Batching device for pig feed production
By combining quantitative components, mixing components, and auxiliary components, the problem of inaccurate mixing and quantitative delivery in existing pig feed production equipment has been solved, achieving precise ingredient proportioning and uniform mixing, and improving the quality of pig feed processing.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- YANGJIANG HUIHAI AGRI & ANIMAL HUSBANDRY TECH CO LTD
- Filing Date
- 2025-07-02
- Publication Date
- 2026-05-08
AI Technical Summary
In existing pig feed production equipment, the telescopic plate movement control feeding method cannot accurately mix the feed and cannot quantitatively deliver the feed according to the actual mixing ratio.
The system employs a metering component, a mixing component, and an auxiliary component. The amount of raw materials added is controlled by a metering tank, the mixing component performs stirring and mixing, and the auxiliary component performs pre-mixing, ensuring accurate ingredient dispensing and uniform mixing.
It enables precise control of the amount of raw materials added, ensuring uniform mixing and efficient conveying, thereby improving the quality of pig feed processing.
Smart Images

Figure CN224207814U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of pig feed production technology, specifically, it relates to a feed mixing device for pig feed production. Background Technology
[0002] Pig feed is food made to meet the nutritional needs of pigs. Pig feed is usually composed of protein feed, energy feed, roughage, green fodder, silage, mineral feed and feed additives for raising domestic pigs.
[0003] Chinese utility model patent CN221868293U discloses an automatic batching device for pig feed preparation and production, comprising: a support plate with multiple through holes equidistantly opened on the top of the support plate, and multiple feeding pipes fixedly connected at equal intervals on the top of the support plate, each of the feeding pipes having a storage box fixedly connected to its top; a conveying assembly located below the support plate, the conveying assembly including a conveying pipe; and a mixing assembly located below the conveying pipe, the mixing assembly including a mixing bucket. Through the coordinated operation of an electric telescopic rod, a first motor, and a second motor, the device achieves automated feeding and batching, solving the problem in the prior art where raw materials accumulate in layers within the processing device, making it difficult to evenly mix the layered pigments of different specific gravities during stirring, thus affecting the processing quality of pig feed.
[0004] The aforementioned existing technology also has the following drawbacks: the method of controlling the movement of the telescopic plate to feed the pig feed cannot accurately mix the feed, and it cannot quantitatively deliver and mix the feed according to the actual mixing ratio. Utility Model Content
[0005] The purpose of this section is to outline some aspects of embodiments of the present invention and to briefly describe some preferred embodiments. Simplifications or omissions may be made in this section, as well as in the abstract and title of this application, to avoid obscuring the purpose of these documents; however, such simplifications or omissions should not be construed as limiting the scope of the present invention.
[0006] To address the problem mentioned in the background art that the telescopic plate movement control feeding method cannot accurately mix pig feed and cannot quantitatively deliver and mix ingredients according to the actual mixing ratio, the present invention adopts the following technical solution.
[0007] A feed dispensing device for pig feed production includes a mounting platform, a plurality of storage hoppers detachably connected to the upper end of the mounting platform, a mixing box detachably connected to the bottom of the mounting platform, a conveying box detachably connected to the bottom of the mixing box, a support rod fixedly connected to the outer wall of the mixing box near the bottom, the support rod being detachably connected to the upper end of the conveying box, and a metering component installed at the bottom of the storage hopper, the metering component being able to meterly discharge the raw materials inside the storage hopper into the mixing box.
[0008] Preferably, the mixing chamber is equipped with a mixing component that mixes the raw materials.
[0009] Preferably, the mixing chamber is equipped with auxiliary components that premix several of the components.
[0010] Preferably, an auger rod is rotatably connected inside the conveyor box, and a second drive motor is detachably connected to one end of the conveyor box. The second drive motor is detachably connected to one end of the auger rod.
[0011] Preferably, the metering component includes a mounting block, a discharge pipe, a rotating shaft, a metering groove, a through hole, a limiting groove, a fastening ring, a first drive motor, a transmission shaft, a limiting insert plate, and an external thread. The bottom of the storage hopper is detachably connected to the mounting block, which has an inner groove. The bottom of the mounting block is detachably connected to the discharge pipe, and the storage hopper, the inner groove, and the discharge pipe are connected. The outer wall of the mounting block is detachably connected to the first drive motor, and the rotating end of the first drive motor is detachably connected to the transmission shaft. The transmission shaft passes through the mounting block, and the outer wall of the transmission shaft is fixedly connected to the limiting insert plate. The outer wall of the end of the transmission shaft has an external thread. The inner groove is rotatably connected to the rotating shaft, which has a through hole. The inner wall of the through hole has multiple limiting grooves, and the limiting insert plate is inserted into the limiting groove. The external thread is threaded with a fastening ring, and the outer wall of the rotating shaft has multiple metering grooves.
[0012] Preferably, the mixing assembly includes a second mixing roller, a third drive motor, an electric telescopic rod, and an L-shaped sealing plate. An inclined section is provided on one side of the mixing box, and the connection between the mixing box and the conveying box is located at the bottom of the inclined section. The third drive motor is detachably connected to the outer wall of the mixing box near the connection with the conveying box. The rotating end of the third drive motor is inserted into the interior of the mixing box and is detachably connected to the second mixing roller. The electric telescopic rod is detachably connected to the outer wall of the conveying box. The telescopic end of the electric telescopic rod is detachably connected to the vertical side of the L-shaped sealing plate, and the horizontal side of the L-shaped sealing plate is inserted into the connection between the mixing box and the conveying box.
[0013] Preferably, the auxiliary components include a first mixing roller, a meshing sprocket, and a linkage chain. The first mixing roller is rotatably connected to the interior of the mixing box near the inclined surface. The ends of the first and second mixing rollers away from the third drive motor are fixedly connected to a connecting shaft that extends out of the mixing box. Meshing sprockets are detachably connected to the connecting shafts on both sides, and a linkage chain is sleeved on the outer wall of the meshing sprockets on both sides.
[0014] Compared with the prior art, the beneficial effects of this utility model are as follows:
[0015] 1. With the set quantitative component, the amount of raw material that can be contained in the quantitative tank at one time is fixed. The rotation of the first drive motor drives the rotating shaft to rotate, thereby controlling the number of rotations of the first drive motor to control the weight of different raw materials added, thus achieving the purpose of precise addition of ingredients. By removing the fastening ring, the rotating shaft can be removed from the inner groove, and a quantitative tank of different sizes can be replaced. Thus, the weight of raw materials added at one time can be changed according to actual needs.
[0016] 2. Through the set mixing components, after the raw materials are accurately discharged into the interior of the mixing box, they gather at the connection between the mixing boxes. The retraction of the electric telescopic rod causes the L-shaped sealing plate to seal the connection between the conveying box and the mixing box. The mixture gathers outside the second mixing roller. The rotation of the third drive motor drives the second mixing roller to rotate, thereby stirring and mixing the raw materials. After the mixing is completed, the extension of the electric telescopic rod causes the L-shaped sealing plate to move outward, thereby allowing the mixed raw materials to enter the interior of the conveying box for conveying.
[0017] 3. Through the auxiliary components, the inclined part of the mixing box allows some raw materials to slide towards the connection point and then contact the first mixing roller. Through the meshing sprocket and the linkage chain, the first mixing roller rotates at the same time as the second mixing roller, thereby enabling other ingredients to be pre-mixed on the inclined part, thus achieving a better mixing effect. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the structure of a feed dispensing device for pig feed production according to the present invention;
[0019] Figure 2 This is a schematic diagram of the quantitative component structure in this utility model;
[0020] Figure 3 This is a schematic diagram of the hybrid component structure in this utility model;
[0021] Figure 4 This is a schematic diagram of the linkage component structure in this utility model.
[0022] The correspondence between the labels and component names in the attached figures is as follows:
[0023] 100. Mounting platform; 101. Support rod; 102. Conveyor box; 103. Mixing box;
[0024] 200. Storage hopper; 201. Mounting block; 202. Discharge pipe; 203. Rotating shaft; 204. Metering groove; 205. Through hole; 206. Limiting groove; 207. Fastening ring; 208. First drive motor; 209. Transmission shaft; 210. Limiting insert plate; 211. External thread;
[0025] 300. Screw rod; 301. Second drive motor; 302. Electric telescopic rod; 303. L-shaped sealing plate;
[0026] 400, First mixing roller; 401, Second mixing roller; 402, Third drive motor; 403, Meshing sprocket; 404, Linkage chain. Detailed Implementation
[0027] To make the above-mentioned objectives, features and advantages of this utility model more apparent and understandable, the specific embodiments of this utility model will be described in detail below with reference to the accompanying drawings.
[0028] Many specific details are set forth in the following description in order to provide a full understanding of the present invention. However, the present invention may also be implemented in other ways different from those described herein. Those skilled in the art can make similar extensions without departing from the spirit of the present invention. Therefore, the present invention is not limited to the specific embodiments disclosed below.
[0029] Secondly, the term "an embodiment" or "embodiment" as used herein refers to a specific feature, structure, or characteristic that may be included in at least one implementation of the present invention. The phrase "in one embodiment" appearing in different places in this specification does not necessarily refer to the same embodiment, nor is it a single or selective embodiment that excludes other embodiments. The present invention provides the following embodiments.
[0030] like Figure 1The diagram shown is a schematic diagram of a preferred embodiment of the present invention for a pig feed production batching device. This embodiment of the pig feed production batching device includes a mounting platform 100. Multiple storage hoppers 200 are detachably connected to the upper end of the mounting platform 100. A mixing box 103 is detachably connected to the bottom of the mounting platform 100. A conveying box 102 is detachably connected to the bottom of the mixing box 103. A support rod 101 is fixedly connected to the outer wall of the mixing box 103 near its bottom. The support rod 101 is detachably connected to the upper end of the conveying box 102. The storage hoppers 200, the mixing box 103, and the conveying box 102 are interconnected. In this embodiment, the raw materials required for pig feed production are placed inside each storage hopper 200. Then, multiple raw materials are quantitatively mixed inside the mixing box 103 and subsequently conveyed to the outside through the conveying box 102.
[0031] like Figure 2 As shown, this is a schematic diagram of the quantitative component structure in this embodiment. A mounting block 201 is detachably connected to the bottom of the storage hopper 200. The mounting block 201 has an inner groove. A discharge pipe 202 is detachably connected to the bottom of the mounting block 201. The storage hopper 200, the inner groove, and the discharge pipe 202 are connected. A first drive motor 208 is detachably connected to the outer wall of the mounting block 201. A drive shaft 209 is detachably connected to the rotating end of the first drive motor 208. The drive shaft 209 extends out of the mounting block 201. A limit plate 210 is fixedly connected to the outer wall of the drive shaft 209. An external thread 211 is provided on the outer wall of the end of the drive shaft 209. A rotating shaft 203 is rotatably connected inside the inner groove. A through hole 205 is provided on the rotating shaft 203. The inner wall of the rotating shaft 203 is provided with multiple limiting grooves 206. The limiting plate 210 is inserted into the limiting groove 206. The external thread 211 is threaded with a fastening ring 207. The outer wall of the rotating shaft 203 is provided with multiple metering grooves 204. In this embodiment, the amount of raw material that can be accommodated by the metering groove 204 at one time is fixed. The rotating shaft 203 is driven to rotate by the first drive motor 208. The weight of different raw materials can be controlled by controlling the number of rotations of the first drive motor 208, thereby achieving the purpose of precise addition of ingredients. The rotating shaft 203 can be removed from the inner groove by removing the fastening ring 207. Different sizes of metering grooves 204 can be replaced, thereby changing the weight of raw materials added at one time according to actual needs.
[0032] It is worth noting that the aforementioned mounting block 201, discharge pipe 202, rotating shaft 203, metering groove 204, through hole 205, limiting groove 206, fastening ring 207, first drive motor 208, transmission shaft 209, limiting insert plate 210, and external thread 211 are the metering components in this embodiment. The metering components include, but are not limited to, the mounting block 201, discharge pipe 202, rotating shaft 203, metering groove 204, through hole 205, limiting groove 206, fastening ring 207, first drive motor 208, transmission shaft 209, limiting insert plate 210, and external thread 211. Any component that can achieve metered addition of raw materials can be applied to this embodiment.
[0033] like Figure 3 As shown, this is a schematic diagram of the mixing component structure in this embodiment. An inclined section is provided on one side of the mixing box 103. The connection between the mixing box 103 and the conveying box 102 is located at the bottom of the inclined section. A third drive motor 402 is detachably connected to the outer wall of the mixing box 103 near the connection with the conveying box 102. The rotating end of the third drive motor 402 is inserted into the interior of the mixing box 103 and detachably connected to a second mixing roller 401. An electric telescopic rod 302 is detachably connected to the outer wall of the conveying box 102. The telescopic end of the electric telescopic rod 302 is detachably connected to the vertical side of an L-shaped sealing plate 303. The horizontal side of the L-shaped sealing plate 303 is inserted into the mixing box 103 and the conveying box 102. In this embodiment, when the raw material is accurately discharged into the interior of the mixing box 103, it gathers at the connection between the two mixing boxes 103. The L-shaped sealing plate 303 seals the connection between the conveying box 102 and the mixing box 103 by the contraction of the electric telescopic rod 302. The mixture gathers outside the second mixing roller 401. The second mixing roller 401 is rotated by the rotation of the third drive motor 402, which in turn stirs and mixes the raw material. After the mixing is completed, the L-shaped sealing plate 303 moves outward by the extension of the electric telescopic rod 302, which allows the mixed raw material to enter the interior of the conveying box 102 for conveying.
[0034] It is worth noting that the second mixing roller 401, the third drive motor 402, the electric telescopic rod 302, and the L-shaped sealing plate 303 mentioned above are the mixing components in this embodiment. The mixing components include, but are not limited to, the second mixing roller 401, the third drive motor 402, the electric telescopic rod 302, and the L-shaped sealing plate 303. Any component that can mix raw materials can be used in this embodiment.
[0035] like Figure 3 as well as Figure 4As shown, this is a schematic diagram of the auxiliary component structure in this embodiment. The mixing box 103 is rotatably connected to the interior near the inclined surface of the first mixing roller 400. The ends of the first mixing roller 400 and the second mixing roller 401 away from the third drive motor 402 are fixedly connected to a connecting shaft that passes through the mixing box 103. The connecting shafts on both sides are detachably connected to meshing sprockets 403. The outer walls of the meshing sprockets 403 on both sides are sleeved with linkage chains 404. In this embodiment, the inclined part of the mixing box 103 causes a portion of the raw materials to slide towards the connecting part and then contact the first mixing roller 400. Through the meshing sprockets 403 and the linkage chains 404, the first mixing roller 400 rotates simultaneously when the second mixing roller 401 rotates, thereby enabling the other ingredients to be pre-mixed on the inclined part, thus achieving a better mixing effect.
[0036] It is worth noting that the first mixing roller 400, the meshing sprocket 403 and the linkage chain 404 mentioned above are auxiliary components in this embodiment. Auxiliary components include, but are not limited to, the first mixing roller 400, the meshing sprocket 403 and the linkage chain 404. Any component that can premix feed ingredients can be used in this embodiment.
[0037] like Figure 3 As shown, an auger rod 300 is rotatably connected inside the conveying box 102. A second drive motor 301 is detachably connected to one end of the conveying box 102. The second drive motor 301 is detachably connected to one end of the auger rod 300. In this embodiment, the auger rod 300 is driven to rotate by the rotation of the second drive motor 301, thereby enabling the conveying of the mixed raw materials.
[0038] The above description, in conjunction with specific embodiments, provides a further detailed explanation of the present utility model. It should not be construed that the specific implementation of the present utility model is limited to these descriptions. For those skilled in the art, several simple deductions or substitutions can be made without departing from the concept of the present utility model, and all such deductions or substitutions should be considered to fall within the scope of protection defined by the claims submitted by the present utility model.
Claims
1. A feed dispensing device for pig feed production, comprising a mounting platform (100), a plurality of storage hoppers (200) detachably connected to the upper end of the mounting platform (100), a mixing box (103) detachably connected to the bottom of the mounting platform (100), a conveying box (102) detachably connected to the bottom of the mixing box (103), a support rod (101) fixedly connected to the outer wall of the mixing box (103) near the bottom, and the support rod (101) detachably connected to the upper end of the conveying box (102), characterized in that, A metering component is installed at the bottom of the storage hopper (200), which can meter the raw materials inside the storage hopper (200) into the mixing box (103).
2. The feed dispensing device for pig feed production according to claim 1, characterized in that, The mixing chamber (103) is equipped with a mixing component that mixes the raw materials.
3. The feed dispensing device for pig feed production according to claim 2, characterized in that, The mixing chamber (103) is equipped with auxiliary components that premix several of the components.
4. The feed dispensing device for pig feed production according to claim 3, characterized in that, The conveyor box (102) is rotatably connected to the inside of the conveyor box (102), and a second drive motor (301) is detachably connected to one end of the conveyor box (102). The second drive motor (301) is detachably connected to one end of the auger rod (300).
5. The feed dispensing device for pig feed production according to claim 4, characterized in that, The metering component includes a mounting block (201), a discharge pipe (202), a rotating shaft (203), a metering groove (204), a through hole (205), a limiting groove (206), a fastening ring (207), a first drive motor (208), a transmission shaft (209), a limiting insert plate (210), and an external thread (211). The bottom of the storage hopper (200) is detachably connected to the mounting block (201), which has an inner groove. The bottom of the mounting block (201) is detachably connected to the discharge pipe (202). The storage hopper (200), the inner groove, and the discharge pipe (202) are connected. The outer wall of the mounting block (201) is detachably connected to the first drive motor (208). The rotating end of the drive motor (208) is detachably connected to a drive shaft (209). The drive shaft (209) passes through the mounting block (201). A limit plate (210) is fixedly connected to the outer wall of the drive shaft (209). An external thread (211) is provided on the outer wall of the end of the drive shaft (209). A rotating shaft (203) is rotatably connected inside the inner groove. A through hole (205) is provided on the rotating shaft (203). Multiple limit grooves (206) are provided on the inner wall of the through hole (205). The limit plate (210) is inserted into the interior of the limit groove (206). A fastening ring (207) is threadedly connected to the external thread (211). Multiple metering grooves (204) are provided on the outer wall of the rotating shaft (203).
6. The feed dispensing device for pig feed production according to claim 5, characterized in that, The mixing assembly includes a second mixing roller (401), a third drive motor (402), an electric telescopic rod (302), and an L-shaped sealing plate (303). An inclined section is provided on one side of the mixing box (103). The connection between the mixing box (103) and the conveying box (102) is located at the bottom of the inclined section. The third drive motor (402) is detachably connected to the outer wall of the mixing box (103) near the connection with the conveying box (102). The rotating end of the third drive motor (402) is inserted into the interior of the mixing box (103) and is detachably connected to the second mixing roller (401). The electric telescopic rod (302) is detachably connected to the outer wall of the conveying box (102). The telescopic end of the electric telescopic rod (302) is detachably connected to the vertical side of the L-shaped sealing plate (303). The horizontal side of the L-shaped sealing plate (303) is inserted into the connection between the mixing box (103) and the conveying box (102).
7. The feed dispensing device for pig feed production according to claim 6, characterized in that, The auxiliary components include a first mixing roller (400), a meshing sprocket (403), and a linkage chain (404). The first mixing roller (400) is rotatably connected to the interior of the mixing box (103) near the inclined surface. The first mixing roller (400) and the second mixing roller (401) are fixedly connected to a connecting shaft that passes through the mixing box (103) at the ends away from the third drive motor (402). The meshing sprocket (403) is detachably connected to the connecting shaft on both sides. The linkage chain (404) is sleeved on the outer wall of the meshing sprocket (403) on both sides.
Citation Information
Patent Citations
Automatic batching device for pig feed preparation and production
CN221868293U