Bio-organic fertilizer production line shaking device
Through the combination of discharge plate, inclined plate, discharge plate and vibrating motor, combined with electric guide rail and camera system, the problems of uneven mixing of additives and large electricity consumption in the biological organic fertilizer production line are solved, and energy-saving and uniform mixing and complete discharge are achieved.
Patent Information
- Application Number
- CN202422388168.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-29
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-09-29
AI Technical Summary
The existing bio-organic fertilizer production lines need to consume a large amount of electricity through stirring when adding amino acids and inorganic fertilizers, and the mixing is uneven.
The combination of discharge plate, inclined plate, discharge plate and vibrating motor is adopted, combined with electric guide rail and camera system, to achieve uniform shake-off and mixing of additives, and the residue is pushed through the electric telescopic rod to ensure complete discharge.
A uniform mixing of additives and fertilizers is achieved, power saving, avoiding the problem of uneven stirring, and ensuring real-time monitoring of feeding and complete discharge.
Smart Images

Figure CN223127764U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of biological organic fertilizer production, in particular to a vibrating device for a biological organic fertilizer production line. Background Technique
[0002] Organic fertilizers are not only rich in nutrients and easy for crops to absorb, but also can improve the soil structure and increase the yield of crops. With the improvement of people's living standards, the quality requirements for food are getting higher and higher, green food is becoming more and more popular, and the use amount of organic fertilizers is also becoming more and more extensive; most existing biological organic fertilizer production lines need to add additives such as amino acids and inorganic fertilizers after raw materials are crushed to enhance the fertilizer efficiency of biological organic fertilizers.
[0003] However, most existing adding devices mix amino acids and inorganic fertilizers by stirring to achieve the purpose of uniform mixing with raw materials. This method requires the stirring component to rotate, and thus consumes a large amount of electric energy. For this reason, we propose a vibrating device for a biological organic fertilizer production line. Content of the Utility Model
[0004] The purpose of the utility model is to provide a vibrating device for a biological organic fertilizer production line to solve the problems put forward in the above background technique.
[0005] To achieve the above purpose, the utility model provides the following technical scheme: a vibrating device for a biological organic fertilizer production line, including a feeding plate and a feeding component. An inclined plate is arranged at the left end of the feeding plate, a blanking plate is arranged at the left end of the inclined plate, and the feeding plate, the inclined plate and the blanking plate are all connected to a retaining frame;
[0006] A vibrating motor is arranged at the bottom of the inclined plate, spring seats are arranged at the bottoms of the feeding plate and the blanking plate, and a support is arranged at the bottom of the spring seat;
[0007] Partition plates connected to the retaining frame are uniformly arranged at the top of the feeding plate.
[0008] As a preferred scheme of the vibrating device for a biological organic fertilizer production line of the utility model, wherein: the feeding component includes two electric guide rails with the same structure. The output ends of the two electric guide rails are both connected to a storage cylinder, and the electric guide rails are arranged in the front-back direction. The storage cylinder is located above the feeding plate.
[0009] As a preferred scheme of the vibrating device for a biological organic fertilizer production line of the utility model, wherein: fixing frames are arranged on both the front and back sides of the electric guide rail.
[0010] As a preferred scheme of the vibrating device for a biological organic fertilizer production line of the utility model, wherein: a feed pipe is arranged at the top of the storage cylinder, and a discharge pipe with a valve is arranged at the bottom of the storage cylinder.
[0011] As a preferred embodiment of the vibrating device for a biological organic fertilizer production line according to the present utility model, the following is provided: mounting rods are uniformly arranged at the bottom of the left electric guide rail, and cameras facing the discharging plate are arranged on the mounting rods.
[0012] As a preferred embodiment of the vibrating device for a biological organic fertilizer production line according to the present utility model, the following is provided: a display screen electrically connected to the camera is arranged on the front fixing frame.
[0013] As a preferred embodiment of the vibrating device for a biological organic fertilizer production line according to the present utility model, the following is provided: an electric telescopic rod is arranged at the right end of the retaining frame, the output end of the electric telescopic rod is connected to a connecting rod, cross bars are uniformly arranged at the left end of the connecting rod, and pushing plates horizontally penetrating through the right end of the retaining frame are arranged at the left ends of the cross bars.
[0014] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0015] 1. Arrange this device on the conveyor belt of the fertilizer production line. When the vibration motor is started as the fertilizer moves, the additives on the discharging plate drive the additives to move along the inclined plate to the blanking plate under the action of the spring seat, and are shaken onto the fertilizer on the conveyor belt through the blanking plate, realizing uniform mixing of the additives and the fertilizer without the need for laborious stirring, saving some electric energy.
[0016] 2. Drive the material storage cylinder to move in the front-back direction through the electric guide rail, facilitating uniform replenishment of materials onto the discharging plate, avoiding uneven distribution of additives at the blanking plate due to uneven replenishment, and causing uneven distribution of the shaken area.
[0017] 3. By arranging the partition plate, camera and display screen, it is convenient to understand the material shortage and replenishment situation in real time, so as to facilitate uniform replenishment of materials.
[0018] 4. Drive the connecting rod to move leftward through the electric telescopic rod, so that the cross bar drives the pushing plate to move leftward, enabling the last additives remaining on the discharging plate to be pushed onto the inclined plate, realizing complete blanking. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 It is a schematic diagram of the overall structure of a vibrating device for a biological organic fertilizer production line according to the present utility model;
[0020] Figure 2 It is a right view schematic diagram of a partial structure of a vibrating device for a biological organic fertilizer production line according to the present utility model.
[0021] In the figure: 1. Feeding plate; 2. Inclined plate; 3. Discharging plate; 4. Stop frame; 5. Vibration motor; 6. Spring seat; 7. Bracket; 8. Partition board; 9. Fixed frame; 10. Electric guide rail; 11. Storage bin; 12. Installation rod; 13. Camera; 14. Display screen; 15. Electric telescopic rod; 16. Connecting rod; 17. Cross bar; 18. Pushing plate. Specific implementation mode
[0022] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0023] As mentioned in the background art, aiming at the problem that the stirring component needs to rotate in the prior art, and thus a large amount of electric energy needs to be consumed. The present invention proposes a material shaking device for a biological organic fertilizer production line. Embodiment
[0024] Refer to Figures 1 to 2 , a material shaking device for a biological organic fertilizer production line, includes a feeding plate 1 and a feeding component. An inclined plate 2 is arranged at the left end of the feeding plate 1, and a discharging plate 3 is arranged at the left end of the inclined plate 2. The discharging plate 3 is in a horizontal state to prevent the additives on the inclined plate 2 from being discharged too quickly, resulting in uneven mixing with the fertilizer. The feeding plate 1, the inclined plate 2 and the discharging plate 3 are all connected to the stop frame 4;
[0025] A vibration motor 5 is arranged at the bottom of the inclined plate 2, spring seats 6 are arranged at the bottoms of the feeding plate 1 and the discharging plate 3, and brackets 7 are arranged at the bottoms of the spring seats 6;
[0026] In order to separate the additives on the feeding plate 1, partition boards 8 connected to the stop frame 4 are evenly arranged on the top of the feeding plate 1.
[0027] This device is arranged on the fertilizer conveyor belt. When the fertilizer is conveyed, the additives are shaken off from the feeding plate 1, fall along the inclined plate 2 onto the discharging plate 3, and finally fall onto the moving fertilizer, realizing the uniform mixing of the fertilizer and the additives.
[0028] The feeding component includes two electric guide rails 10 with the same structure. The output ends of the two electric guide rails 10 are both connected to the storage bin 11, and the electric guide rails 10 are arranged in the front-back direction. The storage bin 11 is located above the feeding plate 1, and the electric guide rails 10 are used to drive the storage bin 11 to move in the front-back direction.
[0029] Fixed frames 9 are arranged on both the front and back sides of the electric guide rail 10 for fixing the electric guide rail 10.
[0030] A feed pipe is provided at the top of the storage bin 11, and a discharge pipe with a valve is provided at the bottom of the storage bin 11. The feed pipe is used for the user to add additives into it, and the discharge pipe is used for discharging the additives.
[0031] Among them, the electric guide rail 10 extends forward as much as possible, so that the storage bin 11 can move forward as much as possible, facilitating the user to stand in front and add materials into the storage bin 11.
[0032] The electric guide rail 10 drives the storage bin 11 to move in the front-rear direction, so that the discharge pipe is convenient for evenly replenishing materials on the discharge plate 1, avoiding the problem that the distribution of additives at the blanking plate 3 is uneven due to uneven replenishment, resulting in uneven shaking areas.
[0033] Installation rods 12 are evenly arranged at the bottom of the left electric guide rail 10, and cameras 13 facing the discharge plate 1 are arranged on the installation rods 12. A display screen 14 electrically connected to the cameras 13 is arranged on the front fixing frame 9, facilitating real-time understanding of the material shortage and replenishment situation for uniform replenishment. Embodiment
[0034] Refer to Figures 1 to 2 , an electric telescopic rod 15 is arranged at the right end of the blocking frame 4. The output end of the electric telescopic rod 15 is connected to a connecting rod 16. Cross bars 17 are evenly arranged at the left end of the connecting rod 16. The left ends of the cross bars 17 are all provided with push plates 18 that penetrate through the right end of the blocking frame 4 horizontally. By driving the connecting rod 16 to move leftward by the electric telescopic rod 15, the cross bars 17 drive the push plates 18 to move leftward, so that the additives remaining on the discharge plate 1 can be pushed onto the inclined plate 2 to achieve complete blanking.
[0035] The electrical components in the text are all powered and controlled by existing technologies.
[0036] The rest of the structure is the same as that of Embodiment 1.
[0037] 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 principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A vibrating material feeding device for a biological organic fertilizer production line, characterized in that: including, a feeding plate (1) and a feeding component. A slope plate (2) is arranged at the left end of the feeding plate (1). A blanking plate (3) is arranged at the left end of the slope plate (2). The feeding plate (1), the slope plate (2) and the blanking plate (3) are all connected to a retaining frame (4); a vibration motor (5) is arranged at the bottom of the slope plate (2). Spring seats (6) are arranged at the bottoms of the feeding plate (1) and the blanking plate (3), and a support (7) is arranged at the bottom of the spring seat (6); partition plates (8) connected to the retaining frame (4) are evenly arranged at the top of the feeding plate (1).
2. The vibrating material device of a biological organic fertilizer production line according to claim 1, characterized in that: The feeding component includes two electric guide rails (10) with the same structure. The output ends of the two electric guide rails (10) are both connected to a storage cylinder (11), and the electric guide rails (10) are arranged in the front-back direction. The storage cylinder (11) is located above the feeding plate (1).
3. The vibrating material feeding device for a biological organic fertilizer production line according to claim 2, wherein: Fixed frames (9) are arranged on both the front and back sides of the electric guide rail (10).
4. A vibrating material feeding device for a biological organic fertilizer production line according to claim 2, characterized in that: A feed pipe is arranged at the top of the storage cylinder (11), and a discharge pipe with a valve is arranged at the bottom of the storage cylinder (11).
5. A vibrating material feeding device for a biological organic fertilizer production line according to claim 3, characterized in that: Mounting rods (12) are evenly arranged at the bottom of the left electric guide rail (10), and cameras (13) facing the feeding plate (1) are arranged on the mounting rods (12).
6. The vibrating material feeding device for a biological organic fertilizer production line according to claim 5, characterized in that: A display screen (14) electrically connected to the camera (13) is arranged on the front fixed frame (9).
7. The vibrating material device of a biological organic fertilizer production line according to claim 1, characterized in that: An electric telescopic rod (15) is arranged at the right end of the retaining frame (4). The output end of the electric telescopic rod (15) is connected to a connecting rod (16). Cross bars (17) are evenly arranged at the left end of the connecting rod (16), and push plates (18) horizontally penetrating the right end of the retaining frame (4) are arranged at the left ends of the cross bars (17).