside of the corresponding left mold (2) and right mold (3) and is threadedly connected to a ball nut (11).

2. The anode plate crossbeam casting mold according to claim 1, characterized in that: The lower casting cavity (31) has grooves (7) on both sides of its inner sidewall.

3. The anode plate crossbeam casting mold according to claim 1, characterized in that: The adjusting plate (4) is provided with sliders (8) on both sides that match the slide groove (7).

4. The anode plate crossbeam casting mold according to claim 1, characterized in that: The mounting groove (10) is fixedly connected to the back of the left mold (2) and the right mold (3). A ball nut (11) is rotatably connected in the mounting groove (10). A rocker handle (12) is provided on the end face of the ball nut (11) to facilitate its rotation.

5. The anode plate crossbeam casting mold according to claim 4, characterized in that: The mounting groove (10) is provided with a set screw (13) to prevent the ball nut (11) from rotating.

6. The anode plate crossbeam casting mold according to claim 3, characterized in that: The side wall of the adjustment plate (4) is in close contact with the corresponding lower casting cavity (31).