Bio-organic carbon-based fertilizer production automation equipment

CN224657285UActive Publication Date: 2026-08-21YUNNAN ZHUANMU NEW ENERGY CO LTD +1
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Patent Information

Application Number
CN202522081756.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-28
Publication Date
2026-08-21
Estimated Expiration
2035-09-28

AI Technical Summary

Technical Problem

[0003]但是,现有的生物有机碳基肥生产自动化设备生产完成后,对基肥的过滤效果不够好,并且对不同大小颗粒的分类效果不够好;因此,不满足现有的需求,对此我们提出了一种生物有机碳基肥生产自动化设备

Benefits of technology

[0013]1、本实用新型通过在搅拌仓内侧设置的刮板和搅拌棒,利用刮板和搅拌棒,可以减少搅拌仓内壁的残留以及基肥结块,提高了粗滤网的过滤效果,在进入主体后,通过主体内侧设置的细滤网,可以将基肥进一步过滤,将更细腻的基肥送入细滤网下方的导向板上,然后利用主体外侧设置的第一收集板和第二收集板,将对应的基肥进行收集,方便对基肥进行分类,提高基肥的使用效果;

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Abstract

The utility model discloses a kind of biological organic carbon-based fertilizer production automation equipment, including main body, the upper portion of the main body is provided with connecting barrel, the upper portion of the connecting barrel is provided with motor, the side of the connecting barrel is provided with feed pipe, the both ends of the main body are provided with filter screen, the both sides of the lower surface of the main body are provided with fixed ring, the side of the fixed ring is provided with second collecting plate, the side of the second collecting plate is provided with support plate, the upper portion of the support plate is provided with first collecting plate, the utility model has the advantages that base fertilizer can be filtered and classified using fine filter screen and guide plate, improve the use effect of base fertilizer, using the long strip plate, connecting rod, torsional spring and baffle set on the upper surface of fine filter screen, when motor works, the adjusting plate outside connecting rod can be driven to rotate, make adjusting plate push baffle, then using torsional spring, long strip plate can be moved back and forth, reduce the blockage of fine filter screen, improve the filtering effect of fine filter screen.
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Description

Technical Field

[0001] This utility model relates to the field of base fertilizer production technology, specifically to an automated equipment for the production of bio-organic carbon-based fertilizer. Background Technology

[0002] Base fertilizer refers to the fertilizer applied before sowing or transplanting crops, or at the end or beginning of the growing season for perennial crops, in conjunction with soil tillage. Its purpose is to create favorable soil conditions for crop growth and development, and to meet the crop's basic nutritional requirements. Fertilizers used for base application are mainly organic fertilizers and chemical fertilizers with low mobility in the soil or slow-release effects, such as phosphate fertilizers, potash fertilizers, and some micronutrient fertilizers.

[0003] However, existing automated equipment for producing bio-organic carbon-based fertilizers does not effectively filter the fertilizer or classify particles of different sizes after production; therefore, it does not meet current needs. To address this, we propose an automated equipment for producing bio-organic carbon-based fertilizers. Utility Model Content

[0004] The technical problem this invention aims to solve is to provide an automated equipment for the production of bio-organic carbon-based fertilizers.

[0005] To achieve the above objectives, this utility model provides the following technical solution:

[0006] An automated production equipment for bio-organic carbon-based fertilizer includes a main body, a connecting cylinder above the main body, a motor above the connecting cylinder, a feed pipe on one side of the connecting cylinder, filter screens at both ends of the main body, fixing rings on both sides of the lower surface of the main body, a second collecting plate on one side of the fixing ring, a support plate on one side of the second collecting plate, a first collecting plate above the support plate, and a base at the lower end of the fixing ring.

[0007] Preferably, a mixing chamber is provided inside the connecting cylinder, a connecting shaft is provided inside the mixing chamber, a mixing rod is evenly arranged on one side of the connecting shaft, a scraper is provided on the other side of the connecting shaft, and a coarse filter screen is provided at the lower end of the mixing chamber.

[0008] Preferably, a partition is provided on the inner side of the main body, and fine filter screens are provided on both sides of the upper end of the partition. A long strip plate is provided on the upper surface of the fine filter screen. A connecting rod is provided between the long strip plate and the connecting cylinder. A torsion spring is provided between the lower end of the connecting rod and the long strip plate. A baffle is provided at one end of the long strip plate. An adjusting plate is provided on one side of the baffle. A connecting rod is provided at one end of the adjusting plate. A guide plate is provided below the fine filter screen. A discharge hole is provided on the lower surface of the main body at one end of the guide plate.

[0009] Preferably, the lower surface of the main body is in complete contact with the upper surface of the fixing ring, and the main body and the fixing ring are fixed by screws.

[0010] Preferably, one end of the stirring rod is fully in contact with the outer surface of the connecting shaft, and the stirring rod and the connecting shaft are fixed by screws.

[0011] Preferably, the upper end of the connecting rod is fully fitted with the lower surface of the connecting shaft, the connecting rod and the connecting shaft are fixed by screws, and the lower end of the connecting rod is slidably connected to the partition.

[0012] Compared with the prior art, the beneficial effects of this utility model are:

[0013] 1. This utility model uses scrapers and stirring rods installed inside the mixing chamber to reduce residue and fertilizer agglomeration on the inner wall of the mixing chamber, thereby improving the filtration effect of the coarse filter screen. After entering the main body, the fertilizer is further filtered through the fine filter screen installed inside the main body, and the finer fertilizer is sent to the guide plate below the fine filter screen. Then, the first and second collection plates installed on the outside of the main body are used to collect the corresponding fertilizer, which facilitates the classification of fertilizer and improves the utilization effect of fertilizer.

[0014] 2. This utility model, by setting a long strip plate, connecting rod, torsion spring and baffle above the fine filter screen, can drive the adjustment plate on the outside of the connecting rod to rotate when the motor is working, so that the adjustment plate pushes the baffle. Then, by using the torsion spring, the long strip plate can move back and forth to a certain extent, thereby reducing the clogging of the fine filter screen and improving the filtration effect of the fine filter screen. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0016] Figure 2 This is a schematic diagram of the internal structure of the connecting cylinder of this utility model;

[0017] Figure 3 This is a partial structural schematic diagram of the present invention;

[0018] Figure 4 This is an enlarged schematic diagram of structure A of this utility model.

[0019] In the diagram: 1. Motor; 2. Connecting cylinder; 3. Feed pipe; 4. Main body; 5. Filter screen; 6. First collecting plate; 7. Base; 8. Support plate; 9. Second collecting plate; 10. Fixing ring; 11. Mixing chamber; 12. Scraper; 13. Connecting shaft; 14. Coarse filter screen; 15. Stirring rod; 16. Long strip plate; 17. Fine filter screen; 18. Discharge hole; 19. Guide plate; 20. Partition plate; 21. Connecting rod; 22. Torsion spring; 23. Baffle; 24. Adjusting plate; 25. Connecting rod. Detailed Implementation

[0020] The specific embodiments of this utility model will be further described below with reference to the accompanying drawings. It should be noted that these descriptions are for the purpose of aiding understanding of this utility model, but do not constitute a limitation thereof. Furthermore, the technical features involved in the various embodiments of this utility model described below can be combined with each other as long as they do not conflict with each other.

[0021] like Figure 1 As shown, the automated equipment for producing bio-organic carbon-based fertilizer according to this utility model includes a main body 4, a connecting cylinder 2 above the main body 4, a motor 1 above the connecting cylinder 2, a feed pipe 3 on one side of the connecting cylinder 2, filter screens 5 at both ends of the main body 4, fixing rings 10 on both sides of the lower surface of the main body 4, a second collecting plate 9 on one side of the fixing ring 10, a support plate 8 on one side of the second collecting plate 9, a first collecting plate 6 above the support plate 8, and a base 7 at the lower end of the fixing ring 10.

[0022] As a preferred technical solution in this embodiment, such as Figure 2 As shown, a mixing chamber 11 is provided inside the connecting cylinder 2, and a connecting shaft 13 is provided inside the mixing chamber 11. A stirring rod 15 is evenly arranged on one side of the connecting shaft 13, and a scraper 12 is provided on the other side of the connecting shaft 13. A coarse filter screen 14 is provided at the lower end of the mixing chamber 11. By using the scraper 12 and the stirring rod 15, the residue on the inner wall of the mixing chamber 11 and the agglomeration of base fertilizer can be reduced, thereby improving the filtration effect of the coarse filter screen 14.

[0023] As a preferred technical solution in this embodiment, such as Figure 3 and Figure 4 As shown, a partition 20 is provided on the inner side of the main body 4. Fine filter screens 17 are provided on both sides of the upper end of the partition 20. A long strip plate 16 is provided on the upper surface of the fine filter screen 17. A connecting rod 21 is provided between the long strip plate 16 and the connecting cylinder 2. A torsion spring 22 is provided between the lower end of the connecting rod 21 and the long strip plate 16. A baffle 23 is provided at one end of the long strip plate 16. An adjusting plate 24 is provided on one side of the baffle 23. A connecting rod 25 is provided at one end of the adjusting plate 24. A guide plate 19 is provided below the fine filter screen 17. The main body 4 is located at one end of the guide plate 19. The lower surface is provided with a discharge hole 18. The base fertilizer can be filtered and classified by using a fine filter screen 17 and a guide plate 19, thereby improving the utilization effect of the base fertilizer. The long strip plate 16, connecting rod 21, torsion spring 22 and baffle 23 provided on the upper surface of the fine filter screen 17 can drive the adjusting plate 24 on the outside of the connecting rod 15 to rotate when the motor 1 is working. The adjusting plate 24 pushes the baffle 23. Then, the torsion spring 22 can make the long strip plate 16 move back and forth to a certain extent, reducing the clogging of the fine filter screen 17 and improving the filtration effect of the fine filter screen 17.

[0024] Working principle: During use, the feed pipe 3 is connected to the outside. The scraper 12 and stirring rod 15 installed inside the mixing chamber 11 reduce residue and fertilizer agglomeration on the inner wall of the mixing chamber 11, improving the filtration effect of the coarse filter screen 14. After entering the main body 4, the fertilizer is further filtered through the fine filter screen 17 installed inside the main body 4, allowing the finer fertilizer to be fed onto the guide plate 19 below the fine filter screen 17. Then, the first collecting device installed on the outer side of the main body 4... The collecting plate 6 and the second collecting plate 9 collect the corresponding base fertilizer, which facilitates the classification of base fertilizer and improves the application effect of base fertilizer. By setting a long strip plate 16, connecting rod 21, torsion spring 22 and baffle 23 above the fine filter screen 17, when the motor 1 is working, it can drive the adjusting plate 24 on the outside of the connecting rod 25 to rotate, so that the adjusting plate 24 pushes the baffle 23. Then, using the torsion spring 22, the long strip plate 16 can move back and forth to a certain extent, reducing the clogging of the fine filter screen 17 and improving the filtration effect of the fine filter screen 17.

[0025] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention. No reference numerals in the claims should be construed as limiting the scope of the claims.

Claims

1. An automated equipment for producing bio-organic carbon-based fertilizer, comprising a main body (4), characterized in that: A connecting cylinder (2) is provided above the main body (4), a motor (1) is provided above the connecting cylinder (2), a feed pipe (3) is provided on one side of the connecting cylinder (2), a filter screen (5) is provided at both ends of the main body (4), a fixing ring (10) is provided on both sides of the lower surface of the main body (4), a second collecting plate (9) is provided on one side of the fixing ring (10), a support plate (8) is provided on one side of the second collecting plate (9), a first collecting plate (6) is provided above the support plate (8), and a base (7) is provided at the lower end of the fixing ring (10).

2. The automated equipment for producing bio-organic carbon-based fertilizer according to claim 1, characterized in that: The inner side of the connecting cylinder (2) is provided with a stirring chamber (11), the inner side of the stirring chamber (11) is provided with a connecting shaft (13), a stirring rod (15) is evenly arranged on one side of the connecting shaft (13), a scraper (12) is arranged on the other side of the connecting shaft (13), and a coarse filter screen (14) is arranged at the lower end of the stirring chamber (11).

3. The automated equipment for producing bio-organic carbon-based fertilizer according to claim 1, characterized in that: A partition (20) is provided on the inner side of the main body (4). Fine filter screens (17) are provided on both sides of the upper end of the partition (20). A long strip plate (16) is provided on the upper surface of the fine filter screen (17). A connecting rod (21) is provided between the long strip plate (16) and the connecting cylinder (2). A torsion spring (22) is provided between the lower end of the connecting rod (21) and the long strip plate (16). A baffle (23) is provided at one end of the long strip plate (16). An adjusting plate (24) is provided on one side of the baffle (23). A connecting rod (25) is provided at one end of the adjusting plate (24). A guide plate (19) is provided below the fine filter screen (17). A discharge hole (18) is provided on the lower surface of the main body (4) at one end of the guide plate (19).

4. The automated equipment for producing bio-organic carbon-based fertilizer according to claim 1, characterized in that: The lower surface of the main body (4) is completely attached to the upper surface of the fixing ring (10), and the main body (4) and the fixing ring (10) are fixed by screws.

5. The automated equipment for producing bio-organic carbon-based fertilizer according to claim 2, characterized in that: One end of the stirring rod (15) is completely attached to the outer surface of the connecting shaft (13), and the stirring rod (15) and the connecting shaft (13) are fixed by screws.

6. The automated equipment for producing bio-organic carbon-based fertilizer according to claim 3, characterized in that: The upper end of the connecting rod (25) is completely in contact with the lower surface of the connecting shaft (13). The connecting rod (25) and the connecting shaft (13) are fixed by screws. The lower end of the connecting rod (25) is slidably connected to the partition plate (20).