Aluminum conductor production device

By designing drying components and gas conveying devices in the aluminum conductor production equipment, the problem of aluminum molten metal splashing caused by boron absorbing moisture was solved, ensuring production safety.

CN223857927UActive Publication Date: 2026-01-30BAOSHENG (NINGXIA) CABLE TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202520405463.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-10
Publication Date
2026-01-30
Estimated Expiration
2035-03-10

AI Technical Summary

Technical Problem

During the production of aluminum conductors, when boron is exposed to a humid environment and absorbs moisture, it is added to molten aluminum, causing the water to vaporize and generate a strong impact force, resulting in molten aluminum splashing and endangering the safety of workers.

Method used

An aluminum conductor production device was designed, comprising a furnace body, a furnace cover, a drying component, and a locking component. The drying component dries boron before adding it to the molten aluminum to avoid moisture residue. A gas conveying component transports hot gas from the furnace body to the drying component to prevent metal splashing.

Benefits of technology

This effectively prevents aluminum molten metal from splashing due to the introduction of boron into the water, thus improving production safety and protecting the safety of workers.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223857927U_ABST
    Figure CN223857927U_ABST
Patent Text Reader

Abstract

The utility model discloses an aluminum conductor production device, which comprises a furnace body, a furnace cover, a drying assembly and a locking assembly, the furnace cover is arranged at the top of the furnace body, the drying assembly comprises a box body arranged at the top of the furnace cover, one side of the box body is hinged with a box door, a screen frame is arranged in the box body, and the locking assembly is arranged on the box body. A gas conveying piece is arranged at the joint of the furnace cover and the box body, and the locking assembly is arranged at the joint of the box body and the box door and used for fixing the position of the box door. Through the design of the box body, the box door, the screen frame, the gas transmission piece and the locking piece, when boron needs to be added into the furnace body, a container filled with the boron is firstly placed on the screen frame in the box body, hot gas generated in the furnace body is transmitted into the box body through the gas transmission piece, and the boron is dried, so that water stain residues in the boron are avoided, and the boron is prevented from entering the furnace body. Therefore, the condition of metal splashing after boron is added into molten aluminum is avoided.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to aluminum conductor production technical field, especially relate to a kind of aluminum conductor production device. BACKGROUND

[0002] With the sustained growth of global power demand, improving power grid transmission efficiency becomes an important goal of the power industry. As one of the main materials of power transmission equipment such as wire and cable, the conductivity of aluminum directly affects the transmission efficiency. Boron, as an important additive in aluminum products, can reduce its resistivity and improve conductivity efficiency by forming specific compounds or optimizing the distribution of impurity elements in aluminum, playing a key role in improving product performance.

[0003] When adding boron elements, aluminum is first melted into aluminum water, and then boron elements are added to the aluminum water. After adding aluminum liquid, a large number of high-melting-point particles can be produced in aluminum-boron intermediate alloy, which can refine the grain structure as an external nucleus during solidification, thereby improving the strength and plasticity of aluminum alloy finished products. In some humid areas or seasons, the moisture content in the air is high. If the compound of boron elements is exposed to such an environment for a long time, it will absorb moisture. After adding the boron element containing moisture directly into the aluminum water, the water will be gasified due to high temperature. The strong impact force generated by water vaporization can cause the aluminum liquid to splash out of the furnace, thereby causing harm to the workers located beside the furnace body. Therefore, the present scheme proposes an aluminum conductor production device to solve the above problems. SUMMARY

[0004] The purpose of the present utility model is to provide an aluminum conductor production device to solve the problems raised in the background art.

[0005] To achieve the above purpose, the present utility model provides the following technical scheme: an aluminum conductor production device, comprising:

[0006] a furnace body;

[0007] a furnace cover arranged on the top of the furnace body;

[0008] a drying assembly, the drying assembly comprising a box arranged on the top of the furnace cover, a box door hinged to one side of the box, a mesh frame arranged inside the box, and a gas delivery component arranged at the connection between the furnace cover and the box;

[0009] a locking assembly arranged at the connection between the box and the box door, the locking assembly being used to fix the position of the box door.

[0010] Preferably, the gas delivery component comprises a transmission pipe connected to the top end of the furnace cover, the transmission pipe being connected to one side of the box, and an air outlet pipe connected to the top end of the box.

[0011] Preferably, the locking assembly comprises:

[0012] A fixed block fixedly connected to the front face of the box body;

[0013] A locking block fixedly connected to the front face of the box door;

[0014] A clamping block insertedly connected to the bottom of the fixed block, a clamping hole being formed in the middle of the locking block, the clamping block being insertedly connected to the inside of the clamping hole, and a moving piece being arranged on the top of the clamping block.

[0015] Preferably, the horizontal transverse section of the locking block is L-shaped, and the locking block is used for fixing the position of the box door.

[0016] Preferably, the moving piece comprises a connecting block fixedly connected to the top end of the clamping block, a connecting rod fixedly connected to the top end of the connecting block, and a pulling block fixedly connected to the top end of the connecting rod, the pulling block being arranged on the top of the fixed block.

[0017] Preferably, the moving piece further comprises a spring arranged on the top end of the connecting block, the spring being used for pushing the connecting block, and the connecting rod being insertedly connected to the middle of the spring.

[0018] Preferably, a cavity is formed in the middle of the fixed block, the spring and the connecting block are both insertedly connected to the inside of the cavity, and the connecting rod is insertedly connected to the inner wall at the top end of the cavity.

[0019] The technical effects and advantages of the present application are as follows:

[0020] The present application has the advantages that when boron needs to be added to the inside of the furnace body, the container containing boron is first placed on the net frame in the box body, and the hot gas generated in the furnace body is transported to the inside of the box body through the gas conveying piece, so that the boron is dried, the residual water stains in the boron are avoided, and the metal spatter phenomenon caused by adding the boron into the aluminum water is avoided. BRIEF DESCRIPTION OF DRAWINGS

[0021] Figure 1 It is a whole three-dimensional structure schematic view of the present application.

[0022] Figure 2 It is a top view structure schematic view of the present application.

[0023] Figure 3 It is a front view structure schematic view of the present application.

[0024] Figure 4 It is a partial side view structure schematic view of the present application.

[0025] Figure 5Part of the three-dimensional structure of the utility model shows.

[0026] In the figure: 1, furnace body; 2, furnace cover; 3, drying assembly; 301, transmission pipe; 302, net frame; 303, air outlet pipe; 304, box body; 305, box door; 4, locking assembly; 401, pull block; 402, connecting rod; 403, spring; 404, cavity; 405, fixed block; 406, connecting block; 407, locking block; 408, clamping block; 409, clamping hole. DETAILED DESCRIPTION

[0027] The technical scheme in the embodiments of the utility model will be described clearly and completely below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.

[0028] The utility model provides a kind of Figures 1-5 As shown in:

[0029] Embodiment one:

[0030] An aluminum conductor production device, comprising:

[0031] Furnace body 1;

[0032] Furnace cover 2 is arranged at the top of furnace body 1;

[0033] Drying assembly 3, drying assembly 3 includes the box body 304 arranged at the top of furnace cover 2, the box door 305 is hinged on one side of box body 304, the inside of box body 304 is provided with net frame 302, and the connecting place of furnace cover 2 and box body 304 is provided with gas conveying element;

[0034] Locking assembly 4, locking assembly 4 is arranged at the connecting place of box body 304 and box door 305, and locking assembly 4 is used to fix the position of box door 305.

[0035] It should be noted that the furnace body 1 is set to the existing induction furnace, and the work is based on the principle of electromagnetic induction. When the alternating current passes through the inductor, the alternating magnetic field is generated, so that the metal in the furnace generates induced current, thereby generating heat to melt the metal; the furnace cover 2 is located at the top of the furnace body 1, which is used to block the metal splashing, thereby protecting the user, and at the same time, the furnace cover 2 can reduce the heat loss in the furnace, which helps to maintain the stability of the temperature in the furnace; the box body 304 and the box door 305 are connected through the hinge, so that the box door 305 can be rotated on one side of the box body 304, and the connecting part of the two is provided with a sealing ring, so as to avoid the overflow of gas from the connecting part of the box door 305 and the box body 304; when it is necessary to add boron to the inside of the furnace body 1, first, the container containing boron is placed on the net frame 302 in the box body 304, and the hot gas generated in the furnace body 1 is transported to the inside of the box body 304 through the gas conveying part, and the boron is dried, so as to avoid the residual water stains in the boron, thereby avoiding the metal splashing after the boron is added to the aluminum water.

[0036] Specifically, the gas conveying part includes a transmission pipe 301 connected to the top end of the furnace cover 2, and the transmission pipe 301 is connected to one side of the box body 304, and the top end of the box body 304 is connected with an air outlet pipe 303.

[0037] It should be noted that the transmission pipe 301 is used to transport the hot gas generated in the furnace body 1 to the inside of the box body 304, and dry the boron in the box body 304, and finally the gas is discharged from the box body 304 through the air outlet pipe 303.

[0038] Embodiment two:

[0039] The locking assembly 4 is applied to the production device in embodiment one;

[0040] Specifically, the locking assembly 4 includes:

[0041] The fixed block 405 is fixedly connected to the front of the box body 304;

[0042] The locking block 407 is fixedly connected to the front of the box door 305;

[0043] The clamping block 408 is connected to the bottom of the fixed block 405, the middle part of the locking block 407 is provided with a clamping hole 409, the clamping block 408 is connected to the inside of the clamping hole 409, and the top of the clamping block 408 is provided with a moving part.

[0044] It should be noted that the fixed block 405 is fixedly connected with the box body 304, and the locking block 407 is fixedly connected with the box door 305. When it is necessary to fix the box body 304 and the box door 305, the box door 305 is first rotated, the locking block 407 is rotated to the bottom of the fixed block 405, then the clamping block 408 is inserted into the clamping hole 409 in the middle of the locking block 407 by the moving piece, and the locking block 407 cannot move by the blocking of the clamping block 408, so that the positions of the box body 304 and the box door 305 are fixed.

[0045] Specifically, the horizontal transverse section of the locking block 407 is L-shaped, and the locking block 407 is used for fixing the position of the box door 305.

[0046] It should be noted that the L-shaped locking block 407 is arranged, so that one side of the locking block 407 is away from the box body 304, avoiding the situation that the locking block 407 is blocked by the box body 304 when the box door 305 is rotated, causing the box door 305 to be unable to be rotated.

[0047] Specifically, the moving piece includes a connecting block 406 fixedly connected to the top end of the clamping block 408, the connecting block 406 is fixedly connected with a connecting rod 402 at the top end, the connecting rod 402 is fixedly connected with a pulling block 401 at the top end, the pulling block 401 is arranged at the top of the fixed block 405, and the moving piece further includes a spring 403 arranged at the top end of the connecting block 406. The spring 403 is used for pushing the connecting block 406, the connecting rod 402 is inserted and connected in the middle of the spring 403, the middle of the fixed block 405 is provided with a cavity 404, and the spring 403 and the connecting block 406 are inserted and connected in the cavity 404. The connecting rod 402 is inserted and connected to the inner wall at the top end of the cavity 404.

[0048] It should be noted that the connecting block 406 is matched with the cavity 404, so that the connecting block 406 can slide in the cavity 404, the connecting rod 402 is used for connecting the connecting block 406 in the cavity 404 and the pulling block 401 outside the cavity 404, so that the connecting block 406 in the cavity 404 is moved by the pulling block 401, and the spring 403 is used for pushing the connecting block 406, so that the connecting block 406 cannot continuously move upward when it is not pulled.

[0049] Finally, it should be noted that: the above only for the preferred embodiments of the present application, and is not intended to limit the present application, although the foregoing embodiments of the present application has been described in detail, for the skilled in the art, it still can be modified, or for part of the technical features of the equivalent replacement, the spirit and principles of the present application, made any modification, equivalent replacement, improvement, etc., should be included within the scope of the present application.

Claims

1. An aluminum conductor production apparatus characterized by comprising: Include: Furnace body (1); Furnace cover (2), the furnace cover (2) is arranged at the top of furnace body (1); Drying assembly (3), the drying assembly (3) includes box (304) arranged at the top of furnace cover (2), one side of the box (304) is hinged with box door (305), the inside of the box (304) is provided with screen frame (302), the connecting place of the furnace cover (2) and the box (304) is provided with gas conveying part; Locking assembly (4), the locking assembly (4) is arranged at the connecting place of the box (304) and the box door (305), and the locking assembly (4) is used to fix the position of the box door (305).

2. The aluminum conductor production apparatus according to claim 1, characterized by The gas conveying part includes transmission pipe (301) connected in the top end of furnace cover (2), the transmission pipe (301) is connected in one side of the box (304), and the top end of the box (304) is connected with gas outlet pipe (303).

3. The aluminum conductor production apparatus of claim 1, wherein The locking assembly (4) includes: Fixed block (405), the fixed block (405) is fixedly connected to the front of the box (304); Locking block (407), the locking block (407) is fixedly connected to the front of the box door (305); Clamping block (408), the clamping block (408) is connected in the bottom of the fixed block (405), the middle part of the locking block (407) is provided with clamping hole (409), the clamping block (408) is connected in the inside of the clamping hole (409), and the top of the clamping block (408) is provided with moving part.

4. The aluminum conductor production apparatus according to claim 3, characterized by The horizontal transverse section of the locking block (407) is L-shaped, and the locking block (407) is used to fix the position of the box door (305).

5. The aluminum conductor production apparatus according to claim 3, wherein The moving part includes connecting block (406) fixedly connected to the top end of clamping block (408), the top end of the connecting block (406) is fixedly connected with connecting rod (402), the top end of the connecting rod (402) is fixedly connected with pull block (401), and the pull block (401) is arranged at the top of the fixed block (405).

6. An aluminum conductor production apparatus according to claim 5, wherein The moving part further includes spring (403) arranged at the top end of the connecting block (406), the spring (403) is used to push the connecting block (406), and the connecting rod (402) is connected in the middle part of the spring (403).

7. An aluminum conductor production apparatus according to claim 6, wherein The middle part of the fixed block (405) is provided with cavity (404), the spring (403) and the connecting block (406) are connected in the inside of the cavity (404), and the connecting rod (402) is connected in the inner wall of the top end of the cavity (404).