Feeding structure for organic fertilizer production

By using a design that drives the feeding wheel with a feeding motor and a double threaded rod, the problem of manual control required for the feeding structure in existing organic fertilizer production is solved. This achieves automated batch output, improves equipment adaptability, and extends the service life of the equipment.

CN223495685UActive Publication Date: 2025-10-31TIANJIN DAHUAN BIOLOGICAL FERTILIZER CO LTD
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Patent Information

Application Number
CN202422667383.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-03
Publication Date
2025-10-31
Estimated Expiration
2034-11-03

AI Technical Summary

Technical Problem

The existing organic fertilizer production feeding structure requires manual control by the operator when feeding in large quantities, which has certain limitations.

Method used

The material distribution wheel is driven by a material distribution motor to rotate, which drives the material in the material distribution hopper to be output in batches. The output is controlled by a double threaded rod, and the dual motor drive reduces the load on a single motor.

Benefits of technology

It enables batch output without operator manual control, increasing equipment adaptability and extending equipment lifespan.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223495685U_ABST
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Abstract

A feeding structure for organic fertilizer production comprises an equipment base, a material conveying support, a positioning rod, a double-thread rod, a center shaft and a gear shaft, the rear portion of the equipment base is fixedly connected with the material conveying support, the front portion of the material conveying support is fixedly connected with a material conveying auxiliary wheel support, and a material conveying auxiliary wheel is rotationally connected in the material conveying auxiliary wheel support; the rear portion of the material conveying support is fixedly connected with the driving support, the driving support is matched with the material conveying driving wheel, the driving support is connected with the material conveying driving wheel, the material conveying driving wheel rotates in the driving support, the side portion of the driving support is fixedly connected with the material conveying motor, and the interior of the material conveying motor is fixedly connected with the material conveying driving wheel. The auxiliary conveying wheel is connected with the conveying driving wheel through a conveying belt, and the upper portion of the conveying support is fixedly connected with the distributing support.
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Description

Technical Field

[0001] This utility model relates to the field of organic fertilizer production, and in particular to a feeding structure for organic fertilizer production. Background Technology

[0002] An existing patent (publication number: CN214359150U) proposes a feeding structure for organic fertilizer production. It includes a base plate, a first support rod on one side of the top of the base plate, a first driven wheel on one side of the first support rod, a limit plate on the top of the first support rod, a second support rod on the top of the base plate and located on one side of the first support rod, and a feeding device at the top of the second support rod. A first support column on the other side of the top of the base plate, a steering wheel on one side of the first support column, and a second support column on the other side of the top of the base plate and located on one side of the first support column. However, this device, where "the feeding device is located at the top of the second support rod," relies on a feeding device under the tracks to feed and output raw materials. For large-volume feeding, the operator must manually control the feeding device for batch output, which has certain limitations. Summary of the Invention

[0003] This utility model addresses the aforementioned shortcomings of the existing technology by providing a feeding structure for organic fertilizer production. Raw materials for organic fertilizer production are placed into a storage hopper and then fall into a distribution hopper. A distribution motor at the rear of the distribution cylinder drives a distribution wheel to rotate, causing the distribution wheel to output the material in the distribution hopper in batches. No manual operator control is required during this process, thus increasing the adaptability of the equipment.

[0004] The objective of this utility model is achieved through the following technical solution:

[0005] A feeding structure for organic fertilizer production includes a base, a conveying support, a positioning rod, a double-threaded rod, a central shaft, and a gear shaft. The rear of the base is fixedly connected to the conveying support, and the front of the conveying support is fixedly connected to a conveying auxiliary wheel support. The conveying auxiliary wheel is rotatably connected inside the conveying auxiliary wheel support. The rear of the conveying support is fixedly connected to a drive support, which is adapted to a conveying drive wheel and connected to it. The conveying drive wheel rotates inside the drive support. A side of the drive support is fixedly connected to a conveying motor, and the inside of the conveying motor is fixedly connected to the conveying drive wheel. Next, the feeding auxiliary wheel is connected to the feeding drive wheel via the feeding conveyor belt. The upper part of the feeding bracket is fixedly connected to the feeding bracket. The inside of the feeding bracket is fixedly connected to the feeding cylinder. The feeding cylinder is adapted to the feeding wheel and is connected to the feeding wheel. The feeding wheel rotates inside the feeding cylinder. The lower part of the feeding cylinder is fixedly connected to the output trough. The upper part of the feeding cylinder is fixedly connected to the storage hopper. The side of the feeding motor has a motor bracket. The rear of the feeding cylinder is fixedly connected to the motor bracket. The inside of the feeding motor is fixedly connected to the feeding wheel. The inside of the feeding wheel has a feeding hopper positioning groove. The side of the feeding hopper positioning groove has a positioning groove.

[0006] The positioning groove is fixedly connected to the positioning rod inside. The positioning groove of the distributing hopper is adapted to the distributing hopper. The positioning groove of the distributing hopper is connected to the distributing hopper. The distributing hopper slides inside the positioning groove of the distributing hopper. The lower part of the distributing hopper corresponds to the position of the output groove. The side of the distributing hopper is fixedly connected to the distributing hopper support. The side of the distributing hopper support has a positioning cylinder. The positioning rod is adapted to the positioning cylinder. The positioning rod is connected to the positioning cylinder. The positioning cylinder slides inside the positioning rod. The front part of the distributing wheel is fixedly connected to the screw support.

[0007] The screw support is adapted to the double threaded rod, the screw support is connected to the double threaded rod, the double threaded rod rotates inside the screw support, the double threaded rod has a hexagonal head on the side, the front of the hopper support is fixedly connected to the threaded cylinder, the threaded cylinder is threadedly connected to the side of the double threaded rod, the equipment base is fixedly connected to the center seat inside, the lower part of the feeding rack is fixedly connected to the central shaft, and the central shaft is rotatably connected inside the central seat.

[0008] The feeding auxiliary wheel is rotatably connected inside the central shaft. The upper part of the feeding frame is fixedly connected to the feeding motor. The feeding motor is fixedly connected to the feeding drive wheel. The feeding drive wheel is connected to the feeding auxiliary wheel through the feeding conveyor belt. The side of the equipment base is fixedly connected to the rack table. The front of the rack table is fixedly connected to the rack frame. The rear of the rack frame has a rack column. The lower part of the rack column is fixedly connected to the rack table. The rack frame has a rack inside. The side of the feeding frame is fixedly connected to the gear frame. Beneficial effects

[0009] 1. In the process of using the organic fertilizer production feeding structure of this utility model, the raw materials for organic fertilizer production are put into the storage hopper and fall into the distribution hopper. The distribution motor at the rear of the distribution cylinder drives the distribution wheel to rotate, so that the distribution wheel drives the material inside the distribution hopper to be output in batches. During this process, no manual control by the operator is required, thereby increasing the adaptability of the equipment.

[0010] 2. In the process of using the organic fertilizer production feeding structure of this utility model, after the raw materials for organic fertilizer production are put into the storage hopper and fall into the distribution hopper, the hexagonal head on the side of the distribution wheel drives the double threaded rod to rotate, so that the double threaded rod drives the distribution hopper inside the positioning groove of the distribution hopper to rise and fall, thereby controlling the amount of output each time by the double threaded rod, thereby further increasing the adaptability of the equipment.

[0011] 3. During the use of the organic fertilizer production feeding structure of this utility model, the internal gears are driven to rotate by two sets of worm gear motors on the side of the feeding frame, so that the two motors can work together to reduce the load on a single motor and thus increase the service life of the equipment. Attached Figure Description

[0012] Figure 1 This is a schematic diagram of the feeding structure for organic fertilizer production according to the present invention.

[0013] Figure 2 This is a three-dimensional assembly diagram of the feeding and conveying support structure for organic fertilizer production according to the present invention.

[0014] Figure 3 This is a partial cross-sectional three-dimensional assembly diagram of the feeding structure and distribution cylinder structure for organic fertilizer production according to this utility model.

[0015] Figure 4 This is a partial cross-sectional three-dimensional assembly diagram of the feeding and distributing wheel structure for organic fertilizer production according to the present invention.

[0016] Figure 5 This is a three-dimensional assembly diagram of the feeding structure and feeding rack structure for organic fertilizer production according to the present invention.

[0017] Figure 6 This is a three-dimensional assembly diagram of the gear frame structure for feeding organic fertilizer production according to the present invention. Detailed Implementation

[0018] The present invention will be further described in detail below with reference to the accompanying drawings and embodiments:

[0019] Example 1:

[0020] A feeding structure for organic fertilizer production includes a base 01, a conveying support 02, a positioning rod 16, a double-threaded rod 21, a central shaft 26, and a gear shaft 37. The rear of the base 01 is fixedly connected to the conveying support 02, and the front of the conveying support 02 is fixedly connected to a conveying auxiliary wheel support 03. A conveying auxiliary wheel 04 is rotatably connected inside the conveying auxiliary wheel support 03. The rear of the conveying support 02 is fixedly connected to a drive support 05, which is adapted to a conveying drive wheel 06. The drive support 05 is connected to the conveying drive wheel 06, which rotates inside the drive support 05. The side of the drive support 05 is fixedly connected to a conveying motor 07, and the inside of the conveying motor 07 is fixedly connected to the conveying drive wheel 06. The conveying auxiliary wheel 04 is connected to the conveying drive wheel 06 via a conveying conveyor belt 08. The upper part of the conveying support 02 is fixedly connected to a distribution support 09, and the inside of the distribution support 09 is fixedly connected to a distribution cylinder 10. The material distribution cylinder 10 is fixedly connected to the material distribution wheel 11, which rotates inside the material distribution cylinder 10. The lower part of the material distribution cylinder 10 is fixedly connected to the output groove 43, and the upper part is fixedly connected to the storage hopper 44. The side of the material distribution motor 13 has a motor bracket 12, and the rear of the material distribution cylinder 10 is fixedly connected to the motor bracket 12. The inside of the material distribution motor 13 is fixedly connected to the material distribution wheel 11. During the use of the organic fertilizer production feeding structure, the raw materials for organic fertilizer production are put into the storage hopper 44 and fall into the material distribution hopper 17. The material distribution wheel 11 is driven to rotate by the material distribution motor 13 at the rear of the material distribution cylinder 10, so that the material distribution wheel 11 drives the material inside the material distribution hopper 17 to be output in batches. During this process, no manual control by the operator is required, thereby increasing the adaptability of the equipment. The inside of the material distribution wheel 11 has a material distribution hopper positioning groove 14, and the side of the material distribution hopper positioning groove 14 has a positioning groove 15.

[0021] Example 2:

[0022] The positioning groove 15 of this utility model is fixedly connected to the positioning rod 16. The positioning groove 14 of the distributing hopper is adapted to the distributing hopper 17. The positioning groove 14 of the distributing hopper is connected to the distributing hopper 17. The distributing hopper 17 slides inside the positioning groove 14 of the distributing hopper. The lower part of the distributing hopper 17 corresponds to the position of the output groove 43. The side of the distributing hopper 17 is fixedly connected to the distributing hopper support 18. The side of the distributing hopper support 18 has a positioning cylinder 19. The positioning rod 16 is adapted to the positioning cylinder 19. The positioning rod 16 is connected to the positioning cylinder 19. The positioning cylinder 19 slides inside the positioning rod 16. The front part of the distributing wheel 11 is fixedly connected to the screw support 20.

[0023] Example 3:

[0024] The screw support 20 of this utility model is adapted to the double threaded rod 21. The screw support 20 is connected to the double threaded rod 21, and the double threaded rod 21 rotates inside the screw support 20. During the use of the organic fertilizer production feeding structure, the raw materials for organic fertilizer production are put into the storage hopper 44 and fall into the distribution hopper 17. The double threaded rod 21 is rotated by the hexagonal head 22 on the side of the distribution wheel 11, so that the double threaded rod 21 drives the distribution hopper 17 inside the distribution hopper positioning groove 14 to rise and fall. Thus, the double threaded rod 21 controls the amount of output each time, thereby further increasing the adaptability of the equipment. The double threaded rod 21 has a hexagonal head 22 on the side. The front part of the distribution hopper support 18 is fixedly connected to the threaded cylinder 23. The threaded cylinder 23 is threadedly connected to the side of the double threaded rod 21. The equipment base 01 is fixedly connected to the center seat 25 inside. The lower part of the feeding frame 27 is fixedly connected to the central shaft 26. The central shaft 26 is rotatably connected inside the central seat 25.

[0025] Example 4:

[0026] The feeding auxiliary wheel 28 of this utility model is rotatably connected inside the central shaft 26. The upper part of the feeding frame 27 is fixedly connected to the feeding motor 29. The feeding motor 29 is fixedly connected to the feeding drive wheel 30. The feeding drive wheel 30 is connected to the feeding auxiliary wheel 28 through the feeding conveyor belt 31. The side of the equipment base 01 is fixedly connected to the rack table 32. The front of the rack table 32 is fixedly connected to the rack frame 33. The rear of the rack frame 33 has a rack column 35. The lower part of the rack column 35 is fixedly connected to the rack table 32. The rack frame 33 has a rack 34 inside. The side of the feeding frame 27 is fixedly connected to the gear frame 36.

[0027] Example 5:

[0028] The gear frame 36 of this utility model is adapted to the gear shaft 37. The gear frame 36 is connected to the gear shaft 37, and the gear shaft 37 rotates inside the gear frame 36. The side of the gear shaft 37 is fixedly connected to the gear 38, and the gear 38 meshes inside the rack 34. The gear frame 36 has a worm groove 39 inside, and the worm 40 is rotatably connected inside the worm groove 39. The upper part of the gear frame 36 is fixedly connected to the worm motor 41, and the lower part of the worm motor 41 is fixedly connected to the worm 40. During the use of the organic fertilizer production feeding structure, the two sets of worm motors 41 on the side of the feeding frame 27 jointly drive the internal gear 38 to rotate, so that the two motors work together to reduce the load on a single motor and thus increase the service life of the equipment. The gear shaft 37 has a worm wheel 45 inside, and the worm 40 meshes on the side of the worm wheel 45.

[0029] Example 6:

[0030] Installation steps of this utility model: Fix the rear of the equipment base 01 to the conveying bracket 02; fix the front of the conveying bracket 02 to the conveying auxiliary wheel bracket 03; rotatably connect the conveying auxiliary wheel 04 inside the conveying auxiliary wheel bracket 03; fix the rear of the conveying bracket 02 to the drive bracket 05; rotate the conveying drive wheel 06 inside the drive bracket 05; fix the side of the drive bracket 05 to the conveying motor 07; fix the inside of the conveying motor 07 to the conveying drive wheel 06; connect the conveying auxiliary wheel 04 to the conveying drive wheel 06 via the conveying conveyor belt 08; fix the upper part of the conveying bracket 02 to the distributing bracket 09; and then... The material support 09 is fixedly connected to the material distribution cylinder 10. The material distribution wheel 11 rotates inside the material distribution cylinder 10. The lower part of the material distribution cylinder 10 is fixedly connected to the output slot 43. The upper part of the material distribution cylinder 10 is fixedly connected to the storage hopper 44. The rear part of the material distribution cylinder 10 is fixedly connected to the motor support 12. The material distribution motor 13 is fixedly connected to the material distribution wheel 11. The positioning slot 15 is fixedly connected to the positioning rod 16. The material distribution hopper 17 slides inside the positioning slot 14. The lower part of the material distribution hopper 17 aligns with the position of the output slot 43. The side of the material distribution hopper 17 is fixedly connected to the material distribution hopper support 18. The positioning cylinder 19 slides inside the positioning rod 16 to distribute the material. The front part of wheel 11 is fixedly connected to screw support 20. Double threaded rod 21 rotates inside screw support 20. The front part of hopper support 18 is fixedly connected to threaded cylinder 23. Threaded cylinder 23 is threaded to the side of double threaded rod 21. The inside of equipment base 01 is fixedly connected to center seat 25. The lower part of feeding frame 27 is fixedly connected to central shaft 26. Central shaft 26 is rotatably connected inside center seat 25. Feeding auxiliary wheel 28 is rotatably connected inside central shaft 26. The upper part of feeding frame 27 is fixedly connected to feeding motor 29. The inside of feeding motor 29 is fixedly connected to feeding drive wheel 30. Feeding drive wheel 30 is connected to feeding conveyor belt. 31 is connected to the feeding auxiliary wheel 28, the side of the equipment base 01 is fixedly connected to the rack table 32, the front of the rack table 32 is fixedly connected to the rack frame 33, the lower part of the rack column 35 is fixedly connected to the rack table 32, the side of the feeding rack 27 is fixedly connected to the gear frame 36, the gear shaft 37 rotates inside the gear frame 36, the side of the gear shaft 37 is fixedly connected to the gear 38, the gear 38 meshes inside the rack 34, the worm 40 rotates inside the worm groove 39, the upper part of the gear frame 36 is fixedly connected to the worm motor 41, the lower part of the worm motor 41 is fixedly connected to the worm 40, and the worm 40 meshes on the side of the worm wheel 45.

[0031] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the technical principles of the present utility model, and these improvements and modifications should also be considered within the protection scope of the present utility model.

Claims

1. A feeding structure for organic fertilizer production, characterized in that: The equipment includes a base (01), a feeding bracket (02), a positioning rod (16), a double-threaded rod (21), a central shaft (26), and a gear shaft (37). The rear of the base (01) is fixedly connected to the feeding bracket (02), the front of the feeding bracket (02) is fixedly connected to the feeding auxiliary wheel bracket (03), the feeding auxiliary wheel (04) is rotatably connected inside the feeding auxiliary wheel bracket (03), the rear of the feeding bracket (02) is fixedly connected to the drive bracket (05), the drive bracket (05) is adapted to the feeding drive wheel (06), the drive bracket (05) is connected to the feeding drive wheel (06), the feeding drive wheel (06) rotates inside the drive bracket (05), the side of the drive bracket (05) is fixedly connected to the feeding motor (07), the inside of the feeding motor (07) is fixedly connected to the feeding drive wheel (06), and the feeding auxiliary wheel (04) is connected to the feeding auxiliary wheel (06) via... The conveyor belt (08) is connected to the conveyor drive wheel (06). The upper part of the conveyor support (02) is fixedly connected to the material distribution support (09). The inside of the material distribution support (09) is fixedly connected to the material distribution cylinder (10). The material distribution cylinder (10) is adapted to the material distribution wheel (11). The material distribution cylinder (10) is connected to the material distribution wheel (11). The material distribution wheel (11) rotates inside the material distribution cylinder (10). The lower part of the material distribution cylinder (10) is fixedly connected to the output groove (43). The upper part of the material distribution cylinder (10) is fixedly connected to the storage hopper (44). The side of the material distribution motor (13) has a motor support (12). The rear part of the material distribution cylinder (10) is fixedly connected to the motor support (12). The inside of the material distribution motor (13) is fixedly connected to the material distribution wheel (11). The inside of the material distribution wheel (11) has a material distribution hopper positioning groove (14). The side of the material distribution hopper positioning groove (14) has a positioning groove (15).

2. The feeding structure for organic fertilizer production according to claim 1, characterized in that: The positioning groove (15) is fixedly connected to the positioning rod (16). The positioning groove (14) of the distributing hopper is adapted to the distributing hopper (17). The positioning groove (14) of the distributing hopper is connected to the distributing hopper (17). The distributing hopper (17) slides inside the positioning groove (14). The lower part of the distributing hopper (17) corresponds to the position of the output groove (43). The side of the distributing hopper (17) is fixedly connected to the distributing hopper support (18). The side of the distributing hopper support (18) has a positioning cylinder (19). The positioning rod (16) is adapted to the positioning cylinder (19). The positioning rod (16) is connected to the positioning cylinder (19). The positioning cylinder (19) slides inside the positioning rod (16). The front part of the distributing wheel (11) is fixedly connected to the screw support (20).

3. The feeding structure for organic fertilizer production according to claim 2, characterized in that: The screw support (20) is adapted to the double threaded rod (21). The screw support (20) is connected to the double threaded rod (21), and the double threaded rod (21) rotates inside the screw support (20). The double threaded rod (21) has a hexagonal head (22) on its side. The front of the hopper support (18) is fixedly connected to the threaded cylinder (23), and the threaded cylinder (23) is threadedly connected to the side of the double threaded rod (21). The equipment base (01) is fixedly connected to the center seat (25) inside. The lower part of the feeding rack (27) is fixedly connected to the central shaft (26), and the central shaft (26) is rotatably connected inside the central seat (25). The feeding auxiliary wheel (28) is on the central shaft (26). The internal rotating connection is as follows: the upper part of the feeding rack (27) is fixedly connected to the feeding motor (29), the inside of the feeding motor (29) is fixedly connected to the feeding drive wheel (30), the feeding drive wheel (30) is connected to the feeding auxiliary wheel (28) through the feeding conveyor belt (31), the side of the equipment base (01) is fixedly connected to the rack table (32), the front of the rack table (32) is fixedly connected to the rack frame (33), the rear of the rack frame (33) has a rack column (35), the lower part of the rack column (35) is fixedly connected to the rack table (32), the inside of the rack frame (33) has a rack (34), and the side of the feeding rack (27) is fixedly connected to the gear frame (36).

4. The feeding structure for organic fertilizer production according to claim 3, characterized in that: The gear carrier (36) is connected to the gear shaft (37), the gear shaft (37) rotates inside the gear carrier (36), the side of the gear shaft (37) is fixedly connected to the gear (38), the gear (38) meshes inside the rack (34), the gear carrier (36) has a worm groove (39) inside, the worm (40) is rotatably connected inside the worm groove (39), the upper part of the gear carrier (36) is fixedly connected to the worm motor (41), the lower part of the worm motor (41) is fixedly connected to the worm (40), the gear shaft (37) has a worm wheel (45) inside, the worm (40) meshes on the side of the worm wheel (45).

Citation Information

Patent Citations

  • Feeding device of organic fertilizer production line

    CN214359150U