A paste material processing system for animal farming

By using a combination of floating brush components and reciprocating pusher components, the problem of low cleaning efficiency of residual materials inside the cooking tank is solved, achieving automated cleaning and improving the operating efficiency and hygiene level of the equipment.

CN122144395APending Publication Date: 2026-06-05HANGZHOU GAOFEI AUTOMATION EQUIPMENT CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
HANGZHOU GAOFEI AUTOMATION EQUIPMENT CO LTD
Filing Date
2026-04-17
Publication Date
2026-06-05

AI Technical Summary

Technical Problem

In the prior art, during the processing of paste-like materials, material residues are easily left in the transfer module and bottom of the cooking tank, leading to equipment blockage, corrosion, and a decline in hygiene quality. Furthermore, the cleaning efficiency is low, and it is difficult to adapt to residual materials of different particle sizes.

Method used

It adopts a floating brush assembly and a reciprocating pusher assembly. The floating brush assembly cleans by adaptively conforming to the conveyor surface through variable contact pressure, while the reciprocating pusher assembly automatically pushes the bottom residue. Combined with the spray cleaning assembly, it achieves all-round automatic cleaning.

Benefits of technology

It achieves full-range automatic cleaning of the inside of the cooking tank, avoiding manual intervention, improving the continuity and hygiene quality of processing, reducing maintenance costs, and extending the service life of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses an animal breeding paste material processing system, which comprises a container body, a transmission module arranged in the container body and a cleaning module for cleaning the internal structure of the container body. The cleaning module comprises a floating brush assembly arranged in the container body and close to the output end of the transmission module. The floating brush assembly is used for cleaning the material attached to the conveying surface of the transmission module, and the floating brush assembly and the conveying surface have variable contact pressure. The reciprocating pushing assembly is automatically pushed to discharge the bottom residues, realizes automatic cleaning in the container body, effectively avoids manual intervention, guarantees cooking hygiene, improves processing continuity, and has certain use value and popularization value.
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Description

Technical Field

[0001] This invention relates to the field of animal feed processing technology, and in particular to a processing system for paste-like materials used in animal husbandry. Background Technology

[0002] Currently, in the animal husbandry industry, the cooking process of paste-like feed often requires the use of cooking tanks for heating the materials. However, after processing, paste-like material easily remains inside the cooking tank, especially on the conveyor surface of the transfer module. If these residues are not cleaned in time, they will not only breed bacteria, affecting the hygienic quality of subsequent feed, but also cause equipment blockage and corrosion. In existing technologies, fixed scrapers are usually used to clean the conveyor belt, but the distance between the fixed scraper and the conveyor surface cannot be adjusted, making it difficult to adapt to residual materials of different particle sizes, resulting in poor cleaning effect and easy damage to the conveyor belt. At the same time, residues also easily accumulate at the bottom of the tank, requiring regular manual cleaning, which is labor-intensive, inefficient, and cannot achieve continuous production.

[0003] In summary, there is a need for a paste-like material processing system for animal husbandry to address the shortcomings of existing technologies. Summary of the Invention

[0004] To address the shortcomings of existing technologies, this invention provides a paste-like material processing system for animal husbandry, aiming to solve the aforementioned problems.

[0005] To achieve the above objectives, the present invention provides the following technical solution: a paste-like material processing system for animal husbandry, comprising a container body, a transfer module disposed within the container body, and a cleaning module for cleaning the internal structure of the container body, wherein the cleaning module includes:

[0006] A floating brush assembly is disposed inside the container body and near the output end of the transmission module. The floating brush assembly is used to clean the material attached to the conveying surface of the transmission module. The floating brush assembly has a variable contact pressure with the conveying surface.

[0007] A reciprocating pusher assembly, located at the bottom of the container body, is used to push and discharge residue deposited at the bottom of the container body. The reciprocating pusher assembly moves back and forth in a straight line along the bottom of the container body. A floating brush assembly adaptively conforms to the conveying surface, flexibly cleaning adhering materials. Simultaneously, the reciprocating pusher assembly automatically pushes the bottom residue out, achieving all-around automatic cleaning of the inside of the cooking tank. This effectively avoids manual intervention, ensures cooking hygiene, and improves processing continuity.

[0008] Furthermore, the floating brush assembly includes a rotating shaft, a connecting frame, a brush roller, and a transmission chain assembly. The rotating shaft is rotatably mounted inside the container body. The connecting frame is loosely connected to the rotating shaft. The brush roller is mounted on one end of the connecting frame. The brush roller swings around the rotating shaft via the connecting frame and adaptively conforms to the conveying surface of the transmission module. The brush roller is also connected to the rotating shaft via the transmission chain assembly.

[0009] Furthermore, the floating brush assembly also includes a counterweight roller, which is connected to the rotating shaft via a connecting frame. The counterweight roller and the brush roller are located on opposite sides of the rotating shaft, and the counterweight roller and the brush roller form a rocker-type floating structure with the rotating shaft via the connecting frame.

[0010] Furthermore, the reciprocating pusher assembly includes a linear drive module, a bracket, and a pusher plate. The linear drive module is installed at the bottom of the container body. The bracket is connected to the output end of the linear drive module. The pusher plate is fixed on the bracket. The bottom surface of the pusher plate is adapted to the bottom inner wall of the container body. The linear drive module drives the pusher plate to reciprocate linearly along the bottom of the container body.

[0011] Furthermore, the linear transmission module is one of an electric push rod, a cylinder, a hydraulic cylinder, a lead screw and nut mechanism, a synchronous belt transmission mechanism, or a chain transmission mechanism.

[0012] Furthermore, the pusher plate is an arc-shaped pusher scraper, and the arc-shaped pusher scraper is adapted to the inner bottom wall of the container body.

[0013] Furthermore, the bottom of the container body is provided with a slag discharge hopper and a control valve assembly, and the movement stroke of the pusher plate covers the slag discharge hopper.

[0014] Furthermore, the cleaning module also includes a spray cleaning assembly, which includes a plurality of cleaning nozzles arranged within the container body and facing the transmission module.

[0015] Furthermore, the spray cleaning assembly includes a cleaning pump, cleaning pipelines, an inner cleaning pipe, an outer cleaning pipe, and a water receiving tank. The cleaning pump is connected to the inner and outer cleaning pipes through the cleaning pipelines. The inner cleaning pipe is located inside the transmission module and is used to clean the inner conveying surface of the transmission module. The outer cleaning pipe is located below the transmission module and close to the brush roller, and is used to cooperate with the brush roller to clean the outer conveying surface of the transmission module. The water receiving tank is located directly below the inner cleaning pipe and is used to collect the wastewater flushed by the inner cleaning pipe.

[0016] Furthermore, the bristles of the brush roller are made of a high-temperature resistant and wear-resistant flexible material, which is high-temperature resistant nylon.

[0017] As one implementation, it also includes a circulating air assembly for circulating airflow inside the container body. The circulating air assembly includes a circulating fan and a ventilation duct network, with the output and input ends of the circulating fan and the ventilation duct network connected to the interior of the container body.

[0018] The beneficial effects of this invention are:

[0019] 1. In this invention, the floating brush assembly utilizes the swingable structure formed by the rotating shaft, connecting frame and brush roller to enable the brush roller to adaptively conform to the conveying surface of the transmission module. At the same time, the brush roller rotates in the opposite direction to the conveying surface, and in conjunction with the spraying of the external cleaning pipe, it achieves flexible brushing, effectively removes the attached substances, avoids damage to the conveyor belt, and improves the cleaning effect.

[0020] 2. In this invention, the reciprocating pusher assembly uses a linear transmission module to drive the pusher plate to reciprocate along the bottom of the tank, pushing the deposited residue to the slag discharge hopper for discharge, thereby realizing automatic slag discharge from the bottom of the tank, reducing the frequency and labor intensity of manual cleaning, and ensuring the continuous operation of the equipment.

[0021] 3. In this invention, the spray cleaning assembly includes an inner cleaning pipe and an outer cleaning pipe. When the outer cleaning pipe sprays, it works in conjunction with the reverse rotation of the floating brush assembly to thoroughly clean the inner and outer sides of the transmission module and the conveying surface. Combined with the reciprocating pusher assembly, a complete cleaning system is formed to ensure that there are no dead corners inside the cooking tank.

[0022] 4. In this invention, the components of the cleaning module work together to achieve online cleaning without the need for machine shutdown and disassembly, thereby improving production efficiency, reducing maintenance costs, and extending equipment lifespan. The structure is rationally designed, highly automated, and suitable for various animal feed processing enterprises, possessing significant potential for widespread adoption. Attached Figure Description

[0023] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0024] Figure 1 This is a front cross-sectional view of the present invention.

[0025] Figure 2 This is a side cross-sectional view of the mounting structure of the floating brush assembly of the present invention.

[0026] Figure 3This is a top view of the floating brush assembly structure of the present invention.

[0027] Figure 4 for Figure 1 Enlarged schematic diagram of the structure of section A in the middle.

[0028] Figure 5 This is a side view of the connection structure between the hanger and the pusher plate of the present invention.

[0029] Figure 6 This is a side cross-sectional view of the installation structure of the spray cleaning assembly of the present invention.

[0030] Figure 7 This is a schematic diagram illustrating the structural principle of the branch cleaning pump of the present invention.

[0031] Figure 8 This is a top view schematic diagram of the circulating air assembly of the present invention.

[0032] In the diagram: 100-Container body, 101-Slag discharge hopper; 10-Floating brush assembly, 11-Rotating shaft, 12-Connecting frame, 13-Brush roller, 14-Counterweight roller, 15-Transmission chain assembly; 20-Reciprocating pusher assembly, 21-Linear transmission module, 22-Hanger, 23-Pusher plate; 30-Spray cleaning assembly, 31-Cleaning pump, 32-Cleaning pipeline, 33-Inner cleaning pipe, 34-Outer cleaning pipe, 35-Water receiving tank, 36-Branch cleaning pump; 40-Circulating air assembly, 41-Circulating fan, 42-Ventilation duct network. Detailed Implementation

[0033] To facilitate understanding of the present invention, a more detailed description is provided below with reference to the accompanying drawings and specific embodiments. It should be noted that when an element is described as being "fixed to" another element, it can be directly on the other element, or one or more intermediate elements may exist between them. When an element is described as being "connected to" another element, it can be directly connected to the other element, or one or more intermediate elements may exist between them. The terms "vertical," "horizontal," "left," "right," and similar expressions used in this specification are for illustrative purposes only.

[0034] Unless otherwise defined, all technical and scientific terms used in this specification have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used in this specification is for the purpose of describing particular embodiments only and is not intended to limit the invention. The term "and / or" as used in this specification includes any and all combinations of one or more of the associated listed items.

[0035] Reference Figure 1 , Figure 2As shown, an animal husbandry paste-like material processing system includes a container body 100, a transfer module disposed within the container body 100, and a cleaning module for cleaning the internal structure of the container body 100. One end of the container body 100 is equipped with a material input pump to deliver material to the transfer module, and the other end of the container body 100 is equipped with a material output pump to output material from the container. The cleaning module includes:

[0036] The floating brush assembly 10 is disposed inside the container body 100 and close to the output end of the transmission module. The floating brush assembly 10 is used to cooperate with the rolling brush to remove the material attached to the conveying surface of the transmission module. The floating brush assembly 10 has a variable contact pressure with the conveying surface.

[0037] The reciprocating pusher assembly 20 is located at the bottom of the container body 100 and is used to push and discharge the residue deposited at the bottom of the container body 100. The reciprocating pusher assembly 20 moves in a reciprocating linear motion along the bottom of the container body 100.

[0038] The spray cleaning assembly 30 includes several cleaning nozzles arranged inside the container body 100 and facing the transmission module.

[0039] As one implementation method, refer to Figure 6 , Figure 7 As shown, the spray cleaning assembly 30 includes a cleaning pump 31, a cleaning pipeline 32, an inner cleaning pipe 33, an outer cleaning pipe 34, and a water receiving tank 35. The cleaning pump 31 is connected to the inner cleaning pipe 33 and the outer cleaning pipe 34 through the cleaning pipeline 32. The inner cleaning pipe 33 is located inside the transmission module and is used to clean the inner conveying surface of the transmission module. The outer cleaning pipe 34 is located below the transmission module and close to the brush roller 13 and is used to cooperate with the brush roller 13 to clean the outer conveying surface of the transmission module. The water receiving tank 35 is located directly below the inner cleaning pipe 33 and is used to collect the wastewater flushed by the inner cleaning pipe 33.

[0040] As one implementation method, refer to Figure 7 As shown, the spray cleaning assembly 30 also includes a branch cleaning pump 36. The input end of the branch cleaning pump 36 is connected to the container body 100 through a water pipe, and the output end of the branch cleaning pump 36 is connected to the outer cleaning pipe 34 through a water pipe. Through this branch cleaning structure design, the branch cleaning pump 36 is dedicated to transporting the condensate inside the container body 100 to the outer cleaning pipe 34, thereby completing the targeted cleaning work on the conveying surface of the transmission module and the brush roller 13.

[0041] As one implementation method, refer to Figure 3As shown, the floating brush assembly 10 includes a rotating shaft 11, a connecting frame 12, a brush roller 13, and a transmission chain assembly 15. The rotating shaft 11 is rotatably installed inside the container body 100. The connecting frame 12 is loosely connected to the rotating shaft 11. The brush roller 13 is installed at one end of the connecting frame 12. The brush roller 13 swings around the rotating shaft 11 through the connecting frame 12 and adaptively conforms to the conveying surface of the transmission module. The brush roller 13 is connected to the rotating shaft 11 through the transmission chain assembly 15. Under the gravity of the counterweight roller 14, the connecting frame 12 automatically adjusts its balance around the rotating shaft 11, so that the brush roller 13 always adheres to the conveying surface with appropriate pressure, thereby adapting to residual materials of different particle sizes. At the same time, in conjunction with the outer cleaning pipe 34 of the spray cleaning assembly 30, the conveying surface of the transmission module is flushed, and the attached residue is flexibly brushed off. Furthermore, one end of the rotating shaft 11 is connected to the power unit (motor) and, in conjunction with the transmission chain group 15 (drive sprocket, chain, driven sprocket), drives the brush roller 13 to rotate counterclockwise. The rotation direction of the brush roller 13 is opposite to that of the transmission module.

[0042] In one embodiment, the bristles of the brush roller 13 are made of a high-temperature resistant and wear-resistant flexible material, which is high-temperature resistant nylon.

[0043] As one implementation method, refer to Figure 3 As shown, the floating brush assembly 10 also includes a counterweight roller 14, which is connected to the rotating shaft 11 via a connecting frame 12. Specifically, the connecting frame 12 is a set of parallel swing arms, the middle of which is fixedly connected to the rotating shaft 11. A brush roller 13 is installed at one end of the connecting frame 12, and a counterweight roller 14 is installed at the other end. The counterweight roller 14 and the brush roller 13 are located on opposite sides of the rotating shaft 11, forming a rocker-type floating structure with the rotating shaft 11 via the connecting frame 12. The contact pressure between the brush roller 13 and the conveying surface of the transmission module can be varied by adjusting and replacing the counterweight roller 14 with different weights.

[0044] In this structure, the gravity of the counterweight roller 14 is transmitted to the brush roller 13 on the other side of the rotating shaft 11 through the connecting frame 12, so that the brush roller 13 always tends to move towards the conveying surface of the transmission module. When the transmission module is running, if there are paste-like materials of different thicknesses or particle sizes attached to the conveying surface, the brush roller 13 can swing slightly up or down around the rotating shaft 11 to automatically adjust the contact pressure with the conveying surface, ensuring that the bristles of the brush roller 13 always adhere to the conveying surface with appropriate pressure for cleaning. This avoids damage to the conveying surface or excessive wear of the brush due to excessive pressure, and also prevents incomplete cleaning due to insufficient pressure.

[0045] In a preferred embodiment, the weight of the counterweight roller 14 is designed to match the weight of the brush roller 13 and the connecting frame 12, as well as the required cleaning force, to ensure that the brush roller 13 maintains slight contact with the conveying surface when unloaded and can adaptively float when material is attached. Furthermore, the bristles of the brush roller 13 are made of high-temperature resistant and wear-resistant high-temperature nylon material to adapt to the high-temperature steam environment inside the cooking tank, while the flexible material prevents scratching the conveying surface.

[0046] Through the aforementioned rocker-type floating structure, the floating brush assembly 10 of the present invention can adapt to residual materials with different degrees of adhesion, achieving a flexible and efficient brushing effect. Compared with the traditional fixed scraper, it not only improves the cleaning quality but also extends the service life of the conveying module, reduces the maintenance frequency, and is more adaptable to the conveying surface (conveyor belt) of the conveying module.

[0047] As one implementation method, refer to Figure 4 As shown, the container body 100 is also equipped with a receiving hopper 102, which receives the cooked animal feed conveyed by the transmission module.

[0048] As one implementation method, refer to Figure 4 , Figure 5 As shown, the reciprocating pusher assembly 20 includes a linear drive module 21, a bracket 22, and a pusher plate 23. The linear drive module 21 is installed at the bottom of the container body 100. The bracket 22 is connected to the output end of the linear drive module 21. The pusher plate 23 is fixed on the bracket 22. The bottom surface of the pusher plate 23 is adapted to the bottom inner wall of the container body 100. The linear drive module 21 drives the pusher plate 23 to reciprocate linearly along the bottom of the container body 100.

[0049] Specifically, the hanger 22 is a rigid support, with its bottom fixedly connected to the pusher plate 23 and its top connected to the output end of the linear drive module 21. The pusher plate 23 is made of wear-resistant stainless steel, and its bottom surface is machined into an arc-shaped curved surface that matches the inner wall of the container body 100. This ensures that the pusher plate 23 can slide closely against the bottom of the tank during reciprocating motion, scraping away the deposited residue to the maximum extent and preventing the residue from leaking through the gap between the bottom of the pusher plate and the bottom of the tank.

[0050] As a preferred embodiment, the portion of the pusher plate 23 that contacts the inner bottom wall of the container body 100 is covered with a wear-resistant material made of non-metallic material to prevent wear.

[0051] In a preferred embodiment, the linear drive module 21 employs a chain drive mechanism. This chain drive mechanism includes a drive motor, a reducer, a drive sprocket, a driven sprocket, and a drive chain. The drive motor is connected to the reducer and is mounted on an external or internal support of the container body 100. The drive sprocket is mounted on the output shaft of the reducer. The driven sprocket is mounted at the other end inside the container body 100, and the drive chain winds between the drive sprocket and the driven sprocket. The top of the bracket 22 is fixedly connected to a link of the drive chain. When the drive motor operates, the chain circulates, thereby driving the bracket 22 and the pusher plate 23 to reciprocate linearly along the bottom of the container. The reciprocating motion of the pusher plate 23 can be achieved by controlling the forward and reverse rotation of the motor or by using a reciprocating chain drive structure.

[0052] In addition, to adapt to the high temperature and high humidity environment inside the cooking tank, the drive motor can be a high temperature resistant and waterproof motor, and the chain and sprocket are made of stainless steel and are regularly lubricated by a lubrication system to ensure smooth transmission and service life.

[0053] In one implementation, the pusher plate 23 is an arc-shaped pusher scraper, and the arc-shaped pusher scraper is adapted to the inner bottom wall of the container body 100.

[0054] As one implementation method, refer to Figure 6 As shown, the bottom of the container body 100 is provided with at least one slag discharge hopper 101 and a control valve assembly, and the movement stroke of the pusher plate 23 covers the inlet of the slag discharge hopper. When the pusher plate 23 pushes the residue to the slag discharge hopper 101, the control valve assembly opens, and the residue is discharged out of the container under the action of gravity.

[0055] In a preferred embodiment, the control valve assembly includes a pneumatic ball valve and a pneumatic butterfly valve. The pneumatic ball valve, model DN50, is used to discharge condensate and the mixture containing the discharged material from inside the container body 100. The pneumatic butterfly valve, model DN200, is opened when municipal tap water is pressurized and cleaned by the cleaning pump 31. Through the aforementioned reciprocating pusher assembly 20, automatic and efficient cleaning of residue at the bottom of the cooking tank is achieved, avoiding the tedious operation of regular manual cleaning and ensuring continuous production and a clean and hygienic cooking environment.

[0056] As one implementation method, refer to Figure 8 As shown, the paste material processing system also includes a circulating air assembly 40, which is used to circulate the airflow inside the container body 100. The circulating air assembly 40 includes a circulating fan 41 and a ventilation duct network 42. The output end of the circulating fan 41 and the input end of the ventilation duct network 42 are connected to the inside of the container body 100. Through the circulating air assembly 40, the gas inside the container body 100 circulates back and forth, and the temperature inside the container body 100 is relatively uniform.

[0057] The working principle of this invention is as follows: In use, the paste-like material is first conveyed from the feeding end to the discharging end via the transmission module within the container body 100, undergoing sterilization during the conveying process. When the material is conveyed to the output end, it falls into the receiving hopper 102 for subsequent processing. In cleaning mode, the spray cleaning assembly 30 is activated. The outer cleaning pipe 34 sprays the outer conveying surface of the transmission module with high pressure, while the inner cleaning pipe 33 sprays the inner conveying surface of the transmission module. During this process, the brush roller 13 of the floating brush assembly 10, under the action of the counterweight roller 14, swings around the rotating shaft 11 via the connecting frame 12, ensuring that the brush roller 13 always maintains appropriate pressure against the conveying surface. Simultaneously, the brush roller 13 rotates in the opposite direction to the conveying surface of the transmission module, working in conjunction with the spray from the outer cleaning pipe 34 to gently brush away any residual material adhering to the conveying surface, effectively removing the adhering substances. The brushed-off residue falls to the bottom of the container body 100. When a certain amount of residue accumulates at the bottom, the reciprocating pushing assembly 20 is activated. A linear drive module 21 (e.g., a chain drive mechanism) drives a hanger 22 to move a pusher plate 23 in a reciprocating linear motion along the bottom of the tank. The arc-shaped bottom surface of the pusher plate 23 fits against the inner wall of the tank bottom, pushing the residue to the slag discharge hopper 101. The pneumatic ball valve and pneumatic butterfly valve on the slag discharge hopper 101 open in a timely manner to discharge the residue outside the tank. In addition, when deep cleaning is required, the inner cleaning pipe 33 and the outer cleaning pipe 34 work simultaneously to spray the inner and outer sides of the transmission module with high pressure, respectively. Combined with the reverse rotation of the floating brush assembly 10, this washes away residual fine particles and stains. The entire cleaning process can be carried out automatically during processing breaks or after the process is completed, without manual intervention.

[0058] It should be noted that while the preferred embodiments of the present invention are provided in the specification and accompanying drawings, the present invention can be implemented in many different forms and is not limited to the embodiments described herein. These embodiments are not intended to impose additional limitations on the content of the present invention; their purpose is to provide a more thorough and comprehensive understanding of the disclosure of the present invention. Furthermore, the above-described technical features can be combined with each other to form various embodiments not listed above, all of which are considered to be within the scope of the present invention specification. Moreover, those skilled in the art can make improvements or modifications based on the above description, and all such improvements and modifications should fall within the protection scope of the appended claims.

Claims

1. A paste-like material processing system for animal husbandry, comprising a container body (100) and a transfer module disposed within the container body (100), characterized in that, It also includes a cleaning module for cleaning the internal structure of the container body (100), the cleaning module comprising: A floating brush assembly (10) is disposed inside the container body (100) and close to the output end of the transmission module. The floating brush assembly (10) is used to clean the material attached to the conveying surface of the transmission module. The floating brush assembly (10) has a variable contact pressure with the conveying surface. A reciprocating pusher assembly (20) is disposed at the bottom of the container body (100) and is used to push out the residue deposited at the bottom of the container body (100). The reciprocating pusher assembly (20) moves in a reciprocating linear motion along the bottom of the container body (100).

2. The animal husbandry paste-like material processing system according to claim 1, characterized in that, The floating brush assembly (10) includes a rotating shaft (11), a connecting frame (12), a brush roller (13), and a transmission chain assembly (15). The rotating shaft (11) is rotatably installed inside the container body (100). The connecting frame (12) is loosely connected to the rotating shaft (11). The brush roller (13) is installed at one end of the connecting frame (12). The brush roller (13) swings around the rotating shaft (11) through the connecting frame (12) and adaptively conforms to the conveying surface of the transmission module. The brush roller (13) is connected to the rotating shaft (11) through the transmission chain assembly (15).

3. The animal husbandry paste-like material processing system according to claim 2, characterized in that, The floating brush assembly (10) also includes a counterweight roller (14), which is connected to the rotating shaft (11) via a connecting frame (12). The counterweight roller (14) and the brush roller (13) are located on opposite sides of the rotating shaft (11). The counterweight roller (14) and the brush roller (13) form a rocker-type floating structure with the rotating shaft (11) via the connecting frame (12).

4. The animal husbandry paste material processing system according to claim 3, characterized in that, The reciprocating pusher assembly (20) includes a linear drive module (21), a bracket (22), and a pusher plate (23). The linear drive module (21) is installed at the bottom of the container body (100). The bracket (22) is connected to the output end of the linear drive module (21). The pusher plate (23) is fixed on the bracket (22). The bottom surface of the pusher plate (23) is adapted to the bottom inner wall of the container body (100). The linear drive module (21) drives the pusher plate (23) to reciprocate linearly along the bottom of the container body (100).

5. The animal husbandry paste-like material processing system according to claim 4, characterized in that, The linear transmission module (21) is one of the following: electric push rod, cylinder, hydraulic cylinder, lead screw and nut mechanism, synchronous belt transmission mechanism or chain transmission mechanism.

6. The animal husbandry paste-like material processing system according to claim 5, characterized in that, The pusher plate (23) is an arc-shaped pusher scraper, and the arc-shaped pusher scraper is adapted to the inner bottom wall of the container body (100).

7. The animal husbandry paste-like material processing system according to claim 6, characterized in that, The bottom of the container body (100) is provided with a slag discharge hopper (101) and a control valve group, and the movement stroke of the pusher plate (23) covers the slag discharge hopper.

8. The animal husbandry paste-like material processing system according to claim 7, characterized in that, The cleaning module also includes a spray cleaning component (30), which is used in conjunction with the floating brush component (10) to rinse the conveying surface of the cleaning transmission module.

9. The animal husbandry paste-like material processing system according to claim 8, characterized in that, The spray cleaning assembly (30) includes a cleaning pump (31), a cleaning pipeline (32), an inner cleaning pipe (33), an outer cleaning pipe (34), and a water receiving tank (35). The cleaning pump (31) is connected to the inner cleaning pipe (33) and the outer cleaning pipe (34) through the cleaning pipeline (32). The inner cleaning pipe (33) is located inside the transmission module and is used to clean the inner conveying surface of the transmission module. The outer cleaning pipe (34) is located below the transmission module and close to the brush roller (13) and is used to cooperate with the brush roller (13) to clean the outer conveying surface of the transmission module. The water receiving tank (35) is located directly below the inner cleaning pipe (33) and is used to receive the wastewater flushed by the inner cleaning pipe (33).

10. The animal husbandry paste material processing system according to claim 3, characterized in that, It also includes a circulating air assembly (40), which is used to circulate the airflow inside the container body (100). The circulating air assembly (40) includes a circulating fan (41) and a ventilation duct network (42). The output end of the circulating fan (41) and the input end of the ventilation duct network (42) are connected to the inside of the container body (100).