Anode furnace feeding chute convenient to replace
By designing an adjustable-angle trough body two and a slidingly connected trough body three, the problems of improper docking and unstable fixing of traditional feed chutes were solved, realizing flexible adjustment and stable connection of the feed chutes, and improving the production safety and efficiency of the anode furnace.
Patent Information
- Application Number
- CN202520415059.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-11
- Publication Date
- 2026-02-24
- Estimated Expiration
- 2035-03-11
AI Technical Summary
Traditional anode furnace feed chutes cannot be adjusted according to the actual feed angle and material discharge conditions, leading to improper connection or blockage. Furthermore, the fixing method is prone to loosening under high temperature and vibration environments, affecting production safety and efficiency.
A feed chute is designed, comprising a first trough and a rotatable second trough. The angle is adjusted by plug-in parts and a limiting ring. Combined with the sliding connection of the third trough in the chute and the bolt fixing of the limiting plate and the limiting seat, the feed chute can be flexibly adjusted and stably connected.
It improves the adaptability and stability of the feed chute, enabling it to adapt to different specifications and types of anode furnaces, preventing shaking, and facilitating maintenance and replacement.
Smart Images

Figure CN223939972U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of feed chute technology, and in particular to a feed chute for an anode furnace that is easy to replace. Background Technology
[0002] In the production process of an anode furnace, the feed chute is a crucial component connecting the furnace body and the material supply system, responsible for accurately and stably feeding materials into the furnace for smelting. However, traditional anode furnace feed chutes have several design shortcomings. Firstly, the angle and depth of traditional feed chutes are often fixed, making adjustments impossible based on actual feeding angles and material discharge patterns. This can lead to the feed chute failing to perfectly align with the furnace body when used in different sizes and types of anode furnaces, affecting accurate material feeding and potentially causing overflow or blockage. Secondly, traditional feed chutes are relatively simple to fix, typically using welding or bolts for direct connection. While this method provides some stability, it is prone to loosening or damage under prolonged exposure to high temperatures and vibrations, causing the chute to wobble or detach, severely impacting production safety and efficiency. Utility Model Content
[0003] To address the aforementioned problems, this invention proposes an easily replaceable anode furnace feed chute, thereby more accurately resolving the issues raised in the background section.
[0004] This utility model is achieved through the following technical solution:
[0005] This utility model proposes an easily replaceable anode furnace feed chute, comprising a chute body one, a chute body two rotatable around a part of the chute body one, an elastic chute connecting the chute body one and the chute body two for the rotation of the chute body two and the conduction of the chute body one and the chute body two, a rotating plate on the side of the chute body two, the rotating plate being rotatably connected to the part of the chute body one via a rotating shaft, a limit ring being provided on the side of the chute body one at the rotating plate, the rotating plate being limited by the limit ring after rotating to a suitable position, for adjusting the angle of the chute body two.
[0006] Preferably, a mounting base is installed on the surface of the rotating plate, and a connector is installed on the mounting base. The limiting ring has a set of insertion holes arranged in a circular array around the rotating shaft of the rotating plate. The connector is used to be inserted into the insertion hole to limit the rotation of the rotating plate.
[0007] Preferably, the connector includes a connecting spring mounted on the mounting base, a connecting piece is mounted on the end of the connecting spring, and a plug rod is mounted on the side of the connecting piece, the plug rod being inserted into a socket.
[0008] Preferably, a sliding groove is provided on the side of the second trough, and the third trough is slidably connected in the sliding groove. The third trough is used to adjust the depth of insertion into the second trough according to the material discharge situation.
[0009] Preferably, a limiting plate is installed on the side of the third tank and a limiting seat is installed on the side of the second tank. The limiting plate is used to limit the movement of the third tank to a suitable position and to fix the third tank after its position is adjusted.
[0010] Preferably, the limiting plate has a plurality of insertion holes two arranged thereon, the surface of the limiting seat is fitted with a threaded ring, and the inner wall of the threaded ring is threaded with a bolt, which is inserted into the insertion hole two.
[0011] Compared with the prior art, this utility model provides an easily replaceable anode furnace feed chute, which has the following advantages:
[0012] This easily replaceable anode furnace feed chute, through the adjustable rotation of chute two relative to chute one and the sliding connection of chute three within the chute, allows for flexible adjustment of the feed angle and material discharge conditions. This design significantly improves the adaptability of the feed chute, making it suitable for anode furnaces of different specifications and types, as well as various material flow requirements.
[0013] This easily replaceable anode furnace feed chute achieves reliable fixation of positions two and three of the chute body through the cooperation of plug-in parts and insertion holes, as well as the bolt connection between the limiting plate and the limiting seat. This design effectively prevents the chute body from sliding or shaking during use, ensuring the stability of the feed chute. At the same time, the connection method of plug-in parts and bolts also makes the feed chute easier to disassemble and assemble, facilitating maintenance and replacement. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the structure of an easily replaceable anode furnace feed chute proposed in this utility model;
[0015] Figure 2 This utility model proposes an easily replaceable feed chute for an anode furnace. Figure 1 Enlarged view of region A in the middle;
[0016] Figure 3 This utility model proposes an easily replaceable feed chute for an anode furnace. Figure 1 Enlarged schematic diagram of region B in the middle.
[0017] In the diagram: 1. Tank 1; 2. Tank 2; 3. Elastic Tank; 4. Rotating Plate; 41. Mounting Base; 5. Limiting Ring; 51. Insertion Hole 1; 6. Connector; 61. Connecting Spring; 62. Connecting Plate; 63. Inserting Rod; 7. Tank 3; 8. Limiting Plate; 81. Insertion Hole 2; 9. Limiting Seat; 91. Threaded Ring; 92. Bolt. Detailed Implementation
[0018] To more clearly and completely illustrate the technical solution of this utility model, the following description, in conjunction with the accompanying drawings, will further explain this utility model. Example
[0019] like Figures 1-3 As shown in the figure, an embodiment of this utility model provides an easily replaceable anode furnace feed chute, which mainly includes a chute body 1. A chute body 2, which can rotate around the chute body 1, is provided on the side of the chute body 1. To ensure that the chute body 1 and the chute body 2 remain connected during rotation, an elastic chute body 3 connects them. This elastic chute body 3 can adapt to the rotation of the chute body 2, maintaining the continuity of material flow.
[0020] A rotating plate 4 is installed on the side of the second trough 2, and this rotating plate 4 is rotatably connected to the first trough 1 via a rotating shaft. To limit the rotation range of the rotating plate 4, i.e., the second trough 2, a limit ring 5 is provided on the side of the first trough 1 at the location of the rotating plate 4. When the rotating plate 4 rotates to the appropriate position, it will contact the limit ring 5, thereby fixing the angle of the second trough 2. Through the above structure, the adjustable rotation of the second trough 2 relative to the first trough 1 is realized, so that the feed chute can adapt to different feed angle requirements.
[0021] In this invention, a mounting base 41 is installed on the surface of the rotating plate 4, and a connector 6 is further installed on the mounting base 41. Multiple insertion holes 51 are arranged in a circular array around the rotation axis of the rotating plate 4 on the limiting ring 5. When the rotating plate 4 rotates to a suitable position, the connector 6 can be inserted into the corresponding insertion hole 51, thereby limiting the rotation plate 4 and fixing the angle of the trough 2. Through the cooperation of the connector 6 and the insertion holes 51, reliable limiting of the rotating plate 4, i.e., the trough 2, is achieved, improving the stability and ease of use of the feed chute.
[0022] In this utility model, the plug-in component 6 specifically includes a connecting spring 61 installed at the mounting base 41. A connecting piece 62 is installed at the end of the connecting spring 61, and a plug rod 63 is installed on the side of the connecting piece 62. When the rotating plate 4 rotates to the appropriate position, the plug rod 63 will automatically insert into the first insertion hole 51 under the action of the connecting spring 61, achieving a limiting position. Through the elastic action of the connecting spring 61, the plug rod 63 can be reliably inserted into the first insertion hole 51, and it is also convenient to pull out the plug rod 63 when it is necessary to adjust the angle of the second slot 2.
[0023] In this invention, a chute is provided on the side of the second trough 2, and a third trough 7 is slidably connected within this chute. The depth of the third trough 7 inserted into the second trough 2 can be adjusted according to the material discharge situation, thereby adapting to different material flow rates and discharge requirements. Through the sliding connection of the third trough 7 within the chute, the adjustability of the material discharge depth is achieved, improving the flexibility and adaptability of the feed chute.
[0024] In this invention, a limiting plate 8 is installed on the side of the third tank 7, while a limiting seat 9 is installed on the side of the second tank 2. When the third tank 7 slides to a suitable position, the limiting plate 8 will contact and limit the position of the limiting seat 9, thereby fixing the position of the third tank 7. Through the cooperation of the limiting plate 8 and the limiting seat 9, the position of the third tank 7 is reliably fixed, preventing the third tank 7 from sliding during use.
[0025] In this invention, multiple insertion holes 81 are arranged on the limiting plate 8. A threaded ring 91 is installed on the surface of the limiting seat 9, and a bolt 92 is threadedly connected to the inner wall of the threaded ring 91. When the trough body 7 slides to a suitable position and needs to be fixed, the bolt 92 can be inserted into the corresponding insertion hole 81 and tightened, thereby achieving a reliable connection between the limiting plate 8 and the limiting seat 9. Through the cooperation of the bolt 92 and the insertion hole 81, the position of the trough body 7 is firmly fixed, improving the stability and reliability of the feed chute.
[0026] Finally, it should be noted that the basic concepts have been described above. Obviously, for those skilled in the art, the detailed disclosure above is merely illustrative and does not constitute a limitation of this specification. Although not explicitly stated herein, those skilled in the art may make various modifications, improvements, and corrections to this specification. Such modifications, improvements, and corrections are suggested in this specification, and therefore remain within the spirit and scope of the exemplary embodiments of this specification. Furthermore, this specification uses specific terms to describe embodiments of this specification. For example, "an embodiment," "one embodiment," and / or "some embodiments" refer to a feature, structure, or characteristic associated with at least one embodiment of this specification. Therefore, it should be emphasized and noted that "an embodiment," "one embodiment," or "an alternative embodiment" mentioned twice or more in different locations in this specification do not necessarily refer to the same embodiment. In addition, certain features, structures, or characteristics in one or more embodiments of this specification can be appropriately combined. Moreover, unless expressly stated in the claims, the order of processing elements and sequences, the use of numbers and letters, or other names described in this specification are not intended to limit the order of the processes and methods of this specification.
[0027] Finally, it should be noted that the above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.
Claims
1. A replaceable anode furnace feed chute, comprising a chute body (1), characterized in that, The side of the first groove (1) is provided with a second groove (2) that can rotate around the first groove (1). An elastic groove (3) is connected between the first groove (1) and the second groove (2) for the second groove (2) to rotate and conduct the connection between the first groove (1) and the second groove (2). The side of the second groove (2) is provided with a rotating plate (4). The rotating plate (4) is rotatably connected to the first groove (1) through a rotating shaft. The side of the first groove (1) is provided with a limiting ring (5) at the rotating plate (4). After the rotating plate (4) rotates to a suitable position, it is limited by the limiting ring (5) to adjust the angle of the second groove (2).
2. The easily replaceable anode furnace feed chute according to claim 1, characterized in that, The rotating plate (4) is mounted with a mounting base (41), and a connector (6) is mounted on the mounting base (41). The limiting ring (5) is provided with a first insertion hole (51) arranged in a circular array around the rotating shaft of the rotating plate (4). The connector (6) is used to be inserted into the first insertion hole (51) to limit the rotation of the rotating plate (4).
3. The easily replaceable anode furnace feed chute according to claim 2, characterized in that, The connector (6) includes a connecting spring (61) installed on the mounting base (41), a connecting piece (62) is installed at the end of the connecting spring (61), and a plug (63) is installed on the side of the connecting piece (62), the plug (63) being inserted into the first socket (51).
4. The easily replaceable anode furnace feed chute according to claim 1, characterized in that, The side of the second trough (2) is provided with a sliding groove, and the third trough (7) is slidably connected in the sliding groove. The third trough (7) is used to adjust the depth of insertion into the second trough (2) according to the material discharge situation when discharging the material.
5. The easily replaceable anode furnace feed chute according to claim 4, characterized in that, A limiting plate (8) is installed on the side of the third (7) tank, and a limiting seat (9) is installed on the side of the second (2) tank. The limiting plate (8) is used to limit the movement of the third (7) tank to a suitable position and to fix the third (7) tank after adjusting its position.
6. The easily replaceable anode furnace feed chute according to claim 5, characterized in that, The limiting plate (8) has a plurality of insertion holes (81) arranged thereon. The surface of the limiting seat (9) is fitted with a threaded ring (91). The inner wall of the threaded ring (91) is threaded with a bolt (92). The bolt (92) is inserted into the insertion hole (81).