Bio-organic fertilizer mixed compost fermentation device
By introducing bevel gears and auxiliary gears to drive the scraper rotation in the bio-organic fertilizer mixed composting fermentation device, and combining the main gear shaft to drive the scraper and stirring blades to stir, the problem of the bottom sediment being difficult to mix is solved, the yield and stirring efficiency are improved, and the equipment life is extended.
Patent Information
- Application Number
- CN202422867856.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-25
- Publication Date
- 2025-11-04
- Estimated Expiration
- 2034-11-25
AI Technical Summary
Existing bio-organic fertilizer composting fermentation equipment has difficulty fully mixing the raw materials deposited at the bottom of the tank during use, which affects the yield of finished products.
The drive motor at the rear of the motor bracket drives the bevel gear to rotate, which in turn drives the scraper on the side of the auxiliary gear to rotate, scraping up the bottom deposited fertilizer inside the composting drum and mixing it thoroughly with the new material. At the same time, the main gear shaft drives the scraper and stirring blades to stir in different directions, increasing the mixing efficiency.
It improves the yield and mixing efficiency of the equipment, extends the service life of the equipment, and avoids jamming due to force on one side.
Smart Images

Figure CN223509825U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of bio-organic fertilizer, and in particular to a bio-organic fertilizer mixed composting fermentation device. Background Technology
[0002] An existing patent (publication number: CN218879770U) discloses a bio-organic fertilizer mixed composting fermentation device. It includes support legs, a lid, and a stirring rod. A tank is mounted on the top of the support legs, and a discharge port is fixed to the bottom of the tank. The crushing structure includes a first rotating shaft, a stepper motor, a second rotating shaft, a first gear, a second gear, and blades. The second rotating shaft is inserted into one side of the feed hopper, and the first gear is fixed to the top of the second rotating shaft. However, this device, which states that "the stirring rod is mounted on the bottom of the stirring motor," relies on the stirring rod inside the tank for mixing. During use, it may be difficult to fully mix the raw materials deposited at the bottom of the tank, affecting the yield of the finished product. Summary of the Invention
[0003] To address the aforementioned shortcomings of existing technologies, this utility model provides a bio-organic fertilizer mixed composting fermentation device. This device uses a drive motor at the rear of the motor bracket to drive a bevel gear to rotate, which in turn drives a scraper on the side of the secondary gear to rotate. This allows the scraper inside the composting drum to scrape up the fertilizer deposited at the bottom and mix it thoroughly with the new material, thereby increasing the yield of the equipment.
[0004] The objective of this utility model is achieved through the following technical solution:
[0005] A bio-organic fertilizer mixed composting fermentation device includes an equipment support frame, a main gear shaft, a secondary gear shaft, a feed hopper, and a rear crushing shaft. The upper part of the equipment support frame is fixedly connected to a composting cylinder. The composting cylinder has a scraper shaft groove inside, which is adapted to a scraper shaft. The scraper shaft is connected to the scraper shaft and rotates within the scraper shaft groove. The side of the scraper shaft is fixedly connected to a scraper. The composting cylinder is adapted to the scraper and connected to the scraper. The scraper rotates within the composting cylinder. The scraper shaft is adapted to a stirring shaft and connected to the stirring shaft. The scraper shaft rotates internally, the side of the mixing shaft is fixedly connected to the mixing blades, the rear of the composting cylinder is fixedly connected to the drive bracket, the inside of the drive bracket is fixedly connected to the frame, the frame has a bevel gear shaft groove, the bevel gear has a bevel gear shaft, the bevel gear shaft groove is adapted to the bevel gear shaft, the bevel gear shaft groove is connected to the bevel gear shaft, the bevel gear shaft rotates inside the bevel gear shaft groove, the front of the frame is fixedly connected to the motor bracket, the side of the drive motor has a motor frame, the front of the motor bracket is fixedly connected to the motor frame, and the inside of the motor bracket has a main gear shaft groove.
[0006] The main gear shaft groove is adapted to the main gear shaft, the main gear shaft groove is connected to the main gear shaft, the main gear shaft rotates inside the main gear shaft groove, the main gear shaft meshes with the front part of the bevel gear, the rear part of the drive motor is fixedly connected to the main gear shaft, the rear part of the frame is fixedly connected to the gear frame, the gear frame has a secondary gear shaft groove inside, the secondary gear is fixedly connected to the secondary gear shaft inside, the secondary gear meshes with the rear part of the bevel gear, the secondary gear shaft groove is adapted to the secondary gear shaft, and the secondary gear shaft groove is connected to the secondary gear shaft.
[0007] The auxiliary gear shaft rotates inside the auxiliary gear shaft groove. The rear part of the main gear shaft is fixedly connected to the drive shaft. The auxiliary gear shaft is adapted to the drive shaft and is connected to the drive shaft. The drive shaft rotates inside the auxiliary gear shaft. The rear part of the auxiliary gear shaft is fixedly connected to the scraper shaft. The rear part of the drive shaft is fixedly connected to the mixing shaft. The upper part of the composting cylinder is fixedly connected to the feed hopper. Beneficial effects
[0008] 1. During the use of this utility model organic fertilizer mixing composting fermentation device, the drive motor at the rear of the motor bracket drives the bevel gear to rotate, which in turn drives the scraper on the side of the auxiliary gear to rotate. This causes the scraper inside the composting cylinder to scrape up the fertilizer deposited at the bottom and mix it thoroughly with the new material, thereby increasing the yield of the equipment.
[0009] 2. During the use of this utility model organic fertilizer mixed composting fermentation device, the drive motor at the rear of the motor bracket drives the main gear shaft to rotate, which in turn drives the drive shaft and the auxiliary gear shaft on the side of the scraper to rotate. This causes the scraper and stirring blades inside the composting cylinder to stir in different directions, thereby increasing the stirring efficiency of the equipment.
[0010] 3. During the use of this utility model organic fertilizer mixed composting fermentation device, the main gear shaft is driven to rotate by the drive motor at the rear of the motor bracket, and the power transmission is carried out in conjunction with the two sets of bevel gears on the side of the frame, so as to avoid unilateral force jamming and thus increase the service life of the equipment. Attached Figure Description
[0011] Figure 1 This is a schematic diagram of the structure of a biological organic fertilizer mixed composting fermentation device according to the present invention.
[0012] Figure 2 This is a three-dimensional assembly diagram of the bio-organic fertilizer mixed composting fermentation device described in this utility model.
[0013] Figure 3 This is a three-dimensional assembly diagram of the frame structure of a biological organic fertilizer mixed composting fermentation device according to the present invention.
[0014] Figure 4 This is a three-dimensional assembly diagram of the feeding hopper structure of the bio-organic fertilizer mixed composting fermentation device described in this utility model. Detailed Implementation
[0015] The present invention will be further described in detail below with reference to the accompanying drawings and embodiments:
[0016] Example 1:
[0017] A bio-organic fertilizer mixed composting fermentation device includes an equipment support 01, a main gear shaft 16, a secondary gear shaft 20, a feed hopper 22, and a rear crushing shaft 26. The upper part of the equipment support 01 is fixedly connected to a composting cylinder 02. The composting cylinder 02 has a scraper shaft groove 03 inside, which is adapted to a scraper shaft 04. The scraper shaft groove 03 is connected to the scraper shaft 04, and the scraper shaft 04 rotates inside the scraper shaft groove 03. The side of the scraper shaft 04 is fixedly connected to a scraper 05. The composting cylinder 02 and the scraper 05 are connected. Correspondingly, the composting drum 02 is connected to a scraper 05, which rotates inside the composting drum 02. The scraper shaft 04 is adapted to the stirring shaft 06, which is connected to the stirring shaft 06. The stirring shaft 06 rotates inside the scraper shaft 04. The side of the stirring shaft 06 is fixedly connected to the stirring blades 32. The rear of the composting drum 02 is fixedly connected to a drive bracket 07. The drive bracket 07 is fixedly connected to a frame 08. The frame 08 has a bevel gear shaft groove 09 inside, and the bevel gear 10 has a bevel gear shaft 11 inside. During the operation of the organic fertilizer mixed composting fermentation device, the drive motor 14 at the rear of the motor bracket 12 drives the bevel gear 10 to rotate, which in turn drives the scraper 05 on the side of the auxiliary gear 19 to rotate. This causes the scraper 05 inside the composting cylinder 02 to scrape up the fertilizer deposited at the bottom and mix it thoroughly with the new material, thereby increasing the yield of the equipment. The bevel gear shaft groove 09 is adapted to the bevel gear shaft 11 and connects to the bevel gear shaft 11. The bevel gear shaft 11 rotates inside the bevel gear shaft groove 09. The front of the frame 08 is fixedly connected to the motor bracket 12. The drive motor 14 has a motor frame 13 on its side. During the operation of the organic fertilizer mixed composting fermentation device, the drive motor 14 at the rear of the motor bracket 12 drives the main gear shaft 16 to rotate, and cooperates with the two sets of bevel gears 10 on the side of the frame 08 for power transmission, avoiding unilateral force jamming, thereby increasing the service life of the equipment. The front of the motor bracket 12 is fixedly connected to the motor frame 13, and the motor bracket 12 has a main gear shaft groove 15 inside.
[0018] Example 2:
[0019] The main gear shaft groove 15 of this utility model is adapted to the main gear shaft 16, and the main gear shaft groove 15 is connected to the main gear shaft 16. The main gear shaft 16 rotates inside the main gear shaft groove 15 and meshes with the front part of the bevel gear 10. The rear part of the drive motor 14 is fixedly connected to the main gear shaft 16. The rear part of the frame 08 is fixedly connected to the gear frame 17. The gear frame 17 has a secondary gear shaft groove 18 inside. The secondary gear 19 is fixedly connected to the secondary gear shaft 20 inside and meshes with the rear part of the bevel gear 10. The secondary gear shaft groove 18 is adapted to the secondary gear shaft 20 and is connected to the secondary gear shaft 20.
[0020] Example 3:
[0021] The auxiliary gear shaft 20 of this utility model rotates inside the auxiliary gear shaft groove 18. The rear part of the main gear shaft 16 is fixedly connected to the drive shaft 21. The auxiliary gear shaft 20 is adapted to the drive shaft 21. During the use of the organic fertilizer mixed composting fermentation device, the drive motor 14 at the rear of the motor bracket 12 drives the main gear shaft 16 to rotate, so that the main gear shaft 16 drives the drive shaft 21 and the auxiliary gear shaft 20 on the side of the scraper 05 to rotate, thereby causing the scraper 05 and the stirring blade 32 inside the composting cylinder 02 to stir in different directions, thereby increasing the stirring efficiency of the equipment. The auxiliary gear shaft 20 is connected to the drive shaft 21, and the drive shaft 21 rotates inside the auxiliary gear shaft 20. The rear part of the auxiliary gear shaft 20 is fixedly connected to the scraper shaft 04, and the rear part of the drive shaft 21 is fixedly connected to the stirring shaft 06. The upper part of the composting cylinder 02 is fixedly connected to the feed hopper 22.
[0022] Example 4:
[0023] The composting cylinder 02 of this utility model is connected to the inside of the feeding hopper 22. The front part of the feeding hopper 22 has a front crushing shaft groove 23, and the front crushing shaft 24 is rotatably connected inside the front crushing shaft groove 23. The rear part of the feeding hopper 22 has a rear crushing shaft groove 25, and the rear crushing shaft 26 is rotatably connected inside the rear crushing shaft groove 25. The front crushing shaft 24 and the rear crushing shaft 26 are both fixedly connected to crushing rollers 27, and the two sets of crushing rollers 27 are in corresponding positions.
[0024] Example 5:
[0025] The front crushing shaft 24 and the rear crushing shaft 26 of this utility model are both fixedly connected to the transmission gears 28, and the two sets of transmission gears 28 mesh with each other. The side of the feed hopper 22 is fixedly connected to the crushing motor 29, the inside of the crushing motor 29 is fixedly connected to the rear crushing shaft 26, the inside of the feed hopper 22 is fixedly connected to the baffle 31, and the lower part of the composting cylinder 02 is fixedly connected to the discharge valve 33.
[0026] Example 6:
[0027] Installation steps of this utility model: Fix the upper part of the equipment bracket 01 to the composting cylinder 02; rotate the scraper shaft 04 inside the scraper shaft groove 03; fix the side of the scraper shaft 04 to the scraper 05; rotate the scraper 05 inside the composting cylinder 02; rotate the stirring shaft 06 inside the scraper shaft 04; fix the side of the stirring shaft 06 to the stirring blade 32; fix the rear part of the composting cylinder 02 to the drive bracket 07; fix the inside of the drive bracket 07 to the frame 08; and install the bevel gear shaft 11 in the bevel gear shaft groove. 09 rotates internally, fixing the front of frame 08 to motor bracket 12, fixing the front of motor bracket 12 to motor frame 13, rotating the main gear shaft 16 inside the main gear shaft groove 15, meshing the main gear shaft 16 with the front of bevel gear 10, fixing the rear of drive motor 14 to main gear shaft 16, fixing the rear of frame 08 to gear frame 17, fixing the interior of auxiliary gear 19 to auxiliary gear shaft 20, meshing the auxiliary gear 19 with the rear of bevel gear 10, and fixing the auxiliary gear shaft 20 to the auxiliary gear shaft 20. The gear shaft 16 rotates inside the gear shaft groove 18, fixing the rear part of the main gear shaft 16 to the drive shaft 21. The drive shaft 21 rotates inside the auxiliary gear shaft 20, fixing the rear part of the auxiliary gear shaft 20 to the scraper shaft 04. The rear part of the drive shaft 21 is fixedly connected to the mixing shaft 06. The upper part of the composting cylinder 02 is fixedly connected to the feed hopper 22, and the interior of the composting cylinder 02 is connected to the interior of the feed hopper 22. The front crushing shaft 24 is rotatably connected inside the front crushing shaft groove 23, and the rear crushing shaft 26 rotates inside the rear crushing shaft groove 25. The front crushing shaft 24 and the rear crushing shaft 26 are both fixedly connected to the crushing rollers 27. The two sets of crushing rollers 27 are aligned. The front crushing shaft 24 and the rear crushing shaft 26 are both fixedly connected to the transmission gears 28. The two sets of transmission gears 28 are meshed. The side of the feed hopper 22 is fixedly connected to the crushing motor 29. The inside of the crushing motor 29 is fixedly connected to the rear crushing shaft 26. The inside of the feed hopper 22 is fixedly connected to the baffle 31. The lower part of the composting cylinder 02 is fixedly connected to the discharge valve 33.
[0028] 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 bio-organic fertilizer mixed composting fermentation device, characterized in that: The equipment includes a support frame (01), a main gear shaft (16), a secondary gear shaft (20), a feed hopper (22), and a rear crushing shaft (26). The upper part of the support frame (01) is fixedly connected to the composting cylinder (02). The composting cylinder (02) has a scraper shaft groove (03) inside, which is adapted to a scraper shaft (04). The scraper shaft groove (03) is connected to the scraper shaft (04), and the scraper shaft (04) rotates inside the scraper shaft groove (03). The side of the scraper shaft (04) is fixedly connected to a scraper (05). The composting cylinder (02) is adapted to the scraper (05), and the scraper (05) is connected to the composting cylinder (02). The scraper (05) rotates inside the composting cylinder (02). The scraper shaft (04) is adapted to the stirring shaft (06), and the scraper shaft (04) is connected to the stirring shaft (06). The stirring shaft (06) rotates inside the scraper shaft (06). The shaft (04) rotates inside, the side of the stirring shaft (06) is fixedly connected to the stirring blade (32), the rear of the composting cylinder (02) is fixedly connected to the drive bracket (07), the inside of the drive bracket (07) is fixedly connected to the frame (08), the inside of the frame (08) has a bevel gear shaft groove (09), the inside of the bevel gear (10) has a bevel gear shaft (11), the bevel gear shaft groove (09) is adapted to the bevel gear shaft (11), the bevel gear shaft groove (09) is connected to the bevel gear shaft (11), the bevel gear shaft (11) rotates inside the bevel gear shaft groove (09), the front of the frame (08) is fixedly connected to the motor bracket (12), the side of the drive motor (14) has a motor frame (13), the front of the motor bracket (12) is fixedly connected to the motor frame (13), the inside of the motor bracket (12) has a main gear shaft groove (15).
2. The bio-organic fertilizer mixed composting fermentation device according to claim 1, characterized in that: The main gear shaft groove (15) is adapted to the main gear shaft (16), the main gear shaft groove (15) is connected to the main gear shaft (16), the main gear shaft (16) rotates inside the main gear shaft groove (15), the main gear shaft (16) meshes with the front part of the bevel gear (10), the rear part of the drive motor (14) is fixedly connected to the main gear shaft (16), the rear part of the frame (08) is fixedly connected to the gear frame (17), the gear frame (17) has a secondary gear shaft groove (18) inside, the secondary gear (19) is fixedly connected to the secondary gear shaft (20) inside, the secondary gear (19) meshes with the rear part of the bevel gear (10), the secondary gear shaft groove (18) is adapted to the secondary gear shaft (20), and the secondary gear shaft groove (18) is connected to the secondary gear shaft (20).
3. The bio-organic fertilizer mixed composting fermentation device according to claim 2, characterized in that: The auxiliary gear shaft (20) rotates inside the auxiliary gear shaft groove (18). The rear part of the main gear shaft (16) is fixedly connected to the drive shaft (21). The auxiliary gear shaft (20) is adapted to the drive shaft (21). The auxiliary gear shaft (20) is connected to the drive shaft (21). The drive shaft (21) rotates inside the auxiliary gear shaft (20). The rear part of the auxiliary gear shaft (20) is fixedly connected to the scraper shaft (04). The rear part of the drive shaft (21) is fixedly connected to the stirring shaft (06). The upper part of the composting cylinder (02) is fixedly connected to the feed hopper (22).
4. The bio-organic fertilizer mixed composting fermentation device according to claim 3, characterized in that: The composting cylinder (02) is connected to the inside of the feeding hopper (22). The front part of the feeding hopper (22) has a front crushing shaft groove (23), and the front crushing shaft (24) is rotatably connected inside the front crushing shaft groove (23). The rear part of the feeding hopper (22) has a rear crushing shaft groove (25), and the rear crushing shaft (26) is rotatably connected inside the rear crushing shaft groove (25). The front crushing shaft (24) and the rear crushing shaft (26) are both fixedly connected to the crushing rollers (27), and the two sets of crushing rollers (27) are in corresponding positions.
5. The bio-organic fertilizer mixed composting fermentation device according to claim 4, characterized in that: The front crushing shaft (24) and the rear crushing shaft (26) are both fixedly connected to the transmission gear (28). The two sets of transmission gears (28) mesh with each other. The side of the feed hopper (22) is fixedly connected to the crushing motor (29). The inside of the crushing motor (29) is fixedly connected to the rear crushing shaft (26). The inside of the feed hopper (22) is fixedly connected to the baffle (31). The lower part of the composting cylinder (02) is fixedly connected to the discharge valve (33).
Citation Information
Patent Citations
Bio-organic fertilizer composting fermentation equipment
CN218879770U