A fully automatic feeder

CN224704036UActive Publication Date: 2026-09-01SHANGYU JIAYING CHEM
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Patent Information

Application Number
CN202522049064.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-24
Publication Date
2026-09-01
Estimated Expiration
2035-09-24

AI Technical Summary

Technical Problem

[0003]本实用新型针对现有技术中局部颗粒物料堆积结块和上下层物料难以混合的问题,提出如下技术方案:

Benefits of technology

通过小齿轮二与齿轮件的啮合传动和锥齿轮与锥齿环的啮合传动,启动电动机,带动齿轮件转动的同时带动各个侧向驱动杆转动,从而带动搅拌辊和侧向螺纹板对内部物料进行打碎和搅拌,保证物料颗粒的均匀程度,提高整体的可靠性;

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Abstract

This utility model belongs to the field of feeder technology and discloses a fully automatic feeder, including an upper protective cover. An electric motor is fixedly connected to the upper end of the upper protective cover. The output end of the electric motor passes through the upper protective cover and is fixedly connected to a lateral main rod. A small gear is fixedly connected to the outer surface of the upper end of the lateral main rod. A large gear is meshed with the outer surface of the small gear. A drive main rod is fixedly connected to the lower end of the large gear. A main thread plate is fixedly connected to the outer surface of the drive main rod. A small gear is fixedly connected to the outer surface of the bottom end of the small gear. A gear component is meshed with the outer surface of the small gear. A lateral drive rod is rotatably connected to the inner surface of the gear component. This design solves the problems of localized accumulation and agglomeration of particulate materials and difficulty in mixing materials in the upper and lower layers.
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Description

Technical Field

[0001] This utility model belongs to the field of feeder technology, and in particular relates to a fully automatic feeder. Background Technology

[0002] A feeder is a device used for automated conveying and pre-processing of materials. Existing fully automatic feeders require material pre-processing during use. Due to the single material mixing and processing method, localized accumulation and clumping of particulate materials and large differences in quality between upper and lower layers of material are prone to occur, affecting the overall performance. Utility Model Content

[0003] This utility model addresses the problems of localized agglomeration and clumping of particulate materials and difficulty in mixing upper and lower layers in the prior art, and proposes the following technical solution: A fully automatic feeder includes an upper protective cover, an electric motor fixedly connected to the upper end of the upper protective cover, a lateral main rod fixedly connected to the output end of the electric motor through the upper protective cover, a small gear fixedly connected to the outer surface of the upper end of the lateral main rod, a large gear meshing with the outer surface of the small gear, a drive main rod fixedly connected to the lower end of the large gear, and a main thread plate fixedly connected to the outer surface of the drive main rod.

[0004] As a preferred embodiment of the above technical solution, a second pinion is fixedly connected to the outer surface of the bottom end of the first pinion, a gear component is meshed with the outer surface of the second pinion, and a lateral drive rod is rotatably connected to the inner surface of the gear component.

[0005] As a preferred embodiment of the above technical solution, a plurality of bevel gears are fixedly connected to the upper end of the lateral drive rod, stirring rollers are fixedly connected to the outer surfaces of the spaced-apart lateral drive rods, and lateral threaded plates are fixedly connected to the outer surfaces of the remaining lateral drive rods.

[0006] As a preferred embodiment of the above technical solution, the bottom end of the upper protective cover is fixedly connected to the lower protective cover, the inner surface of the upper protective cover is fixedly connected to the bevel gear ring, the outer surface of the bevel gear ring meshes with the outer surface of the bevel gear, the inner surface of the lower protective cover is fixedly connected to the ring frame, and the upper end of the upper protective cover is provided with a feed port.

[0007] As a preferred embodiment of the above technical solution, a tapered guide is fixedly connected to the outer surface of the drive rod, and a funnel-shaped guide plate is fixedly connected to the inner surface of the upper protective cover. The funnel-shaped guide plate is located below the tapered guide, and the bottom end of the funnel-shaped guide plate is rotatably connected to the inner surface of the gear component.

[0008] As a preferred embodiment of the above technical solution, an electric push rod is fixedly connected to the upper end of the upper protective cover, a top plate is fixedly connected to the output end of the electric push rod, a column is fixedly connected to the bottom end of the top plate, a discharge baffle is fixedly connected to the bottom end of the column, and the outer surface of the column is slidably connected to the inner surface of the drive rod.

[0009] The beneficial effects of this utility model are as follows: Through the meshing transmission of pinion two with gear components and the meshing transmission of bevel gear with bevel gear ring, the motor is started, which drives the gear components to rotate and at the same time drives each side drive rod to rotate, thereby driving the stirring roller and side threaded plate to crush and stir the internal material, ensuring the uniformity of material particles and improving the overall reliability. Through the meshing transmission of the small gear and the large gear, the drive rod and the main thread plate can be driven to rotate. Through the counter-rotation of the main thread plate and the side thread plate, a cycle of material in the middle descending and material at the edge rising can be formed in the upper and lower protective covers. The counter-rotation of the main thread plate and the side thread plate can also crush large particles in the material, ensuring the degree of mixing and particle uniformity of the material, and improving the overall functionality and practicality. Attached Figure Description

[0010] Figure 1 The image shown is a 3D view of a fully automatic feeder; Figure 2 The image shown is a cross-sectional view of a fully automatic feeder; Figure 3 The diagram shown is a schematic of the internal structure of a fully automatic feeder; Figure 4 The diagram shown is an exploded view of the internal structure of a fully automatic feeder; Figure 5 The image shown is an exploded view of the internal structure of a fully automatic feeder from another perspective.

[0011] In the diagram: 1. Upper protective cover; 2. Motor; 3. Lateral main rod; 4. Pinion 1; 5. Large gear; 6. Drive main rod; 7. Main threaded plate; 8. Pinion 2; 9. Gear component; 10. Lateral drive rod; 11. Bevel gear; 12. Agitator roller; 13. Lateral threaded plate; 14. Lower protective cover; 15. Bevel gear ring; 16. Ring frame; 17. Feed inlet; 18. Conical guide; 19. Funnel-shaped guide plate; 20. Electric push rod; 21. Top plate; 22. Column; 23. Discharge baffle. Detailed Implementation

[0012] To make the objectives, technical solutions, and advantages of the present invention clearer, the technical solutions of the present invention will be clearly and completely described below in conjunction with the embodiments.

[0013] Example 1 This utility model provides a fully automatic feeder, such as Figures 1 to 5 As shown, the device includes an upper protective cover 1, with a lower protective cover 14 fixedly connected to the bottom end of the upper protective cover 1. A feed inlet 17 is provided at the upper end of the upper protective cover 1. A conical guide 18 is fixedly connected to the outer surface of the drive rod 6. A funnel-shaped guide plate 19 is fixedly connected to the inner surface of the upper protective cover 1, located below the conical guide 18. The bottom end of the funnel-shaped guide plate 19 is rotatably connected to the inner surface of the gear component 9. An electric push rod 20 is fixedly connected to the upper end of the upper protective cover 1. A top plate 21 is fixedly connected to the output end of the electric push rod 20. A column 22 is fixedly connected to the bottom end of the top plate 21. A discharge baffle 23 is fixedly connected to the bottom end of the column 22. The side surface is slidably connected to the inner surface of the drive rod 6. Material can be fed in through the feed port 17. The material can be sent into the lower mixing structure through the inclined surfaces of the conical guide 18 and the funnel-shaped guide plate 19. The rotation of the conical guide 18 can prevent the feed port 17 from accumulating when a large amount of material is fed, thus improving the overall reliability and functionality. The electric push rod 20 can control the discharge baffle 23 to open and close the bottom of the mixing space inside the lower protective cover 14, ensuring stable and reliable discharge. The inclined surfaces set on the lower protective cover 14 and the discharge baffle 23 can guide the processed material to be discharged, thus improving the overall reliability and practicality.

[0014] like Figures 1 to 5As shown, an electric motor 2 is fixedly connected to the upper end of the upper protective cover 1. The output end of the electric motor 2 passes through the upper protective cover 1 and is fixedly connected to a lateral main rod 3. A small gear 4 is fixedly connected to the outer surface of the upper end of the lateral main rod 3. A large gear 5 is meshed with the outer surface of the small gear 4. A drive main rod 6 is fixedly connected to the lower end of the large gear 5. A main thread plate 7 is fixedly connected to the outer surface of the drive main rod 6. A small gear 8 is fixedly connected to the outer surface of the bottom end of the small gear 4. A gear component 9 is meshed with the outer surface of the small gear 8. A lateral drive rod 10 is rotatably connected to the inner surface of the gear component 9. Several bevel gears 11 are fixedly connected to the upper end of the lateral drive rod 10. A stirring roller 12 is fixedly connected to the outer surface of the spaced-apart lateral drive rods 10. A lateral thread plate 13 is fixedly connected to the outer surface of the remaining lateral drive rods 10. A bevel gear ring 15 is fixedly connected to the inner surface of the upper protective cover 1. The outer surface of the bevel gear ring 15 is connected to the bevel gear 11. The outer surface is meshed and connected, and the inner surface of the lower protective cover 14 is fixedly connected to the ring frame 16. Through the meshing transmission of the small gear 8 and the gear 9, and the meshing transmission of the bevel gear 11 and the bevel ring 15, the motor 2 is started, which drives the gear 9 to rotate and drives each side drive rod 10 to rotate, thereby driving the stirring roller 12 and the side threaded plate 13 to crush and stir the internal material, ensuring the uniformity of the material particles and improving the overall reliability. Through the meshing transmission of the small gear 4 and the large gear 5, the drive rod 6 and the main threaded plate 7 can be driven to rotate. Through the counter-rotation of the main threaded plate 7 and the side threaded plate 13, a cycle of the middle material falling and the edge material rising can be formed in the upper protective cover 1 and the lower protective cover 14. In addition, the counter-rotation of the main threaded plate 7 and the side threaded plate 13 can also crush the large particles in the material, ensuring the degree of stirring and particle uniformity of the material, and improving the overall functionality and practicality.

[0015] The above embodiments are only used to illustrate the technical solution of this utility model, and are not intended to limit it.

Claims

1. A fully automatic feeder, characterized in that, Includes an upper protective cover (1), the upper end of which is fixedly connected to a motor (2), the output end of which is fixedly connected to a lateral main rod (3) through the upper protective cover (1), a small gear (4) is fixedly connected to the outer surface of the upper end of the lateral main rod (3), a large gear (5) is meshed with the outer surface of the small gear (4), a drive main rod (6) is fixedly connected to the lower end of the large gear (5), and a main thread plate (7) is fixedly connected to the outer surface of the drive main rod (6).

2. The fully automatic feeder according to claim 1, characterized in that, The bottom outer surface of the first pinion (4) is fixedly connected to the second pinion (8), the outer surface of the second pinion (8) is meshed with a gear component (9), and the inner surface of the gear component (9) is rotatably connected to a lateral drive rod (10).

3. The fully automatic feeder according to claim 2, characterized in that, The upper end of the lateral drive rod (10) is fixedly connected to several bevel gears (11), and the outer surfaces of the spaced-apart lateral drive rods (10) are fixedly connected to stirring rollers (12), and the outer surfaces of the remaining lateral drive rods (10) are fixedly connected to lateral threaded plates (13).

4. The fully automatic feeder according to claim 3, characterized in that, The bottom end of the upper protective cover (1) is fixedly connected to the lower protective cover (14), the inner surface of the upper protective cover (1) is fixedly connected to the bevel gear ring (15), the outer surface of the bevel gear ring (15) meshes with the outer surface of the bevel gear (11), the inner surface of the lower protective cover (14) is fixedly connected to the ring frame (16), and the upper end of the upper protective cover (1) is provided with a feed port (17).

5. The fully automatic feeder according to claim 2, characterized in that, A tapered guide (18) is fixedly connected to the outer surface of the drive rod (6), and a funnel-shaped guide plate (19) is fixedly connected to the inner surface of the upper protective cover (1). The funnel-shaped guide plate (19) is located below the tapered guide (18), and the bottom end of the funnel-shaped guide plate (19) is rotatably connected to the inner surface of the gear component (9).

6. The fully automatic feeder according to claim 1, characterized in that, An electric push rod (20) is fixedly connected to the upper end of the upper protective cover (1). A top plate (21) is fixedly connected to the output end of the electric push rod (20). A column (22) is fixedly connected to the bottom end of the top plate (21). A discharge baffle (23) is fixedly connected to the bottom end of the column (22). The outer surface of the column (22) is slidably connected to the inner surface of the drive rod (6).