Stirring and mixing equipment for feed raw materials
By introducing grinding blocks and magnetic ball stirring components into the feed mixing equipment, the problems of uneven mixing of feed ingredients and insufficient release of nutrients have been solved, achieving more efficient mixing and nutrient release, and improving the stability and nutritional value of the product.
Patent Information
- Application Number
- CN202520137534.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-21
- Publication Date
- 2026-01-06
- Estimated Expiration
- 2035-01-21
AI Technical Summary
Existing technologies make it difficult to achieve uniform distribution and full release of nutrients during feed ingredient mixing, resulting in insufficient feed stability and nutritional value.
The design includes a protective box, a first motor, a movable shaft, a fixed cylinder, a first grinding block, and a second grinding block. The interaction between the grinding blocks reduces the particle size, and the combination of grooves, elastic rods, and magnetic balls ensures thorough mixing of feed ingredients and release of nutrients.
It achieves uniform distribution of feed ingredients and full release of nutrients, improves feed stability and nutritional value, and promotes healthy animal growth.
Smart Images

Figure CN223760889U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of feed production equipment, and concretely relates to a stirring and mixing equipment for feed raw materials. BACKGROUND
[0002] Feed raw materials refer to various basic substances used in the feed processing process, which are the main components of feed and provide the required nutrients and energy for animals. In the feed processing process, the staff will reasonably select and use feed raw materials according to the types, growth stages and production needs of animals to develop scientific and reasonable feed formulations.
[0003] In the prior art, the staff will take out various raw materials from the batching bin according to the feed formulation, then send the batched raw materials into a mixing machine for sufficient mixing, and finally pack and store the mixed feed particles.
[0004] In long-term use and observation, it is found that grinding the mixed feed particles into small particle sizes can make the various feed raw materials more evenly distributed during the stirring and mixing of the configured multiple feed raw materials.
[0005] Therefore, the utility model provides a stirring and mixing equipment for feed raw materials. CONTENT OF THE UTILITY MODEL
[0006] In order to make up for the deficiencies of the prior art and solve at least one problem raised in the background art, a stirring and mixing equipment for feed raw materials is proposed.
[0007] The utility model discloses a technical scheme that solves its technical problem is: a kind of mixing equipment of feed raw material, including mixing cylinder;The mixing cylinder top side wall is equipped with cylinder cover;The cylinder cover top side wall is equipped with inlet in the opening;The mixing cylinder inner side wall middle part is equipped with scattering subassembly;The scattering subassembly is equipped below inlet;The mixing cylinder bottom side wall is fixed with bottom plate;The bottom plate side wall middle part is equipped with multiple discharge grooves;The bottom plate side wall middle part is equipped with mixing subassembly;The mixing subassembly rotates in mixing cylinder interior;The mixing subassembly side wall middle part is equipped with stirring subassembly;The mixing cylinder bottom side wall is fixed with fixed plate;The fixed plate bottom side wall is fixed with feed tank;The feed tank side wall middle part is equipped with conveying subassembly;The feed tank bottom side wall is equipped with discharge port in the opening;The mixing subassembly includes protective box;The protective box is fixed in bottom plate bottom;The protective box inner side wall middle part is equipped with first motor;The first motor output is fixed with movable shaft;The movable shaft side wall middle part is fixed with fixed cylinder;The fixed cylinder is conical structure arrangement;The fixed cylinder side wall middle part is fixed with first grinding block;The first grinding block is multiple and in fixed cylinder side wall circumferential array regular arrangement;The mixing cylinder inner side wall middle part is fixed with multiple second grinding block;The second grinding block and first grinding block are correspondingly arranged;This step is through setting protective box, first motor, movable shaft, fixed cylinder, first grinding block and second grinding block, can reduce the particle size of feed raw material, so that the component between different feed raw materials is more easily interpenetrated and mixed, to realize the uniform distribution of component, and the interaction of second grinding block and first grinding block can destroy the cell wall of feed raw material, so that the nutrient components such as protein, amino acid, vitamin in it are more easily released, to improve the stability of feed, improve the nutritional value of feed, help animal to maintain stable growth performance and health condition.
[0008] Preferably, the stirring subassembly includes a plurality of grooves; a plurality of the grooves are respectively provided on the side wall of the first grinding block; a resilient rod is rotatably connected to the inner side wall of the groove; the resilient rod is made of elastic material; a first magnetic ball is fixed to the end of the resilient rod; a second magnetic ball is fixed to the side wall of the second grinding block; the second magnetic ball and the first magnetic ball are correspondingly arranged; by setting the grooves, the resilient rod, the first magnetic ball and the second magnetic ball, the stirring operation can be continuously carried out in the mixing cylinder during the grinding and mixing of the feed raw materials, so that the feed raw materials can be more fully ground and mixed, which helps to release the nutrient components, improve the nutritional value and digestibility of the feed, and this setting can also prevent the feed raw materials from being jammed or accumulated during the grinding and mixing process, so that the feed raw materials are more evenly distributed in the mixing cylinder, reducing local accumulation and improving overall mixing efficiency.
[0009] Preferably, the dispersing assembly comprises a support rod; the support rod is fixed on the inner wall of the mixing cylinder; a movable rod is rotatably connected to the middle of the side wall of the support rod; a plurality of flow dividing plates are assembled on the middle of the side wall of the movable rod; the flow dividing plates are arranged in arc-shaped structure; this step can keep the feed raw materials at a proper flow speed and pressure during the grinding and mixing process, reduce the risk of blockage, and effectively reduce the local accumulation of the feed raw materials between the first grinding block and the second grinding block, so that more uniform grinding and mixing effects are achieved.
[0010] Preferably, the conveying assembly comprises a second motor; the second motor is fixed on the side wall of the feed conveying box; a conveying auger is fixedly connected to the output end of the second motor; the conveying auger rotates inside the feed conveying box; this step can not only uniformly distribute the feed raw materials in the feed conveying box, thereby improving the mixing uniformity, but also better disperse and mix various components in the feed after secondary mixing, so that the nutritional components in the feed are more balanced, the quality of the feed is improved, and the mixed feed raw materials can be quickly and effectively conveyed, the continuity of conveying is maintained, and the production efficiency is improved.
[0011] Preferably, a flow guide plate is fixed on the top side wall of the fixed cylinder; the flow guide plate is arranged in arc-shaped structure; this step can reduce the accumulation of the feed raw materials on the top of the fixed cylinder after entering the mixing cylinder.
[0012] Preferably, an observation window is formed in the top side wall of the feed conveying box; the observation window is made of transparent material; this step can directly observe the conveying condition of the feed raw materials inside the feed conveying box, which helps to find and solve problems in time and ensure the smooth production.
[0013] The beneficial effects of the utility model are as follows:
[0014] 1.The feed raw material stirring and mixing equipment, by setting the protection box, the first motor, the movable shaft, the fixed cylinder, the first grinding block and the second grinding block, the particle size of the feed raw materials can be reduced, the components of different feed raw materials can be more easily penetrated and mixed, thereby realizing uniform distribution of components, the interaction between the second grinding block and the first grinding block can damage the cell wall of the feed raw materials, so that the nutritional components such as protein, amino acid and vitamin in the feed raw materials can be more easily released, thereby improving the stability of the feed, improving the nutritional value of the feed, and helping animals to maintain stable growth performance and health status.
[0015] 2.The mixing equipment for feed raw materials, through the grooves, elastic rods, first magnetic balls and second magnetic balls, can continuously stir in the mixing cylinder during the process of grinding and mixing the feed raw materials, so that the feed raw materials can be more fully ground and mixed, which helps to release the nutritional ingredients, improves the nutritional value and digestibility of the feed, and the setting can also prevent the feed raw materials from being jammed or accumulated during the grinding and mixing process, so that the feed raw materials are more evenly distributed in the mixing cylinder, reducing local accumulation and improving overall mixing efficiency. BRIEF DESCRIPTION OF DRAWINGS
[0016] The utility model will be further described below in combination with the drawings.
[0017] Figure 1 is the perspective view of the utility model;
[0018] Figure 2 is the sectional view of the mixing cylinder in the utility model;
[0019] Figure 3 is the cooperation structure schematic diagram of the fixed cylinder and the elastic rod in the utility model;
[0020] Figure 4 is the cooperation structure schematic diagram of the grinding block and the flow divider in the utility model;
[0021] Figure 5 is Figure 2 the local enlarged view of A in the figure.
[0022] Legend:
[0023] 1, mixing cylinder;11, cylinder cover;12, inlet;13, bottom plate;14, discharge slot;15, fixed plate;16, feed tank;17, discharge port;2, protection box;21, first motor;22, movable shaft;23, fixed cylinder;24, first grinding block;25, second grinding block;3, groove;31, elastic rod;32, first magnetic ball;33, second magnetic ball;4, support rod;41, movable rod;42, flow divider;5, second motor;51, conveying auger;6, flow guide plate;7, observation window. DETAILED DESCRIPTION
[0024] The technical solutions in the embodiments of the utility model will be clearly and completely described below in combination with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.
[0025] The specific embodiments are given below.
[0026] As Figures 1 to 4 shown, the utility model embodiment's one kind for mixing equipment of feed raw material, including mixing cylinder 1;Mixing cylinder 1 top side wall is equipped with cylinder cover 11;Cylinder cover 11 top side wall is equipped with inlet 12;Mixing cylinder 1 inner side wall middle part is equipped with scattering subassembly;Scattering subassembly is equipped below inlet 12;Mixing cylinder 1 bottom side wall is fixedly connected with bottom plate 13;Bottom plate 13 side wall middle part is equipped with a plurality of discharge groove 14;Bottom plate 13 side wall middle part is equipped with mixing subassembly;Mixing subassembly rotates in mixing cylinder 1 interior;Mixing subassembly side wall middle part is equipped with stirring subassembly;Mixing cylinder 1 bottom side wall is fixedly connected with fixed plate 15;Fixed plate 15 bottom side wall is fixed with feed tank 16;Feed tank 16 side wall middle part is equipped with conveying subassembly;Feed tank 16 bottom side wall is equipped with discharge port 17;When working, staff starts mixing subassembly and conveying subassembly, then the multiple feed raw materials to be mixed are poured into mixing cylinder 1 interior through inlet 12, because scattering subassembly is equipped below inlet 12, feed raw material will first drop on the surface of scattering subassembly, is shunted by scattering subassembly, immediately continue to drop in mixing cylinder 1 interior, mixing subassembly will grind the multiple feed raw materials in mixing cylinder 1 ceaselessly in rotation at this moment, simultaneously, the stirring subassembly on the side wall of mixing subassembly, will rotate along with the rotation of mixing subassembly, therefore will ceaselessly stir the multiple feed raw materials in mixing cylinder 1, and the feed raw material after grinding and mixing will enter feed tank 16 interior through a plurality of discharge groove 14, and under the action of conveying subassembly, is mixed secondly and is transported to discharge port 17, so that the mixed feed raw material moves from discharge port 17 to the outside of feed tank 16, finally is collected by staff.
[0027] As Figures 2 to 5As shown, the mixing assembly comprises a protective box 2; the protective box 2 is fixed at the bottom of the bottom plate 13; a first motor 21 is mounted in the middle of the inner side wall of the protective box 2; an output end of the first motor 21 is fixedly connected with an activity shaft 22; a fixed cylinder 23 is fixedly connected to the middle of the side wall of the activity shaft 22; the fixed cylinder 23 is provided in a conical structure; a first grinding block 24 is fixedly connected to the middle of the side wall of the fixed cylinder 23; the first grinding block 24 is a plurality of and arranged in a circumferential array on the side wall of the fixed cylinder 23; a plurality of second grinding blocks 25 are fixedly connected to the middle of the inner side wall of the mixing cylinder 1; the second grinding blocks 25 are correspondingly arranged with the first grinding blocks 24; during operation, the worker starts the first motor 21, the first motor 21 drives the activity shaft 22 to rotate, the activity shaft 22 drives the fixed cylinder 23 to rotate when rotating, and the fixed cylinder 23 drives the plurality of first grinding blocks 24 on the side wall thereof to rotate synchronously, because the second grinding blocks 25 are correspondingly arranged with the first grinding blocks 24, the plurality of feed raw materials entering the inside of the mixing cylinder 1 are ground and mixed under the interaction of the second grinding blocks 25 and the first grinding blocks 24, and because the fixed cylinder 23 is provided in a conical structure, the particle size of the feed raw materials is gradually reduced under the interaction of the second grinding blocks 25 and the first grinding blocks 24 during the process of falling downward in the mixing cylinder 1, this step can reduce the particle size of the feed raw materials by arranging the protective box 2, the first motor 21, the activity shaft 22, the fixed cylinder 23, the first grinding block 24 and the second grinding block 25, so that the ingredients between different feed raw materials can be more easily penetrated and mixed, thereby realizing uniform distribution of ingredients, and the interaction of the second grinding blocks 25 and the first grinding blocks 24 can damage the cell wall of the feed raw materials, so that the nutritional ingredients such as protein, amino acid and vitamin in the feed raw materials can be more easily released, thereby improving the stability of the feed, improving the nutritional value of the feed, and helping animals to maintain stable growth performance and health status.
[0028] As Figures 2 to 5As shown, the stirring assembly comprises a plurality of grooves 3; the plurality of grooves 3 are respectively formed on the sidewall of the first grinding block 24; the middle part of the inner sidewall of the groove 3 is rotationally connected with an elastic rod 31; the elastic rod 31 is made of elastic material; the end of the elastic rod 31 is fixed with a first magnetic ball 32; the middle part of the sidewall of the second grinding block 25 is fixed with a second magnetic ball 33; the second magnetic ball 33 and the first magnetic ball 32 are correspondingly arranged; during work, when the fixed cylinder 23 rotates with the plurality of first grinding blocks 24, the elastic rod 31 and the first magnetic ball 32 on the sidewall of the first grinding block 24 will rotate synchronously, because the second magnetic ball 33 and the first magnetic ball 32 will attract each other, at this time the elastic rod 31 will move with the first magnetic ball 32 inside the groove 3, so that the first magnetic ball 32 is in contact with different second magnetic balls 33, this step through the setting of the groove 3, the elastic rod 31, the first magnetic ball 32 and the second magnetic ball 33, can continuously stir inside the mixing cylinder 1 during the process of grinding and mixing the feed raw materials, so that the feed raw materials can be more fully ground and mixed, which helps to release the nutrient components, improves the nutritional value and digestibility of the feed, and this setting can also prevent the feed raw materials from being jammed or accumulated during the grinding and mixing process, so that the feed raw materials are more evenly distributed in the mixing cylinder 1, reducing local accumulation and improving overall mixing efficiency.
[0029] As shown in Figure 2 and Figure 4 , the scattering assembly comprises a support rod 4; the support rod 4 is fixed on the inner wall of the mixing cylinder 1; the middle part of the sidewall of the support rod 4 is rotationally connected with a movable rod 41; a plurality of flow dividing plates 42 are assembled on the middle part of the sidewall of the movable rod 41; the flow dividing plates 42 are arranged in arc shape; during work, the staff pours the plurality of feed raw materials to be mixed into the mixing cylinder 1 through the feed inlet 12, at this time the feed raw materials will fall on the sidewall of the movable rod 41, and then roll onto the surface of the plurality of flow dividing plates 42, because the movable rod 41 and the support rod 4 are rotationally connected, the flow dividing plates 42 will rotate with the movable rod 41 on the sidewall of the support rod 4 under the action of gravity, so that the feed raw materials accumulated on the surface of the movable rod 41 and the flow dividing plates 42 fall between the first grinding block 24 and the second grinding block 25, this step through the setting of the support rod 4, the movable rod 41 and the flow dividing plates 42, can make the feed raw materials maintain appropriate flow speed and pressure during the grinding and mixing process, reduce the risk of blockage, and this setting effectively reduces the local accumulation of the feed raw materials between the first grinding block 24 and the second grinding block 25, realizes more uniform grinding and mixing effect.
[0030] As shown in Figure 1 and Figure 2As shown, the conveying assembly comprises a second motor 5; the second motor 5 is fixed on the side wall of the feeding box 16; the output end of the second motor 5 is fixedly connected with a conveying auger 51; the conveying auger 51 rotates inside the feeding box 16; during operation, the worker starts the second motor 5, and the second motor 5 drives the conveying auger 51 to rotate inside the feeding box 16; after the preliminarily mixed feed raw materials enter the inside of the feeding box 16 through the plurality of discharge slots 14, the conveying auger 51 mixes the feed raw materials again and transports the mixed feed raw materials to the discharge port 17, so that the feed raw materials flow out from the discharge port 17 smoothly; by arranging the second motor 5 and the conveying auger 51, the feed raw materials can be uniformly distributed in the feeding box 16, thereby improving the mixing uniformity; after the secondary mixing, the various components in the feed are better dispersed and mixed, so that the nutritional components in the feed are more balanced, the quality of the feed is improved, and the mixed feed raw materials can be quickly and effectively transported, the continuity of the transportation is maintained, and the production efficiency is improved.
[0031] As shown in Figure 2 and Figure 3 , the top side wall of the fixed cylinder 23 is fixedly connected with a flow guide plate 6; the flow guide plate 6 is in an arc-shaped structure; this step can reduce the accumulation of feed raw materials on the top of the fixed cylinder 23 after entering the mixing cylinder 1 by arranging the flow guide plate 6.
[0032] As shown in Figure 1 , an observation window 7 is arranged on the top side wall of the feeding box 16; the observation window 7 is made of transparent material; this step can intuitively observe the conveying condition of the feed raw materials inside the feeding box 16, which helps to find and solve problems in time and ensures the smooth production.
[0033] Working principle: the worker starts the mixing assembly and the conveying assembly, and then pours the multiple feed raw materials to be mixed into the mixing cylinder 1 through the feeding port 12. Because the dispersing assembly is arranged below the feeding port 12, the feed raw materials will first fall on the surface of the dispersing assembly, be distributed by the dispersing assembly, and then continue to fall in the mixing cylinder 1. At this time, the mixing assembly will continuously grind and mix the multiple feed raw materials entering the mixing cylinder 1 in rotation. At the same time, the stirring assembly on the side wall of the mixing assembly will rotate with the rotation of the mixing assembly, so as to continuously stir the multiple feed raw materials entering the mixing cylinder 1. The ground and mixed feed raw materials will enter the conveying box 16 through the multiple discharge grooves 14, and will be subjected to secondary mixing and conveyed to the discharge port 17 under the action of the conveying assembly, so that the mixed feed raw materials move from the discharge port 17 to the outside of the conveying box 16, and are finally collected by the worker. The worker starts the first motor 21, which will drive the rotating shaft 22 to rotate. When the rotating shaft 22 rotates, the fixed cylinder 23 will rotate with it, and the multiple first grinding blocks 24 on the side wall of the fixed cylinder 23 will synchronously rotate with the rotation of the fixed cylinder 23. Because the second grinding blocks 25 and the first grinding blocks 24 are correspondingly arranged, the multiple feed raw materials entering the mixing cylinder 1 will be ground and mixed under the interaction of the second grinding blocks 25 and the first grinding blocks 24. Moreover, because the fixed cylinder 23 is arranged in a conical structure, the particle size of the feed raw materials will gradually decrease under the interaction of the second grinding blocks 25 and the first grinding blocks 24 during the falling process of the feed raw materials in the mixing cylinder 1. When the fixed cylinder 23 rotates with the multiple first grinding blocks 24, the elastic rods 31 and the first magnetic balls 32 on the side wall of the first grinding blocks 24 will synchronously rotate. Because the second magnetic balls 33 and the first magnetic balls 32 will attract each other, the elastic rods 31 will move with the first magnetic balls 32 in the grooves 3, so that the first magnetic balls 32 continuously contact different second magnetic balls 33. The worker pours the multiple feed raw materials to be mixed into the mixing cylinder 1 through the feeding port 12. At this time, the feed raw materials will fall on the side wall of the movable rod 41, and then roll to the surfaces of the multiple distribution plates 42. Because the movable rod 41 and the supporting rod 4 are rotationally connected, the distribution plates 42 will rotate with the movable rod 41 on the side wall of the supporting rod 4 under the action of gravity, so that the feed raw materials accumulated on the surfaces of the movable rod 41 and the distribution plates 42 fall between the first grinding blocks 24 and the second grinding blocks 25. The worker starts the second motor 5, which will drive the conveying auger 51 to rotate in the conveying box 16. When the preliminarily mixed feed raw materials enter the conveying box 16 through the multiple discharge grooves 14, the conveying auger 51 will mix the feed raw materials again, and transport the mixed feed raw materials to the discharge port 17, so that the feed raw materials flow out of the discharge port 17 smoothly.
[0034] The basic principle, main features and advantages of the present application are shown and described above. Those skilled in the art should understand that the present application is not limited by the above examples, and the above examples and descriptions in the specification are only to illustrate the principles of the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the claimed present application. The scope of protection of the present application is defined by the appended claims and their equivalents.
Claims
1. A mixing apparatus for feed raw materials, comprising a mixing cylinder (1); characterized in that: The top side wall of the mixing barrel (1) is provided with a barrel cover (11); the top side wall of the barrel cover (11) is provided with a feeding port (12); the inner side wall of the mixing barrel (1) is provided with a scattering assembly; the scattering assembly is arranged below the feeding port (12); the bottom side wall of the mixing barrel (1) is fixedly connected with a bottom plate (13); a plurality of discharge grooves (14) are formed in the middle of the side wall of the bottom plate (13); the middle of the side wall of the bottom plate (13) is provided with a mixing assembly; the mixing assembly rotates in the mixing barrel (1); the middle of the side wall of the mixing assembly is provided with a stirring assembly; the bottom side wall of the mixing barrel (1) is fixedly connected with a fixed plate (15); the bottom side wall of the fixed plate (15) is fixedly connected with a conveying box (16); the middle of the side wall of the conveying box (16) is provided with a conveying assembly; the bottom side wall of the conveying box (16) is provided with a discharge port (17).
2. A feedstock mixing apparatus as claimed in claim 1, wherein: The mixing assembly comprises a protection box (2); the protection box (2) is fixed to the bottom of the bottom plate (13); a first motor (21) is mounted in the middle of the inner side wall of the protection box (2); the output end of the first motor (21) is fixedly connected with a movable shaft (22); the middle of the side wall of the movable shaft (22) is fixedly connected with a fixed barrel (23); the fixed barrel (23) is provided in a conical structure; the middle of the side wall of the fixed barrel (23) is fixedly connected with a first grinding block (24); the first grinding block (24) is a plurality of and arranged in a circumferential array on the side wall of the fixed barrel (23); a plurality of second grinding blocks (25) are fixedly connected in the middle of the inner side wall of the mixing barrel (1); the second grinding block (25) and the first grinding block (24) are correspondingly arranged.
3. A feedstock mixing apparatus as claimed in claim 2, wherein: The stirring assembly comprises a plurality of grooves (3); a plurality of grooves (3) are formed in the side wall of the first grinding block (24) respectively; the middle of the inner side wall of the groove (3) is rotatably connected with an elastic rod (31); the elastic rod (31) is made of elastic material; the end of the elastic rod (31) is fixedly connected with a first magnetic ball (32); the middle of the side wall of the second grinding block (25) is fixedly connected with a second magnetic ball (33); the second magnetic ball (33) and the first magnetic ball (32) are correspondingly arranged.
4. The feedstock mixing apparatus according to claim 1, wherein: The scattering assembly comprises a support rod (4); the support rod (4) is fixed to the inner wall of the mixing barrel (1); the middle of the side wall of the support rod (4) is rotatably connected with a movable rod (41); the movable rod (41) is provided with a plurality of flow dividing plates (42); the flow dividing plates (42) are provided in an arc structure.
5. The feedstock mixing apparatus according to claim 1, wherein: The conveying assembly comprises a second motor (5); the second motor (5) is fixed to the side wall of the conveying box (16); the output end of the second motor (5) is fixedly connected with a conveying auger (51); the conveying auger (51) rotates in the conveying box (16).
6. A feedstock mixing apparatus as claimed in claim 2, wherein: The top side wall of the fixed barrel (23) is fixedly connected with a guide plate (6); the guide plate (6) is provided in an arc structure.
7. A feedstock mixing apparatus as claimed in claim 5, wherein: The top side wall of the conveying box (16) is provided with an observation window (7); the observation window (7) is made of transparent material.