Vibration type coarse cereal mixing device

By using a motor-driven mixing bin rotation and a return bin conveyor design, combined with filter screen filtration and air extraction, the problems of uneven grain mixing and dust removal are solved, achieving efficient grain mixing and cleaning.

CN223980425UActive Publication Date: 2026-03-10QINGDAO JINBANQIAO AGRI TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-05
Publication Date
2026-03-10

AI Technical Summary

Technical Problem

Existing vibrating grain mixing devices suffer from problems such as grain accumulation at the bottom of the device, poor mixing effect, and the presence of dust and other impurities in the grains.

Method used

The mixing box is driven by a motor to rotate and drive the stirring rod to mix the grains. At the same time, the return box conveys the grains from the bottom to the top. Combined with the filter screen and the air extraction of the filter box, the dust and impurities in the grains are cleaned.

Benefits of technology

It achieves uniform mixing and effective cleaning of grains, improves the mixing effect, and reduces the content of dust and soil particles in the grains.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a vibration type coarse cereal mixing device which comprises a machine base, a motor c is installed on the machine base, a rotating shaft is fixedly connected to the output end of the motor c, a material mixing box is installed on the rotating shaft, a filter screen is installed at the upper end in the material mixing box, the material mixing box is communicated with a material returning box through a connecting pipe, and a motor b is installed on the material returning box. The output end of the motor b is fixedly connected with a feeding shaft, the material returning box is communicated with the material mixing box through a material returning pipe, the material mixing box is provided with a dust removal cover, the dust removal cover is communicated with the filter box, filter cloth is installed in the filter box and located above the draught fan, and the filter box is installed on the outer side of the machine base. After the motor c rotates to drive the mixing box to rotate by a certain angle along the pointer, the stirring rod mixes the coarse cereals, and the return box drives the coarse cereals at the bottom end to be conveyed back to the upper end, so that the mixing effect is good; the filter screen continuously filters the coarse cereals, and the filter box continuously extracts air in the mixing box to clean dust and the like in the coarse cereals.
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Description

Technical Field

[0001] This utility model relates to a vibrating grain mixing device, specifically a vibrating grain mixing device, and belongs to the technical field of vibrating grain mixing devices. Background Technology

[0002] Coarse grains generally refer to grain and legume crops other than the five major crops: rice, wheat, corn, soybeans, and potatoes. They mainly include: sorghum, millet, buckwheat (sweet buckwheat and bitter buckwheat), oats, barley, foxtail millet, foxtail millet, Job's tears, amaranth, as well as kidney beans, mung beans, adzuki beans, broad beans, peas, cowpeas, lentils, and black beans. They are characterized by a short growing season, limited planting area, specific growing regions, and relatively low yield, but generally contain rich nutritional components.

[0003] The existing vibrating grain mixing device has the following disadvantages: 1. When the mixing device continuously mixes the grains, some grains accumulate at the bottom of the device, resulting in a slightly poor mixing effect; 2. The grains contain impurities such as dust and soil particles, which directly affect the quality of the grains when mixed. Therefore, improvements are made to address the above problems. Utility Model Content

[0004] The purpose of this utility model is to provide a vibrating grain mixing device to solve the above problems. After the motor C rotates, the mixing box rotates clockwise by a certain angle. At the same time, the stirring rod mixes the grains and the return box carries the grains from the bottom to the top, resulting in a good mixing effect. The filter screen continuously filters the grains, and the filter box continuously extracts air from the mixing box to clean dust and other particles in the grains.

[0005] This utility model achieves the above-mentioned objective through the following technical solution: a vibrating grain mixing device, comprising a base, a motor c mounted on the base, a rotating shaft fixedly connected to the output end of the motor c, a mixing box mounted on the rotating shaft, a filter screen mounted on the upper end of the mixing box, the mixing box being interconnected with a return box via a connecting pipe, a motor b mounted on the return box, a feeding shaft fixedly connected to the output end of the motor b, the return box being interconnected with the mixing box via a return pipe, a dust removal hood mounted on the mixing box, the dust removal hood being interconnected with a filter box, a filter cloth mounted inside the filter box, the filter cloth being located above a fan, and the filter box being mounted on the outside of the base.

[0006] Preferably, the mixing bin is equipped with a material bin and a motor a.

[0007] Preferably, the output end of the motor a is fixedly connected to a stirring shaft, and the stirring shaft is equipped with a stirring rod.

[0008] Preferably, a discharge pipe is installed on the left side of the mixing box, and a vibration motor is installed at the bottom of the mixing box.

[0009] Preferably, the mixing box is rotatably connected to the machine base, and both the discharge pipe and the connecting pipe are equipped with valves.

[0010] Preferably, the fan is installed inside the filter box, the filter box has an air outlet on the outside, and the dust collector is connected to the mixing box.

[0011] Preferably, the current input terminals of motor a, motor b, motor c and vibration motor are electrically connected to an external power source via wires.

[0012] The beneficial effects of this utility model are:

[0013] 1. When motor C rotates, it drives the mixing box to rotate clockwise by a certain angle. Simultaneously, the stirring rod mixes the grains, and the return box carries the grains from the bottom back to the top, resulting in good mixing. The grain raw materials are fed into the mixing box through the feed hopper. Motor A on the mixing box rotates, driving the connected stirring shaft to rotate. The rotating shaft then drives the stirring rod to mix the grains. At the same time, the vibrating motor at the bottom of the mixing box is energized and vibrates, causing the grains inside the mixing box to vibrate. After all the raw materials are poured in, motor C on the machine base rotates, driving the rotating shaft... The mixing box is rotated clockwise at a certain angle, causing it to tilt. The valve on the connecting pipe is opened, and the grains at the bottom of the mixing box slide into the connecting pipe along the tilted mixing box. They are then conveyed to the return box through the connecting pipe. The motor b on the return box rotates, driving the feeding shaft to rotate and conveying the grains in the return box upwards. The grains are then conveyed back to the upper part of the mixing box through the return pipe connected to the return box. The mixing is then continuously carried out by the stirring shaft in the mixing box. The grains at the bottom of the mixing box can be continuously conveyed back to the upper part for mixing through the return box, resulting in a good mixing effect.

[0014] 2. The filter screen continuously filters the grains, and the filter box continuously extracts air from the mixing box to clean dust and other contaminants from the grains. A filter screen is installed at the top of the mixing box. When the grain raw materials are conveyed from the feed box into the mixing box, they fall and come into contact with the filter screen. Large clods of soil are intercepted by the filter screen. Simultaneously, the fan inside the filter box starts, and the filter box is connected to the dust collector hood. The dust collector hood generates suction, which extracts air from the mixing box, thus drawing dust and soil particles from the grains into the dust collector hood. Under the action of the fan, the air enters the filter box and is filtered by the filter cloth. After the grains are completely poured out, the grains in the return feed box are continuously conveyed back into the mixing box through the return pipe. As the grains fall, the dust they carry enters the filter box with the air for filtration, continuously cleaning dust and other contaminants from the grains and preventing excessive dust in the mixed grains. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0016] Figure 2 This is a side view of the entire utility model;

[0017] Figure 3 This is a partial cross-sectional structural diagram of the mixing box of this utility model;

[0018] Figure 4 This is a partial cross-sectional structural diagram of the filter box of this utility model.

[0019] In the diagram: 1. Material bin; 2. Motor a; 3. Mixing bin; 4. Motor b; 5. Return pipe; 6. Return bin; 7. Connecting pipe; 8. Base; 9. Motor c; 10. Dust hood; 11. Vibrating motor; 12. Discharge pipe; 13. Filter box; 14. Feeding shaft; 15. Stirring rod; 16. Stirring shaft; 17. Filter cloth; 18. Fan. Detailed Implementation

[0020] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0021] Please refer to Example 1 Figure 1-4 As shown, a vibrating grain mixing device includes a base 8, on which a motor c9 is mounted. The base 8 can fix the position of the motor c9. The base 8 is equipped with a control device (not shown in the figure). The output end of the motor c9 is fixedly connected to a rotating shaft. The rotation of the motor c9 drives the connected rotating shaft to rotate. A mixing box 3 is mounted on the rotating shaft. A filter screen is installed at the upper end of the mixing box 3. The filter screen can filter the grains entering the mixing box 3. The rotation of the rotating shaft drives the connected mixing box 3 to rotate. The mixing box 3 is interconnected with a return box 6 through a connecting pipe 7. The grains in the mixing box 3 are conveyed to the return box 6 through the connecting pipe 7. The return material box 6 is equipped with a motor b4, and the output end of the motor b4 is fixedly connected to a feeding shaft 14. The rotation of the motor b4 drives the connected feeding shaft 14 to rotate. The return material box 6 is interconnected with the mixing box 3 through the return material pipe 5. The grains in the return material box 6 are conveyed into the mixing box 3 through the return material pipe 5. The mixing box 3 is equipped with a dust removal hood 10, which is interconnected with a filter box 13. A filter cloth 17 is installed in the filter box 13. The filter cloth 17 can filter the air. The filter cloth 17 is located above the fan 18. The filter box 13 is installed on the outside of the base 8. The fan 18 draws air from the dust removal hood 10.

[0022] Specifically, the mixing box 3 is equipped with a material box 1, through which grains are conveyed into the mixing box 3. The mixing box 3 is also equipped with a motor a2, and the position of the motor a2 can be fixed in the mixing box 3.

[0023] Specifically, a discharge pipe 12 is installed on the left side of the mixing box 3, through which the grains in the mixing box 3 are moved out. A vibration motor 11 is installed at the bottom of the mixing box 3, which drives the grains in the mixing box 3 to vibrate.

[0024] Specifically, the mixing box 3 is rotatably connected to the machine base 8, and the mixing box 3 rotates within the machine base 8. Both the discharge pipe 12 and the connecting pipe 7 are equipped with valves.

[0025] Specifically, the fan 18 is installed inside the filter box 13, which can fix the position of the fan 18. An air outlet is provided on the outside of the filter box 13, and the air inside the filter box 13 is moved out through the air outlet. The dust removal hood 10 is interconnected with the mixing box 3, and the air inside the mixing box 3 enters the dust removal hood 10.

[0026] Specifically, the current input terminals of motors a2, b4, c9 and vibrating motor 11 are electrically connected to an external power source via wires, and the external power source provides power to motors a2, b4, c9 and vibrating motor 11 respectively.

[0027] Example 2: Please refer to Figure 3 The difference between this embodiment and embodiment 1 is that: the output end of the motor a2 is fixedly connected to the stirring shaft 16, the rotation of the motor a2 drives the connected stirring shaft 16 to rotate, the rotation of the stirring shaft 16 drives the connected stirring rod 15 to rotate, and the stirring shaft 16 is equipped with the stirring rod 15.

[0028] In use, this invention features a filter screen installed at the upper end of the mixing bin 3. When the grain raw materials are conveyed from the feed bin 1 into the mixing bin 3, the falling grain raw materials come into contact with the filter screen, and large clods of soil are intercepted. Simultaneously, the fan 18 inside the filter box 13 starts, and the filter box 13 is connected to the dust removal hood 10, generating suction at the dust removal hood 10. This draws air from the mixing bin 3, causing dust and soil particles to be drawn into the dust removal hood 10 during the dumping of the grain. Under the action of the fan 18, the dust enters the filter box 13 and is filtered by the filter cloth 17. After the grain is completely dumped, the grain in the return feed bin 61 is continuously conveyed into the mixing bin 3 through the return feed pipe 5. As the grain falls, the dust and other particles it carries enter the filter box 13 with the air for filtration, continuously cleaning the dust and other particles in the grain and preventing excessive dust in the mixed grain. The grain raw materials are conveyed from the feed bin 1 into the mixing bin 3, and the motor on the mixing bin 3... The rotation of motor a2 drives the connected stirring shaft 16 to rotate, which in turn drives the stirring rod 15 to rotate and stir the grains. At the same time, the vibration motor 11 at the bottom of the mixing box 3 is energized and vibrates, causing the grains inside the mixing box 3 to vibrate. After the raw materials are completely poured in, the motor c9 on the base 8 rotates and drives the mixing box 3 connected to the rotating shaft to rotate clockwise by a certain angle, making the mixing box 3 tilted. The valve on the connecting pipe 7 opens, and the grains at the bottom of the mixing box 3 slide into the connecting pipe 7 along the tilted mixing box 3. They are then conveyed to the return box 61 through the connecting pipe 7. The motor b4 on the return box 61 rotates and drives the feeding shaft 14 to rotate, causing the grains inside the return box 61 to be conveyed upwards. The grains are then conveyed back to the upper end of the mixing box 3 through the return pipe 5 connected to the return box 61. The mixing is continued by the stirring shaft 16 inside the mixing box 3. The grains at the bottom of the mixing box 3 can be continuously conveyed back to the upper end through the return box 61 for stirring and mixing, resulting in a good mixing effect.

[0029] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention. No reference numerals in the claims should be construed as limiting the scope of the claims.

[0030] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A vibrating mixture device for grains, comprising a base (8), characterized in that: The base (8) is installed with motor c (9), the output end of motor c (9) is fixedly connected with the rotating shaft, the rotating shaft is installed with the mixing box (3), the upper end of the mixing box (3) is installed with the filter screen, the mixing box (3) is communicated with the return box (6) through the connecting pipe (7), the return box (6) is installed with motor b (4), the output end of motor b (4) is fixedly connected with the feeding shaft (14), the return box (6) is communicated with the mixing box (3) through the return pipe (5), the mixing box (3) is installed with the dust hood (10), the dust hood (10) is communicated with the filter box (13), the filter cloth (17) is installed in the filter box (13), the filter cloth (17) is located above the fan (18), the filter box (13) is installed on the outside of the base (8).

2. A vibrating grain mixing device according to claim 1, characterized in that: The mixing box (3) is installed with the material box (1), and the mixing box (3) is installed with motor a (2).

3. A vibrating grain mixing apparatus as claimed in claim 2, wherein: The output end of motor a (2) is fixedly connected with the stirring shaft (16), and the stirring shaft (16) is installed with the stirring rod (15).

4. A vibrating grain mixing apparatus as claimed in claim 3, wherein: The left side of the mixing box (3) is installed with the discharge pipe (12), and the bottom end of the mixing box (3) is installed with the vibration motor (11).

5. A vibrating grain mixing apparatus as claimed in claim 4, wherein: The mixing box (3) is rotatably connected with the base (8), and the discharge pipe (12) and the connecting pipe (7) are both installed with valves.

6. The vibrating grain mixing apparatus of claim 1, wherein: The fan (18) is installed in the filter box (13), the filter box (13) is provided with an air outlet on the outside, and the dust hood (10) is communicated with the mixing box (3).

7. The vibrating grain mixing apparatus of claim 4, wherein: The current input ends of motor a (2), motor b (4), motor c (9) and vibration motor (11) are electrically connected with the external power supply through wires.