Multifunctional receiving hopper

The multiple-function hopper addresses residue attachment and cleaning inefficiencies by integrating an automated cleaning system with a servo-controlled high-pressure nozzle, ensuring safe and efficient residue removal.

CN223101851UActive Publication Date: 2025-07-15鲁控环保(苏州)有限公司
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Patent Information

Application Number
CN202421740694.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-23
Publication Date
2025-07-15
Estimated Expiration
2034-07-23

AI Technical Summary

Technical Problem

After use, the existing multi-function hopper has a large amount of residue liquid attached to the residue bucket box, which is dangerous to clean and inefficient.

Method used

The combination of hydraulic cover plate, production crimping dragon, slag cleaning bucket box, servo motor and high-pressure nozzle is adopted to clean the residue by automatically controlling the high-pressure nozzle, and the servo motor is used to control the movement of the high-pressure nozzle to avoid interference with normal operation.

Benefits of technology

Improves cleaning efficiency, reduces cleaning risk, and optimizes the process flow.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223101851U_ABST
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Abstract

The utility model belongs to the technical field of multifunctional material receiving hoppers, and particularly relates to a multifunctional material receiving hopper which comprises a production hopper box and a hydraulic cover plate, the hydraulic cover plate is installed on one side of the production hopper box, a production auger is installed in the production hopper box, one end of the production auger is connected with an auger shaft, and the other end of the production auger is connected with an auger shaft. The auger shaft is connected with a production motor through a belt, and one side of the production hopper box is connected with a slag removal hopper box; the food residue removing device comprises a residue removing hopper box, the outer side wall of the residue removing hopper box is connected with a positioning plate, one end of the positioning plate is connected with a servo motor, and the output end of the servo motor is connected with a threaded rod. And when the slag removal hopper box works normally, the servo motor controls the high-pressure spray head to move to the rear end of the slag removal hopper box, so that normal operation of the slag removal hopper box is not interfered, and the process is optimized.
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Description

Technical Field

[0001] The utility model belongs to the technical field of material receiving hoppers, and particularly relates to a multifunctional material receiving hopper. Background Art

[0002] The multifunctional material receiving hopper is a material conveying device widely used in industries such as industry, pharmaceuticals, chemicals, and food. It integrates multiple functions, aims to improve production efficiency, reduce material waste, enhance safety, and facilitate management. It can convey materials from one place to another to achieve material handling. It has a certain storage space inside, can store materials in the short term, reduce the number of handling times, and adapt to different material conveying requirements. It is commonly used in operations such as simple packaging, handling, and dumping. Some multifunctional material receiving hoppers have a metering device, which can accurately measure materials and facilitate metering records. However, this material receiving hopper still has the following defects: after using the multifunctional material receiving hopper to receive and transfer food residues, a large amount of residue liquid will adhere to the inside of the residue hopper box. At the same time, due to the large volume of the hopper box, it is extremely dangerous during the process of manual cleaning by personnel, and the cleaning efficiency is greatly reduced. Content of the Utility Model

[0003] The purpose of the utility model is to provide a multifunctional material receiving hopper, aiming to solve the problem that after using the above-mentioned equipment in the prior art to receive and transfer food residues with the multifunctional material receiving hopper, a large amount of residue liquid will adhere to the inside of the residue hopper box. At the same time, due to the large volume of the hopper box, it is extremely dangerous during the process of manual cleaning by personnel, and the cleaning efficiency is greatly reduced.

[0004] To achieve the above purpose, the utility model provides the following technical solution: a multifunctional material receiving hopper, including a production hopper box and a hydraulic cover plate. A hydraulic cover plate is installed on one side of the production hopper box. A production auger is installed inside the production hopper box. One end of the production auger is connected to an auger shaft. The auger shaft is connected to a production motor through a belt. One side of the production hopper box is connected to a slag cleaning hopper box;

[0005] A positioning plate is connected to the outer side wall of the slag cleaning hopper box. One end of the positioning plate is connected to a servo motor. The output end of the servo motor is connected to a threaded rod. A threaded block is movably connected to the surface of the threaded rod. One side of the threaded block is connected to a side plate. The top end of the side plate is connected to a cross plate. A high-pressure spray head is installed on the bottom surface of the cross plate. The top end of the high-pressure spray head is communicated with a water pipe.

[0006] Preferably, for a multifunctional material receiving hopper of the utility model, a slag cleaning motor is connected to one end of the slag cleaning hopper box. The output end of the slag cleaning motor is connected to a slag cleaning auger. The slag cleaning auger is vertically distributed with the production auger.

[0007] Preferably, in a multi-functional material receiving hopper of the present utility model, one end of the threaded rod is connected with a receiving block, and a rotating block is connected to the surface of the threaded rod near the receiving block. The rotating block and an opening on one side of the receiving block form a rotating structure.

[0008] Preferably, in a multi-functional material receiving hopper of the present utility model, the threaded block and an opening on one side of the positioning plate form a sliding connection structure.

[0009] Preferably, in a multi-functional material receiving hopper of the present utility model, a support cylinder is connected to the surface of the water pipe, and a support rod is connected to the bottom surface of the support cylinder.

[0010] Preferably, in a multi-functional material receiving hopper of the present utility model, the bottom end of the support rod is connected with a fixing plate, and a fixing bolt is connected through the surface of the fixing plate. The fixing bolt passes through the fixing plate and is threadedly connected with the cross plate.

[0011] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0012] By adopting an automatic control method, the present utility model controls the high-pressure nozzle to move to clean the food residues attached to the inner wall of the slag cleaning hopper box, improving the cleaning efficiency. When the slag cleaning hopper box is working normally, the servo motor controls the high-pressure nozzle to move to the rear end of the slag cleaning hopper box, thus not interfering with the normal operation of the slag cleaning hopper box and optimizing the process. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] The drawings are used to provide a further understanding of the present utility model, and constitute a part of the specification. They are used together with the embodiments of the present utility model to explain the present utility model, but do not constitute a limitation to the present utility model. In the drawings:

[0014] Figure 1 is the front view structural schematic diagram of the present utility model;

[0015] Figure 2 is the top view structural schematic diagram of the present utility model;

[0016] Figure 3 is the installation structural schematic diagram of the positioning plate of the present utility model;

[0017] Figure 4 is the cross-sectional structural schematic diagram of the positioning plate of the present utility model;

[0018] Figure 5 is the structural schematic diagram of the rotating block of the present utility model;

[0019] Figure 6 is the connection structural schematic diagram of the support cylinder of the present utility model.

[0020] In the figure: 1. Production bucket box; 2. Hydraulic cover plate; 3. Production auger; 4. Auger shaft; 5. Production motor; 6. Slag cleaning bucket box; 7. Slag cleaning motor; 8. Slag cleaning auger; 9. Positioning plate; 10. Servo motor; 11. Threaded rod; 12. Adapter block; 13. Rotating block; 14. Threaded block; 15. Side plate; 16. Horizontal plate; 17. High-pressure nozzle; 18. Water pipe; 19. Support tube; 20. Support rod; 21. Fixing plate; 22. Fixing bolt. DETAILED DESCRIPTION

[0021] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.

[0022] See also Figure 1-6 The utility model provides the following technical solutions: a multifunctional receiving hopper, comprising a production bucket box 1 and a hydraulic cover plate 2, a hydraulic cover plate 2 is installed on one side of the production bucket box 1, a production auger 3 is installed inside the production bucket box 1, one end of the production auger 3 is connected to an auger shaft 4, the auger shaft 4 is connected to a production motor 5 through a belt, and a slag cleaning bucket box 6 is connected to one side of the production bucket box 1;

[0023] The outer wall of the slag cleaning hopper box 6 is connected to a positioning plate 9, one end of the positioning plate 9 is connected to a servo motor 10, the output end of the servo motor 10 is connected to a threaded rod 11, the surface of the threaded rod 11 is movably connected to a threaded block 14, one side of the threaded block 14 is connected to a side plate 15, the top of the side plate 15 is connected to a cross plate 16, the bottom surface of the cross plate 16 is installed with a high-pressure nozzle 17, and the top of the high-pressure nozzle 17 is connected to a water pipe 18.

[0024] Preferably: one end of the slag cleaning bucket box 6 is connected to a slag cleaning motor 7, and the output end of the slag cleaning motor 7 is connected to a slag cleaning auger 8, and the slag cleaning auger 8 is vertically distributed with the production auger 3. It is worth noting that the production motor 5, the slag cleaning motor 7 and the servo motor 10 are all prior art, and their specific model is a Y2 series three-phase asynchronous motor.

[0025] Preferably: one end of the threaded rod 11 is connected to a receiving block 12 , a surface of the threaded rod 11 close to the receiving block 12 is connected to a rotating block 13 , and the rotating block 13 and an opening on one side of the receiving block 12 form a rotating structure.

[0026] During specific use, the rotating block 13 is rotated along the receiving block 12 to facilitate the movement of the threaded block 14 .

[0027] Preferably: The threaded block 14 and the opening on one side of the positioning plate 9 form a sliding connection structure.

[0028] During specific use, by sliding the T-shaped threaded block 14 along the opening on one side of the positioning plate 9, the stability of the use of the high-pressure nozzle 17 is ensured.

[0029] Preferably: A support cylinder 19 is connected to the surface of the water pipe 18, and a support rod 20 is connected to the bottom surface of the support cylinder 19.

[0030] During specific use, the water pipe 18 is supported by the support cylinder 19 to ensure the stability of the water pipe 18 during use.

[0031] Preferably: The bottom end of the support rod 20 is connected to a fixing plate 21, and a fixing bolt 22 penetrates through the surface of the fixing plate 21. The fixing bolt 22 passes through the fixing plate 21 and is threadedly connected to the cross plate 16.

[0032] The working principle of the specific use of the present utility model: When it is necessary to clean the food residues attached to the inner wall of the slag cleaning hopper box 6, start the servo motor 10 to operate, drive the threaded rod 11 to rotate, and then drive the rotating block 13 to rotate along the opening on one side of the receiving block 12. At this time, the threaded block 14 moves along the threaded rod 11 and the opening on one side of the positioning plate 9. At this time, the water pipe 18 is connected to an external water supply source, and the food residues on the inner wall of the slag cleaning hopper box 6 are cleaned through the high-pressure nozzle 17. When the slag cleaning hopper box 6 is working normally, the servo motor 10 controls the high-pressure nozzle 17 to move to the rear end of the slag cleaning hopper box 6, so as not to interfere with the normal operation of the slag cleaning hopper box 6, optimizing the process. In addition, the water pipe 18 is supported by the support cylinder 19, and then the fixing bolt 22 passes through the fixing plate 21 and the cross plate 16 to be connected, facilitating the stable support of the water pipe 18.

[0033] 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, for those skilled in the art, they 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 multifunctional material receiving hopper, comprising a production hopper box (1) and a hydraulic cover plate (2), characterized in that: One side of the production hopper box (1) is equipped with a hydraulic cover plate (2). Inside the production hopper box (1), a production auger (3) is installed. One end of the production auger (3) is connected to an auger shaft (4). The auger shaft (4) is connected to a production motor (5) through a belt. One side of the production hopper box (1) is connected to a slag cleaning hopper box (6). A positioning plate (9) is connected to the outer side wall of the slag cleaning hopper box (6). One end of the positioning plate (9) is connected to a servo motor (10). The output end of the servo motor (10) is connected to a threaded rod (11). The surface of the threaded rod (11) is movably connected to a threaded block (14). One side of the threaded block (14) is connected to a side plate (15). The top end of the side plate (15) is connected to a cross plate (16). A high-pressure spray head (17) is installed on the bottom surface of the cross plate (16). The top end of the high-pressure spray head (17) is communicated with a water pipe (18).

2. The multifunctional material receiving hopper according to claim 1, wherein: One end of the slag cleaning hopper box (6) is connected to a slag cleaning motor (7). The output end of the slag cleaning motor (7) is connected to a slag cleaning auger (8). The slag cleaning auger (8) is vertically distributed with the production auger (3).

3. A multifunctional material receiving hopper according to claim 1, characterized in that: One end of the threaded rod (11) is connected to a receiving block (12). A rotating block (13) is connected to the surface of the threaded rod (11) near the receiving block (12). The rotating block (13) and an opening on one side of the receiving block (12) form a rotating structure.

4. The multifunctional material receiving hopper according to claim 1, characterized in that: The threaded block (14) and an opening on one side of the positioning plate (9) form a sliding connection structure.

5. A multifunctional material receiving hopper according to claim 1, characterized in that: A support cylinder (19) is connected to the surface of the water pipe (18). The bottom surface of the support cylinder (19) is connected to a support rod (20).

6. The multifunctional material receiving hopper according to claim 5, wherein: The bottom end of the support rod (20) is connected to a fixing plate (21). A fixing bolt (22) is connected through the surface of the fixing plate (21). The fixing bolt (22) passes through the fixing plate (21) and is threadedly connected to the cross plate (16).