Feed mixing machine suitable for animal husbandry

By designing composite mechanisms and cleaning mechanisms in the mixing machine, the problems of low feed mixing efficiency and difficult material sticking cleaning in the prior art are solved, uniform mixing of feed and efficient cleaning of equipment are achieved, and balanced animal nutrition and equipment stability are ensured.

CN120132698AInactive Publication Date: 2025-06-13赤峰市农牧科学院
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Patent Information

Application Number
CN202510414442.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-03
Publication Date
2025-06-13
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

During the operation of existing mixers, the mixing efficiency of feed is low, and the materials are easily sticky to the inner wall of the equipment, making it more difficult to clean.

Method used

A composite mechanism is designed, including a motor fixedly connected to the top and bottom. The connection shaft of the inner wall drives the treatment mechanism to rotate, roll and cut the material through the agitator to improve the mixing effect, and clean the inner wall of the equipment through the cleaning mechanism and the friction mechanism to prevent sticking.

Benefits of technology

The uniform mixing of feed is achieved, local overnutrition or insufficient nutrients are avoided, and the nutritional balance of animal intake is ensured. At the same time, the stability and cleaning efficiency of the equipment are improved, and the service life of the equipment is extended.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a feed mixer suitable for animal husbandry, and relates to the technical field of mixers, and the feed mixer comprises a composite mechanism. According to the feed mixing machine suitable for animal husbandry, through the design of the composite mechanism, materials enter the composite shell from a large pipeline in the feeding set, a first motor is started, a center shaft is driven to rotate through the first motor, and a stirring mechanism is driven to make contact with the materials, so that the material mixing effect is achieved, and uniform mixing of the materials is promoted; the uniform distribution of various nutritional ingredients in the feed is ensured, the situation of local overnutrition or insufficient nutrition is avoided, liquid needs to be added into some materials before stirring, the liquid enters from a small pipeline in the feeding set, the materials are prone to large caking in the stirring process of the liquid and the materials, and the materials are not prone to caking in the stirring process of the materials through the stirring mechanism. The caked materials are cut and scattered, so that the mixing effect is further improved, and finally, the discharging of the materials is controlled through a discharging valve.
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Description

Technical Field

[0001] The present invention relates to the technical field of mixers, and specifically to a feed mixer applicable to animal husbandry. Background Art

[0002] Animal husbandry is the use of livestock and poultry that have been domesticated by humans. Through artificial feeding and breeding, it enables the conversion of plant energy such as forage and feed into animal energy. During the animal husbandry process, the feeding of animals mainly relies on large-scale planted animal feed, supplemented by fine feeds with various specific purposes. These fine feeds need to solve problems such as improving the resistance of animals, enhancing the ability of animals to resist specific viruses, and improving the meat quality of animals. The main characteristics of animal husbandry are centralization, large-scale operation, and production for profit. Animal husbandry is an extremely important link in the material exchange between humans and nature. Animal husbandry is one of the components of agriculture and is listed as one of the two major pillars of agricultural production together with crop cultivation.

[0003] Currently, during the operation of existing mixers, the mixing efficiency of feed is relatively low, and it is easy for materials to adhere to the inner wall of the equipment, making the cleaning difficult. Therefore, a new design has been carried out for this situation. Summary of the Invention

[0004] To achieve the above objectives, the present invention is realized through the following technical solutions: A feed mixer applicable to animal husbandry includes a compound mechanism. A first motor is fixedly connected to the top of the compound mechanism, and a second motor is fixedly connected to the bottom of the compound mechanism. A connecting shaft is rotatably connected to the bottom of the inner wall of the compound mechanism. A processing mechanism is fixedly connected to the outer side of the connecting shaft. The output end of the second motor is fixedly connected to the bottom of the connecting shaft. A cleaning mechanism is fixedly connected to the top of the inner wall of the compound mechanism; The composite mechanism includes a composite housing. A top plate is fixedly connected to the top of the composite housing. A central shaft is rotatably connected to the bottom of the top plate. The bottom of the central shaft is rotatably connected to the top of the connecting shaft. The output end of the first motor is fixedly connected to the top of the central shaft. An external housing is fixedly connected to the outside of the central shaft. Materials enter the inside of the composite housing through the larger pipe in the feeding group. Start the first motor. Drive the central shaft to rotate through the first motor, drive the stirring mechanism to contact the materials, so as to achieve the mixing effect of the materials, promote the uniform mixing of the materials, ensure the uniform distribution of various nutritional components in the feed, avoid the situation of local nutritional surplus or deficiency, thus ensuring the balanced nutrition intake of animals, and being beneficial to the growth and development of animals and the exertion of production performance. A stirring mechanism is fixedly connected to the outside of the external housing. Some materials need to add liquid before stirring. Therefore, the liquid enters through the smaller pipe inside the feeding group. During the stirring process of the liquid and the materials, it is easy to cause large lumps of the materials, thus affecting the mixing effect of the materials. A feeding group is fixedly connected to one side of the composite housing close to the top plate. A discharge valve is fixedly connected to the inclined part of the top of the composite housing. During the process of the stirring mechanism tumbling the materials, cut and disperse the lumped materials, so as to further improve the mixing effect. Finally, control the discharge of the materials through the discharge valve. A buffer mechanism is fixedly connected to the outside of the composite housing.

[0005] Preferably, the stirring mechanism includes a connecting rod. A receiving block is rotatably connected to one side of the outside of the connecting rod. A stirring frame is fixedly connected to the side of the receiving block far from the connecting rod. When the central shaft rotates, it drives the stirring frame to rub against the materials. During the rubbing process, the receiving block rotates with the connecting rod, so as to increase the coverage range of the stirring frame and improve the tumbling and stirring effect on the materials. A receiving rod is fixedly connected between the opposite surfaces of the stirring frame. The stirring mechanism adopts a multi-angle and vertical array design to increase the contact area with the materials and avoid the precipitation of materials to the bottom of the equipment during the stirring process. A rotating blade block is rotatably connected to the outside of the receiving rod. When the stirring frame rotates, the rotating blade block contacts the surface of the materials. Cut the lumped materials through the rotating blade block to reduce the lumping of the materials, avoid affecting the subsequent mixing effect of the materials, and at the same time avoid the blockage of the lumped materials during discharging, so as to ensure the continuous operation of the equipment. A wiping mechanism is fixedly connected to the middle part between the opposite surfaces of the stirring frame.

[0006] Preferably, the wiping mechanism includes a rotating shaft, and a wiping block is fixedly connected to the outer side of the rotating shaft. When the rotating cutting block cuts the material, it rubs against the inner side of the annular groove of the wiping block, causing the annular groove to rub against the rotating cutting block, thereby cleaning the material on the surface of the component, reducing the adhesion of the material to the surface of the component, preventing the material from sticking after discharging, and easily causing corrosion to the component after a long time without treatment, thus affecting the service life of the component. An annular groove is formed on the outer side of the wiping block, and the rotating cutting block rubs against the annular groove to discharge the material from the inside of the groove.

[0007] Preferably, the buffer mechanism includes an annular frame, the inner side of the annular frame is fixedly connected to the outer side of the composite housing, a square frame is fixedly connected to the outer side of the annular frame, a receiving frame is slidably connected to the outer side of the square frame, and a square spring piece is arranged inside the receiving frame. When the first motor controls the central shaft to rotate for operation, it causes the whole device to vibrate during operation. The square frame squeezes the square spring piece inside the receiving frame, and the square spring piece is used for shock absorption and buffering, thereby reducing the device noise and at the same time reducing the device amplitude, so as to improve the stability of the device and keep the device running normally.

[0008] Preferably, the processing mechanism includes a first ring block, the inner side of the first ring block is fixedly connected to the outer side of the connecting shaft, a first support is fixedly connected to the outer side of the first ring block, a first electric push rod is fixedly connected to the outer side of the first support, and a receiving plate is fixedly connected to one side of the outside of the first electric push rod. By controlling the distance between the receiving plate and the inside of the device with the first electric push rod, excessive friction is avoided, which may cause excessive wear of the component and thus reduce the service life of the component. A second electric push rod is fixedly connected to the side of the receiving plate away from the first support, a second support is fixedly connected to the outer side of the second electric push rod, and a second ring block is fixedly connected to the outer side of the second support. The second motor controls the connecting shaft to rotate, causing the connecting shaft to drive the processing mechanism to rotate. By controlling the first electric push rod and the second electric push rod, the receiving plate is made to fit the inner wall of the composite housing, and then through the rotation of the connecting shaft, the friction mechanism rubs against the inner wall of the device to peel off the material on the inner wall and discharge the residual material, thereby saving material resources. The inner side of the second ring block is fixedly connected to the outer side of the central shaft, and a friction mechanism is fixedly connected to the outer side of the receiving plate. When cleaning the inner wall of the composite mechanism subsequently, the inner wall is cleaned by rubbing with the friction mechanism, thereby cleaning the impurities on the inner wall and reducing the corrosion of the device inner wall by the impurities, thus prolonging the service life of the component.

[0009] Preferably, the friction mechanism includes a semi-circular block. On one side of the semi-circular block close to the receiving plate, a hinge frame is fixedly connected. On the side of the hinge frame away from the semi-circular block, it is fixedly connected to the outer side of the receiving plate. The semi-circular block is made of rubber material, which has high elasticity and good wear resistance, and can provide a large frictional force. When the semi-circular block rubs and cleans the inner wall of the equipment, it can prevent the semi-circular block from overly fitting on the inner wall of the equipment, avoiding excessive wear on the inner wall and thus affecting the performance of the equipment. The hinge frame plays the role of a connecting component.

[0010] Preferably, a sliding rod is fixedly connected to the side of the hinge frame close to the semi-circular block. When the first electric push rod pushes the semi-circular block towards the inner wall of the equipment, the semi-circular block receives a reaction force, and the sliding rod squeezes the spring strip, thus achieving a shock absorption and buffering effect to avoid excessive pushing and extrusion. The outer side of the sliding rod is slidably connected to the outer side of the receiving plate. When the semi-circular block rubs against the inner wall, it reduces the vibration of the components and improves the stability of the component operation. Through the telescoping of the spring structure, it improves the flexibility of the component friction, avoids excessive friction, and reduces the wear between components. A spring strip is sleeved on the outer side of the sliding rod.

[0011] Preferably, the cleaning mechanism includes a connecting pipe. An annular rail is fixedly connected to the outer side of the connecting pipe. Water flows into from the top of the connecting pipe, and the annular rail rotates inside the receiving block, similar to the rotating structure of a sprinkler head. Driven by water pressure, the component rotates, thereby increasing the spraying range of the component and enhancing the cleaning effect on the equipment. The outer side of the annular rail is rotatably connected to a receiving pipe. A spiral plate is fixedly connected to the outer side of the connecting pipe. When water flows through the connecting pipe, it contacts the spiral plate. Through the spiral structure, the turbulence effect of the water flow is enhanced, reducing the adsorption of impurities in the water flow on the surface of the component. The bottom of the receiving pipe is fixedly connected to a cleaning housing. A tapered opening is provided on the outer side of the cleaning housing, and water flows outwards from the tapered opening to achieve the flushing operation on the inner wall of the equipment. The tapered opening adopts a structure with one end wide and one end narrow. According to Bernoulli's principle, by reducing the pipe diameter, the fluid flow velocity is increased, enhancing the flushing efficiency. A rotating mechanism is fixedly connected inside the cleaning housing.

[0012] Preferably, the rotating mechanism includes a cylindrical base. A rotating block is rotatably connected to the outer side of the cylindrical base. A paddle is fixedly connected to the outer side of the rotating block. An external connecting plate is fixedly connected to the outer side of the paddle. After water flows into the cleaning housing, the water impacts the paddle, driving the rotating block to rotate through the paddle, causing the component to rotate. The external connecting plate is arranged on the outer side of the paddle, further increasing the force-receiving area of the water flow on the component. A cylindrical block is rotatably connected to the side of the paddle away from the rotating block. A friction block is fixedly connected to the outer side of the cylindrical block. When the rotating block rotates, it drives the friction block to rub against the inner wall of the cleaning housing, thereby achieving the cleaning of impurities on the inner wall, reducing the precipitation of impurities, avoiding the blockage of the equipment by impurities, and preventing the influence on the liquid flow effect.

[0013] The present invention provides a feed mixer applicable to animal husbandry. It has the following beneficial effects: First, for the feed mixer applicable to animal husbandry, through the design of the compound mechanism, materials enter the interior of the compound housing through the larger pipe in the feeding group. Start the first motor, which drives the central shaft to rotate through the first motor, driving the stirring mechanism to contact the materials, thereby achieving the mixing effect of the materials, promoting the uniform mixing of the materials, ensuring the uniform distribution of various nutritional components in the feed, avoiding the situation of local nutritional surplus or deficiency, thus ensuring the balanced nutrition intake of animals, being beneficial to the growth and development of animals and the exertion of production performance. Secondly, some materials need to add liquid before stirring. Therefore, the liquid enters through the smaller pipe inside the feeding group. During the stirring process of the liquid and the materials, it is easy to cause large lumps in the materials, thus affecting the mixing effect of the materials. During the process of the stirring mechanism tumbling the materials, the lumped materials are cut and dispersed, thereby further improving the mixing effect. Finally, the discharge valve controls the discharge of the materials.

[0014] Second, for the feed mixer applicable to animal husbandry, through the design of the stirring mechanism, when the central shaft rotates, it drives the stirring frame to rub against the materials. During the rubbing process, the receiving block and the connecting rod rotate, thereby increasing the coverage range of the stirring frame and improving the tumbling and stirring effect of the materials. Secondly, the stirring mechanism adopts a multi-angle and vertical array design, thereby increasing the contact area with the materials, avoiding the precipitation of materials to the bottom of the equipment during the stirring process. Secondly, when the stirring frame rotates, the cutting blade block contacts the surface of the materials, and the lumped materials are cut by the cutting blade block, thereby reducing the lumps in the materials, avoiding affecting the subsequent mixing effect of the materials, and at the same time avoiding the blockage of the materials during discharge, thus ensuring the continuous operation of the equipment.

[0015] Third, for the feed mixer applicable to animal husbandry, through the design of the treatment mechanism, the second motor controls the rotation of the connecting shaft, making the connecting shaft drive the treatment mechanism to rotate. The first electric push rod and the second electric push rod control the bearing plate to fit against the inner wall of the compound housing. Then, through the rotation of the connecting shaft, the friction mechanism rubs against the inner wall of the equipment, thereby peeling off the materials on the inner wall and discharging the residual materials, thus saving material resources. Secondly, during the subsequent cleaning of the inner wall of the compound mechanism, the inner wall is cleaned by rubbing with the friction mechanism, thereby achieving the cleaning of the impurities on the inner wall, reducing the corrosion of the inner wall of the equipment by the impurities, and thus prolonging the service life of the components. The distance between the bearing plate and the interior of the equipment is controlled by the first electric push rod to avoid excessive friction, resulting in excessive wear of the components and thus reducing the service life of the components.

[0016] IV. For the feed mixer applicable to animal husbandry, through the design of the cleaning mechanism, water flows into from the top of the connecting pipe, and the annular rail rotates inside the receiving block, which is a rotating structure similar to a sprinkler head. The components are driven to rotate by water pressure, so as to increase the spraying range of the components and enhance the cleaning effect of the equipment. When the water flows through the connecting pipe, it contacts the spiral plate, and the turbulent effect of the water flow is enhanced through the spiral structure, reducing the adsorption of impurities in the water flow on the surface of the components. Then the water flows outwards from the conical opening, so as to achieve the flushing operation of the inner wall of the equipment. The conical opening adopts a structure with one end wide and one end narrow. According to Bernoulli's principle, by reducing the pipe diameter, the fluid flow velocity is increased, and the flushing efficiency is enhanced.

[0017] V. For the feed mixer applicable to animal husbandry, through the design of the rotating mechanism, after the water flows into the cleaning housing, the water impacts the paddle board, and the paddle board drives the rotating block to rotate, so that the components rotate. The external plate is arranged outside the paddle board, further increasing the force area of the water flow on the components. When the rotating block rotates, it drives the friction block to rub against the inner wall of the cleaning housing, so as to clean the impurities on the inner wall, reduce the impurity precipitation, avoid the blockage of the equipment by impurities, and prevent the influence on the liquid flow effect. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 is the external structure schematic diagram of the feed mixer applicable to animal husbandry of the present invention; Figure 2 is the structure schematic diagram of the feed mixer of the present invention; Figure 3 is the cross-sectional structure schematic diagram of the composite mechanism of the present invention; Figure 4 is the structure schematic diagram of the stirring mechanism of the present invention; Figure 5 is the structure schematic diagram of the wiping mechanism of the present invention; Figure 6 is the cross-sectional structure schematic diagram of the buffer mechanism of the present invention; Figure 7 is the structure schematic diagram of the processing mechanism of the present invention; Figure 8 is the structure schematic diagram of the friction mechanism of the present invention; Figure 9 is the cross-sectional structure schematic diagram of the cleaning mechanism of the present invention; Figure 10 is the structure schematic diagram of the rotating mechanism of the present invention.

[0019] In the figure: 1. Composite mechanism; 2. Processing mechanism; 3. Cleaning mechanism; 4. First motor; 5. Second motor; 6. Connecting shaft; 11. Composite housing; 12. Top plate; 13. Central shaft; 14. Outer housing; 15. Stirring mechanism; 16. Feeding group; 17. Discharge valve; 18. Buffer mechanism; 151. Connecting rod; 152. Bearing block; 153. Stirring frame; 154. Bearing rod; 155. Rotary blade block; 156. Wiping mechanism; 1561. Rotating shaft; 1562. Wiping block; 1563. Annular groove; 181. Annular frame; 182. Square frame; 183. Bearing frame; 184. Square reed; 21. First ring block; 22. First bracket; 23. Second electric push rod; 24. Second ring block; 25. Second bracket; 26. Bearing plate; 27. Friction mechanism; 28. First electric push rod; 271. Semi-circular block; 272. Hinge frame; 273. Sliding rod; 274. Spring strip; 31. Connecting pipe; 32. Annular rail; 33. Bearing pipe; 34. Spiral plate; 35. Cleaning housing; 36. Conical opening; 37. Rotating mechanism; 371. Cylindrical base; 372. Rotating block; 373. Paddle board; 374. Outer plate; 375. Cylindrical block; 376. Friction block. Detailed implementation mode

[0020] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with 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.

[0021] The first embodiment is as Figures 1 to 6 shown. The present invention provides a technical solution: a feed mixer applicable to animal husbandry, including a composite mechanism 1. A first motor 4 is fixedly connected to the top of the composite mechanism 1. A second motor 5 is fixedly connected to the bottom of the composite mechanism 1. The bottom of the inner wall of the composite mechanism 1 is rotatably connected to a connecting shaft 6. A processing mechanism 2 is fixedly connected to the outside of the connecting shaft 6. The output end of the second motor 5 is fixedly connected to the bottom of the connecting shaft 6. A cleaning mechanism 3 is fixedly connected to the top of the inner wall of the composite mechanism 1; The composite mechanism 1 includes a composite housing 11. A top plate 12 is fixedly connected to the top of the composite housing 11. A central shaft 13 is rotatably connected to the bottom of the top plate 12. The bottom of the central shaft 13 is rotatably connected to the top of the connection shaft 6. The output end of the first motor 4 is fixedly connected to the top of the central shaft 13. An external housing 14 is fixedly connected to the outside of the central shaft 13. A stirring mechanism 15 is fixedly connected to the outside of the external housing 14. A feeding group 16 is fixedly connected to one side of the composite housing 11 near the top plate 12. A discharge valve 17 is fixedly connected to the inclined part of the top of the composite housing 11. A buffer mechanism 18 is fixedly connected to the outside of the composite housing 11. Materials enter the inside of the composite housing 11 through the larger pipe in the feeding group 16. The first motor 4 is started, and the central shaft 13 is driven to rotate by the first motor 4, driving the stirring mechanism 15 to contact the materials, thereby achieving the effect of mixing the materials, promoting the uniform mixing of the materials, ensuring the uniform distribution of various nutritional components in the feed, avoiding the situation of local nutritional surplus or deficiency, and thus ensuring the balanced nutrition intake of animals, which is beneficial to the growth and development of animals and the exertion of production performance. Secondly, some materials need to be added with liquid before stirring. Therefore, the liquid enters through the smaller pipe inside the feeding group 16. During the process of stirring the liquid and the materials, it is easy to cause large lumps in the materials, thereby affecting the mixing effect of the materials. During the process of the stirring mechanism 15 tumbling the materials, the lumped materials are cut and dispersed, thereby further improving the mixing effect. Finally, the discharge of the materials is controlled by the discharge valve 17.

[0022] The stirring mechanism 15 includes a connecting rod 151. A receiving block 152 is rotatably connected to one side of the outside of the connecting rod 151. A stirring frame 153 is fixedly connected to the side of the receiving block 152 away from the connecting rod 151. A receiving rod 154 is fixedly connected between the opposite faces of the stirring frame 153. A rotating blade block 155 is rotatably connected to the outside of the receiving rod 154. A wiping mechanism 156 is fixedly connected to the middle between the opposite faces of the stirring frame 153. When the central shaft 13 rotates, it drives the stirring frame 153 to rub against the materials. During the rubbing process, the receiving block 152 rotates with the connecting rod 151, thereby increasing the coverage range of the stirring frame 153 and improving the tumbling and stirring effect on the materials. Secondly, the stirring mechanism 15 adopts a multi-angle and vertical array design to increase the contact area with the materials, avoiding the precipitation of materials to the bottom of the equipment during the stirring process. Secondly, when the stirring frame 153 rotates, the rotating blade block 155 contacts the surface of the materials, and the rotating blade block 155 cuts the lumped materials, thereby reducing the lumps in the materials, avoiding affecting the subsequent mixing effect of the materials, and at the same time avoiding the blockage of the lumped materials during discharging, so as to ensure the continuous operation of the equipment.

[0023] The wiping mechanism 156 includes a rotating shaft 1561. A wiping block 1562 is fixedly connected to the outer side of the rotating shaft 1561. An annular groove 1563 is formed in the outer side of the wiping block 1562. When the rotating blade block 155 cuts the material, it rubs against the inner side of the annular groove 1563 of the wiping block 1562, causing the annular groove 1563 to rub against the rotating blade block 155, thereby cleaning the material on the surface of the component, reducing the adhesion of the material to the surface of the component, preventing the material from sticking after discharging. If not processed for a long time, it is easy to corrode the component, thus affecting the service life of the component. At the same time, when the rotating blade block 155 rubs against the annular groove 1563, the material is discharged from the inside of the groove.

[0024] The buffer mechanism 18 includes an annular frame 181. The inner side of the annular frame 181 is fixedly connected to the outer side of the composite housing 11. A square frame 182 is fixedly connected to the outer side of the annular frame 181. A receiving frame 183 is slidably connected to the outer side of the square frame 182. A square spring piece 184 is arranged inside the receiving frame 183. When the first motor 4 controls the central shaft 13 to rotate for operation, the whole equipment vibrates during operation. The square frame 182 squeezes the square spring piece 184 inside the receiving frame 183, and the square spring piece 184 is used for shock absorption and buffering, thereby reducing the equipment noise and at the same time reducing the equipment amplitude, so as to improve the stability of the equipment and keep the equipment running normally.

[0025] The second embodiment, on the basis of the first embodiment, please refer to Figures 7 to 8 As shown, the processing mechanism 2 includes a first ring block 21. The inner side of the first ring block 21 is fixedly connected to the outer side of the connecting shaft 6. A first support 22 is fixedly connected to the outer side of the first ring block 21. A first electric push rod 28 is fixedly connected to the outer side of the first support 22. A receiving plate 26 is fixedly connected to one side of the outside of the first electric push rod 28. A second electric push rod 23 is fixedly connected to the side of the receiving plate 26 away from the first support 22. A second support 25 is fixedly connected to the outer side of the second electric push rod 23. A second ring block 24 is fixedly connected to the outer side of the second support 25. The inner side of the second ring block 24 is fixedly connected to the outer side of the central shaft 13. A friction mechanism 27 is fixedly connected to the outer side of the receiving plate 26. The second motor 5 controls the connecting shaft 6 to rotate, so that the connecting shaft 6 drives the processing mechanism 2 to rotate. The first electric push rod 28 and the second electric push rod 23 are used to control the receiving plate 26 to fit the inner wall of the composite housing 11. Then, the friction mechanism 27 rubs against the inner wall of the equipment as the connecting shaft 6 rotates, thereby peeling the material on the inner wall and discharging the residual material, so as to save material resources. Secondly, when cleaning the inner wall of the composite mechanism 1 subsequently, the friction mechanism 27 rubs against the inner wall for cleaning, so as to clean the impurities on the inner wall and reduce the corrosion of the inner wall of the equipment by the impurities, thereby prolonging the service life of the component. The distance between the receiving plate 26 and the inside of the equipment is controlled by the first electric push rod 28 to avoid excessive friction, resulting in excessive wear of the component and thus reducing the service life of the component.

[0026] The friction mechanism 27 includes a semi-circular block 271. On one side of the semi-circular block 271 close to the bearing plate 26, a hinge frame 272 is fixedly connected. On the side of the hinge frame 272 away from the semi-circular block 271, it is fixedly connected to the outer side of the bearing plate 26. The semi-circular block 271 is made of rubber material, which has high elasticity and good wear resistance, can provide a large frictional force. When the semi-circular block 271 frictional cleans the inner wall of the equipment, it can avoid the semi-circular block 271 from overly fitting on the inner wall of the equipment, prevent excessive wear on the inner wall, and thus affect the performance of the equipment. The hinge frame 272 plays the role of a connecting component.

[0027] On the side of the hinge frame 272 close to the semi-circular block 271, a sliding rod 273 is fixedly connected. The outer side of the sliding rod 273 is slidably connected to the outer side of the bearing plate 26, and a spring strip 274 is sleeved on the outer side of the sliding rod 273. When the first electric push rod 28 pushes the semi-circular block 271 towards the inner wall of the equipment, the semi-circular block 271 receives a reaction force, and the sliding rod 273 squeezes the spring strip 274, thereby playing a shock absorption and buffering effect, avoiding excessive pushing and extrusion. At the same time, when the semi-circular block 271 frictions the inner wall, it reduces the jitter of the components, improves the stability of the component operation, and through the telescoping of the spring structure, it improves the flexibility of the component friction, avoids excessive friction, and reduces the wear between components.

[0028] For the third embodiment, on the basis of the first and second embodiments, please refer to Figures 9 to 10 As shown, the cleaning mechanism 3 includes a connecting pipe 31. On the outer side of the connecting pipe 31, an annular rail 32 is fixedly connected. On the outer side of the annular rail 32, a receiving pipe 33 is rotatably connected. On the outer side of the connecting pipe 31, a spiral plate 34 is fixedly connected. At the bottom of the receiving pipe 33, a cleaning housing 35 is fixedly connected. On the outer side of the cleaning housing 35, a conical opening 36 is provided. Inside the cleaning housing 35, a rotating mechanism 37 is fixedly connected. Water flows into from the top of the connecting pipe 31. The annular rail 32 rotates inside the receiving pipe 33, similar to the rotating structure of a sprinkler head. The water pressure drives the components to rotate, thereby increasing the spraying range of the components and enhancing the cleaning effect on the equipment. When the water flow passes through the connecting pipe 31, it contacts the spiral plate 34, and the spiral structure enhances the turbulence effect of the water flow, reducing the adsorption of impurities in the water flow on the surface of the components. Then the water flow is discharged outward from the conical opening 36, thereby achieving the flushing operation on the inner wall of the equipment. The conical opening 36 adopts a structure with one end wide and one end narrow. According to Bernoulli's principle, by reducing the pipe diameter, the fluid flow velocity is increased, and the flushing efficiency is enhanced.

[0029] The rotating mechanism 37 includes a cylindrical base 371. A rotating block 372 is rotatably connected to the outer side of the cylindrical base 371. An oar blade 373 is fixedly connected to the outer side of the rotating block 372. An external connection plate 374 is fixedly connected to the outer side of the oar blade 373. A cylindrical block 375 is rotatably connected to the side of the oar blade 373 away from the rotating block 372. A friction block 376 is fixedly connected to the outer side of the cylindrical block 375. After water flows into the inside of the cleaning housing 35, the water impacts the oar blade 373, drives the rotating block 372 to rotate through the oar blade 373, and makes the components rotate. The external connection plate 374 is arranged on the outer side of the oar blade 373, further increasing the force-receiving area of the water on the components. When the rotating block 372 rotates, it drives the friction block 376 to rub against the inner wall of the cleaning housing 35, thereby achieving the cleaning of impurities on the inner wall, reducing impurity precipitation, avoiding blockage of the equipment by impurities, and preventing the influence on the liquid flow effect.

[0030] During use, the cleaning mechanism 3 is arranged at the top of the inner wall of the composite mechanism 1. The cleaning mechanism 3 is used for flushing the equipment after the operation of the equipment. The connecting shaft 6 is arranged at the bottom of the composite housing 11 to support the central shaft 13. The processing mechanism 2 is arranged on the outer side of the connecting shaft 6. The first motor 4 is used to control the central shaft 13, and the second motor 5 controls the connecting shaft 6. Materials enter the inside of the composite housing 11 from the larger pipeline of the feeding group 16, and then the central shaft 13 drives the stirring mechanism 15 to rotate, thereby achieving the stirring operation of the materials. Through stirring, the materials are uniformly mixed, ensuring the uniform distribution of various nutritional components in the feed, avoiding the situation of local nutritional surplus or deficiency, and thus ensuring the balanced nutrition intake of animals, which is beneficial to the growth and development of animals and the exertion of production performance. Secondly, some special materials need to be added with preparation liquid. The preparation liquid enters from the smaller pipeline of the feeding group 16. During the mixing process of the preparation and the materials, there is a situation where the materials agglomerate. Therefore, the stirring mechanism 15 cuts and distributes the agglomerated materials, thereby further promoting the mixing effect of the materials. Finally, the materials are discharged from the discharge valve 17, which is convenient for subsequent processing. After discharging, there is material sticking to the inner wall of the equipment. On the one hand, it avoids waste of material resources, and on the other hand, it prevents the inner wall of the equipment from being polluted and corroded due to long-term non-cleaning of the materials, thus affecting the service life of the equipment. Secondly, it avoids the pollution of subsequent materials caused by the deterioration of the materials. Therefore, after the operation is completed, the connecting shaft 6 drives the processing mechanism 2 to rub against the inner wall of the composite housing 11, thereby achieving the cleaning of the sticking materials and discharging the retained materials, which is convenient for subsequent use. Then, the cleaning mechanism 3 is connected to a water pipe, and the water pressure of the water pipe makes the cleaning mechanism 3 rotate. The scouring range of the water flow is increased through the rotating structure, improving the scouring effect on the inner wall of the equipment, cleaning the residues on the inner wall of the equipment, and keeping the inside of the equipment clean. While the cleaning mechanism 3 is scouring, the processing mechanism 2 rubs against the inner wall of the equipment, thereby further improving the cleaning effect.

[0031] Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all of them. All other embodiments obtained by those of ordinary skill in the art and related fields based on the embodiments of the present invention without creative efforts shall fall within the scope of protection of the present invention. Structures, devices, and operation methods not specifically described and explained in the present invention shall be implemented by conventional means in the art without special instructions and limitations.

Claims

1. A feed mixer suitable for animal husbandry, characterized in that: The invention comprises a composite mechanism (1), wherein a first motor (4) is fixedly connected to the top of the composite mechanism (1), a second motor (5) is fixedly connected to the bottom of the composite mechanism (1), a connecting shaft (6) is rotatably connected to the bottom of the inner wall of the composite mechanism (1), a processing mechanism (2) is fixedly connected to the outer side of the connecting shaft (6), an output end of the second motor (5) is fixedly connected to the bottom of the connecting shaft (6), and a cleaning mechanism (3) is fixedly connected to the top of the inner wall of the composite mechanism (1); The composite mechanism (1) comprises a composite shell (11), the top of the composite shell (11) is fixedly connected to a top plate (12), the bottom of the top plate (12) is rotatably connected to a central shaft (13), the bottom of the central shaft (13) is rotatably connected to the top of a connecting shaft (6), the output end of the first motor (4) is fixedly connected to the top of the central shaft (13), the outer side of the central shaft (13) is fixedly connected to an external shell (14), the outer side of the external shell (14) is fixedly connected to a stirring mechanism (15), a side of the outside of the composite shell (11) close to the top plate (12) is fixedly connected to a feed group (16), a discharge valve (17) is fixedly connected to an inclined portion of the top of the composite shell (11), and a buffer mechanism (18) is fixedly connected to the outer side of the composite shell (11); The processing mechanism (2) comprises a first ring block (21), the inner side of the first ring block (21) is fixedly connected to the outer side of the connecting shaft (6), the outer side of the first ring block (21) is fixedly connected to a first bracket (22), the outer side of the first bracket (22) is fixedly connected to a first electric push rod (28), a receiving plate (26) is fixedly connected to an outer side of the first electric push rod (28), a side of the receiving plate (26) away from the first bracket (22) is fixedly connected to a second electric push rod (23), the outer side of the second electric push rod (23) is fixedly connected to a second bracket (25), the outer side of the second bracket (25) is fixedly connected to a second ring block (24), the inner side of the second ring block (24) is fixedly connected to the outer side of the central shaft (13), and the outer side of the receiving plate (26) is fixedly connected to a friction mechanism (27).

2. A feed mixer suitable for animal husbandry according to claim 1, characterized in that: The stirring mechanism (15) comprises a connecting rod (151), one side of the outside of the connecting rod (151) is rotatably connected to a receiving block (152), the side of the outside of the receiving block (152) away from the connecting rod (151) is fixedly connected to a stirring frame (153), a receiving rod (154) is fixedly connected between opposite surfaces of the stirring frame (153), the outer side of the receiving rod (154) is rotatably connected to a rotating blade block (155), and a wiping mechanism (156) is fixedly connected in the middle between the opposite surfaces of the stirring frame (153).

3. A feed mixer suitable for animal husbandry according to claim 2, characterized in that: The wiping mechanism (156) comprises a rotating shaft (1561), a wiping block (1562) is fixedly connected to the outer side of the rotating shaft (1561), and an annular groove (1563) is provided on the outer side of the wiping block (1562).

4. A feed mixer suitable for animal husbandry according to claim 1, characterized in that: The buffer mechanism (18) comprises an annular frame (181), the inner side of the annular frame (181) being fixedly connected to the outer side of the composite shell (11), the outer side of the annular frame (181) being fixedly connected to a square frame (182), the outer side of the square frame (182) being slidably connected to a receiving frame (183), and the inner side of the receiving frame (183) being provided with a square leaf spring (184).

5. A feed mixer suitable for animal husbandry according to claim 1, characterized in that: The friction mechanism (27) comprises a semi-arc block (271), a side of the outside of the semi-arc block (271) close to the receiving plate (26) being fixedly connected to a hinge frame (272), and a side of the outside of the hinge frame (272) away from the semi-arc block (271) being fixedly connected to the outside of the receiving plate (26).

6. A feed mixer suitable for animal husbandry according to claim 5, characterized in that: A sliding rod (273) is fixedly connected to one side of the hinge frame (272) close to the semi-arc block (271), the outer side of the sliding rod (273) is slidably connected to the outer side of the receiving plate (26), and the outer side of the sliding rod (273) is sleeved with a spring bar (274).

7. A feed mixer suitable for animal husbandry according to claim 1, characterized in that: The cleaning mechanism (3) comprises a connecting pipe (31), the outer side of the connecting pipe (31) is fixedly connected to an annular rail (32), the outer side of the annular rail (32) is rotatably connected to a receiving pipe (33), the outer side of the connecting pipe (31) is fixedly connected to a spiral plate (34), the bottom of the receiving pipe (33) is fixedly connected to a cleaning shell (35), the outer side of the cleaning shell (35) is provided with a conical opening (36), and the interior of the cleaning shell (35) is fixedly connected to a rotating mechanism (37).

8. A feed mixer suitable for animal husbandry according to claim 7, characterized in that: The rotating mechanism (37) comprises a columnar base (371), the outer side of the columnar base (371) is rotatably connected to a rotating block (372), the outer side of the rotating block (372) is fixedly connected to a paddle board (373), the outer side of the paddle board (373) is fixedly connected to an external plate (374), the side of the paddle board (373) away from the rotating block (372) is rotatably connected to a columnar block (375), and the outer side of the columnar block (375) is fixedly connected to a friction block (376).