Irrigation auxiliary equipment for wheat cultivation

By designing extraction pipes, water pumps, classified storage and spraying mechanisms, the problem that existing equipment cannot irrigate nutrient solution and pesticides at the same time is solved, and the simultaneous spraying of pesticides and nutrient solution is achieved, improving the efficiency and flexibility of wheat irrigation.

CN223067523UActive Publication Date: 2025-07-08任丘市棉花技术推广站
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Patent Information

Application Number
CN202422345792.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-26
Publication Date
2025-07-08
Estimated Expiration
2034-09-26

AI Technical Summary

Technical Problem

The existing irrigation auxiliary equipment for wheat cultivation cannot automatically prepare and irrigate the wheat at the same time, which reduces the efficiency and flexibility of supplementing pesticides and nutrient solution.

Method used

A extraction tube, a water pump, a sorting storage mechanism and a spraying mechanism are designed, which are used for storage, stirring and spraying of pesticides and nutrient solution respectively, and the simultaneous spraying of pesticides and nutrient solution is achieved through the connecting rod.

Benefits of technology

The simultaneous spraying of pesticides and nutrient solution is achieved, improving the efficiency and flexibility of wheat irrigation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses irrigation auxiliary equipment for wheat cultivation, which belongs to the technical field of irrigation equipment and is characterized by comprising a water pump, a classified storage mechanism and a spraying mechanism, the water pump is bolted to the top of a supporting table, and a pesticide temporary storage bin can be matched with a pesticide connecting pipe by arranging the spraying mechanism. Pesticide is stored through the pesticide temporary storage bin and then flows into the pesticide connecting pipe through the pesticide temporary storage bin, so that the storage effect is achieved, the pesticide connecting pipe can be matched with the pesticide output pipe, and when spraying is needed, the pesticide in the pesticide connecting pipe is conveyed into the pesticide output pipe through the pesticide connecting pipe, so that the flowing effect is achieved; the pesticide output pipe can be matched with the pesticide spray head, when spraying is needed, pesticide stored in the pesticide output pipe is conveyed into the pesticide spray head through the pesticide output pipe, and therefore the spraying effect is achieved.
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Description

Technical Field

[0001] The utility model relates to the technical field of irrigation equipment, in particular to an irrigation auxiliary device for wheat cultivation. Background Art

[0002] Wheat is the seed of an annual or biennial herbaceous plant of the genus Triticum in the family Poaceae. Its stem is cylindrical, with long internodes, hollow, erect, and has tillers; the leaves are alternate, long lanceolate; the compound spike inflorescence; the spikelets are sessile, with or without awns; the caryopsis is oval, with a groove on the ventral surface. The powder of wheat fruit is white, with small pieces of yellow-brown pericarp. It is divided into spring wheat and winter wheat (i.e., winter wheat). Wheat contains starch, protein, amino acids (gluten), and B vitamins. Its medicinal functions mainly include four aspects: nourishing the heart, tonifying the kidney, harmonizing blood, and strengthening the spleen. There are also four major uses: relieving restlessness, stopping bleeding, promoting urination, and moistening the lungs.

[0003] In the existing irrigation auxiliary device for wheat cultivation, when spraying liquid on the irrigation auxiliary device for wheat cultivation, due to the lack of a classification storage mechanism, it is impossible to irrigate wheat with pesticides, thus reducing the efficiency of the irrigation auxiliary device for wheat cultivation. And when irrigating wheat, due to the lack of classified irrigation of wheat, it is impossible to irrigate wheat with pesticides and nutrient solutions simultaneously, thus reducing the flexibility of the irrigation auxiliary device for wheat cultivation.

[0004] The existing patent (CN220897438U) discloses an irrigation auxiliary device for wheat cultivation, including a support plate, a water tank, a spray head, and a water pipe. It also includes an angle adjustment mechanism and a horizontal spacing adjustment mechanism. The water tank is installed at one end of the support plate. The water injection port and the motor are both installed at one end of the water tank. A plurality of stirring rods are fixed to the output end of the motor. The handle is fixed to one end of the support plate. The universal wheels are installed at the four corners of the bottom surface of the support plate. A water pump is installed at the inner bottom of the water tank. One end of the water pipe is connected to the water pump, and the other end is connected to the spray head. In the utility model, the first rotating plate rotates around the center of the first installation groove, which is beneficial to adjusting the spraying direction without moving the spray head, and can spray both sides of the wheat at the same time. Push the sliding seat to move horizontally on the limit chute of the support sliding table, so as to adjust the distance between the spray head and the wheat, and then can irrigate multiple rows of wheat with different spacings at the same time.

[0005] In view of the above problems, the existing patent gives a solution. Since the irrigation auxiliary device for wheat cultivation cannot automatically prepare nutrient solutions and pesticides for wheat at the same time during irrigation, the efficiency of supplementing pesticides and nutrient solutions is reduced. And when irrigating, there is a lack of a structure for separately and simultaneously irrigating nutrient solutions and pesticides, thus reducing the flexibility of pesticide and nutrient solution irrigation.

[0006] Therefore, an irrigation auxiliary device for wheat cultivation is proposed. Summary of the Utility Model

[0007] The purpose of the present utility model is to provide an irrigation auxiliary device for wheat cultivation, which can solve the problems that in the existing irrigation auxiliary device for wheat cultivation, during irrigation, there is no automatic preparation structure for nutrient solution and pesticides for wheat at the same time, reducing the efficiency of supplementing pesticides and nutrient solution, and there is a lack of a structure for separately and simultaneously irrigating nutrient solution and pesticides during irrigation, thus reducing the flexibility of pesticide and nutrient solution irrigation.

[0008] To achieve the above purpose, the present utility model provides the following technical solutions: It includes an extraction pipe, a water pump, a classification storage mechanism, and a spraying mechanism. The extraction pipe is connected to the rear side of the water pump. A support table is bolted to the bottom of the water pump. A left extension pipe is connected to the left side of the water pump, and a right extension pipe is connected to the right side of the water pump. The classification storage mechanism is respectively connected to the output ends of the left extension pipe and the right extension pipe, and the spraying mechanism is connected to the output end of the classification storage mechanism;

[0009] The spraying mechanism includes a pesticide temporary storage bin, a pesticide connection pipe, a pesticide output pipe, a pesticide nozzle, a connecting rod, a nutrient solution temporary storage bin, a nutrient solution connection pipe, a nutrient solution output pipe, and a nutrient solution nozzle. The pesticide temporary storage bin is connected to the output end of the classification storage mechanism. The pesticide connection pipe is connected to the front side of the pesticide temporary storage bin. The pesticide output pipe is connected to both sides of the surface of the pesticide connection pipe. The pesticide nozzle is connected to the bottom of the pesticide output pipe. The connecting rod is bolted to the bottom of the pesticide temporary storage bin. The nutrient solution temporary storage bin is bolted to the bottom of the connecting rod. The nutrient solution connection pipe is connected to the front side of the nutrient solution temporary storage bin. The nutrient solution output pipe is connected to the front side and both sides of the nutrient solution connection pipe. The nutrient solution nozzle is connected to the top of the nutrient solution output pipe.

[0010] Preferably, the classification storage mechanism includes a pesticide component and a nutrient solution component. The pesticide component is connected to the output end of the right extension pipe, and the nutrient solution component is connected to the output end of the left extension pipe.

[0011] Preferably, the pesticide component includes a right mixer, a right storage tank, a right infusion pipe, and a right fixed table. The right storage tank is connected to the left side of the right extension pipe. The right mixer is bolted to the rear side of the right storage tank. The right storage tank is bolted to the top of the right fixed table. The right infusion pipe is connected to the output end of the right storage tank, and the right fixed table is bolted to the bottom of the right storage tank.

[0012] Preferably, the nutrient solution component includes a left mixer, a left storage tank, a left infusion pipe, and a left fixed table. The left storage tank is connected to the right side of the left extension pipe. The left mixer is bolted to the rear side of the left storage tank. The left storage tank is bolted to the top of the left fixed table. The left infusion pipe is connected to the front side of the left storage tank, and the left fixed table is bolted to the bottom of the left storage tank.

[0013] Preferably, a left sealing ring is bolted to the output end of the left extension pipe, and a waterproof coating is applied to the surface of the left sealing ring.

[0014] Preferably, a right sealing ring is bolted to the output end of the right extension pipe, and a waterproof coating is applied to the surface of the right sealing ring.

[0015] Preferably, a nutrient solution sealing cover is bolted to the top of the left storage tank, and anti-slip patterns are engraved on the surface of the nutrient solution sealing cover.

[0016] Preferably, a pesticide sealing cover is bolted to the top of the right storage tank, and anti-slip patterns are engraved on the surface of the pesticide sealing cover.

[0017] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0018] 1. In this application, by setting up a spraying mechanism, the pesticide temporary storage bin can cooperate with the pesticide connecting pipe. When spraying is required, the pesticide is stored in the pesticide temporary storage bin, and then the pesticide in the pesticide temporary storage bin flows into the pesticide connecting pipe, thus achieving the storage effect. The pesticide connecting pipe can cooperate with the pesticide output pipe. When spraying is required, the pesticide in the pesticide connecting pipe is then transmitted into the pesticide output pipe by the pesticide connecting pipe, thus achieving the flowing effect. The pesticide output pipe can cooperate with the pesticide nozzle. When spraying is required, the pesticide stored in the pesticide output pipe is then transmitted into the pesticide nozzle by the pesticide output pipe, thus achieving the spraying effect. The connecting rod can cooperate with the nutrient solution temporary storage bin. When connection is required, through the connection of the connecting rod, the pesticide temporary storage bin and the nutrient solution temporary storage bin are connected, thus achieving the connection and fixation effect. The nutrient solution temporary storage bin can cooperate with the nutrient solution connecting pipe. When spraying is required, the nutrient solution is stored in the nutrient solution temporary storage bin, and then the nutrient solution in the nutrient solution temporary storage bin flows into the nutrient solution connecting pipe, thus achieving the storage effect. The nutrient solution connecting pipe can cooperate with the nutrient solution output pipe. When spraying is required, the nutrient solution in the nutrient solution connecting pipe is then transmitted into the nutrient solution output pipe by the nutrient solution connecting pipe, thus achieving the flowing effect. The nutrient solution output pipe can cooperate with the nutrient solution nozzle. When spraying is required, the nutrient solution stored in the nutrient solution output pipe is then transmitted into the nutrient solution nozzle by the nutrient solution output pipe, thus achieving the spraying effect. Since the pesticide nozzle and the nutrient solution nozzle are part of the spraying mechanism, pesticides and nutrient solutions can be sprayed on wheat simultaneously, improving the efficiency of spraying pesticides on wheat;

[0019] 2. By setting up a classified storage mechanism in this application, the right blender can cooperate with the right storage tank. When it is necessary to stir the raw materials for pesticide preparation, the raw materials for pesticide preparation are poured into the right storage tank, and then the right blender will stir the raw materials for pesticide preparation, thus achieving the effect of stirring the raw materials for pesticide preparation. The right storage tank can cooperate with the right infusion tube. After the stirring of the raw materials for pesticide preparation is completed, the pesticide flows into the right infusion tube, and then the right infusion tube stores the pesticide, thus achieving the effect of temporarily storing the pesticide. The right storage tank can cooperate with the right fixed table. When it is necessary to fix the right storage tank, through the connection between the right storage tank and the right fixed table, and then the right fixed table fixes the right storage tank, thus achieving the fixing effect. The left blender can cooperate with the left storage tank. When it is necessary to stir the raw materials for nutrient solution preparation, the raw materials for nutrient solution preparation are poured into the left storage tank, and then the left blender will stir the raw materials for nutrient solution preparation, thus achieving the effect of stirring the raw materials for nutrient solution preparation. The left storage tank can cooperate with the right infusion tube. After the stirring is completed, the nutrient solution flows into the left infusion tube, and then the left infusion tube stores the nutrient solution, thus achieving the temporary storage effect. The left storage tank can cooperate with the left fixed table. When it is necessary to fix the left storage tank, through the connection between the left storage tank and the left fixed table, and then the left fixed table fixes the left storage tank, thus achieving the fixing effect. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 is the overall structure diagram of the irrigation auxiliary equipment for wheat cultivation of the present utility model;

[0021] Figure 2 is the structural schematic diagram of the left sealing ring of the present utility model;

[0022] Figure 3 is the structural schematic diagram of the pesticide component of the present utility model;

[0023] Figure 4 is the structural schematic diagram of the nutrient solution component of the present utility model;

[0024] Figure 5 is the structural schematic diagram of the spraying mechanism of the present utility model.

[0025] In the figure, 1 is the extraction pipe; 2 is the water pump; 3 is the support table; 4 is the left extension pipe; 5 is the right extension pipe; 6 is the classification storage mechanism; 601 is the pesticide component; 6011 is the right mixer; 6012 is the right storage tank; 6013 is the right infusion pipe; 6014 is the right fixed table; 602 is the nutrient solution component; 6021 is the left mixer; 6022 is the left storage tank; 6023 is the left infusion pipe; 6024 is the left fixed table; 7 is the spraying mechanism; 701 is the pesticide temporary storage bin; 702 is the pesticide connecting pipe; 703 is the pesticide output pipe; 704 is the pesticide nozzle; 705 is the connecting rod; 706 is the nutrient solution temporary storage bin; 707 is the nutrient solution connecting pipe; 708 is the nutrient solution output pipe; 709 is the nutrient solution nozzle; 8 is the left sealing ring; 9 is the right sealing ring; 10 is the nutrient solution sealing cover; 11 is the pesticide sealing cover. Specific implementation mode

[0026] 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.

[0027] Please refer to Figures 1-5 , the present invention provides a technical solution:

[0028] An irrigation auxiliary device for wheat cultivation includes an extraction pipe 1, a water pump 2, a classification storage mechanism 6 and a spraying mechanism 7. The extraction pipe 1 is connected to the rear side of the water pump 2. The bottom of the water pump 2 is bolted with a support table 3. The left side of the water pump 2 is connected with a left extension pipe 4, and the right side of the water pump 2 is connected with a right extension pipe 5. The classification storage mechanism 6 is respectively connected to the output ends of the left extension pipe 4 and the right extension pipe 5. The spraying mechanism 7 is connected to the output end of the classification storage mechanism 6;

[0029] The spraying mechanism 7 includes a pesticide storage bin 701, a pesticide connecting pipe 702, a pesticide output pipe 703, a pesticide nozzle 704, a connecting rod 705, a nutrient solution storage bin 706, a nutrient solution connecting pipe 707, a nutrient solution output pipe 708, and a nutrient solution nozzle 709. The pesticide storage bin 701 is connected to the output end of the classification storage mechanism 6. The pesticide connecting pipe 702 is connected to the front side of the pesticide storage bin 701. The pesticide output pipes 703 are connected to both sides of the surface of the pesticide connecting pipe 702. The pesticide nozzles 704 are connected to the bottom of the pesticide output pipes 703. The connecting rod 705 is bolted to the bottom of the pesticide storage bin 701. The nutrient solution storage bin 706 is bolted to the bottom of the connecting rod 705. The nutrient solution connecting pipe 707 is connected to the front side of the nutrient solution storage bin 706. The nutrient solution output pipes 708 are connected to the front side and both sides of the nutrient solution connecting pipe 707. The nutrient solution nozzles 709 are connected to the top of the nutrient solution output pipes 708.

[0030] In this embodiment: By setting up the spraying mechanism 7, the pesticide storage bin 701 can cooperate with the pesticide connecting pipe 702. When spraying is required, the pesticide storage bin 701 stores pesticides, and then the pesticide storage bin 701 allows the pesticides to flow into the pesticide connecting pipe 702, thus achieving the effect of storage. The pesticide connecting pipe 702 can cooperate with the pesticide output pipes 703. When spraying is required, the pesticides in the pesticide connecting pipe 702 are then transmitted by the pesticide connecting pipe 702 into the pesticide output pipes 703, thus achieving the effect of flow. The pesticide output pipes 703 can cooperate with the pesticide nozzles 704. When spraying is required, the pesticides stored in the pesticide output pipes 703 are then transmitted by the pesticide output pipes 703 into the pesticide nozzles 704, thus achieving the effect of spraying. The connecting rod 705 can cooperate with the nutrient solution storage bin 706. When connection is required, through the connection of the connecting rod 705, the connecting rod 705 then connects the pesticide storage bin 701 and the nutrient solution storage bin 706, thus achieving the effect of connection and fixation. The nutrient solution storage bin 706 can cooperate with the nutrient solution connecting pipe 707. When spraying is required, the nutrient solution storage bin 706 stores the nutrient solution, and then the nutrient solution storage bin 706 allows the nutrient solution to flow into the nutrient solution connecting pipe 707, thus achieving the effect of storage. The nutrient solution connecting pipe 707 can cooperate with the nutrient solution output pipes 708. When spraying is required, the nutrient solution in the nutrient solution connecting pipe 707 is then transmitted by the nutrient solution connecting pipe 707 into the nutrient solution output pipes 708, thus achieving the effect of flow. The nutrient solution output pipes 708 can cooperate with the nutrient solution nozzles 709. When spraying is required, the nutrient solution stored in the nutrient solution output pipes 708 is then transmitted by the nutrient solution output pipes 708 into the nutrient solution nozzles 709, thus achieving the effect of spraying. Since the pesticide nozzles 704 and the nutrient solution nozzles 709 are part of the spraying mechanism 7, pesticides and the nutrient solution can be sprayed on the wheat simultaneously, improving the efficiency of spraying pesticides on the wheat.

[0031] Specifically, as Figure 1 shown, the classification storage mechanism 6 includes a pesticide component 601 and a nutrient solution component 602. The pesticide component 601 is connected to the output end of the right extension pipe 5, and the nutrient solution component 602 is connected to the output end of the left extension pipe 4.

[0032] Specifically, as Figure 3 shown, the pesticide component 601 includes a right mixer 6011, a right storage tank 6012, a right infusion pipe 6013, and a right fixed table 6014. The right storage tank 6012 is connected to the left side of the right extension pipe 5. The right mixer 6011 is bolted to the rear side of the right storage tank 6012. The right storage tank 6012 is bolted to the top of the right fixed table 6014. The right infusion pipe 6013 is connected to the output end of the right storage tank 6012. The right fixed table 6014 is bolted to the bottom of the right storage tank 6012.

[0033] Specifically, as Figure 4 shown, the nutrient solution component 602 includes a left mixer 6021, a left storage tank 6022, a left infusion pipe 6023, and a left fixed table 6024. The left storage tank 6022 is connected to the right side of the left extension pipe 4. The left mixer 6021 is bolted to the rear side of the left storage tank 6022. The left storage tank 6022 is bolted to the top of the left fixed table 6024. The left infusion pipe 6023 is connected to the front side of the left storage tank 6022. The left fixed table 6024 is bolted to the bottom of the left storage tank 6022.

[0034] In this embodiment: By providing a classified storage mechanism 6, the right blender 6011 can cooperate with the right storage tank 6012. When it is necessary to stir the raw materials for pesticide preparation, by pouring the raw materials for pesticide preparation into the right storage tank 6012, and then the right blender 6011 will stir the raw materials for pesticide preparation, thus achieving the effect of stirring the raw materials for pesticide preparation. The right storage tank 6012 can cooperate with the right infusion tube 6013. After the stirring of the raw materials for pesticide preparation is completed, by flowing the raw materials for pesticide preparation into the right infusion tube 6013, and then the right infusion tube 6013 will store the raw materials for pesticide preparation, thus achieving the effect of temporarily storing the raw materials for pesticide preparation. The right storage tank 6012 can cooperate with the right fixed table 6014. When it is necessary to fix the right storage tank 6012, through the connection between the right storage tank 6012 and the right fixed table 6014, and then the right fixed table 6014 will fix the right storage tank 6012, thus achieving the fixing effect. The left blender 6021 can cooperate with the left storage tank 6022. When it is necessary to stir the raw materials for nutrient solution preparation, by pouring the raw materials for nutrient solution preparation into the left storage tank 6022, and then the left blender 6021 will stir the raw materials for nutrient solution preparation, thus achieving the effect of stirring the raw materials for nutrient solution preparation. The left storage tank 6022 can cooperate with the right infusion tube 6013. After the stirring is completed, by flowing the raw materials for nutrient solution preparation into the left infusion tube 6023, and then the left infusion tube 6023 will store the raw materials for nutrient solution preparation, thus achieving the effect of temporary storage. The left storage tank 6022 can cooperate with the left fixed table 6024. When it is necessary to fix the left storage tank 6022, through the connection between the left storage tank 6022 and the left fixed table 6024, and then the left fixed table 6024 will fix the left storage tank 6022, thus achieving the fixing effect.

[0035] Specifically, as Figure 2 shown, a left sealing ring 8 is bolted to the output end of the left extension pipe 4, and a waterproof coating is applied to the surface of the left sealing ring 8.

[0036] Specifically, as Figure 2 shown, a right sealing ring 9 is bolted to the output end of the right extension pipe 5, and a waterproof coating is applied to the surface of the right sealing ring 9.

[0037] In this embodiment: By providing the left sealing ring 8 and the right sealing ring 9, the left sealing ring 8 can cooperate with the left extension pipe 4 to play a sealing role for the left extension pipe 4, improving the tightness when the left sealing ring 8 is connected to the left extension pipe 4. The right sealing ring 9 can cooperate with the right extension pipe 5 to play a sealing role for the right extension pipe 5, improving the tightness effect when the right sealing ring 9 is connected to the right extension pipe 5.

[0038] Specifically, as Figure 3 shown, a nutrient solution sealing cover 10 is bolted to the top of the left storage tank 6022, and anti-slip patterns are engraved on the surface of the nutrient solution sealing cover 10.

[0039] Specifically, as Figure 4 shown, a pesticide sealing cover 11 is bolted to the top of the right storage tank 6012, and anti-slip patterns are engraved on the surface of the pesticide sealing cover 11.

[0040] In this embodiment: By providing the nutrient solution sealing cover 10 and the pesticide sealing cover 11, the nutrient solution sealing cover 10 can cooperate with the left storage tank 6022 to seal the left storage tank 6022, improving the storage performance of the left storage tank 6022 during use. The pesticide sealing cover 11 can cooperate with the right storage tank 6012 to seal the right storage tank 6012, improving the storage performance of the right storage tank 6012 during use.

[0041] Working principle: First, when irrigating wheat is needed, the user moves the extraction pipe 1 to a place with a large amount of water source, then the user starts the water pump 2. After that, the water pumped by the water pump 2 is transmitted into the left extension pipe 4 and the right extension pipe 5. Subsequently, the water flows into the left storage tank 6022 through the left extension pipe 4. Then the user pours the raw materials for nutrient solution preparation into the left storage tank 6022, and then the left mixer 6021 stirs evenly. After that, it is transmitted to the nutrient solution temporary storage bin 706 through the left infusion pipe 6023. Then the nutrient solution temporary storage bin 706 transmits the nutrient solution into the nutrient solution output pipe 708 through the nutrient solution connecting pipe 707. After that, the nutrient solution fills the space in the nutrient solution output pipe 708. Subsequently, the nutrient solution nozzle 709 sprays the nutrient solution onto the ground near the wheat. Then the water pump 2 transmits the pumped water into the left extension pipe 4 and the right extension pipe 5. Subsequently, the water flows into the right storage tank 6012 through the right extension pipe 5. Then the user pours the raw materials for pesticide preparation into the right storage tank 6012, and then the right mixer 6011 stirs evenly. After that, it is transmitted to the pesticide temporary storage bin 701 through the right infusion pipe 6013. Then the pesticide temporary storage bin 701 transmits the pesticide into the pesticide output pipe 703 through the pesticide connecting pipe 702. After that, the pesticide fills the space in the pesticide output pipe 703. Subsequently, the pesticide nozzle 704 sprays the nutrient solution onto the surface of the wheat until all the nutrient solution and pesticide are sprayed out.

[0042] The above are only the preferred embodiments of the present utility model and are not intended to limit the present utility model. Any modifications, equivalent replacements, and improvements made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.

Claims

1. An irrigation auxiliary device for wheat cultivation, comprising a pumping pipe (1), a water pump (2), a classification storage mechanism (6) and a spraying mechanism (7), characterized in that: The extraction pipe (1) is connected to the rear side of the water pump (2). A support table (3) is bolted to the bottom of the water pump (2). A left extension pipe (4) is connected to the left side of the water pump (2), and a right extension pipe (5) is connected to the right side of the water pump (2). The classification and storage mechanism (6) is respectively connected to the output ends of the left extension pipe (4) and the right extension pipe (5), and the spraying mechanism (7) is connected to the output end of the classification and storage mechanism (6). The spraying mechanism (7) includes a pesticide temporary storage bin (701), a pesticide connecting pipe (702), a pesticide output pipe (703), a pesticide nozzle (704), a connecting rod (705), a nutrient solution temporary storage bin (706), a nutrient solution connecting pipe (707), a nutrient solution output pipe (708), and a nutrient solution nozzle (709). The pesticide temporary storage bin (701) is connected to the output end of the classification and storage mechanism (6). The pesticide connecting pipe (702) is connected to the front side of the pesticide temporary storage bin (701). The pesticide output pipe (703) is connected to both sides of the surface of the pesticide connecting pipe (702). The pesticide nozzle (704) is connected to the bottom of the pesticide output pipe (703). The connecting rod (705) is bolted to the bottom of the pesticide temporary storage bin (701). The nutrient solution temporary storage bin (706) is bolted to the bottom of the connecting rod (705). The nutrient solution connecting pipe (707) is connected to the front side of the nutrient solution temporary storage bin (706). The nutrient solution output pipe (708) is connected to the front side and both sides of the nutrient solution connecting pipe (707). The nutrient solution nozzle (709) is connected to the top of the nutrient solution output pipe (708).

2. An irrigation auxiliary device for wheat cultivation according to claim 1, characterized in that: The classification and storage mechanism (6) includes a pesticide component (601) and a nutrient solution component (602). The pesticide component (601) is connected to the output end of the right extension pipe (5), and the nutrient solution component (602) is connected to the output end of the left extension pipe (4).

3. The irrigation auxiliary equipment for wheat cultivation according to claim 2, wherein: The pesticide component (601) includes a right stirrer (6011), a right storage tank (6012), a right infusion pipe (6013), and a right fixing table (6014). The right storage tank (6012) is connected to the left side of the right extension pipe (5). The right stirrer (6011) is bolted to the rear side of the right storage tank (6012). The right storage tank (6012) is bolted to the top of the right fixing table (6014). The right infusion pipe (6013) is connected to the output end of the right storage tank (6012). The right fixing table (6014) is bolted to the bottom of the right storage tank (6012).

4. An irrigation auxiliary device for wheat cultivation according to claim 3, characterized in that: The nutrient solution assembly (602) includes a left mixer (6021), a left storage tank (6022), a left infusion tube (6023), and a left fixed table (6024). The left storage tank (6022) is connected to the right side of the left extension tube (4). The left mixer (6021) is bolted to the rear side of the left storage tank (6022). The left storage tank (6022) is bolted to the top of the left fixed table (6024). The left infusion tube (6023) is connected to the front side of the left storage tank (6022). The left fixed table (6024) is bolted to the bottom of the left storage tank (6022).

5. An irrigation auxiliary device for wheat cultivation according to claim 1, characterized in that: A left sealing ring (8) is bolted to the output end of the left extension tube (4), and a waterproof coating is applied to the surface of the left sealing ring (8).

6. The irrigation auxiliary device for wheat cultivation according to claim 1, characterized in that: A right sealing ring (9) is bolted to the output end of the right extension tube (5), and a waterproof coating is applied to the surface of the right sealing ring (9).

7. An irrigation auxiliary device for wheat cultivation according to claim 4, characterized in that: A nutrient solution sealing cover (10) is bolted to the top of the left storage tank (6022), and anti-slip patterns are engraved on the surface of the nutrient solution sealing cover (10).

8. An irrigation auxiliary device for wheat cultivation according to claim 3, characterized in that: A pesticide sealing cover (11) is bolted to the top of the right storage tank (6012), and anti-slip patterns are engraved on the surface of the pesticide sealing cover (11).

Citation Information

Patent Citations

  • Irrigation auxiliary equipment for wheat cultivation

    CN220897438U