Grinding machine for processing organic fertilizer

By designing a grinding mill for organic fertilizer processing with a drive motor and grinding mechanism, and utilizing the cooperation of the grinding roller and the first grinding tooth, the problem of uneven fertilizer grinding in the prior art is solved, and a highly efficient and uniform organic fertilizer grinding effect is achieved.

CN224308523UActive Publication Date: 2026-06-02HUBEI HEMEI HUAYOUNONGBAO BIOTECHNOLOGY CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HUBEI HEMEI HUAYOUNONGBAO BIOTECHNOLOGY CO LTD
Filing Date
2025-05-15
Publication Date
2026-06-02

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  • Figure CN224308523U_ABST
    Figure CN224308523U_ABST
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Abstract

The utility model relates to fertilizer processing technical field, specifically disclose a kind of grinder for organic fertilizer processing, including driving motor, still including grinding mechanism, grinding mechanism includes cylinder, first grinding tooth, grinding drum, support plate, support frame, support foot column and connecting assembly, each group of support foot column is fixedly connected with cylinder respectively, support plate is fixedly connected with cylinder, driving motor is fixedly connected with support plate, grinding drum is connected by bolt dismounting with connecting assembly, support frame is fixedly connected with cylinder, each group of first grinding tooth is fixedly connected with cylinder respectively. Organic fertilizer is violently impacted between grinding drum and cylinder, so that material is repeatedly impacted, sheared and rubbed, gradually broken, and further reach the effect of grinding, and organic fertilizer can reach uniform grinding, improve grinding efficiency while also effectively improve grinding quality.
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Description

Technical Field

[0001] This utility model relates to the field of fertilizer processing technology, and in particular to a grinding machine for processing organic fertilizer. Background Technology

[0002] Currently, organic fertilizers include human excrement, manure, compost, green manure, oilseed cake, biogas fertilizer, etc., which are characterized by their variety, wide range of sources, and long-lasting effects. The nutrients contained in organic fertilizers are mostly in an organic state, which is difficult for crops to utilize directly. Through the action of microorganisms, various nutrients are slowly released, continuously supplying nutrients to crops. Applying organic fertilizers can improve soil structure, coordinate water, fertilizer, air, and heat in the soil, and improve soil fertility and land productivity. During the grinding process, organic fertilizers tend to rotate with the grinding head, resulting in a relatively small grinding force and low efficiency.

[0003] The prior art CN213914046U provides a grinding device for processing organic fertilizer. This grinding device is equipped with a grinding disc, so that when the organic fertilizer is being ground, a hydraulic pusher pushes the grinding disc to adhere tightly to the upper surface of the organic fertilizer. Subsequently, a drive motor can drive the grinding disc to grind the compressed organic fertilizer, resulting in greater grinding force and higher efficiency. This grinding device is also equipped with a scraper, so that when the hydraulic pusher pushes the grinding disc to adhere tightly to the upper surface of the organic fertilizer, the scraper below the grinding disc embeds into the interior of the organic fertilizer. As the grinding disc rotates to grind the organic fertilizer, the scraper scrapes the ground fertilizer, preventing the fertilizer from sticking to the bottom of the device, thus improving the grinding effect.

[0004] However, in the existing technology, the fertilizer cannot be turned over during the grinding process, which prevents the middle part of the fertilizer from being ground, resulting in inconsistent grinding uniformity of the fertilizer. Utility Model Content

[0005] The purpose of this utility model is to provide a grinding machine for processing organic fertilizer, which aims to solve the technical problem in the prior art where the fertilizer cannot be turned over during the grinding process, resulting in the inability to grind the middle part of the fertilizer and the inconsistent grinding uniformity of the fertilizer.

[0006] To achieve the above objectives, this utility model employs a grinding machine for processing organic fertilizer, including a drive motor and a grinding mechanism. The grinding mechanism includes a cylinder, first grinding teeth, a grinding roller, a support plate, a support frame, support legs, and connecting components. The support legs are in multiple sets, each set of which is fixedly connected to the cylinder and located at the lower end of the cylinder. The support plate is fixedly connected to the cylinder and embedded inside the cylinder. The drive motor is fixedly connected to the support plate and located at the upper end of the support plate. The output end of the drive motor is adapted to the connecting assembly. The grinding roller is detachably connected to the connecting assembly by bolts and is located at the lower end of the connecting assembly. The grinding roller is embedded inside the cylinder. The support frame is fixedly connected to the cylinder and is located at the lower end of the cylinder. The support frame is adapted to the grinding roller. There are multiple sets of the first grinding teeth. Each set of the first grinding teeth is fixedly connected to the cylinder and is located on the inner wall of the cylinder. The inner wall of the cylinder has a conical structure and is adapted to the grinding roller.

[0007] The grinding roller includes a cone, second grinding teeth, a first mounting post, a second mounting post, and a flange ring. The number of second grinding teeth is multiple sets, and each set of second grinding teeth is fixedly connected to the cone and located on the outer wall of the cone. The first mounting post is fixedly connected to the cone and located at the upper end of the cone. The flange ring is fixedly connected to the first mounting post and sleeved on the outer wall of the first mounting post. The second mounting post is fixedly connected to the cone and located at the lower end of the cone.

[0008] The connecting assembly further includes a connecting shaft, a coupling, and a flange. The connecting shaft is detachably connected to the output end of the drive motor via the coupling. The flange is fixedly connected to the connecting shaft and located at the lower end of the connecting shaft. The flange and the flange ring are mutually adapted.

[0009] The support frame includes a frame body and a rotating block. The frame body is fixedly connected to the cylinder body and located at the lower end of the cylinder body. The rotating block is fixedly connected to the frame body and located at the upper end of the frame body. The rotating block is adapted to the second mounting column.

[0010] The grinding mechanism further includes triangular prisms, and there are multiple sets of triangular prisms. Each set of triangular prisms is fixedly connected to the support plate and is located at the upper end of the support plate.

[0011] This utility model discloses a grinding machine for processing organic fertilizer. The machine features a cylindrical body supported by multiple sets of support columns. A support frame is installed at the lower end of the cylindrical body, and a support plate is installed inside the cylindrical body. A drive motor is installed at the upper end of the support plate. The grinding roller is connected to the lower end of the output end of the drive motor via a connecting assembly. In use, the drive motor is energized and rotated, causing the grinding roller to rotate inside the cylindrical body. Simultaneously, organic fertilizer is added to the cylindrical body manually or via a conveyor belt. Under the influence of the conical inner wall of the cylindrical body and gravity, the organic fertilizer enters between the cylindrical body and the grinding roller. Through the action of the grinding roller and multiple sets of first grinding teeth, the organic fertilizer is repeatedly ground and pulverized. This structure allows the organic fertilizer to undergo intense impact between the grinding roller and the cylindrical body, resulting in repeated impact, shearing, and friction, gradually breaking down the material and achieving a grinding effect. The organic fertilizer can be uniformly ground, improving both grinding efficiency and grinding quality. Attached Figure Description

[0012] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0013] Figure 1 This is a schematic diagram of the structure of a grinding machine for processing organic fertilizer according to this utility model.

[0014] Figure 2 This is a top view of a grinding machine for processing organic fertilizer according to this utility model.

[0015] Figure 3 This is a cross-sectional view of the internal structure of a grinding machine for processing organic fertilizer according to this utility model.

[0016] 101-Drive motor, 102-Cylinder body, 103-First grinding tooth, 104-Support plate, 105-Support foot column, 106-Conical cylinder, 107-Second grinding tooth, 108-First mounting column, 109-Second mounting column, 110-Flange ring, 111-Connecting shaft, 112-Coupling, 113-Flange, 114-Frame, 115-Rotating block, 116-Triangular column. Detailed Implementation

[0017] Please see Figures 1 to 3This utility model provides a grinding machine for processing organic fertilizer, including a drive motor 101 and a grinding mechanism. The grinding mechanism includes a cylinder 102, first grinding teeth 103, a grinding roller, a support plate 104, a support frame, support legs 105, and a connecting assembly. Multiple sets of support legs 105 are provided, each set of which is fixedly connected to the cylinder 102 and located at the lower end of the cylinder 102. The support plate 104 is fixedly connected to the cylinder 102 and embedded inside the cylinder 102. The drive motor 101 is fixedly connected to the support plate 104 and located on the upper part of the support plate 104. The output end of the drive motor 101 is adapted to the connecting assembly. The grinding roller is detachably connected to the connecting assembly by bolts and is located at the lower end of the connecting assembly. The grinding roller is embedded inside the cylinder 102. The support frame is fixedly connected to the cylinder 102 and is located at the lower end of the cylinder 102. The support frame is adapted to the grinding roller. The number of the first grinding teeth 103 is multiple sets. Each set of the first grinding teeth 103 is fixedly connected to the cylinder 102 and is located on the inner wall of the cylinder 102. The inner wall of the cylinder 102 has a conical structure and is adapted to the grinding roller.

[0018] In this embodiment, the cylinder 102 is supported by multiple sets of support columns 105. The support frame is installed at the lower end of the cylinder 102, the support plate 104 is installed inside the cylinder 102, the drive motor 101 is installed at the upper end of the support plate 104, and the grinding roller is installed at the lower end of the output end of the drive motor 101 through the connecting assembly. In use, the drive motor 101 is energized and started to rotate, which drives the grinding roller to rotate inside the cylinder 102. At the same time, organic fertilizer is added to the cylinder 102 manually or by conveyor belt. Under the action of the conical inner wall of the cylinder 102 and gravity, the organic fertilizer enters between the cylinder 102 and the grinding roller. Under the action of the grinding roller and multiple sets of the first grinding teeth 103, the organic fertilizer is repeatedly ground and pulverized.

[0019] Further, the grinding roller includes a cone cylinder 106, second grinding teeth 107, a first mounting post 108, a second mounting post 109, and a flange ring 110. The number of second grinding teeth 107 is multiple sets, and each set of second grinding teeth 107 is fixedly connected to the cone cylinder 106 and located on the outer wall of the cone cylinder 106. The first mounting post 108 is fixedly connected to the cone cylinder 106 and located at the upper end of the cone cylinder 106. The flange ring 110 is fixedly connected to the first mounting post 108 and sleeved on the outer wall of the first mounting post 108. The second mounting post 109 is fixedly connected to the cone cylinder 106 and located at the lower end of the cone cylinder 106.

[0020] In this embodiment, the first mounting post 108 is fixed to the upper end of the cone 106, and the second mounting post 109 is fixed to the lower end of the cone 106. The rotation of the cone 106 drives the second grinding tooth 107 to rotate. The second grinding tooth 107 cooperates with the first grinding tooth 103 to crush and grind the organic fertilizer. The flange ring 110 is connected to the connecting assembly, thereby realizing the connection and fixation of the drive motor 101 and the grinding drum by the connecting assembly.

[0021] Furthermore, the connecting assembly also includes a connecting shaft 111, a coupling 112, and a flange 113. The connecting shaft 111 is detachably connected to the output end of the drive motor 101 via the coupling 112. The flange 113 is fixedly connected to the connecting shaft 111 and is located at the lower end of the connecting shaft 111. The flange 113 is compatible with the flange ring 110.

[0022] In this embodiment, the coupling 112 connects and fixes the connecting shaft 111 to the output end of the drive motor 101, thereby enabling the output end of the drive motor 101 to drive the connecting shaft 111 to rotate. The flange 113 is fixedly connected to the lower end of the connecting shaft 111, and can be flanged to the flange ring 110 through the flange 113.

[0023] Furthermore, the support frame includes a frame body 114 and a rotating block 115. The frame body 114 is fixedly connected to the cylinder 102 and is located at the lower end of the cylinder 102. The rotating block 115 is fixedly connected to the frame body 114 and is located at the upper end of the frame body 114. The rotating block 115 is adapted to the second mounting column 109.

[0024] In this embodiment, the frame 114 supports and fixes the rotating block 115, while the rotating block 115 is adapted to the second mounting column 109 to support the bottom of the second mounting column 109, thereby ensuring that the grinding roller can rotate stably.

[0025] Furthermore, the grinding mechanism also includes triangular prisms 116, and there are multiple sets of triangular prisms 116. Each set of triangular prisms 116 is fixedly connected to the support plate 104 and is located at the upper end of the support plate 104.

[0026] In this embodiment, by arranging multiple sets of triangular prisms 116, when adding organic fertilizer, the two sides of each triangular prism 116 are inclined structures. When organic fertilizer is added to the upper part of the triangular prism 116, it slides to both sides, effectively preventing the organic fertilizer from accumulating on the upper part of the support plate 104.

[0027] The above-disclosed embodiments are merely preferred embodiments of the present utility model and should not be construed as limiting the scope of the present utility model. Those skilled in the art can understand that implementing all or part of the above-described embodiments and making equivalent changes in accordance with the claims of the present utility model are still within the scope of the utility model.

Claims

1. A grinding mill for processing organic fertilizer, comprising a drive motor, characterized in that, It also includes a grinding mechanism; The grinding mechanism includes a cylinder, first grinding teeth, a grinding roller, a support plate, a support frame, support legs, and a connecting assembly. Multiple sets of support legs are provided, each set fixedly connected to the cylinder and located at the lower end of the cylinder. The support plate is fixedly connected to the cylinder and embedded inside the cylinder. The drive motor is fixedly connected to the support plate and located at the upper end of the support plate, with its output end compatible with the connecting assembly. The grinding roller is detachably connected to the connecting assembly via bolts and located at the lower end of the connecting assembly, embedded inside the cylinder. The support frame is fixedly connected to the cylinder and located at the lower end of the cylinder, with its support frame compatible with the grinding roller. Multiple sets of first grinding teeth are provided, each set fixedly connected to the cylinder and located on the inner wall of the cylinder. The inner wall of the cylinder has a conical structure and is compatible with the grinding roller.

2. The grinding mill for processing organic fertilizer as described in claim 1, characterized in that, The grinding roller includes a cone, second grinding teeth, a first mounting post, a second mounting post, and a flange ring. The number of second grinding teeth is multiple sets, and each set of second grinding teeth is fixedly connected to the cone and located on the outer wall of the cone. The first mounting post is fixedly connected to the cone and located at the upper end of the cone. The flange ring is fixedly connected to the first mounting post and sleeved on the outer wall of the first mounting post. The second mounting post is fixedly connected to the cone and located at the lower end of the cone.

3. The grinding mill for processing organic fertilizer as described in claim 2, characterized in that, The connecting assembly further includes a connecting shaft, a coupling, and a flange. The connecting shaft is detachably connected to the output end of the drive motor via the coupling. The flange is fixedly connected to the connecting shaft and is located at the lower end of the connecting shaft. The flange and the flange ring are mutually adapted.

4. The grinding mill for processing organic fertilizer as described in claim 2, characterized in that, The support frame includes a frame body and a rotating block. The frame body is fixedly connected to the cylinder body and located at the lower end of the cylinder body. The rotating block is fixedly connected to the frame body and located at the upper end of the frame body. The rotating block is adapted to the second mounting column.

5. The grinding mill for processing organic fertilizer as described in claim 4, characterized in that, The grinding mechanism also includes triangular prisms, and there are multiple sets of triangular prisms. Each set of triangular prisms is fixedly connected to the support plate and is located at the upper end of the support plate.