Aluminum particle smelting device

Through the design of high-temperature-resistant sealing wall and sealing ring, the cooperation of the extruded elastic plate is used to solve the problem of degradation of sealing effect caused by aging of seals, ensuring the seal stability and quality of the aluminum smelting device.

CN223271643UActive Publication Date: 2025-08-26XIXIA COUNTY MEILIN IND CO LTD
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Patent Information

Application Number
CN202422573440.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-24
Publication Date
2025-08-26
Estimated Expiration
2034-10-24

AI Technical Summary

Technical Problem

In existing aluminum smelting devices, the aging of the sealing parts leads to a decrease in the sealing effect, affecting the smelting quality.

Method used

The design of a high-temperature resistant sealing wall and a high-temperature resistant sealing ring is adopted. By cooperating the first extruded elastic plate and the second extruded elastic plate, the tight fit in the sealed state is maintained, and the tight fit is released when necessary, so as to facilitate the opening of the device.

Benefits of technology

Improve the stability of the sealing effect, prevent the sealing decline caused by aging of the seal, and ensure the smelting quality.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223271643U_ABST
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Abstract

The utility model belongs to the technical field of aluminum particle smelting, and particularly relates to an aluminum particle smelting device which comprises a smelting crucible furnace, a pot body sealing cover is hinged to the top of the smelting crucible furnace, a high-temperature-resistant sealing ring is wrapped outside the pot body sealing cover, and a plurality of high-temperature-resistant connecting plates are fixedly connected to the outer side of the high-temperature-resistant sealing ring. A high-temperature-resistant sealing wall is fixedly connected between every two adjacent high-temperature-resistant connecting plates, and a first extrusion elastic plate is arranged on the inner side of each high-temperature-resistant sealing wall. In the using process, one side of the first extrusion elastic plate is extruded through the second extrusion elastic plate, so that the high-temperature-resistant sealing wall and the high-temperature-resistant sealing ring can be always kept in a good tight fit state with the outer portion of the pot body sealing cover, and in addition, in the using process, the high-temperature-resistant sealing wall and the high-temperature-resistant sealing ring are not prone to falling off. By means of the elastic acting force of the second extrusion elastic plate and the first extrusion elastic plate, the elasticity consumed by the high-temperature-resistant sealing wall and the high-temperature-resistant sealing ring in the long-term use process is insufficient.
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Description

Technical Field

[0001] The utility model belongs to the technical field of aluminum granule smelting, and particularly relates to an aluminum granule smelting device. Background Art

[0002] Crucible furnace is a common tool for aluminum pellet smelting. Currently, sealing rings are often used around the furnace door for sealing. During long-term use, the furnace door seals may age, resulting in a decrease in sealing effect and unstable internal pressure, which in turn reduces the quality of aluminum pellet smelting. Utility Model Content

[0003] The utility model provides an aluminum granule smelting device, which has the characteristics that the high-temperature resistant sealing wall and the high-temperature resistant sealing ring can always maintain a good and tight fit with the outside of the pot body sealing cover, and when the sealing state at both ends of the sealing seat is released, the high-temperature resistant sealing wall and the high-temperature resistant sealing ring can release the tight fit state, which can facilitate the staff to open the entire smelting device.

[0004] The utility model provides the following technical solutions: an aluminum granule smelting device, comprising a smelting crucible furnace, the top of the smelting crucible furnace is hinged with a pot body sealing cover, the outside of the pot body sealing cover is wrapped with a high-temperature resistant sealing ring, and the outside of the high-temperature resistant sealing ring is fixedly connected with a plurality of high-temperature resistant connecting plates, and a high-temperature resistant sealing wall is fixedly connected between two adjacent high-temperature resistant connecting plates, the inner side of the high-temperature resistant sealing wall is provided with a first extruded elastic plate, and the two ends of the first extruded elastic plate are fixedly connected to the outer side of the high-temperature resistant connecting plate, a second extruded elastic plate is provided on one side of the first extruded elastic plate, and a connecting arc plate is provided on the outer side of the second extruded elastic plate, and the two ends of the second extruded elastic plate pass through to the outside of the connecting arc plate, and the outer side of the connecting arc plate is provided with sealing seats hinged to each other.

[0005] Wherein, a plurality of groups of limiting grooves are symmetrically opened on the inner side of the sealing seat, and the end portion of the second extrusion elastic plate is located inside the limiting groove.

[0006] Wherein, a connecting groove is formed at one end of one of the sealing seats.

[0007] Wherein, one end of the other sealing seat is fixedly connected to a fixing plate, and the fixing plate matches the connecting groove.

[0008] Wherein, the connection groove and one side of the fixing plate are both fixedly connected with an adsorption plate.

[0009] Wherein, a mounting groove is formed between two adjacent high-temperature resistant connecting plates, and the first extruded elastic plate and the second extruded elastic plate are both located inside the mounting groove.

[0010] Wherein, a clearance groove is provided inside the connecting arc plate for cooperating with the end portion of the second extrusion elastic plate to penetrate.

[0011] The beneficial effect of the present invention is that: under the mutual cooperation of the first extruded elastic plate and the second extruded elastic plate, during use, the second extruded elastic plate can squeeze one side of the first extruded elastic plate, so that the high-temperature resistant sealing wall and the high-temperature resistant sealing ring can always maintain a good and tight fit with the outside of the pot body sealing cover, and at the same time, when the sealing state at both ends of the sealing seat is released, the high-temperature resistant sealing wall and the high-temperature resistant sealing ring can release the tight fit state, which can facilitate the staff to open the entire smelting device. In addition, under the mutual cooperation of the second extruded elastic plate and the first extruded elastic plate, during use, with the help of the elastic force of the second extruded elastic plate and the first extruded elastic plate, the elasticity of the high-temperature resistant sealing wall and the high-temperature resistant sealing ring consumed during long-term use can be compensated, thereby reducing the problem of reduced sealing effect of the high-temperature resistant sealing wall and the high-temperature resistant sealing ring due to aging during long-term use.

[0012] The parts not involved in the device are the same as those in the prior art or can be implemented by using the prior art. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 It is a main schematic diagram of the utility model;

[0014] Figure 2 This is a schematic diagram of the top view of the structure among the high-temperature resistant sealing ring, the high-temperature resistant sealing wall, the high-temperature resistant connecting plate, the first extruded elastic plate, the second extruded elastic plate, the connecting arc plate, and the sealing seat in the utility model;

[0015] Figure 3 For this utility model Figure 2 A magnified diagram of the details of the middle part A;

[0016] Figure 4 For this utility model Figure 2 A magnified diagram of the details of part B in the middle.

[0017] In the figure: 1. Melting crucible furnace; 11. Pot body sealing cover; 2. High temperature resistant sealing ring; 21. High temperature resistant sealing wall; 22. High temperature resistant connecting plate; 221. Mounting groove; 23. First extrusion elastic plate; 24. Second extrusion elastic plate; 25. Connecting arc plate; 3. Sealing seat; 31. Give way groove; 32. Fixing plate; 321. Adsorption plate; 33. Connecting groove. DETAILED DESCRIPTION

[0018] See also Figures 1-4The utility model provides the following technical solutions: an aluminum granule smelting device comprises a smelting crucible furnace 1, a pot body sealing cover 11 is hingedly connected to the top of the smelting crucible furnace 1, the outside of the pot body sealing cover 11 is wrapped with a high-temperature resistant sealing ring 2, and the outside of the high-temperature resistant sealing ring 2 is fixedly connected with a plurality of high-temperature resistant connecting plates 22, and a high-temperature resistant sealing wall 21 is fixedly connected between two adjacent high-temperature resistant connecting plates 22, a first extruded elastic plate 23 is provided on the inner side of the high-temperature resistant sealing wall 21, and the two ends of the first extruded elastic plate 23 are fixedly connected to the outer side of the high-temperature resistant connecting plate 22, a second extruded elastic plate 24 is provided on one side of the first extruded elastic plate 23, and a connecting arc plate 25 is provided on the outer side of the second extruded elastic plate 24, and the two ends of the second extruded elastic plate 24 pass through to the outside of the connecting arc plate 25, and the outer side of the connecting arc plate 25 is provided with a sealing seat 3 hinged to each other.

[0019] In this embodiment, the melting crucible furnace 1 is the body of the entire melting device, the melting crucible furnace 1 is the sealing cover of the entire device, the high temperature resistant sealing ring 2 is used to provide a seal between the pot body sealing cover 11 and the top of the melting crucible furnace 1, the high temperature resistant sealing wall 21 is used to further seal the connection surface between the pot body sealing cover 11 and the top of the melting crucible furnace 1, and several high temperature resistant connecting plates 22 are used to provide a carrier for connecting the second extruded elastic plate 24 and the first extruded elastic plate 23. The first extruded elastic plate 23 and the second extruded elastic plate 24 are used to seal the outside of the high temperature resistant sealing wall 21. Provide extrusion force, so that the high temperature resistant sealing wall 21 and the high temperature resistant sealing ring 2 can always maintain a good seal on the outside of the pot body sealing cover 11, the connecting arc plate 25 is used to provide a carrier for connecting the end of the second extrusion elastic plate 24, and at the same time is used to seal one side of the high temperature resistant connecting plate 22, so that the first extrusion elastic plate 23 can be placed in a good sealing environment. At this time, the connecting arc plate 25, the second extrusion elastic plate 24, the first extrusion elastic plate 23, the high temperature resistant connecting plate 22, the high temperature resistant sealing wall 21, and the high temperature resistant sealing ring 2 form a sealing assembly in the entire smelting device. The sealing seat 3 on the outside is used to protect the outside of the entire sealing assembly, and at the same time limit and tighten the inner sealing assembly. When the smelting crucible furnace 1 and the pot body sealing cover 11 are closed, the high-temperature resistant sealing ring 2 is sleeved on the outside of the pot body sealing cover 11, and then the sealing seat 3 is installed on the outside of the connecting arc plate 25. When the sealing seat 3 is installed on the outside of the connecting arc plate 25, the end of the second extrusion elastic plate 24 is placed inside the limiting groove 31. At this time, during the closing process of the two ends of the sealing seat 3, the middle area of ​​the second extrusion elastic plate 24 can be The domain is bent in the direction close to the first extrusion elastic plate 23, and when the second extrusion elastic plate 24 is in the process of bending, the second extrusion elastic plate 24 can squeeze the first extrusion elastic plate 23, and in the process of one side of the first extrusion elastic plate 23 being squeezed, the compressive force can be transmitted to one side of the high-temperature resistant sealing wall 21 and the high-temperature resistant sealing ring 2, so that the high-temperature resistant sealing wall 21 and the high-temperature resistant sealing ring 2 are in a tightly fitted state with the outside of the pot body sealing cover 11 during the process of sealing the connection between the pot body sealing cover 11 and the top of the melting crucible furnace 1.

[0020] Several groups of limiting grooves 31 are symmetrically opened on the inner side of the sealing seat 3, and the end of the second extrusion elastic plate 24 is located inside the limiting groove 31; wherein the limiting groove 31 is used to provide a limiting space and a penetrating channel for the end of the second extrusion elastic plate 24.

[0021] One end of one of the sealing seats 3 is provided with a connecting groove 33, and one end of the other sealing seat 3 is fixedly connected to a fixing plate 32, and the fixing plate 32 matches the connecting groove 33, and one side of the connecting groove 33 and the fixing plate 32 are fixedly connected to an adsorption plate 321; the connecting groove 33 is used to provide space for the fixing plate 32, wherein the fixing plate 32, the fixing plate 32 is used to fix the two ends of the sealing seat 3, and the adsorption plate 321 is used to assist in the alignment of the two ends of the sealing seat 3.

[0022] An installation groove 221 is formed between two adjacent high-temperature resistant connecting plates 22, and the first extruded elastic plate 23 and the second extruded elastic plate 24 are both located inside the installation groove 221. A clearance groove is opened inside the connecting arc plate 25 for passing through the end of the second extruded elastic plate 24; the installation groove 221 is used to provide a connection carrier for the first extruded elastic plate 23 and the second extruded elastic plate 24.

[0023] The working principle and use process of the present invention are as follows: after the smelting crucible furnace 1 and the pot body sealing cover 11 are closed, the high temperature resistant sealing ring 2 is sleeved on the outside of the pot body sealing cover 11, and then the sealing seat 3 is installed on the outside of the connecting arc plate 25. When the sealing seat 3 is installed on the outside of the connecting arc plate 25, the end of the second extruded elastic plate 24 is placed inside the limiting groove 31. At this time, during the closing process of the two ends of the sealing seat 3, the middle area of ​​the second extruded elastic plate 24 can be bent in the direction close to the first extruded elastic plate 23, and when the second extruded elastic plate 24 is bent, the second extruded elastic plate 24 is bent. During the folding process, the second extrusion elastic plate 24 can squeeze the first extrusion elastic plate 23, and in the process of one side of the first extrusion elastic plate 23 being squeezed, the compressive force can be transmitted to the high-temperature resistant sealing wall 21 and one side of the high-temperature resistant sealing ring 2, so that the high-temperature resistant sealing wall 21 and the high-temperature resistant sealing ring 2 are in a tightly fitted state with the outside of the pot body sealing cover 11 during the process of sealing the top connection between the pot body sealing cover 11 and the melting crucible furnace 1. After completing the installation of the sealing seat 3, the end of the sealing seat 3 can be fixed by the fixing plate 32.

Claims

1. An aluminum granule smelting device, comprising a smelting crucible furnace (1), characterized in that: The top of the melting crucible furnace (1) is hingedly connected to a pot body sealing cover (11), the outside of the pot body sealing cover (11) is wrapped with a high-temperature resistant sealing ring (2), and the outside of the high-temperature resistant sealing ring (2) is fixedly connected with a plurality of high-temperature resistant connecting plates (22), and a high-temperature resistant sealing wall (21) is fixedly connected between two adjacent high-temperature resistant connecting plates (22), the inner side of the high-temperature resistant sealing wall (21) is provided with a first extruded elastic plate (23), and the two ends of the first extruded elastic plate (23) are fixedly connected to the outer side of the high-temperature resistant connecting plate (22), a second extruded elastic plate (24) is provided on one side of the first extruded elastic plate (23), and a connecting arc plate (25) is provided on the outer side of the second extruded elastic plate (24), and the two ends of the second extruded elastic plate (24) pass through to the outside of the connecting arc plate (25), and the outer side of the connecting arc plate (25) is provided with a sealing seat (3) that is hinged to each other.

2. The aluminum pellet smelting device according to claim 1, characterized in that: A plurality of groups of limiting grooves (31) are symmetrically provided on the inner side of the sealing seat (3), and the end of the second extrusion elastic plate (24) is located inside the limiting groove (31).

3. The aluminum pellet smelting device according to claim 1, characterized in that: One end of one of the sealing seats (3) is provided with a connecting groove (33).

4. The aluminum pellet smelting device according to claim 3, characterized in that: One end of the other sealing seat (3) is fixedly connected to a fixing plate (32), and the fixing plate (32) matches the connecting groove (33).

5. The aluminum pellet smelting device according to claim 4, characterized in that: The connection groove (33) and one side of the fixing plate (32) are both fixedly connected with an adsorption plate (321).

6. The aluminum pellet smelting device according to claim 1, characterized in that: A mounting groove (221) is formed between two adjacent high-temperature resistant connecting plates (22), and the first extruded elastic plate (23) and the second extruded elastic plate (24) are both located inside the mounting groove (221).

7. The aluminum pellet smelting device according to claim 1, characterized in that: The interior of the connecting arc plate (25) is provided with a clearance groove for cooperating with the end of the second extrusion elastic plate (24) to penetrate.