Anode carbon block roasting device capable of realizing multi-surface uniform roasting

By designing a roasting device with sealing components, anti-slip strips and uniform heating pipes, the problem of uneven roasting of anode charcoal blocks is solved, and efficient and stable roasting effect and quality are achieved.

CN223165923UActive Publication Date: 2025-07-29CHENGDU XIMATONG ENERGY SAVING TECH CO LTD
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Patent Information

Application Number
CN202421909992.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-08
Publication Date
2025-07-29
Estimated Expiration
2034-08-08

AI Technical Summary

Technical Problem

The existing anode charcoal block roasting device cannot achieve uniform roasting on multiple sides, resulting in uneven roasting, affecting product quality and reducing efficiency.

Method used

A roasting device including a load bearing mechanism, a heating mechanism and a moving mechanism is designed. It adopts sealing components and placement components, and sealing is achieved through magnet bars. Combined with anti-slip strips and opening designs, it is equipped with a uniformly distributed heating tube to ensure uniform heat distribution and stable roasting environment.

Benefits of technology

The charcoal block is uniformly calcined on multiple sides, which improves energy utilization efficiency, prevents pollution, ensures the quality and efficiency of calcination, and provides convenient operability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an anode carbon block roasting device capable of uniformly roasting multiple surfaces, which relates to the technical field of anode carbon block production and comprises a bearing mechanism, a heating mechanism is arranged in the bearing mechanism, and a moving mechanism is arranged at the bottom of the bearing mechanism. The bearing mechanism comprises a sealing assembly and a placing assembly, and the placing assembly is arranged in the sealing assembly. Carbon blocks can be placed in the roasting box to be roasted, the box cover and the roasting box are ingeniously matched through the first magnet strip and the second magnet strip, the sealing effect can be effectively achieved, it can be guaranteed that heat cannot be easily dissipated in the roasting process through the sealing mode, the energy utilization efficiency is improved, and due to the tight sealing design, the service life of the roasting box is prolonged. And the roasting environment, such as parameters of temperature, pressure and the like, can be better controlled, so that the carbon block can be roasted under more stable and suitable conditions, the roasting effect and efficiency are further improved, and convenience is brought to a user.
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Description

Technical Field

[0001] The utility model relates to the technical field of anode carbon block production, in particular to a baking device for anode carbon blocks capable of uniformly baking on multiple sides. Background Art

[0002] Pre-baked anodes are mainly made of petroleum coke and pitch coke as aggregates and coal tar pitch as a binder, and are mainly used as anode materials for pre-baked aluminum electrolysis cells.

[0003] At present, the main preparation method of pre-baked anode carbon blocks is through baking. Specifically, square pre-baked anode carbon blocks need to be placed inside a heating box and then baked to obtain the finished product. However, there is usually a problem with existing heating boxes, that is, they cannot uniformly bake each surface of the pre-baked anode carbon blocks at the same time. This leads to uneven baking of the pre-baked anode carbon blocks, which not only affects the product quality but also reduces the baking efficiency. Therefore, there is an urgent need for a device specifically used for baking pre-baked anode carbon blocks to solve the current problems. Summary of the Utility Model

[0004] The purpose of the utility model is to provide a baking device for anode carbon blocks capable of uniformly baking on multiple sides to solve at least any one of the problems mentioned in the above background art.

[0005] To achieve the above purpose, the utility model provides the following technical solution: A baking device for anode carbon blocks capable of uniformly baking on multiple sides, including a carrying mechanism, a heating mechanism is arranged inside the carrying mechanism, and a moving mechanism is arranged at the bottom of the carrying mechanism;

[0006] The carrying mechanism includes a sealing component and a placing component, and the placing component is arranged inside the sealing component;

[0007] The sealing component includes a baking box, a sealing frame, a box cover, a handle, a first magnetic strip, a sealing groove and a second magnetic strip. The sealing groove is opened at the top of the sealing frame, the second magnetic strip is arranged inside the sealing groove and fixedly connected with the sealing frame, the first magnetic strip is fixedly connected to the bottom of the box cover, the box cover is inserted into the sealing groove, the first magnetic strip and the second magnetic strip are adsorbed to each other, the handle is fixedly connected to the top of the box cover, and the inner side of the sealing frame is detachably connected to the outer wall top of the baking box.

[0008] Preferably, the placement component includes a bearing box, a plurality of anti-slip strips, a plurality of anti-slip grooves and a plurality of openings. The plurality of anti-slip grooves are respectively formed at the tops of the plurality of anti-slip strips, and the plurality of anti-slip grooves are evenly distributed at the tops of the plurality of anti-slip strips. The plurality of openings are all formed in the bearing box, and the plurality of openings are evenly distributed on the bearing box. The plurality of anti-slip strips are evenly distributed in the bearing box, and the plurality of anti-slip strips are fixedly connected to the bearing box. The positions of the plurality of anti-slip strips are staggered from the plurality of openings.

[0009] Preferably, the bearing box is detachably connected to the bottom of the inner wall of the roasting box.

[0010] Preferably, the heating mechanism includes a control panel, a controller, two placement plates, a plurality of first heating tubes, a plurality of placement grooves and a plurality of second heating tubes. The plurality of placement grooves are respectively formed in the two placement plates, and the plurality of placement grooves are evenly distributed in the two placement plates. The plurality of first heating tubes are respectively arranged in the plurality of placement grooves. The plurality of first heating tubes and the plurality of second heating tubes are both electrically connected to the controller, and the controller is electrically connected to the control panel.

[0011] Preferably, the two placement plates are respectively detachably connected to the left and right sides of the inner wall of the roasting box near the top. The plurality of second heating tubes are all arranged in the roasting box, and the plurality of second heating tubes are evenly distributed in the roasting box and are detachably connected to the roasting box. The bearing box is arranged on the tops of the plurality of second heating tubes. The control panel and the controller are both detachably connected to the front end of the roasting box, and the controller is arranged below the control panel.

[0012] Preferably, the moving mechanism includes a bearing plate, a pulling opening, four shock absorbers and four universal wheels. The pulling opening is formed at the front end of the top of the bearing plate. The four shock absorbers are evenly distributed at the top of the bearing plate, and the four shock absorbers are all detachably connected to the bearing plate. The four universal wheels are evenly distributed at the bottom of the bearing plate, and the four universal wheels are all detachably connected to the bearing plate.

[0013] Preferably, the roasting box is detachably connected to the tops of the four shock absorbers.

[0014] The beneficial effects of the present utility model are as follows:

[0015] 1. In this utility model, the carbon blocks will be placed in a roasting box for roasting treatment. Through the ingenious cooperation of the first magnetic strip and the second magnetic strip between the box cover and the roasting box, an effective sealing effect can be achieved. After the roasting box is successfully sealed, corresponding operations can be carried out on the carbon blocks. This sealing method can not only ensure that heat will not be easily dissipated during the roasting process, improving the energy utilization efficiency, but also prevent external impurities from entering the roasting box, avoiding contamination of the carbon blocks, thus ensuring the quality and performance of the carbon blocks. In addition, through this tight sealing design, the roasting environment, such as parameters like temperature and pressure, can be better controlled, enabling the carbon blocks to be roasted under more stable and suitable conditions, further enhancing the roasting effect and efficiency, bringing convenience to users.

[0016] 2. In this utility model, the carbon blocks are placed in a bearing box for roasting. The anti-slip strips cooperate with the anti-slip grooves to contact and support the carbon blocks, which can improve the stability of the carbon block placement. By opening holes, the bearing box can carry the carbon blocks without affecting their roasting.

[0017] 3. In this utility model, the bearing plate bears the components on it. The user can conveniently move this device through the pull opening in cooperation with the universal wheels. During the moving process, the shock absorber can play a shock-absorbing effect, enabling this device to move stably, bringing convenience to users. Description of the Drawings

[0018] Figure 1 is a three-dimensional structural schematic diagram of this utility model;

[0019] Figure 2 is a partial structural schematic diagram of the second heating tube of this utility model;

[0020] Figure 3 is a partial structural schematic diagram of the first heating tube of this utility model;

[0021] Figure 4 is a partial structural schematic diagram of the bearing box of this utility model;

[0022] Figure 5 is a partial structural schematic diagram of the second magnetic strip of this utility model;

[0023] Figure 6 is a partial structural schematic diagram of the shock absorber of this utility model.

[0024] In the figure: 1, roasting box; 2, sealing frame; 3, box cover; 4, handle; 5, shock absorber; 6, bearing plate; 7, draw hole; 8, first heating pipe; 9, placing plate; 10, control panel; 11, placing groove; 12, second heating pipe; 13, first magnetic strip; 14, sealing groove; 15, universal wheel; 16, anti-slip strip; 17, anti-slip groove; 18, bearing box; 19, opening; 20, controller; 21, second magnetic strip. Detailed implementation manner

[0025] The following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0026] The present invention provides an anode carbon block roasting device capable of multi-faceted and uniform roasting as shown in Figure 1-6 The device includes a bearing mechanism, a heating mechanism is arranged in the bearing mechanism, and a moving mechanism is arranged at the bottom of the bearing mechanism; the bearing mechanism includes a sealing component and a placing component, and the placing component is arranged in the sealing component; the sealing component includes a roasting box 1, a sealing frame 2, a box cover 3, a handle 4, a first magnetic strip 13, a sealing groove 14 and a second magnetic strip 21. The sealing groove 14 is opened at the top of the sealing frame 2. The second magnetic strip 21 is arranged in the sealing groove 14 and fixedly connected to the sealing frame 2. The first magnetic strip 13 is fixedly connected to the bottom of the box cover 3. The box cover 3 is inserted into the sealing groove 14. The first magnetic strip 13 and the second magnetic strip 21 are adsorbed to each other. The handle 4 is fixedly connected to the top of the box cover 3. The inner side of the sealing frame 2 is detachably connected to the outer wall top of the roasting box 1. The carbon block will be placed in the roasting box 1 for roasting treatment. Through the ingenious cooperation of the first magnetic strip 13 and the second magnetic strip 21 between the box cover 3 and the roasting box 1, the sealing effect can be effectively achieved. After the roasting box 1 is successfully sealed, corresponding operations can be carried out on the carbon block. This sealing method can not only ensure that heat will not be easily dissipated during the roasting process, improve the energy utilization efficiency, but also prevent external impurities from entering the roasting box 1 and avoid contaminating the carbon block, thus ensuring the quality and performance of the carbon block. In addition, through this tight sealing design, the roasting environment, such as parameters such as temperature and pressure, can be better controlled, so that the carbon block can be roasted under more stable and suitable conditions, further improving the roasting effect and efficiency. The user can conveniently take and place the box cover 3 by using the handle 4, which brings convenience to the user.

[0027] The placement component includes a carrier box 18, a plurality of anti-slip strips 16, a plurality of anti-slip grooves 17, and a plurality of openings 19. The plurality of anti-slip grooves 17 are respectively formed at the tops of the plurality of anti-slip strips 16, and the plurality of anti-slip grooves 17 are evenly distributed at the tops of the plurality of anti-slip strips 16. The plurality of openings 19 are all formed in the carrier box 18, and the plurality of openings 19 are evenly distributed on the carrier box 18. The plurality of anti-slip strips 16 are evenly distributed in the carrier box 18, and the plurality of anti-slip strips 16 are all fixedly connected to the carrier box 18. The positions of the plurality of anti-slip strips 16 are staggered from those of the plurality of openings 19. The carrier box 18 is detachably connected to the bottom of the inner wall of the roasting box 1. The carbon block will be placed in the carrier box 18 for roasting operations. During this process, the anti-slip strips 16 cooperate with the anti-slip grooves 17 and come into contact with the carbon block, thereby being able to provide a good supporting effect on the carbon block. This design has many advantages. First of all, it can significantly improve the stability of the carbon block placement, ensuring that the carbon block will not easily shift or shake during the roasting process, which is crucial for ensuring the roasting quality and effect. Secondly, through the formed openings 19, while the carrier box 18 carries the carbon block, it will not have any negative impact on its roasting process. Specifically, the openings 19 can allow heat and other substances required for roasting to be evenly distributed to all parts of the carbon block, thereby achieving a more uniform and efficient roasting effect. In addition, this design can also reduce the heat absorption and blockage of the carrier box 18, further improving the energy utilization efficiency and reducing the energy consumption. In short, this anti-slip and opening design can not only improve the stability of the carbon block placement, but also optimize the roasting process, providing a strong guarantee for the high-quality roasting of the carbon block.

[0028] The heating mechanism includes a control panel 10, a controller 20, two placement plates 9, multiple first heating tubes 8, multiple placement grooves 11, and multiple second heating tubes 12. The multiple placement grooves 11 are respectively formed in the two placement plates 9, and the multiple placement grooves 11 are evenly distributed on the two placement plates 9. The multiple first heating tubes 8 are respectively arranged in the multiple placement grooves 11. The multiple first heating tubes 8 and the multiple second heating tubes 12 are both electrically connected to the controller 20. The controller 20 is electrically connected to the control panel 10. The two placement plates 9 are respectively detachably connected to the left and right sides near the top inside the roasting box 1. The multiple second heating tubes 12 are all arranged inside the roasting box 1, and the multiple second heating tubes 12 are evenly distributed inside the roasting box 1 and are detachably connected to the roasting box 1. The carrier box 18 is arranged on top of the multiple second heating tubes 12. The control panel 10 and the controller 20 are both detachably connected to the front end of the roasting box 1. The controller 20 is arranged below the control panel 10. By effectively connecting the controller 20 with the first heating tubes 8 and the second heating tubes 12, in this way, the user can conveniently and accurately control the first heating tubes 8 and the second heating tubes 12 by means of the control panel 10, which is a well-known conventional operation method in the field. The first heating tubes 8 and the second heating tubes 12 are evenly distributed throughout the roasting box 1, and such a layout brings many significant advantages. On the one hand, this fully covered design enables the inside of the roasting box 1 to quickly and accurately generate the corresponding amount of heat according to the specific needs of the user, so that it can flexibly adapt to different roasting tasks and process requirements, ensuring a high degree of controllability and adaptability of the roasting process. On the other hand, this evenly distributed heating tubes can ensure the uniform transfer and diffusion of heat inside the roasting box 1, avoiding the occurrence of local overheating or uneven heat distribution, which is of extremely important significance for ensuring uniform heating of the carbon blocks and improving the roasting quality and effect. At the same time, this precise heat generation and control mechanism can also effectively improve the energy utilization efficiency, reduce unnecessary energy waste, and achieve the goal of energy conservation and environmental protection. In short, this heat control system constructed by the controller, heating tubes, and control panel provides a reliable guarantee for the efficient, accurate, and controllable heat generation inside the roasting box 1, and plays a key role in improving the quality and efficiency of the roasting work.

[0029] The moving mechanism includes a carrier plate 6, a pulling opening 7, four shock absorbers 5, and four universal wheels 15. The pulling opening 7 is formed at the front end near the top of the carrier plate 6. The four shock absorbers 5 are evenly distributed on the top of the carrier plate 6, and the four shock absorbers 5 are all detachably connected to the carrier plate 6. The four universal wheels 15 are evenly distributed at the bottom of the carrier plate 6, and the four universal wheels 15 are all detachably connected to the carrier plate 6. The roasting box 1 is detachably connected to the tops of the four shock absorbers 5. The carrier plate 6 carries the components on it. The user can conveniently move this device by means of the pulling opening 7 in cooperation with the universal wheels 15. During the moving process, the shock absorbers 5 can play a shock-absorbing effect, enabling this device to move stably, which brings convenience to the user.

[0030] Finally, it should be noted that the above are only the preferred embodiments of the present utility model and are not used to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions recorded in the foregoing embodiments or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.

Claims

1. A baking device for anode carbon blocks capable of uniformly baking on multiple sides, characterized in that: It includes a bearing mechanism, a heating mechanism is arranged inside the bearing mechanism, and a moving mechanism is arranged at the bottom of the bearing mechanism; The bearing mechanism includes a sealing component and a placing component, and the placing component is arranged inside the sealing component; The sealing component includes a roasting box (1), a sealing frame (2), a box cover (3), a handle (4), a first magnet bar (13), a sealing groove (14) and a second magnet bar (21). The sealing groove (14) is opened at the top of the sealing frame (2). The second magnet bar (21) is arranged in the sealing groove (14) and fixedly connected to the sealing frame (2). The first magnet bar (13) is fixedly connected to the bottom of the box cover (3). The box cover (3) is inserted into the sealing groove (14). The first magnet bar (13) adsorbs with the second magnet bar (21). The handle (4) is fixedly connected to the top of the box cover (3). The inner side of the sealing frame (2) is detachably connected to the outer wall top of the roasting box (1).

2. The anode carbon block baking device capable of multi-faceted and uniform baking according to claim 1, characterized in that: The placing component includes a bearing box (18), a plurality of anti-slip strips (16), a plurality of anti-slip grooves (17) and a plurality of openings (19). The plurality of anti-slip grooves (17) are respectively opened at the tops of the plurality of anti-slip strips (16). The plurality of anti-slip grooves (17) are evenly distributed at the tops of the plurality of anti-slip strips (16). The plurality of openings (19) are all opened on the bearing box (18). The plurality of openings (19) are evenly distributed on the bearing box (18). The plurality of anti-slip strips (16) are evenly distributed inside the bearing box (18). The plurality of anti-slip strips (16) are all fixedly connected to the bearing box (18). The plurality of anti-slip strips (16) are staggered with the plurality of openings (19) in position.

3. The anode carbon block roasting device capable of multi-faceted and uniform roasting according to claim 2, characterized in that: The bearing box (18) is detachably connected to the inner wall bottom of the roasting box (1).

4. The anode carbon block baking device capable of multi-faceted and uniform baking according to claim 3, characterized in that: The heating mechanism includes a control panel (10), a controller (20), two placing plates (9), a plurality of first heating tubes (8), a plurality of placing grooves (11) and a plurality of second heating tubes (12). The plurality of placing grooves (11) are respectively opened on the two placing plates (9). The plurality of placing grooves (11) are evenly distributed on the two placing plates (9). The plurality of first heating tubes (8) are respectively arranged in the plurality of placing grooves (11). The plurality of first heating tubes (8) and the plurality of second heating tubes (12) are all electrically connected to the controller (20). The controller (20) is electrically connected to the control panel (10).

5. The anode carbon block roasting device capable of multi-faceted and uniform roasting according to claim 4, characterized in that: The two placement plates (9) are respectively detachably connected to the left and right sides of the inner wall of the roasting box (1) near the top. A plurality of the second heating tubes (12) are all arranged in the roasting box (1), and the plurality of the second heating tubes (12) are evenly distributed in the roasting box (1) and are detachably connected to the roasting box (1). The carrier box (18) is arranged on the top of the plurality of the second heating tubes (12). The control panel (10) and the controller (20) are both detachably connected to the front end of the roasting box (1), and the controller (20) is arranged below the control panel (10).

6. The anode carbon block roasting device capable of multi-faceted and uniform roasting according to claim 1, characterized in that: The moving mechanism includes a carrier plate (6), a pull opening (7), four shock absorbers (5) and four universal wheels (15). The pull opening (7) is opened at the front end of the top of the carrier plate (6). The four shock absorbers (5) are evenly distributed on the top of the carrier plate (6), and the four shock absorbers (5) are all detachably connected to the carrier plate (6). The four universal wheels (15) are evenly distributed at the bottom of the carrier plate (6), and the four universal wheels (15) are all detachably connected to the carrier plate (6).

7. The anode carbon block baking device capable of multi-sided and uniform baking according to claim 6, characterized in that: The roasting box (1) is detachably connected to the tops of the four shock absorbers (5).