Feed additive mixing machine

Through the mixing roller and incomplete gear mechanism driven by dual motors, the existing feed mixer has been solved for a long mixing time and difficulty in cleaning, and the rapid mixing and automatic discharge of feed is achieved, which improves work efficiency and saves labor.

CN223184431UActive Publication Date: 2025-08-05山东米斗科技发展有限公司

Patent Information

Application Number
CN202422437108.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-10
Publication Date
2025-08-05
Estimated Expiration
2034-10-10

AI Technical Summary

Technical Problem

The existing feed mixers have problems such as long mixing time, easy to clump the bottom of the equipment and difficult to clean, resulting in inefficiency and increased labor consumption.

Method used

The mixer design is designed with dual motor drive, including agitating rollers, incomplete gears and cam mechanisms. The drum body is driven to shake and swing through the motor to achieve rapid mixing and automatic discharge, and reduce manual operation.

Benefits of technology

It realizes rapid mixing of feed additives, improves work efficiency, reduces labor consumption, and simplifies the equipment cleaning process.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223184431U_ABST
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Abstract

According to the feed additive mixing machine, the right side of the upper end of a barrel body is fixedly communicated with a feeding port, and the center of the upper end of the barrel body is fixedly connected with a first motor. According to the feed additive mixing machine, an output shaft of a third motor rotates to drive an incomplete gear to rotate so as to drive a frame body to move rightwards along a sliding groove machined in a transverse plate, when teeth machined on a rotating block are meshed with tooth grooves machined in the upper portion of the inner wall of the frame body, the frame body is driven to move leftwards, and the frame body reciprocates to drive a transverse rod to reciprocate; a feed additive in the barrel body can be shaken through reciprocating motion of the barrel body, the feed additive can be well mixed within a short time, so that the working efficiency is improved, and an output shaft of a second motor rotates to drive a convex block to rotate so as to drive a roller to rotate, so that the barrel body can swing in a reciprocating manner; and most of the residual feed additives which cannot be discharged are shaken out, so that an operator does not need to take the feed additives by using a tool with more physical power, and the manual labor force is saved.
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Description

Technical Field

[0001] The utility model relates to the technical field of feed additive processing, in particular to a feed additive mixer. Background Art

[0002] Feed additives refer to small or trace substances added during the production, processing and use of feed. The amount used in feed is very small but the effect is significant. Feed additives are raw materials that must be used in the modern feed industry. They have obvious effects on enhancing the nutritional value of basic feed, improving animal production performance, ensuring animal health, saving feed costs, and improving the quality of livestock products. Feed additives usually need to be mixed using a mixer during production.

[0003] For example, a feed mixer with the publication number "CN206276279U" mixes and discharges materials by rotating a rotating disk driven by a rotating shaft. A support rod is provided at the lower end of the inclined rod to mix the materials accumulated on the rotating disk, effectively knocking and breaking the materials. The materials fall downward through the mesh and are mixed under the disturbance of the stirring rod. The lining design effectively prevents the materials from abrading the inner surface of the machine. The disturbance of the bottom blade effectively mixes the materials. The mixing motor and the stirring motor are driven separately and can rotate in the same direction or in opposite directions, providing a strong mixing effect. The mixed materials are discharged through the discharge port, completing the mixing process. However, during mixing, the feed in this feed mixer easily clumps at the bottom of the device, requiring a long time to fully mix, thereby reducing work efficiency. Furthermore, the bottom of the feed mixer is flat, and some feed cannot be discharged from the bottom of the device. The operator needs to use tools to remove the undischarged feed, which consumes a lot of physical effort and increases labor. Summary of the Invention

[0004] The utility model aims to solve the problems existing in the above-mentioned prior art and provides a feed additive mixer that can fully mix in a shorter time, thereby improving work efficiency, eliminating the need for operators to expend much physical effort, and saving manual labor.

[0005] The utility model adopts a technical solution to solve its technical problems: this feed additive mixer includes a first box body and a second box body, the transmission shaft of the second box body is rotatably connected to the first box body through a bearing, a discharge mechanism is provided at the bottom of the first box body, an auxiliary stirring mechanism is provided inside the second box body, two fixed columns are fixedly connected to the inner wall of the second box body, the outer walls of the fixed columns are slidably connected to the vertical plates, the upper ends of the vertical plates are fixedly connected to the barrel body, the right side of the barrel body is fixedly connected to the discharge port, the right side of the upper end of the barrel body is fixedly connected to the feed port, and the center of the upper end of the barrel body is fixedly connected to the first motor.

[0006] For further improvement, the end of the output shaft of the first motor is fixedly connected to a stirring roller, and both ends of the stirring roller are rotatably connected to the barrel through bearings.

[0007] To be further improved, the discharging mechanism includes a second motor, a cam is fixedly connected to the end of the output shaft of the second motor, the outer wall of the cam is in contact with the roller, the roller is rotatably connected to the vertical rod through a rotating shaft, and the upper part of the vertical rod is movably connected to the slider through a pin shaft.

[0008] For further improvement, the slider is slidably connected to the round rod at the bottom of the second box body, and the end of the second motor is fixedly connected to the first box body.

[0009] To be further improved, the auxiliary stirring mechanism includes a third motor, an incomplete gear is fixedly connected to the end of the output shaft of the third motor, the tooth grooves on the incomplete gear are engaged with the teeth processed on the frame, the bottom of the frame is slidably connected to the cross plate, the two ends of the cross plate are respectively fixedly connected to the second box body, the front side of the incomplete gear is fixedly connected to a rotating block, the right side of the frame is fixedly connected to a cross bar, and the outer wall of the cross bar is slidably connected to the second box body.

[0010] For further improvement, the right end of the cross bar is fixedly connected to the barrel body, and the end of the third motor is fixedly connected to the second box body.

[0011] The beneficial effect of the utility model is as follows: in the utility model, through the cooperation of the second box body and the auxiliary stirring mechanism, the output shaft of the third motor rotates to drive the incomplete gear to rotate, thereby driving the frame body to move to the right along the slide groove processed on the horizontal plate; when the teeth processed on the rotating block engage with the tooth groove processed on the upper inner wall of the frame, the frame body is driven to move to the left; the reciprocating movement of the frame body drives the reciprocating movement of the cross bar, so that the reciprocating movement of the barrel body can make the feed additives in the barrel body shake, and the feed additives can be mixed well in a shorter time, thereby improving work efficiency.

[0012] Through the cooperation of the first box body and the discharging mechanism, the second motor output shaft rotates to drive the protrusion to rotate, thereby driving the roller to rotate. The rotation of the roller drives the vertical rod to slide along the inner wall of the second box body, thereby driving the slider to slide along the inner wall of the second box body, so that the barrel body can swing back and forth, shaking out most of the remaining feed additives that cannot be discharged, without the operator consuming a lot of physical strength to use tools to take it, thereby saving labor. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 It is a structural diagram of the utility model;

[0014] Figure 2 for Figure 1 Front cross-sectional view of

[0015] Figure 3 for Figure 2 A partial left-side sectional view of the middle discharge mechanism;

[0016] Figure 4 for Figure 2 a partial right side sectional view;

[0017] Figure 5 for Figure 2 A partial enlarged schematic diagram;

[0018] Figure 6 for Figure 2 A right side sectional view of a part of the auxiliary stirring mechanism.

[0019] Explanation of the accompanying symbols: 1. First box body, 2. Discharging mechanism, 201. Second motor, 202. Cam, 203. Roller, 204. Vertical rod, 205. Slider, 3. Second box body, 4. Fixed column, 5. Vertical plate, 6. Barrel body, 7. Discharging port, 8. Stirring roller, 9. Auxiliary stirring mechanism, 901. Third motor, 902. Incomplete gear, 903. Rotating block, 904. Frame, 905. Horizontal plate, 906. Horizontal rod, 10. Feed port, 11. First motor. DETAILED DESCRIPTION

[0020] The present invention will be further described below with reference to the accompanying drawings:

[0021] Refer to the attached Figure 1-6 : In this embodiment, a feed additive mixer comprises a first box body 1 and a second box body 3, the transmission shaft of the second box body 3 is rotatably connected to the first box body 1 through a bearing, a discharging mechanism 2 is provided at the bottom of the first box body 1, and an auxiliary stirring mechanism 9 is provided inside the second box body 3. Two fixed columns 4 are fixedly connected to the inner wall of the second box body 3, and the outer walls of the fixed columns 4 are slidably connected to the vertical plates 5. The upper ends of the vertical plates 5 are fixedly connected to the barrel body 6. The right side of the barrel body 6 is fixedly connected to the discharge port 7, and the right side of the upper end of the barrel body 6 is fixedly connected to the feed port 10. A first motor 11 is fixedly connected to the center of the upper end of the barrel body 6. The models of the first motor 11, the second motor 201 and the third motor 901 are all selected according to actual needs to meet the work needs. The end of the output shaft of the first motor 11 is fixedly connected to a stirring roller 8, and both ends of the stirring roller 8 are rotatably connected to the barrel body 6 through bearings. The right end of the cross bar 906 is fixedly connected to the barrel body 6, and the end of the third motor 901 is fixedly connected to the second box body 3.

[0022] Refer to the attached Figure 2-4

[0023] The discharging mechanism 2 includes a second motor 201, and the end of the output shaft of the second motor 201 is fixedly connected to a cam 202, the outer wall of the cam 202 is in contact with the roller 203, the roller 203 is rotatably connected to the vertical rod 204 through a rotating shaft, and the upper part of the vertical rod 204 is movably connected to the slider 205 through a pin shaft, and the slider 205 is slidably connected to the round rod at the bottom of the second box body 3. The end of the second motor 201 is fixedly connected to the first box body 1, and the rotation of the output shaft of the second motor 201 drives the protrusion 202 to rotate, thereby driving the roller 203 to rotate, and the rotation of the roller 203 drives the vertical rod 204 to slide along the inner wall of the second box body 3, thereby driving the slider 205 to slide along the inner wall of the second box body 3.

[0024] Refer to the attached Figure 2 and attached Figure 5-6

[0025] The auxiliary stirring mechanism 9 includes a third motor 901, and the end of the output shaft of the third motor 901 is fixedly connected to an incomplete gear 902, and the tooth groove on the incomplete gear 902 meshes with the teeth processed on the frame 904. The bottom of the frame 904 is slidably connected to the cross plate 905, and the two ends of the cross plate 905 are respectively fixedly connected to the second box body 3. The front side of the incomplete gear 902 is fixedly connected to a rotating block 903, and the right side of the frame 904 is fixedly connected to a cross bar 906. The outer wall of the cross bar 906 is slidably connected to the second box body 3. The rotation of the output shaft of the third motor 901 drives the incomplete gear 902 to rotate, thereby driving the frame 904 to move to the right along the slide groove processed on the cross plate 905. When the teeth processed on the rotating block 903 mesh with the tooth groove processed on the upper inner wall of the frame 904, the frame 904 is driven to move to the left, and the reciprocating movement of the frame 904 drives the cross bar 906 to reciprocate.

[0026] Working principle: When using a mixer to mix feed additives:

[0027] Preparation process:

[0028] The operator adds the feed additive to be mixed into the barrel 6 from the feed inlet 10 .

[0029] Feed additive mixing process:

[0030] Start the power supply of the first motor 11, the output shaft of the first motor 11 rotates to drive the stirring roller 8 to rotate, and then start the power supply of the third motor 901, the output shaft of the third motor 901 rotates to drive the incomplete gear 902 to rotate, thereby driving the frame 904 to move to the right along the slide groove processed on the horizontal plate 905, when the teeth processed on the rotating block 903 engage with the tooth groove processed on the upper inner wall of the frame 904, driving the frame 904 to move to the left, the reciprocating movement of the frame 904 drives the cross bar 906 to reciprocate, the movement of the cross bar 906 drives the barrel 6 to move, and the movement of the barrel 6 drives the vertical plate 5 to slide along the outer wall of the fixed column 4, and the reciprocating movement of the barrel 6 can make the feed additives in the barrel 6 shake, and at the same time, the stirring roller 8 stirs the feed additives in the barrel 6, and it takes a shorter time to fully mix the feed additives that need to be mixed, thereby improving work efficiency.

[0031] Feed additive discharging process:

[0032] When the feed additives are mixed, the operator turns off the power of the first motor 11 and the third motor 901, and then opens the valve on the discharge port 7 to discharge most of the mixed feed from the barrel body 6. The operator then starts the power of the second motor 201. The output shaft of the second motor 201 (the second motor 201 can be a servo motor with a self-locking function) rotates to drive the protrusion 202 to rotate, thereby driving the roller 203 to rotate. The rotation of the roller 203 drives the vertical rod 204 to slide along the inner wall of the second box body 3, thereby driving the slider 205 to slide back and forth along the inner wall of the second box body 3. The reciprocating sliding of the slider 205 drives the second box body 3 to swing back and forth along the connection point with the inner wall of the first box body 1, thereby driving the barrel body 6 to swing back and forth, and the small amount of mixed feed additives remaining in the barrel body 6 can be discharged from the discharge port 7, without the operator having to consume a lot of physical strength to manually take it out, thereby saving labor. When the mixed feed additives are completely discharged, the operator controls the second motor 201 to restore the barrel body 6 to its original state for convenient use next time. While the present invention has been shown and described with reference to preferred embodiments, it will be understood by those skilled in the art that various changes in form and details may be made therein within the scope of the claims.

Claims

1. A feed additive mixer, comprising a first housing (1) and a second housing (3), wherein a transmission shaft of the second housing (3) is rotatably connected to the first housing (1) via a bearing, and wherein: A discharge mechanism (2) is provided at the bottom of the first box body (1), an auxiliary stirring mechanism (9) is provided inside the second box body (3), two fixed columns (4) are fixedly connected to the inner wall of the second box body (3), the outer walls of the fixed columns (4) are slidably connected to the vertical plates (5), the upper ends of the vertical plates (5) are fixedly connected to the barrel body (6), the right side of the barrel body (6) is fixedly connected to a discharge port (7), the right side of the upper end of the barrel body (6) is fixedly connected to a feed port (10), and the center of the upper end of the barrel body (6) is fixedly connected to a first motor (11).

2. A feed additive mixer according to claim 1, characterized in that: The end of the output shaft of the first motor (11) is fixedly connected to a stirring roller (8), and both ends of the stirring roller (8) are rotatably connected to the barrel (6) via bearings.

3. A feed additive mixer according to claim 1, characterized in that: The discharging mechanism (2) comprises a second motor (201), the end of the output shaft of the second motor (201) is fixedly connected to a cam (202), the outer wall of the cam (202) is in contact with a roller (203), the roller (203) is rotatably connected to a vertical rod (204) via a rotating shaft, and the upper portion of the vertical rod (204) is movably connected to a slider (205) via a pin shaft.

4. A feed additive mixer according to claim 3, characterized in that: The slider (205) is slidably connected to the round rod at the bottom of the second box (3), and the end of the second motor (201) is fixedly connected to the first box (1).

5. A feed additive mixer according to claim 1, characterized in that: The auxiliary stirring mechanism (9) comprises a third motor (901), an incomplete gear (902) is fixedly connected to the end of the output shaft of the third motor (901), the tooth groove on the incomplete gear (902) is meshed with the teeth processed on the frame (904), the lower part of the frame (904) is slidably connected to a transverse plate (905), both ends of the transverse plate (905) are respectively fixedly connected to the second box (3), the front side of the incomplete gear (902) is fixedly connected to a rotating block (903), the right side of the frame (904) is fixedly connected to a transverse bar (906), and the outer wall of the transverse bar (906) is slidably connected to the second box (3).

6. A feed additive mixer according to claim 5, characterized in that: The right end of the crossbar (906) is fixedly connected to the barrel body (6), and the end of the third motor (901) is fixedly connected to the second box body (3).

Citation Information

Patent Citations

  • Feed mixing machine

    CN206276279U

Cited By

  • Feed additive mixing machine capable of uniformly mixing materials

    CN224388592U