Machine well pump water and selenium-rich fertilizer integration equipment
Patent Information
- Application Number
- CN202522172044.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-14
- Publication Date
- 2026-09-04
- Estimated Expiration
- 2035-10-14
AI Technical Summary
[0005]上述机井泵水与富硒肥料调配一体化设备在实际使用时,在调配过程中,通常直接将富硒肥料集中投入调配罐中,易形成局部高浓度区域,导致水肥混合不均匀,从而会对肥水浓度造成影响
1、通过设置分散组件,与现有技术相比,分流筒通过离心力可以将富硒肥料颗粒分散至多个分流盒中,并穿过交错排列的下料口可以分散至调配罐内侧,扩散了富硒肥料与调配罐内部水的接触面积,并在螺旋叶片与多个刮板的作用下进行混合,能够缩短溶解时间,从而实现高效肥料溶解与混合,有助于提升施肥效果;
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Figure CN224711922U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of fertilizer formulation technology, and more specifically, to an integrated equipment for blending well pump water and selenium-enriched fertilizer. Background Technology
[0002] Currently, selenium supplementation for crops is achieved by applying selenium-enriched fertilizer. The selenium fertilizer is mixed with an appropriate amount of water and then sprayed onto the crops using a spraying device.
[0003] Current selenium fertilizer mixing equipment generally has poor mixing effect on selenium fertilizer and water. The water and fertilizer mixing uniformity in the fertilizer mixing container is insufficient, which affects the fertilization effect. This problem urgently needs to be solved to improve the water and fertilizer mixing effect of selenium fertilizer mixing equipment.
[0004] A search revealed that Chinese patent CN216313973U discloses an integrated equipment for mixing well pump water and selenium-enriched fertilizer. The equipment uses a mixing tank, a motor, a mixing shaft, and mixing blades to mix fertilizer and water. The mixed liquid is then placed into a fourth water pipe through a third water pipe. The fourth water pipe has a screw-shaped structure. After flowing in the fourth water pipe, the mixed liquid flows out through the outlet hole on the fourth water pipe and is diluted with the water in the mixing tank, which facilitates further mixing and improves the mixing effect of the fertilizer.
[0005] In actual use, the above-mentioned integrated well pump water and selenium-enriched fertilizer mixing equipment usually directly puts the selenium-enriched fertilizer into the mixing tank during the mixing process, which can easily form local high concentration areas, resulting in uneven water and fertilizer mixing, which will affect the fertilizer-water concentration. Utility Model Content
[0006] In order to overcome the above-mentioned defects of the prior art, this utility model provides an integrated equipment for well pump water and selenium-enriched fertilizer preparation to solve the problems mentioned in the background art.
[0007] To achieve the above objectives, this utility model provides the following technical solution: An integrated equipment for blending well water pumps and selenium-enriched fertilizers includes a mobile box with two handles fixedly connected to the top of the mobile box. A blending tank is installed on the top of the mobile box. A water pump is installed inside the mobile box. Both the output and input ends of the water pump are connected to a connecting pipe. One end of one of the connecting pipes is connected to one side of the blending tank. A dispersing component and a metering mechanism are installed on the blending tank. The dispersing component includes a first connecting shell, which is fixedly connected to the top of the mixing tank. A first variable frequency motor is installed on the top of the first connecting shell. A first gear is fixedly connected to the output end of the first variable frequency motor. A second gear meshes with one side of the first gear. A flow divider is sleeved inside the second gear. The flow divider is rotatably connected to the inside of the mixing tank. A stirring rod is fixedly connected to the bottom of the flow divider. Multiple connecting rods are fixedly connected to the outside of the stirring rod. Spiral blades are fixedly connected to the connecting rods. The spiral blades are conical in shape. Multiple flow divider boxes are connected to the outside of the flow divider. One end of each flow divider box passes through the flow divider and extends into the flow divider cavity. Multiple discharge ports are opened at the bottom of each flow divider box. Fixed plates are fixedly connected to one side of each of the multiple flow divider boxes. Three of the fixed plates are fixedly connected to one side of three scrapers, and the other two fixed plates are fixedly connected to one side of two scrapers.
[0008] By adopting the above technical solution, selenium-enriched fertilizer can be dispersed into the mixing tank and fully mixed through the combination of spiral blades and multiple scrapers, which helps to improve the fertilization effect.
[0009] As a further description of the above technical solution: the quantitative mechanism includes a second connecting shell, which is fixedly connected to the top of the mixing tank. A second variable frequency motor is installed on the top of the second connecting shell. A third gear is fixedly connected to the output end of the second variable frequency motor. A gear plate meshes with one side of the third gear. A turntable is fixedly connected to the inner side of the gear plate. The turntable is rotatably connected to the inner side of the second connecting shell. A fertilizer tank is connected to the top of the turntable. A discharge pipe is connected inside the second connecting shell. The discharge pipe extends to the inner side of the distribution cylinder and is rotatably connected to the inner side of the distribution cylinder.
[0010] By adopting the above technical solution, selenium-enriched fertilizer can be quantitatively delivered into the diversion chamber, making the flow rate of selenium-enriched fertilizer particles more uniform each time they are dispersed and stirred, which helps to form a uniform fertilizer solution.
[0011] The technical effects and advantages of this utility model are as follows: 1. By setting up a dispersion component, compared with the existing technology, the distribution cylinder can disperse selenium-enriched fertilizer particles into multiple distribution boxes through centrifugal force, and disperse them into the inner side of the mixing tank through the staggered discharge ports. This increases the contact area between the selenium-enriched fertilizer and the water inside the mixing tank, and the mixture is carried out under the action of spiral blades and multiple scrapers, which can shorten the dissolution time, thereby achieving efficient fertilizer dissolution and mixing, and helping to improve the fertilization effect. 2. By setting a quantitative mechanism, compared with the existing technology, when the rotation of the fertilizer tank coincides with the discharge pipe, some selenium-enriched fertilizer particles can pass through the discharge pipe and enter the inner side of the diversion chamber. The reciprocating rotation of the fertilizer tank can continuously and quantitatively deliver selenium-enriched fertilizer particles, which, in turn, cooperate with the dispersion component to make the flow rate of selenium-enriched fertilizer particles more uniform each time they are dispersed and stirred, which helps to form a uniform fertilizer solution. Attached Figure Description
[0012] Figure 1 This is a schematic diagram of the overall structure of this utility model.
[0013] Figure 2 This is a schematic diagram of the internal structure of the mobile box of this utility model.
[0014] Figure 3 This is a schematic diagram of the rear structure of the mixing tank of this utility model.
[0015] Figure 4 This is a partial structural diagram of the flow divider connection of this utility model.
[0016] Figure 5 This is a schematic diagram of the inner structure of the first connecting shell of this utility model.
[0017] Figure 6 This is a schematic diagram of the flow divider box structure of this utility model.
[0018] Figure 7 This is a partial structural diagram of the turntable connection of this utility model.
[0019] The attached diagram is labeled as follows: 1. Moving box; 2. Handle; 3. Mixing tank; 4. Water pump; 5. Connecting pipe; 6. First connecting shell; 7. First variable frequency motor; 8. First gear; 9. Second gear; 10. Diverter cylinder; 11. Diverter chamber; 12. Stirring rod; 13. Connecting rod; 14. Spiral blade; 15. Diverter box; 16. Fixing plate; 17. Scraper; 18. Second connecting shell; 19. Second variable frequency motor; 20. Third gear; 21. Gear disc; 22. Turntable; 23. Fertilizer tank; 24. Discharge pipe; 25. Discharge port. Detailed Implementation
[0020] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0021] The embodiments disclosed in this application are as follows: Figure 1-7The integrated equipment for mixing well pump water and selenium-rich fertilizer shown includes a mobile box 1, with two handles 2 fixedly connected to the top of the mobile box 1, a mixing tank 3 installed on the top of the mobile box 1, a water pump 4 installed inside the mobile box 1, and a connecting pipe 5 connecting both the output and input ends of the water pump 4, one end of which is connected to one side of the mixing tank 3, and a dispersing component and a metering mechanism installed on the mixing tank 3. The dispersing assembly includes a first connecting shell 6, which is fixedly connected to the top of the mixing tank 3. A first variable frequency motor 7 is mounted on the top of the first connecting shell 6. A first gear 8 is fixedly connected to the output end of the first variable frequency motor 7. A second gear 9 meshes with one side of the first gear 8. A flow divider 10 is sleeved inside the second gear 9. The flow divider 10 is rotatably connected to the inside of the mixing tank 3. A stirring rod 12 is fixedly connected to the bottom of the flow divider 10. Multiple connecting rods 13 are fixedly connected to the outside of the stirring rod 12. Spiral blades 14 are fixedly connected to the connecting rods 13. The spiral blades 14 are conical in shape. Multiple flow divider boxes 15 are connected to the outside of the flow divider 10. One end of the flow divider box 15 passes through the flow divider 10 and extends into the inside of the flow divider cavity 11. Multiple discharge ports 25 are opened at the bottom of the flow divider box 15. A fixed plate 16 is fixedly connected to one side of the diversion box 15. Three scrapers 17 are fixedly connected to one side of three fixed plates 16, and two scrapers 17 are fixedly connected to one side of the other two fixed plates 16. Through the meshing of the first gear 8 and the second gear 9, the diversion cylinder 10 can be driven to rotate. The centrifugal force generated by the rotation of the diversion cylinder 10 allows the selenium-rich fertilizer particles inside the diversion cavity 11 to diffuse into the multiple diversion boxes 15, and then fall into the mixing tank 3 through the staggered discharge ports 25. It cooperates with the rotating spiral blades 14. The conical spiral action of the spiral blades 14 can fully mix the selenium-rich fertilizer with water. The staggered scrapers 17 on the multiple fixed plates 16 can scrape the inner wall of the mixing tank 3 back and forth to reduce the adhesion to the inner wall.
[0022] Reference Figure 5 and 7As shown, the metering mechanism includes a second connecting housing 18, which is fixedly connected to the top of the mixing tank 3. A second variable frequency motor 19 is mounted on the top of the second connecting housing 18. A third gear 20 is fixedly connected to the output end of the second variable frequency motor 19. A gear plate 21 meshes with one side of the third gear 20. A turntable 22 is fixedly connected to the inner side of the gear plate 21. The turntable 22 is rotatably connected to the inner side of the second connecting housing 18. The top of the turntable 22 is connected to a fertilizer tank 23. The inside of the second connecting housing 18 is connected to a feeding device. Pipe 24 extends to the inside of the distribution cylinder 10 and is rotatably connected to the inside of the distribution cylinder 10. It is connected to the gear plate 21 by the third gear 20, so that the gear plate 21 can drive the fertilizer tank 23 to rotate through the turntable 22. When the bottom opening of the fertilizer tank 23 coincides with the feed pipe 24, a certain amount of selenium-enriched fertilizer can be delivered into the inside of the distribution chamber 11. Through the reciprocating rotation of the fertilizer tank 23, the flow rate of selenium-enriched fertilizer particles dispersed and stirred each time is relatively uniform, which helps to form a uniform fertilizer solution.
[0023] Working principle of this utility model: This utility model designs an integrated device for blending well pump water and selenium-enriched fertilizer. The specific structure is shown in the attached instruction manual. Figure 1-7As shown, in this technical solution, through the cooperation of various structures, when it is necessary to mix well pump water and selenium-enriched fertilizer, firstly, the water pump 4 is started. Under the action of the water pump 4, deep well water can be extracted and transported to the mixing tank 3. Then, the selenium-enriched fertilizer is placed into the fertilizer tank 23, and the second variable frequency motor 19 is started. The second variable frequency motor 19 drives the third gear 20 to rotate, so that the third gear 20 can mesh and drive the gear plate 21. The gear plate 21 can drive the fertilizer tank 23 to rotate through the turntable 22, which can carry... The bottom opening of the fertilizer tank 23 coincides with the discharge pipe 24, allowing the selenium-enriched fertilizer to fall into the discharge pipe 24 and enter the distribution chamber 11. Then, the first variable frequency motor 7 is started, driving the first gear 8 to rotate. The first gear 8 meshes with and drives the second gear 9 to rotate, which in turn drives the distribution cylinder 10 to rotate. The centrifugal force of the rotating distribution cylinder 10 causes the selenium-enriched fertilizer to rotate along the inner side of the distribution cylinder 10 and diffuse outwards. Then, it can enter the inner side of the distribution box 15. Utilizing the tilting action of the distribution box 15, the selenium-enriched fertilizer can roll downwards and cooperate with the staggered discharge ports 25, allowing the selenium-enriched fertilizer to fall from different positions of the discharge ports 25 into the mixing tank 3. At the same time, the rotation of the distribution cylinder 10 can drive the stirring rod 12 to rotate, which in turn drives the conical spiral blades 14 to rotate. The spiral action of the spiral blades 14 can fully mix the falling selenium-enriched fertilizer with water. The distribution cylinder 10 can drive multiple distribution boxes 15 to rotate, which in turn can drive the fixed plate 16 to rotate. The scrapers 17 on different fixed plates 16 are distributed differently, and multiple scrapers 17 are staggered to continuously scrape the inner wall of the mixing tank 3 during rotation, thereby reducing the adhesion of selenium-enriched fertilizer to the inner wall of the mixing tank 3.
[0024] In the accompanying drawings of the embodiments disclosed in this utility model, only the structures involved in the embodiments of this utility model are shown. Other structures can be referred to with ordinary design. In the absence of conflict, the same embodiment and different embodiments of this utility model can be combined with each other. All contents not described in detail in the specification are existing technologies known to those skilled in the art, and the model parameters of each electrical appliance are not specifically limited; conventional equipment can be used. Electrical control components not mentioned in this technical solution are existing technologies and are therefore not shown in the figures and will not be described here. In conclusion, the above are merely preferred embodiments of this utility model and are not intended to limit this utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.
Claims
1. An integrated equipment for mixing well pump water and selenium-enriched fertilizer, comprising a mobile container (1), characterized in that: The top of the mobile box (1) is fixedly connected to two handles (2), and a mixing tank (3) is installed on the top of the mobile box (1). A water pump (4) is installed inside the mobile box (1). The output end and input end of the water pump (4) are both connected to a connecting pipe (5). One end of one of the connecting pipes (5) is connected to one side of the mixing tank (3). A dispersing component and a metering mechanism are installed on the mixing tank (3). The dispersing component includes a first connecting shell (6), which is fixedly connected to the top of the mixing tank (3). A first variable frequency motor (7) is installed on the top of the first connecting shell (6). A first gear (8) is fixedly connected to the output end of the first variable frequency motor (7). A second gear (9) meshes with one side of the first gear (8). A diverter cylinder (10) is sleeved inside the second gear (9). The diverter cylinder (10) is rotatably connected to the inside of the mixing tank (3).
2. The integrated equipment for blending well pump water and selenium-enriched fertilizer according to claim 1, characterized in that: The bottom end of the diverter (10) is fixedly connected to a stirring rod (12), and a plurality of connecting rods (13) are fixedly connected to the outside of the stirring rod (12). A spiral blade (14) is fixedly connected to the connecting rod (13), and the spiral blade (14) is conical in shape.
3. The integrated equipment for blending well pump water and selenium-enriched fertilizer according to claim 1, characterized in that: The outside of the diversion cylinder (10) is connected to multiple diversion boxes (15). One end of the diversion box (15) passes through the diversion cylinder (10) and extends to the inside of the diversion cavity (11). Multiple discharge ports (25) are opened at the bottom of the diversion box (15).
4. The integrated equipment for blending well pump water and selenium-enriched fertilizer according to claim 3, characterized in that: A fixing plate (16) is fixedly connected to one side of each of the multiple diversion boxes (15), three of the fixing plates (16) are fixedly connected to one side of three scrapers (17), and the other two fixing plates (16) are fixedly connected to one side of two scrapers (17).
5. The integrated equipment for blending well pump water and selenium-enriched fertilizer according to claim 1, characterized in that: The quantitative mechanism includes a second connecting shell (18), which is fixedly connected to the top of the mixing tank (3). A second variable frequency motor (19) is installed on the top of the second connecting shell (18), and a third gear (20) is fixedly connected to the output end of the second variable frequency motor (19).
6. The integrated equipment for blending well pump water and selenium-enriched fertilizer according to claim 5, characterized in that: The third gear (20) is meshed with a toothed disc (21) on one side. A turntable (22) is fixedly connected to the inner side of the toothed disc (21). The turntable (22) is rotatably connected to the inner side of the second connecting shell (18). A fertilizer tank (23) is connected to the top of the turntable (22).
7. The integrated equipment for blending well pump water and selenium-enriched fertilizer according to claim 5, characterized in that: The second connecting shell (18) is connected to a feeding pipe (24), which extends to the inside of the diverter (10) and is rotatably connected to the inside of the diverter (10).
Citation Information
Patent Citations
Motor-pumped well water pumping and selenium-rich fertilizer blending integrated equipment
CN216313973U