Fertilizer particle sampling device for bio-fertilizer production
By designing the matching structure of the storage silo and sampling tube, the problem of fertilizer particles falling off during sampling and transportation is solved, safe storage and efficient sampling of fertilizers are achieved, and operational convenience and work efficiency are improved.
Patent Information
- Application Number
- CN202421713757.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-19
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-07-19
AI Technical Summary
During the existing biological fertilizer production process, the sampling device can easily cause the fertilizer particles to fall off during sampling and transportation, causing waste and inconvenient operation.
A fertilizer particle sampling device for biofertilizer production is designed, including a storage silo, a sampling tube and a feed trough. Through the pulling of the slider and the blocking block, the suction of the fertilizer particles is realized in the storage silo to prevent falling off, and the opening and closing of the sealing plate is simplified through the structure of plastic snaps and fixed blocks.
Effectively prevent fertilizer particles from falling during sampling and transportation, reduce sampling frequency, and improve operational efficiency and work efficiency of staff.
Smart Images

Figure CN223077965U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of fertilizer production, and more specifically, the utility model relates to a fertilizer granule sampling device for biological fertilizer production. Background Technique
[0002] Biological fertilizer is an organic fertilizer containing a certain amount of functional microorganisms, which is processed with livestock and poultry manure, straw, solid waste from agricultural and sideline products and food processing, organic garbage, and urban sludge as raw materials, and is equipped with a multifunctional fermentation bacterial agent. It can improve the physical and chemical properties of the soil, promote and regulate the growth of crops, enhance the stress and disease resistance of crops, and reduce environmental pollution. It is safe and non-toxic to humans, livestock, and the environment, and is an environment-friendly fertilizer.
[0003] At present, during the production of biological fertilizer, it is necessary to detect the composition, content, purity, etc. of the biological fertilizer to ensure that the product meets the established quality standards and requirements, so as to maintain the brand image and market reputation of the enterprise, and protect the interests of farmers and the growth effect of crops. At this time, a fertilizer granule sampling device is needed.
[0004] At present, when sampling fertilizers, a sampling tube made of stainless steel is usually used for sampling. After the sampling tube extends into the material pile, the fertilizer will enter the notch inside the sampling tube, thus completing the sampling. However, the fertilizer samples taken by this sampling method are easy to fall off, which will cause the fertilizer to scatter on the ground during transportation when the sample collection area is far away, resulting in waste of fertilizer. Therefore, it is necessary to improve and optimize it. Content of the Utility Model
[0005] In order to overcome the deficiencies of the prior art, the utility model provides a fertilizer granule sampling device for biological fertilizer production, which has the advantage that the fertilizer is not easy to fall off.
[0006] To achieve the above object, the utility model provides the following technical solution: A fertilizer granule sampling device for biological fertilizer production, including a material storage bin, a sampling tube, and a feeding groove. A feeding bin is fixedly installed at the bottom of the material storage bin, a sampling tube is fixedly installed at the bottom of the feeding bin, a feeding groove is opened on the outer wall of the sampling tube, and a conical head is fixedly installed at the bottom of the sampling tube;
[0007] A fixed frame is fixedly installed at the top of the material storage bin, a connecting rod is movably installed inside the material storage bin, one end of the connecting rod penetrates into the inside of the fixed frame, the other end of the connecting rod is fixedly connected with a slider, and the slider is elastically connected with the inner wall of the material storage bin through a first spring;
[0008] Limiting grooves are provided on the front and rear sides of the feed bin, guide rods are fixedly installed inside the two groups of limiting grooves, fixing rods are movably installed inside the two groups of limiting grooves, the two groups of fixing rods and the guide rods are movably connected, a blocking block is fixedly installed between the two groups of fixing rods, and one end of the two groups of fixing rods and the inner wall of the limiting groove are elastically connected by spring 2.
[0009] As a preferred technical solution of the utility model, a sealing plate is provided on the left side of the storage bin, a hinge is fixedly installed on the rear wall of the storage bin, and the storage bin and the sealing plate are rotatably connected through the hinge;
[0010] A movable block is movably mounted on one end of the sealing plate, a plastic buckle is fixedly mounted on one end of the movable block, a fixed block is fixedly mounted on the front side wall of the storage bin, and the plastic buckle and the fixed block are buckled with each other.
[0011] As a preferred technical solution of the utility model, a handle is fixedly installed on the top of the connecting rod, a groove is formed at the bottom of the handle, and the handle is located inside the fixed frame.
[0012] As a preferred technical solution of the utility model, a sealing gasket 1 is fixedly installed on one end of the sliding block, and the sealing gasket 1 is tightly fitted to the inner wall of the storage bin.
[0013] As a preferred technical solution of the utility model, slide grooves are provided on both the upper and lower sides of the sealing plate, and a movable block is movably installed between the two groups of the slide grooves.
[0014] As a preferred technical solution of the utility model, a second sealing gasket is fixedly installed on the inner side of the sealing plate, and the second sealing gasket is tightly fitted to the inner wall of the storage bin.
[0015] Compared with the prior art, the beneficial effects of the utility model are as follows:
[0016] 1. The utility model pulls the slider upward along the storage bin by pulling the handle. When the slider is lifted, the block will be pulled, and the block will be further lifted upward along the guide rod through two sets of fixed rods, and the fertilizer particles in the sampling tube will be sucked into the storage bin. Compared with the traditional device, after the sampling is completed, the device can suck the fertilizer particles in the sampling tube into the storage bin for storage by lifting the handle, so as to prevent the fertilizer particles from falling during sampling and transportation, reduce the sampling frequency, and alleviate the workload.
[0017] 2. By pressing the plastic buckle of the present utility model, the upper and lower ends of the plastic buckle are pressed into the interior of the fixing block, and then the movable block is pushed to the left to disengage the plastic buckle from the interior of the fixing block. Compared with the traditional device, this device enables the opening and closing of the sealing plate to be convenient and fast through the mutual engagement of the plastic buckle and the fixing block, and has a simple structure and convenient operation, improving the working efficiency of the staff. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 is a schematic structural view of the present utility model;
[0019] Figure 2 is a schematic sectional structural view of the present utility model;
[0020] Figure 3 is a schematic structural view of the feed bin of the present utility model;
[0021] Figure 4 is a schematic structural view of the blocking block of the present utility model;
[0022] Figure 5 is a schematic structural view of the fixing block of the present utility model;
[0023] Figure 6 is a schematic structural view of the plastic buckle of the present utility model.
[0024] In the figure: 1. Storage bin; 2. Sampling pipe; 3. Feed chute; 4. Tapered head; 5. Fixed frame; 6. Connecting rod; 7. Handle; 8. Slide block; 9. Sealing gasket I; 10. Spring I; 11. Feed bin; 12. Blocking block; 13. Limit groove; 14. Guide rod; 15. Fixed rod; 16. Spring II; 17. Hinge; 18. Sealing plate; 19. Sealing gasket II; 20. Movable block; 21. Slide groove; 22. Plastic buckle; 23. Fixed block. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0025] The technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.
[0026] As Figures 1 to 6 shown, the present utility model provides a fertilizer granule sampling device for biological fertilizer production, including a storage bin 1, a sampling pipe 2 and a feed chute 3. The bottom of the storage bin 1 is fixedly installed with a feed bin 11. The bottom of the feed bin 11 is fixedly installed with a sampling pipe 2. The outer wall of the sampling pipe 2 is provided with a feed chute 3. The bottom of the sampling pipe 2 is fixedly installed with a tapered head 4;
[0027] A fixed frame 5 is fixedly installed at the top of the storage bin 1. A connecting rod 6 is movably installed inside the storage bin 1. One end of the connecting rod 6 penetrates into the inside of the fixed frame 5. The other end of the connecting rod 6 is fixedly connected to a slider 8. The slider 8 is elastically connected to the inner wall of the storage bin 1 through a first spring 10.
[0028] Limiting grooves 13 are provided on both the front and rear sides of the feed bin 11. A guide rod 14 is fixedly installed inside the two limiting grooves 13. Fixing rods 15 are movably installed inside the two limiting grooves 13. The two fixing rods 15 are movably sleeved on the guide rod 14. A blocking block 12 is fixedly installed between the two fixing rods 15. One ends of the two fixing rods 15 are elastically connected to the inner walls of the limiting grooves 13 through a second spring 16.
[0029] When it is necessary to sample fertilizer particles, a staff member tightly holds the fixed frame 5 with one hand and places a finger in the groove provided at the bottom of the handle 7. Then the staff member inserts the sampling tube 2 into the fertilizer pile. At this time, the fertilizer particles will accumulate inside the feed groove 3. Then the staff member pulls up the handle 7. The handle 7 drives the slider 8 to lift upward along the storage bin 1 through the connecting rod 6. At this time, the slider 8 seals the inside of the storage bin 1 through the first sealing gasket 9. When the slider 8 is lifted, the blocking block 12 will be pulled. Further, the blocking block 12 is lifted upward along the guide rod 14 through the two fixing rods 15. The fertilizer particles inside the sampling tube 2 will be sucked into the inside of the storage bin 1. After the sampling is completed, the staff member releases the handle 7. At this time, the elastic potential energy of the first spring 10 will drive the slider 8 to reset downward. However, due to the elastic potential energy of the second spring 16, the blocking block 12 seals the sampling tube 2, and the sealing plate 18 seals the storage bin 1 through the second sealing gasket 19, so that the fertilizer is stored inside the storage bin 1. At this time, the staff member can take the device to the fertilizer detection location and open the sealing plate 18, so that the slider 8 pushes out the fertilizer to complete the sampling operation.
[0030] By pulling the handle 7, the slider 8 is lifted upward along the storage bin 1. When the slider 8 is lifted, the blocking block 12 will be pulled. Further, the blocking block 12 is lifted upward along the guide rod 14 through the two fixing rods 15. The fertilizer particles inside the sampling tube 2 will be sucked into the inside of the storage bin 1. Compared with the traditional device, after the sampling is completed, by lifting the handle 7, the fertilizer particles in the sampling tube 2 can be sucked into the inside of the storage bin 1 for storage, preventing the fertilizer particles from falling during sampling and transportation, reducing the sampling frequency, and reducing the work burden.
[0031] Among them, a sealing plate 18 is provided on the left side of the storage bin 1. A hinge 17 is fixedly installed on the rear wall of the storage bin 1. The storage bin 1 and the sealing plate 18 are rotatably connected through the hinge 17.
[0032] One end of the sealing plate 18 is movably installed with a movable block 20. One end of the movable block 20 is fixedly installed with a plastic buckle 22. The front side wall of the storage bin 1 is fixedly installed with a fixed block 23, and the plastic buckle 22 and the fixed block 23 are buckled with each other.
[0033] After completing the sampling operation, the staff moves the device to the fertilizer detection location. Then, the staff uses two fingers to press the upper and lower ends of the plastic buckle 22 into the inside of the fixed block 23, and then pushes the movable block 20 to the left. The movable block 20 displaces to the left along the sliding groove 21, so that the plastic buckle 22 is disengaged from the inside of the fixed block 23. Further, the sealing plate 18 is opened, and through the elastic potential energy of the first spring 10, the slider 8 pushes out the fertilizer particles in the storage bin 1 to complete the operation.
[0034] By pressing the plastic buckle 22, the upper and lower ends of the plastic buckle 22 are pressed into the inside of the fixed block 23, and then the movable block 20 is pushed to the left, so that the plastic buckle 22 is disengaged from the inside of the fixed block 23. Compared with the traditional device, the device makes the opening and closing of the sealing plate 18 convenient and fast through the mutual buckling of the plastic buckle 22 and the fixed block 23, and has a simple structure and convenient operation, improving the work efficiency of the staff.
[0035] Among them, a handle 7 is fixedly installed at the top of the connecting rod 6. A groove is opened at the bottom of the handle 7, and the handle 7 is located inside the fixed frame 5.
[0036] The staff tightly holds the fixed frame 5 with one hand and places the fingers on the groove opened at the bottom of the handle 7, making the hand more comfortable when the staff takes a sample.
[0037] Among them, a first sealing gasket 9 is fixedly installed at one end of the slider 8, and the first sealing gasket 9 is closely attached to the inner wall of the storage bin 1.
[0038] The first sealing gasket 9 is closely attached to the inner wall of the storage bin 1 to ensure the sealed environment inside the storage bin 1 and prevent the fertilizer from escaping.
[0039] Among them, sliding grooves 21 are opened on both the upper and lower sides of the sealing plate 18, and a movable block 20 is movably installed between the two groups of sliding grooves 21.
[0040] The movable block 20 will displace to the left and right along the sliding groove 21, responsible for controlling the buckling of the plastic buckle 22 and the fixed block 23.
[0041] Among them, a second sealing gasket 19 is fixedly installed on the inner side of the sealing plate 18, and the second sealing gasket 19 is closely attached to the inner wall of the storage bin 1.
[0042] The working principle and usage process of the present utility model:
[0043] When it is necessary to sample fertilizer particles, the staff tightly holds the fixed frame 5 with one hand and places their fingers on the groove formed at the bottom of the grip 7. Then, the staff inserts the sampling tube 2 into the fertilizer pile. At this time, the fertilizer particles will accumulate inside the feeding trough 3. Then, the staff pulls the grip 7 upward. The grip 7 drives the slider 8 to lift upward along the storage bin 1 through the connecting rod 6. At this time, the slider 8 seals the inside of the storage bin 1 through the first sealing gasket 9, so that when the slider 8 is lifted, the blocking block 12 will be pulled. Further, the blocking block 12 is lifted upward along the guide rod 14 through the two groups of fixing rods 15, and the fertilizer particles inside the sampling tube 2 will be sucked into the inside of the storage bin 1. After the sampling is completed, the staff releases the grip 7. At this time, the elastic potential energy of the first spring 10 will drive the slider 8 to reset downward. However, due to the elastic potential energy of the second spring 16, the blocking block 12 seals the sampling tube 2, and the sealing plate 18 seals the storage bin 1 through the second sealing gasket 19, so that the fertilizer is stored inside the storage bin 1. At this time, the staff can take the device to the fertilizer detection location and open the sealing plate 18, so that the slider 8 pushes out the fertilizer to complete the sampling operation.
[0044] After completing the sampling operation, the staff moves the device to the fertilizer detection location. Then, the staff uses two fingers to press the upper and lower ends of the plastic buckle 22 into the inside of the fixed block 23, and then pushes the movable block 20 to the left. The movable block 20 moves leftward along the sliding groove 21, so that the plastic buckle 22 is disengaged from the inside of the fixed block 23. Further, the sealing plate 18 is opened, and through the elastic potential energy of the first spring 10, the slider 8 pushes out the fertilizer particles inside the storage bin 1 to complete the operation.
[0045] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variation thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device comprising a series of elements not only includes those elements, but also includes other elements not expressly listed, or also includes elements inherent to such process, method, article or device.
[0046] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A fertilizer granule sampling device for biological fertilizer production, comprising a storage bin (1), a sampling pipe (2) and a feeding trough (3), characterized in that: The bottom of the storage bin (1) is fixedly installed with a feed bin (11). The bottom of the feed bin (11) is fixedly installed with a sampling pipe (2). The outer wall of the sampling pipe (2) is provided with a feed groove (3). The bottom of the sampling pipe (2) is fixedly installed with a tapered head (4). The top of the storage bin (1) is fixedly installed with a fixed frame (5). A connecting rod (6) is movably installed inside the storage bin (1). One end of the connecting rod (6) penetrates into the fixed frame (5). The other end of the connecting rod (6) is fixedly connected to a slider (8). The slider (8) and the inner wall of the storage bin (1) are elastically connected by a first spring (10). Limit grooves (13) are provided on both the front and rear sides of the feed bin (11). Guide rods (14) are fixedly installed inside the two limit grooves (13). Fixed rods (15) are movably installed inside the two limit grooves (13). The two fixed rods (15) are movably sleeved on the guide rods (14). A blocking block (12) is fixedly installed between the two fixed rods (15). One ends of the two fixed rods (15) and the inner wall of the limit grooves (13) are elastically connected by a second spring (16).
2. The fertilizer particle sampling device for biological fertilizer production according to claim 1, wherein: A sealing plate (18) is arranged on the left side of the storage bin (1). A hinge (17) is fixedly installed on the rear wall of the storage bin (1). The storage bin (1) and the sealing plate (18) are rotationally connected through the hinge (17). One end of the sealing plate (18) is movably installed with a movable block (20). One end of the movable block (20) is fixedly installed with a plastic buckle (22). A fixed block (23) is fixedly installed on the front side wall of the storage bin (1). The plastic buckle (22) and the fixed block (23) are buckled with each other.
3. The fertilizer particle sampling device for biological fertilizer production according to claim 1, characterized in that: The top of the connecting rod (6) is fixedly installed with a handle (7). A groove is provided at the bottom of the handle (7). The handle (7) is located inside the fixed frame (5).
4. The fertilizer granule sampling device for biological fertilizer production according to claim 1, wherein: One end of the slider (8) is fixedly installed with a first sealing gasket (9). The first sealing gasket (9) is in close fit with the inner wall of the storage bin (1).
5. The fertilizer granule sampling device for biological fertilizer production according to claim 2, characterized in that: Chute grooves (21) are provided on both the upper and lower sides of the sealing plate (18). The movable block (20) is movably installed between the two chute grooves (21).
6. The fertilizer granule sampling device for biological fertilizer production according to claim 2, wherein: A second sealing gasket (19) is fixedly installed on the inner side of the sealing plate (18). The second sealing gasket (19) is in close fit with the inner wall of the storage bin (1).