Biological bacterial fertilizer applying equipment

By designing a bio-fertilizer application device, which utilizes a motor-driven active gear meshing with an external gear ring to drive the feeding plate and tilting rod, the problem of uneven fertilization is solved, achieving a uniform and thorough fertilization effect.

CN223968277UActive Publication Date: 2026-03-06SHANDONG ZHONGNONG PLANT TRADITIONAL CHINESE MEDICINE TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-26
Publication Date
2026-03-06

AI Technical Summary

Technical Problem

The existing application of bio-fertilizers does not involve turning over the culture soil, resulting in uneven and incomplete fertilization.

Method used

A bio-fertilizer application device was designed, comprising an incubator, a feeding box, a turning mechanism, and a turning mechanism. The device uses a motor to drive a drive gear that meshes with an external gear ring, thereby moving the feeding plate and the turning rod to achieve synchronous feeding and turning.

Benefits of technology

It enables uniform application of bio-fertilizer, improves the precision and thoroughness of fertilization, and adapts to the fertilization needs of different crops.

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Abstract

The utility model relates to the technical field of fertilization equipment, in particular to biological bacterial fertilizer fertilization equipment, and aims to solve the problems that when an existing biological bacterial fertilizer is applied, culture soil is not turned over, and fertilization is not uniform and thorough enough, the following scheme is provided, and the biological bacterial fertilizer fertilization equipment comprises a culture box; the feeding box is rotatably mounted at the top of the culture box, a feeding port is formed in the top of the feeding box, a mounting plate is fixedly mounted on one side of the culture box, a motor is fixedly mounted at the bottom of the mounting plate, an output shaft of the motor is in transmission connection with the feeding box, a discharging pipe is mounted on one side of the culture box, and a valve is arranged on the discharging pipe. Through back-and-forth movement of a discharging plate, the discharging plate drives a turning rod to move back and forth through a mounting rod, and then biological bacteria in the culture box can be turned back and forth.
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Description

Technical Field

[0001] This utility model relates to the field of fertilization equipment technology, and in particular to a biological fertilizer fertilization device. Background Technology

[0002] Compound bio-fertilizer refers to a live microbial product composed of specific microorganisms and nutrients. It provides, maintains, or improves plant nutrition, thereby increasing agricultural yield or improving agricultural product quality. Its main components are a combination of microbial strains and nutrients. Finished compound bio-fertilizers are mainly available in solid granular and powder forms. Compound bio-fertilizers need to be evenly distributed on the soil before tilling. After tilling, the compound bio-fertilizer will be covered by the soil and decompose within it, thus fertilizing the soil.

[0003] CN219124768U discloses a bio-fertilizer application device, including fertilizer and a fertilization component disposed on one side of the fertilizer. The fertilization component includes a hopper, a discharge pipe, an application cylinder, a movable wheel, and an anti-detachment ring. The discharge pipe is integrally formed on the surface of the hopper, and the inner surface of the discharge pipe is slidably connected to the surface of the application cylinder. The movable wheel is rotatably connected to the side of the application cylinder away from the hopper, and the anti-detachment ring is fixedly disposed at the end of the application cylinder away from the movable wheel. This device can ensure that the amount of fertilizer applied each time is the same through the operation of the fertilization component, which improves the precision and accuracy of fertilization work compared with traditional manual fertilization methods. Furthermore, by adjusting the operation of the component, the amount of fertilizer applied can be adjusted according to different crops, greatly improving the practicality of the device.

[0004] Existing bio-fertilizers do not require the soil to be turned during application, which can easily lead to uneven and incomplete fertilization. Therefore, we propose a bio-fertilizer application device. Utility Model Content

[0005] In order to improve the problem that existing bio-fertilizers do not require turning over the culture soil during fertilization, which can easily lead to uneven and incomplete fertilization, this application provides a bio-fertilizer application device.

[0006] The bio-fertilizer application device provided in this application adopts the following technical solution:

[0007] A bio-fertilizer application device, comprising:

[0008] Incubator;

[0009] A feeding box is rotatably mounted on the top of the incubator. A feeding port is installed on the top of the feeding box. An installation plate is fixedly installed on one side of the incubator. A motor is fixedly installed on the bottom of the installation plate. The output shaft of the motor is connected to the feeding box for transmission. A discharge pipe is installed on one side of the incubator. A valve is provided on the discharge pipe.

[0010] A feeding mechanism is installed at the bottom of the feeding box and is connected to the incubator via a transmission mechanism;

[0011] The material turning mechanism is installed inside the incubator and is connected to the material feeding box via a transmission mechanism.

[0012] Preferably, the feeding mechanism includes a feeding plate, which is slidably installed at the bottom of the feeding box. The bottom of the feeding box has multiple feeding holes, and the feeding plate has multiple guide holes that cooperate with the feeding holes.

[0013] Preferably, a drive gear is fixedly installed on the output shaft of the motor, and an external gear ring is fixedly installed at the bottom of the feeding box, with the drive gear and the external gear ring meshing with each other.

[0014] Preferably, the material turning mechanism includes multiple turning rods, and two connecting plates are fixedly installed on the bottom of the material feeding plate. The bottom of the two connecting plates is fixedly installed with the same mounting rod, and the multiple turning rods are fixedly installed on the bottom of the mounting rod.

[0015] Preferably, a rotating ring is rotatably connected to the inner wall of the incubator, a rotating rod is rotatably connected to the inner wall of the rotating ring, a rotating roller is fixedly installed on the rotating rod, a circulation groove is opened on the rotating roller, and a slider is fixedly installed on one of the two connecting plates, and the slider is slidably connected to the circulation groove.

[0016] Preferably, a fixing ring is fixedly installed on the inner wall of the incubator, a ring rack is fixedly installed on the top of the fixing ring, and a driven gear is fixedly installed on the rotating rod, with the driven gear meshing with the ring rack.

[0017] In summary, this application includes at least one of the following beneficial technical effects:

[0018] 1. By setting the mutual meshing of the driving gear and the external gear ring, and the mutual meshing of the ring rack and the driven gear, and the sliding connection of the circulation groove and the slider, the output shaft of the motor can drive the feeding box to rotate, thereby driving the feeding plate to move back and forth, so as to perform intermittent fertilization and feeding.

[0019] 2. By setting the feeding plate to move back and forth, the feeding plate is driven by the mounting rod to move back and forth, thereby turning the bacteria in the incubator back and forth. Attached Figure Description

[0020] Figure 1This is a schematic diagram of the structure of a bio-fertilizer application device proposed in this utility model;

[0021] Figure 2 This is a schematic diagram of the bottom structure of the feeding box of a bio-fertilizer application device proposed in this utility model;

[0022] Figure 3 This is a schematic diagram of the cross-sectional structure of the rotating ring of a bio-fertilizer application device proposed in this utility model;

[0023] Figure 4 This is a schematic diagram of part A of a bio-fertilizer application device proposed in this utility model.

[0024] Reference numerals: 1. Incubator; 2. Feed box; 3. Feed inlet; 4. Feed plate; 5. Discharge hole; 6. Guide hole; 7. Connecting plate; 8. Mounting rod; 9. Flipping rod; 10. Motor; 11. Drive gear; 12. External gear ring; 13. Rotary ring; 14. Rotating rod; 15. Driven gear; 16. Fixed ring; 17. Rotating roller; 18. Sliding block; 19. Circulation groove; 20. Annular rack; 21. Discharge pipe. Detailed Implementation

[0025] The following is in conjunction with the appendix Figure 1-4 This application will be described in further detail.

[0026] Example 1

[0027] Reference Figures 1-4 A bio-fertilizer application device, comprising:

[0028] Incubator 1;

[0029] The feeding box 2 is rotatably installed on the top of the incubator 1. The top of the feeding box 2 is equipped with a feeding port 3. A mounting plate is fixedly installed on one side of the incubator 1. A motor 10 is fixedly installed at the bottom of the mounting plate. The output shaft of the motor 10 is connected to the feeding box 2 for transmission. A discharge pipe 21 is installed on one side of the incubator 1. A valve is provided on the discharge pipe 21.

[0030] The feeding mechanism is installed at the bottom of the feeding box 2 and is connected to the incubator 1 via a transmission mechanism;

[0031] The material turning mechanism is installed inside the incubator 1 and is connected to the material dispensing box 2 via a transmission mechanism.

[0032] In this embodiment, the feeding mechanism includes a feeding plate 4, which is slidably installed at the bottom of the feeding box 2. The bottom of the feeding box 2 has multiple feeding holes 5, and the feeding plate 4 has multiple guide holes 6 that cooperate with the feeding holes 5. A rotating ring 13 is rotatably connected to the inner wall of the incubator 1, and a rotating rod 14 is rotatably connected to the inner wall of the rotating ring 13. A rotating roller 17 is fixedly installed on the rotating rod 14, and a circulation groove 19 is provided on the rotating roller 17. A slider 1 is fixedly installed on one of the two connecting plates 7. 8. The slider 18 is slidably connected to the circulation groove 19. The guide hole 6 and the discharge hole 5 on the discharge plate 4 cooperate with each other so that when the guide hole 6 and the discharge hole 5 overlap, the material can be discharged into the discharge box 2. At the same time, the rotating rod 14 drives the rotating roller 17 to rotate. The rotating roller 17 is slidably connected to the slider 18 through the circulation groove 19, thereby driving the connecting plate 7 to move back and forth. The connecting plate 7 drives the discharge plate 4 and the mounting rod 8 to move back and forth. The back and forth movement of the discharge plate 4 thereby causes the guide hole 6 and the discharge hole 5 to be intermittently connected.

[0033] In this embodiment, a drive gear 11 is fixedly installed on the output shaft of the motor 10, and an external gear ring 12 is fixedly installed on the bottom of the feeding box 2. The drive gear 11 and the external gear ring 12 mesh with each other, and the output shaft of the motor 10 drives the feeding box 2 to rotate through the meshing of the drive gear 11 and the external gear ring 12.

[0034] In this embodiment, the material turning mechanism includes multiple turning rods 9. Two connecting plates 7 are fixedly installed on the bottom of the material feeding plate 4. The same mounting rod 8 is fixedly installed on the bottom of the two connecting plates 7. Multiple turning rods 9 are fixedly installed on the bottom of the mounting rod 8. The moving mounting rod 8 drives the turning rods 9 to move back and forth. The turning rods 9 can turn the biological bacteria in the incubator 1 back and forth, so as to fully fertilize them.

[0035] In this embodiment, a fixing ring 16 is fixedly installed on the inner wall of the incubator 1, and a ring rack 20 is fixedly installed on the top of the fixing ring 16. A driven gear 15 is fixedly installed on the rotating rod 14. The driven gear 15 meshes with the ring rack 20. The rotating rod 14 drives the driven gear 15 to rotate. The driven gear 15 can drive the rotating rod 14 to rotate by meshing with the ring rack 20.

[0036] The implementation principle of the bio-fertilizer application device in this application embodiment is as follows: When working, the motor 10 is turned on. The output shaft of the motor 10 drives the feeding box 2 to rotate through the meshing of the drive gear 11 and the external gear ring 12. The feeding box 2 drives the rotating rod 14 to revolve through the feeding plate 4 and the connecting plate 7. The revolving rotating rod 14 drives the driven gear 15 to revolve. The driven gear 15 meshes with the ring rack 20, thereby driving the rotating rod 14 to rotate. The rotating rod 14 drives the rotating roller 17 to rotate. The rotating roller 17 is slidably connected to the slider 18 through the circulation groove 19, thereby driving the connecting plate 7 to move back and forth. The connecting plate 7 drives the feeding plate 4 and the mounting rod 8 to move back and forth. The back and forth movement of the feeding plate 4 causes the guide hole 6 and the discharge hole 5 to intermittently connect, thereby discharging material into the feeding box 2. The moving mounting rod 8 drives the flipping rod 9 to move back and forth. The flipping rod 9 can turn the bio-bacteria in the incubator 1 back and forth, thereby enabling full fertilization.

[0037] Example 2

[0038] The difference between Example 2 and Example 1 is that the incubator 1 is equipped with a temperature control mechanism. The temperature control mechanism can control the temperature environment during the cultivation of microorganisms, so as to achieve the best cultivation conditions.

[0039] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. A bio-bacterial fertilizer application apparatus, characterized by: The utility model relates to a culture box, which comprises the following: a culture box (1); a discharging box (2) rotatably installed on the top of the culture box (1), wherein the top of the discharging box (2) is provided with an inlet (3), one side of the culture box (1) is fixedly provided with a mounting plate, the bottom of the mounting plate is fixedly provided with a motor (10), the output shaft of the motor (10) is in transmission connection with the discharging box (2), one side of the culture box (1) is provided with a discharging pipe (21), and the discharging pipe (21) is provided with a valve; a discharging mechanism installed at the bottom of the discharging box (2) and in transmission connection with the culture box (1); a turning mechanism installed in the culture box (1) and in transmission connection with the discharging box (2).

2. The bio-bacterial fertilizer application apparatus according to claim 1, wherein The discharging mechanism comprises a discharging plate (4) slidably installed at the bottom of the discharging box (2), the bottom of the discharging box (2) is provided with a plurality of discharging holes (5), and the discharging plate (4) is provided with a plurality of guide holes (6) corresponding to the discharging holes (5).

3. The bio-bacterial fertilizer application apparatus according to claim 2, wherein The output shaft of the motor (10) is fixedly provided with a driving gear (11), and the bottom of the discharging box (2) is fixedly provided with an external gear ring (12), wherein the driving gear (11) and the external gear ring (12) are in meshing connection.

4. The bio-bacterial fertilizer application apparatus according to claim 3, wherein The turning mechanism comprises a plurality of turning rods (9), the bottom of the discharging plate (4) is fixedly provided with two connecting plates (7), the bottom of the two connecting plates (7) is fixedly provided with the same mounting rod (8), and the plurality of turning rods (9) are fixedly installed at the bottom of the mounting rod (8).

5. The bio-bacterial fertilizer application apparatus according to claim 4, wherein The inner wall of the culture box (1) is rotatably provided with a rotating ring (13), the inner wall of the rotating ring (13) is rotatably provided with a rotating rod (14), the rotating rod (14) is fixedly provided with a rotating stick (17), the rotating stick (17) is provided with a circulating groove (19), one of the two connecting plates (7) is fixedly provided with a sliding block (18), and the sliding block (18) is in sliding connection with the circulating groove (19).

6. The bio-bacterial fertilizer application apparatus according to claim 5, wherein The inner wall of the culture box (1) is fixedly provided with a fixed ring (16), the top of the fixed ring (16) is fixedly provided with an annular rack (20), the rotating rod (14) is fixedly provided with a driven gear (15), and the driven gear (15) and the annular rack (20) are in meshing connection.

Citation Information

Patent Citations

  • Biological bacterial fertilizer applying equipment

    CN219124768U