Water and fertilizer integrated drip irrigation equipment

By using a gear meshing and electric motor driven mixing shaft design, combined with scrapers and filters, the problems of inaccurate flow control, high energy consumption, and complex operation in integrated water and fertilizer drip irrigation equipment have been solved, achieving uniform water and fertilizer mixing and improved irrigation efficiency.

CN223872841UActive Publication Date: 2026-02-06砚山县植保植检站 +1
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Patent Information

Application Number
CN202520506147.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-21
Publication Date
2026-02-06
Estimated Expiration
2035-03-21

AI Technical Summary

Technical Problem

Existing integrated water and fertilizer drip irrigation equipment has problems such as inaccurate flow control, high energy consumption, particle clogging, and complex operation, which affect irrigation efficiency and resource utilization.

Method used

The mixing shaft design, which uses gear meshing and electric motor drive, combined with scrapers and filter screens, achieves uniform mixing of water and fertilizer and particle filtration. It is equipped with an automated flow control structure to simplify the operation process.

Benefits of technology

It enables precise control of water and fertilizer flow, reduces energy consumption and maintenance costs, improves irrigation efficiency and crop growth quality, and reduces operational complexity.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides water and fertilizer integrated drip irrigation equipment, which relates to the technical field of agricultural irrigation and comprises a support frame, a water source conveying tank and a group of fertilizer storage tanks are mounted above the support frame, and one side of the water source conveying tank and one side of each fertilizer storage tank are respectively provided with a stabilizing plate. The middle positions of the water source conveying tank and the fertilizer storage tank are respectively provided with a stirring shaft, the outer side position of each stirring shaft is provided with a scraping plate, and the upper position of the water source conveying tank and the fertilizer storage tank is provided with a conveying pipe. The electric motor drives the stirring shaft and the rotating shaft to rotate synchronously, liquid in the water source conveying tank and liquid in the fertilizer storage tank are evenly stirred in all directions, the efficient stirring design can enable fertilizer and a water source to be rapidly and fully mixed, the quality of water and fertilizer integration is guaranteed, the requirements of crops for uniform nutrition in different growth stages are met, and the crop yield is improved. Healthy growth of crops is promoted, and energy consumption and cost of stirring of the water source conveying tank and the fertilizer storage tank are reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to agricultural irrigation technical field especially relates to a water and fertilizer integrated drip irrigation equipment. BACKGROUND

[0002] In agricultural production, irrigation and fertilization are two important farm operations, and the traditional irrigation and fertilization mode is usually carried out separately. With the progress of agricultural production, water and fertilizer integrated drip irrigation technology, as a key means to improve agricultural production efficiency and optimize resource utilization, has been widely applied. However, the current water and fertilizer integrated drip irrigation equipment on the market has exposed many problems in actual use as follows:

[0003] Some equipment only relies on ordinary valves for flow control, and it is difficult for the operator to accurately control the delivery ratio and flow size of water and fertilizer. In the irrigation process, improper flow regulation may cause insufficient or excessive supply of water and fertilizer to crops, resulting in not only resource waste but also soil hardening problems.

[0004] The water and fertilizer integrated drip irrigation equipment is provided with a water delivery tank and a group of fertilizer storage tanks. A motor is required on the basis of each water delivery tank and fertilizer storage tank, resulting in increased energy consumption and cost of mixing of the water delivery tank and fertilizer storage tank.

[0005] The fertilizer contains larger particles, so impurities and particles in the fertilizer can easily enter the drip irrigation pipeline, causing blockage. Once the pipeline is blocked, not only the irrigation uniformity is affected, but also the frequency of particle cleaning and maintenance is increased.

[0006] The driving motor of the stirring shaft needs to be manually turned on and off by the operator. Before irrigation, the water source valve needs to be opened first, then the stirring equipment is started, and then the fertilizer delivery valve is adjusted. The operation steps are many and prone to errors. INVENTION CONTENTS

[0007] The utility model discloses a water and fertilizer integrated drip irrigation equipment, rotates second adjusting button, the gear in the middle of second adjusting button will mesh with the meshing tooth on one side of lifting frame, make lifting frame move upwards, when lifting frame moves upwards to press the switch on one side of pressurized motor, pressurized motor automatic power on, after pressurized motor starts, its driving shaft drives the bevel gear at the bottom to rotate, drives the stirring shaft and rotating shaft to rotate synchronously through bevel gear transmission, when the stirring shaft rotates, on the one hand, the liquid in water delivery tank and fertilizer storage tank is fully stirred, so that the fertilizer and water are uniformly mixed, on the other hand, the scraper is driven to rotate synchronously, the filter screen is cleaned in real time, and the fertilizer particles are prevented from accumulating.

[0008] The first aspect of the present disclosure provides a water and fertilizer integrated drip irrigation equipment, specifically comprising: a support frame, a water source conveying tank and a group of fertilizer storage tanks are installed above the support frame, a stable plate is installed on one side of the water source conveying tank and the fertilizer storage tanks respectively, a stirring shaft is installed at the middle position of the water source conveying tank and the fertilizer storage tanks respectively, a scraper is installed outside the stirring shaft, a conveying pipe is installed above the water source conveying tank and the fertilizer storage tanks, a drip irrigation pipeline is arranged at the bottom of the water source conveying tank and the fertilizer storage tanks, a valve body is installed outside the drip irrigation pipeline, a group of branches are arranged at the bottom of the conveying pipe, the branches are respectively installed above the water source conveying tank and the fertilizer storage tanks, the water source conveying tank, the fertilizer storage tanks and the branches of the conveying pipe are communicated, a valve body is arranged at the middle position of the branches of the conveying pipe, a second adjusting button is installed on one side of the branches of the conveying pipe, and a lifting frame is installed above the water source conveying tank.

[0009] Further, a positioning plate is arranged above the support frame, the positioning plate has an L-shaped structure, a positioning hole is formed in one side of the positioning plate, the positioning hole has a rectangular structure, and the bottom of the lifting frame passes through the inside of the positioning hole.

[0010] Further, a group of engagement teeth are arranged on one side of the lifting frame, a gear is arranged at the middle position of the second adjusting button, the gear is engaged with the engagement teeth, a press switch is arranged on one side of the electric motor, the press switch is inverted on one side of the electric motor, and the press switch is aligned with the lifting frame.

[0011] Further, a group of bolt mounting holes are formed at the bottom of the stable plate, a rotating hole is formed above the stable plate, a butt joint block is arranged in the rotating hole, a stepped groove is formed at the middle position of the butt joint block, and the stepped groove has a circular ring structure.

[0012] Further, a butt joint groove is formed in each side of the butt joint block, a group of circular arc grooves are arranged at the inner side of the butt joint groove, a rotating shaft is arranged on one side of the butt joint block, a group of clamping grooves are formed in one side of the rotating shaft, the clamping grooves are engaged with the butt joint grooves, a bevel gear is arranged at the bottom of the drive shaft of the electric motor, a bevel gear is arranged on one side of the rotating shaft, a bevel gear is arranged above the stirring shaft, and the bevel gears between the drive shaft, the rotating shaft and the stirring shaft are engaged with each other.

[0013] Further, the inside position of the fertilizer storage tank is provided with a positioning ring, a filter screen is installed above the positioning ring, a rotating hole is formed in the middle position of the filter screen, the stirring shaft of the fertilizer storage tank penetrates the inside of the rotating hole, the outside surface of the stirring shaft is provided with a positioning ring and a group of positioning protrusions in the form of circular arcs, a sliding hole is formed in the middle position of the scraper, the scraper is installed at the positioning protrusion position of the stirring shaft in cooperation with the sliding hole, a supporting spring is installed at the outside position of the stirring shaft of the fertilizer storage tank, and the electric motor, the rotating shaft, the stirring shaft and the scraper cooperatively form a stirring mechanism.

[0014] Further, a group of clamping grooves are formed in the inside surface of the valve body and are arranged in the form of an annular array, a first adjusting knob is installed at the inside position of the valve body, positioning rods are arranged at the two sides of the first adjusting knob, a locking plate is installed at the outside position of the positioning rods, a sliding hole is formed in the middle position of the locking plate, the positioning rods penetrate the inside of the sliding hole and are provided with supporting springs at the outside, and the valve body, the first adjusting knob, the positioning rods and the locking plate cooperatively form a flow control structure.

[0015] The water-fertilizer integrated drip irrigation equipment has the following beneficial effects:

[0016] In the flow control structure, the first adjusting knob can be rotated to accurately control the opening degree of the valve body, so that the flow rate of the water source and the fertilizer conveying can be accurately controlled, and the automatic locking mechanism of the locking plate and the clamping grooves can effectively prevent the flow rate setting from being changed due to external force or misoperation.

[0017] The electric motor drives the stirring shaft and the rotating shaft to synchronously rotate, so that the liquid in the water conveying tank and the fertilizer storage tank can be comprehensively and uniformly stirred, the efficient stirring design can make the fertilizer and the water source rapidly and fully mix, the quality of the water-fertilizer integration is ensured, the demand of crops for uniform nutrition in different growth stages is met, the crops are promoted to grow healthily, and the energy consumption and the cost of the stirring of the water conveying tank and the fertilizer storage tank are reduced.

[0018] The filter screen in the fertilizer storage tank can effectively intercept large particles in the fertilizer, prevent the large particles from entering the drip irrigation pipeline to cause blockage, and simultaneously, the scraper is synchronously rotated when the stirring shaft rotates, so that the filter screen is cleaned in real time, and the filtering effect and the service life of the filter screen are further ensured.

[0019] The second adjusting knob can be rotated to simultaneously realize the movement of the lifting frame and the starting of the electric motor, so that the stirring function can be automatically started while the water source is adjusted, the continuity and the automation of the equipment operation are realized, the ingenious mechanical linkage and circuit control design avoid time difference and mistakes caused by manual separate operation, the work efficiency is greatly improved, and the labor intensity of the operator is reduced. BRIEF DESCRIPTION OF DRAWINGS

[0020] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings of the embodiments will be briefly described below.

[0021] The accompanying drawings described below are only related to some embodiments of the present invention and are not intended to limit the present invention.

[0022] In the attached diagram:

[0023] Figure 1 This paper shows a schematic diagram of the axonal structure of the integrated drip irrigation device after assembly.

[0024] Figure 2 This application shows Figure 1 A schematic diagram of the axonal structure from an elevation viewpoint;

[0025] Figure 3 This application shows Figure 1 A schematic diagram of the rear-view delivery pipe after the removal of the rear axial side structure;

[0026] Figure 4 An axonometric schematic diagram of the cross-sectional structure of the fertilizer storage tank of this application is shown;

[0027] Figure 5 This paper shows an axonometric schematic diagram of the cross-sectional structure of the fertilizer storage tank and water delivery tank of this application;

[0028] Figure 6 This paper shows a schematic diagram of the main structure of the lifting frame and the second adjustment knob of this application;

[0029] Figure 7 This application shows Figure 1 A magnified structural diagram at point A;

[0030] Figure 8 This application shows Figure 4 A magnified structural diagram at point B;

[0031] Figure 9 This application shows Figure 5 A magnified structural diagram at point C.

[0032] List of reference numerals

[0033] 1. Support frame; 101. Positioning plate;

[0034] 2. Water supply tank;

[0035] 3. Fertilizer storage tank; 301. Filter screen;

[0036] 4. Stabilizing plate; 401. Connecting block;

[0037] 5、stirring mechanism; 501、electric motor; 502、rotating shaft; 503、stirring shaft; 504、scraper;

[0038] 6、delivery pipe;

[0039] 7、flow control structure; 701、valve body; 702、first adjusting knob; 703、positioning rod; 704、locking plate;

[0040] 8、second adjusting knob;

[0041] 9、elevating frame. DETAILED DESCRIPTION

[0042] In order to make the purpose, technical scheme and advantages of the embodiments of the present application more clear, the technical scheme of the embodiments of the present application will be described clearly and completely below in combination with the drawings of the embodiments of the present application. Obviously, the described embodiments are part of the embodiments of the present application, rather than all the embodiments. Based on the described embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0043] Embodiment one: please refer to Figures 1 to 9 :

[0044] The utility model provides a kind of water and fertilizer integration drip irrigation equipment, comprising: support frame 1, the upper position of support frame 1 installs one water source conveying tank 2, a group of fertilizer storage tank 3, support frame 1 supports and stabilizes water source conveying tank 2, fertilizer storage tank 3, the side of water source conveying tank 2, fertilizer storage tank 3 respectively installs one stable plate 4, the middle position of water source conveying tank 2, fertilizer storage tank 3 respectively installs one stirring shaft 503, the outside position of stirring shaft 503 installs one scraper 504, the upper position of water source conveying tank 2, fertilizer storage tank 3 installs one conveying pipe 6, the bottom position of water source conveying tank 2, fertilizer storage tank 3 is equipped with one drip irrigation pipeline, the outside position of drip irrigation pipeline installs one valve body 701, the bottom position of conveying pipe 6 is equipped with a group of branches, branch is respectively installed in the upper position of water source conveying tank 2, fertilizer storage tank 3, water source conveying tank 2, fertilizer storage tank 3 and the branch communication of conveying pipe 6, operating personnel refer to the water pump connection structure in prior art, connect water pump on one side of conveying pipe 6, water source conveying tank 2, fertilizer storage tank 3 is respectively conveyed water source by the aid of water pump and conveying pipe 6, the branch of conveying pipe 6 is equipped with one valve body 701 in middle position, the internal structure of valve body 701 is selected ball valve structure in prior art, branch on one side of conveying pipe 6 installs one second adjusting knob 8, the upper position of water source conveying tank 2 installs one lifting frame 9, the upper position of support frame 1 is equipped with one locating plate 101, locating plate 101 is L-shaped structure, one locating hole is formed in the side of locating plate 101, the locating hole is rectangular structure, the bottom position of lifting frame 9 passes through the inside of locating hole, and locating plate 101 cooperates with locating hole to realize the effect that the position of lifting frame 9 is circularly positioned when moving up and down, so it is known that, the design of locating plate 101 and locating hole makes lifting frame 9 keep stable position during moving up and down, avoid shaking or deviation.

[0045] In the embodiments of the present disclosure, as shown in Figures 1 to 9 The bottom position of the stable plate 4 is provided with a group of bolt mounting holes, and the operator needs to install the matching bolts at the positions of the bolt mounting holes according to the prior art. After the bolts are installed, the stable plate 4 is stably installed. A rotating hole is formed in the upper position of the stable plate 4, and a butt joint block 401 is installed in the rotating hole. A stepped groove is formed in the middle position of the butt joint block 401, and the stepped groove is a circular ring structure. The butt joint block 401 cooperates with the stepped groove to realize the effect of transverse positioning of the rotating position. The design of the stepped groove of the butt joint block 401 enables the components connected thereto to keep stable positions when transversely rotating, avoids axial movement, ensures the accurate cooperation of the components during power transmission, and improves the reliability and stability of equipment operation.

[0046] In the embodiments of the present disclosure, as shown in Figures 1 to 9As shown, two sides of the butt joint block 401 are respectively provided with a butt joint groove, and the inner side of the butt joint groove is provided with a group of circular arc grooves. One side of the butt joint block 401 is provided with a rotating shaft 502, one side of the rotating shaft 502 is provided with a group of clamping grooves, and the clamping grooves and the butt joint grooves are engaged. The butt joint block 401 cooperates with the butt joint groove to realize the effect of positioning a group of rotating shafts 502 in series, so that a group of rotating shafts 502 can rotate synchronously. The driving shaft of the electric motor 501 is provided with a bevel gear at the bottom position, one side of the rotating shaft 502 is provided with a bevel gear, and one side of the stirring shaft 503 is provided with a bevel gear. The bevel gears between the driving shaft, the rotating shaft 502 and the stirring shaft 503 are meshed with each other. Therefore, the operator can control the electric motor 501 to drive the stirring shaft 503 and the rotating shaft 502 to rotate simultaneously. It is concluded that this unique butt joint block 401 connection and bevel gear transmission design realizes efficient power transmission and multi-component cooperative operation. Through the series connection of the rotating shaft 502, the synchronous rotation of multiple stirring shafts 503 can be ensured. The liquid in the water source conveying tank 2 and the fertilizer storage tank 3 is stirred in all directions and uniformly. The fertilizer and the water source are fully mixed, the quality of water and fertilizer integration is ensured, the effect of irrigation and fertilization is improved, and the demand of crops for uniform water and fertilizer at different growth stages is met.

[0047] In the embodiments of the present disclosure, reference is made to Figures 1 to 9 As shown, the inner side of the fertilizer storage tank 3 is provided with a positioning ring, and the upper position of the positioning ring is provided with a filter screen 301. The filter screen 301 blocks larger particles in the fertilizer, preventing the particles from blocking the drip irrigation pipeline. Water needs to be added to the inside of the fertilizer storage tank 3 to melt the fertilizer. A rotating hole is formed in the middle position of the filter screen 301, and the stirring shaft 503 installed in the fertilizer storage tank 3 passes through the inside of the rotating hole. The stirring shaft 503 can fully mix the fertilizer and water when rotating. The outer side of the stirring shaft 503 is provided with a positioning ring and a group of positioning protrusions in the form of circular arcs. A sliding hole is formed in the middle position of the scraper 504, and the scraper 504 is installed at the positioning protrusion position of the stirring shaft 503 in cooperation with the sliding hole. The positioning protrusions of the stirring shaft 503 realize the effect of circumferential positioning of the scraper 504. The stirring shaft 503 can drive the scraper 504 to rotate synchronously when rotating. A supporting spring is installed at the outer side position of the stirring shaft 503 installed in the fertilizer storage tank 3. The electric motor 501, the rotating shaft 502, the stirring shaft 503 and the scraper 504 cooperatively constitute a stirring mechanism 5. The supporting spring elastically presses the scraper 504, so that the scraper 504 and the filter screen 301 are in flexible contact. Therefore, the filter screen 301 effectively ensures the smoothness of the drip irrigation system, reduces the maintenance cost and irrigation interruption risk caused by particle blockage, and the cooperative design of the stirring shaft 503 and the scraper 504 not only can fully stir the fertilizer and water, but also can use the scraper 504 to clean the filter screen 301 in real time, preventing the accumulation of fertilizer particles on the filter screen 301, and further ensuring the filtering effect and service life of the filter screen 301.

[0048] In the embodiments of the present disclosure, referring to Figures 1 to 9 As shown in the figure, a group of clamping grooves are arranged on the inner side of the valve body 701, the clamping grooves are arranged in a ring array, a first adjusting knob 702 is installed at the inner side of the valve body 701, an operator rotates the first adjusting knob 702 to control the flow of liquid, a positioning rod 703 is arranged at both sides of the first adjusting knob 702, a locking plate 704 is installed at the outer side of the positioning rod 703, a sliding hole is arranged in the middle of the locking plate 704, the positioning rod 703 passes through the inside of the sliding hole and a supporting spring is installed at the outside of the positioning rod 703, the supporting spring pushes the locking plate 704 to automatically engage with the clamping grooves of the valve body 701, at this time, the locking plate 704 quickly locks the adjusting position of the first adjusting knob 702, the operator can press the locking plate 704 inward to unlock the first adjusting knob 702, the valve body 701, the first adjusting knob 702, the positioning rod 703 and the locking plate 704 cooperatively form a flow control structure 7, it is concluded that the flow control structure 7 provides an accurate and convenient flow adjusting experience for the user, the operator can easily rotate the first adjusting knob 702 to adjust the flow according to the actual irrigation and fertilization needs, and the automatic locking design of the locking plate 704 and the clamping grooves effectively prevents the flow adjusting position from changing due to external impact or misoperation, ensures the stability of the set flow, ensures that crops can be irrigated and fertilized according to the preset water and fertilizer amount, improves the accuracy of irrigation and fertilization, and reduces resource waste.

[0049] In the embodiments of the present disclosure, referring to Figures 1 to 9 As shown in the figure, a group of meshing teeth are arranged on one side of the lifting frame 9, a gear is installed in the middle of the second adjusting knob 8, the operator can drive the gear to rotate when rotating the second adjusting knob 8, the gear meshes with the meshing teeth, a press switch is installed on one side of the electric motor 501, the press switch is inverted on one side of the electric motor 501, the press switch is aligned with the lifting frame 9, the operator controls the lifting frame 9 to move upward during the process of opening the second adjusting knob 8, at this time, the lifting frame 9 presses the press switch, the electric motor 501 is automatically powered, it is concluded that through the ingenious mechanical linkage and circuit control design, convenient control of the start of the electric motor 501 is realized, the operator can start the electric motor 501 synchronously while adjusting the second adjusting knob 8 to control the water source or fertilizer conveying amount, opens the stirring function, so that the water source and the fertilizer start to mix during the conveying process, improves the work efficiency, and avoids the time difference and mistakes caused by manual separate operation.

[0050] In the embodiments of the present disclosure, referring to Figures 1 to 9 As shown in the figure, a water pump and a controller commonly used in the water and fertilizer integrated drip irrigation equipment need to be arranged, and the controller and the water pump and the electric motor 501 are electrically connected respectively.

[0051] The working principle of the embodiment is as follows:

[0052] The operator places the support frame 1 at a predetermined irrigation area, installs the water source conveying tank 2 and a set of fertilizer storage tanks 3 above the support frame 1, installs the positioning plate 101 at a corresponding position above the support frame 1, passes the bottom of the lifting frame 9 through the positioning hole of the positioning plate 101, and performs circumferential positioning of the lifting frame 9 by means of the positioning plate 101 and the positioning hole.

[0053] The operator installs the stabilizing plate 4 on one side of the water source conveying tank 2 and the fertilizer storage tank 3, installs the matched bolt in the bolt mounting hole at the bottom of the stabilizing plate 4, installs the butt joint block 401 in the rotating hole above the stabilizing plate 4, and realizes transverse positioning of the rotating block 401 during rotation of the connected components by means of the stepped groove in the middle of the butt joint block 401.

[0054] The operator realizes serial positioning of a set of rotating shafts 502 by means of the engagement of the rotating shafts 502 with the butt joint grooves on both sides of the butt joint block 401 through the clamping grooves on one side of the rotating shafts 502, and installs the stirring shaft 503 at the middle position of the water source conveying tank 2 and the fertilizer storage tank 3.

[0055] The operator installs the scraper 504 on the outside of the stirring shaft 503, matches the sliding hole in the middle of the scraper 504 with the positioning protrusion of the stirring shaft 503, and installs the supporting spring on the outside of the stirring shaft 503 installed in the fertilizer storage tank 3.

[0056] The operator installs the conveying pipe 6 above the water source conveying tank 2 and the fertilizer storage tank 3, installs the valve body 701 at the middle position of the branch of the conveying pipe 6, selects the ball valve structure in the prior art as the internal structure of the valve body 701, installs the second adjusting knob 8 on one side of the branch of the conveying pipe 6, and installs the valve body 701 on the outside of the drip irrigation pipe.

[0057] The operator installs the first adjusting knob 702 inside the valve body 701, installs the positioning rod 703 on both sides of the first adjusting knob 702, and installs the locking plate 704 on the outside of the positioning rod 703. The installation of the flow control structure 7 is completed by matching the sliding hole in the middle of the locking plate 704 with the positioning rod 703, engaging the locking plate 704 with the annular array of clamping grooves on the inside of the valve body 701 by means of the supporting spring, and the like.

[0058] The water pump is connected to one side of the conveying pipe 6 by referring to the water pump connection structure in the prior art, so as to ensure that the water pump can normally convey the water source to the water source conveying tank 2 and the fertilizer storage tank 3, and the controller and each electrical component of the equipment are connected.

[0059] The operator opens the water inlet of the water source conveying tank 2, pours a proper amount of clean water source into the water source conveying tank 2 through an external water source, and closes the water inlet after reaching a predetermined water level.

[0060] The operator opens the filling port of the fertilizer storage tank 3, slowly adds the required fertilizer into the fertilizer storage tank 3, and the positioning ring on the inside of the fertilizer storage tank 3 preliminarily positions the added fertilizer to prevent the fertilizer from directly impacting the filter screen 301. After the addition is completed, the appropriate amount of water source is injected into the fertilizer storage tank 3 through the conveying pipe 6 for melting the fertilizer;

[0061] The operator rotates the first adjusting knob 702 according to the demand of the water and fertilizer for the current growth stage of the crops, adjusts the opening of the valve body 701 through the flow control structure 7, and thereby controls the conveying flow of the water source and the fertilizer;

[0062] The operator rotates the second adjusting knob 8, the gear in the middle of the second adjusting knob 8 meshes with the meshing teeth on one side of the lifting frame 9, the lifting frame 9 moves upward, when the lifting frame 9 moves upward to the pressing switch on one side of the electric motor 501, the electric motor 501 is automatically powered on and starts, after the electric motor 501 starts, the driving shaft drives the bevel gear at the bottom to rotate, and through the transmission of the bevel gear, the stirring shaft 503 and the rotating shaft 502 are synchronously driven to rotate, when the stirring shaft 503 rotates, on one hand, the liquid in the water source conveying tank 2 and the fertilizer storage tank 3 is fully stirred to make the fertilizer and the water source uniformly mixed; on the other hand, the scraper 504 is synchronously driven to rotate, the scraper 504 cleans the filter screen 301 in real time to prevent the accumulation of fertilizer particles;

[0063] The operator opens the valve body 701 outside the drip irrigation pipeline, the mixed water and fertilizer is conveyed to the roots of the crops through the drip irrigation pipeline under the action of gravity and the water pump pressure, and precise irrigation and fertilization is realized.

[0064] In this paper, the following points need attention:

[0065] 1. The drawings of the embodiments of the present disclosure only relate to the structures involved in the embodiments of the present disclosure, and other structures can refer to the general design.

[0066] 2. In the case of no conflict, the embodiments of the present disclosure and the features in the embodiments can be combined to obtain new embodiments.

[0067] The above is only a specific embodiment of the present disclosure, but the protection scope of the present disclosure is not limited to this, any person skilled in the art can easily think of changes or replacements within the technical range disclosed by the present disclosure, which should be covered in the protection scope of the present disclosure. Therefore, the protection scope of the present disclosure should be subject to the protection scope of the claims.

Claims

1. A drip irrigation system integrating water and fertilizer, comprising: The system comprises a support frame (1), a water supply tank (2), and a valve body (701). A water supply tank (2) and a set of fertilizer storage tanks (3) are installed above the support frame (1). The system is characterized by a stabilizing plate (4) installed on one side of each of the water supply tank (2) and fertilizer storage tanks (3), a stirring shaft (503) installed in the middle of each of the water supply tank (2) and fertilizer storage tanks (3), a scraper (504) installed on the outer side of the stirring shaft (503), and a conveying pipe (6) installed above the water supply tank (2) and fertilizer storage tanks (3). (2) A drip irrigation pipe is provided at the bottom of the fertilizer storage tank (3). A valve body (701) is installed on the outside of the drip irrigation pipe. A set of branches is provided at the bottom of the delivery pipe (6). The branches are installed above the water delivery tank (2) and the fertilizer storage tank (3). The branches of the water delivery tank (2), the fertilizer storage tank (3) and the delivery pipe (6) are connected. A valve body (701) is provided in the middle of the branch of the delivery pipe (6). A second adjustment knob (8) is installed on the branch on one side of the delivery pipe (6). A lifting frame (9) is installed above the water delivery tank (2).

2. The integrated water and fertilizer drip irrigation equipment according to claim 1, characterized in that, A positioning plate (101) is provided at the upper position of the support frame (1), and a positioning hole is opened on one side of the positioning plate (101). The bottom position of the lifting frame (9) passes through the interior of the positioning hole.

3. The integrated water and fertilizer drip irrigation equipment according to claim 1, characterized in that, A set of meshing teeth is provided on one side of the lifting frame (9), and a gear is installed in the middle of the second adjustment knob (8). The gear and the meshing teeth mesh together. A push switch is installed on one side of the electric motor (501). The push switch is installed upside down on one side of the electric motor (501), and the push switch and the lifting frame (9) are aligned.

4. The integrated water and fertilizer drip irrigation equipment according to claim 1, characterized in that, A set of bolt mounting holes are provided at the bottom of the stabilizing plate (4), and a rotating hole is provided at the top of the stabilizing plate (4). A docking block (401) is installed inside the rotating hole, and a stepped groove is provided in the middle of the docking block (401). The stepped groove is a circular ring structure.

5. The integrated water and fertilizer drip irrigation equipment according to claim 4, characterized in that, A docking groove is opened on each side of the docking block (401). A set of arc grooves is provided on the inner side of the docking groove. A rotating shaft (502) is installed on one side of the docking block (401). A set of slots is opened on one side of the rotating shaft (502). The slots and the docking grooves mesh. A bevel gear is installed at the bottom of the drive shaft of the electric motor (501). A bevel gear is installed on one side of the rotating shaft (502). A bevel gear is installed above the stirring shaft (503). The bevel gears between the drive shaft, the rotating shaft (502), and the stirring shaft (503) mesh with each other.

6. The integrated water and fertilizer drip irrigation equipment according to claim 1, characterized in that, A positioning ring is provided on the inner side of the fertilizer storage tank (3), and a filter screen (301) is installed above the positioning ring. A rotating hole is opened in the middle of the filter screen (301). The stirring shaft (503) installed in the fertilizer storage tank (3) passes through the interior of the rotating hole. A positioning ring and a set of positioning protrusions are provided on the outer side of the stirring shaft (503). A sliding hole is opened in the middle of the scraper (504). The scraper (504) is installed on the positioning protrusion of the stirring shaft (503) in cooperation with the sliding hole. A support spring is installed on the outer side of the stirring shaft (503) installed in the fertilizer storage tank (3). The electric motor (501), the rotating shaft (502), the stirring shaft (503), and the scraper (504) cooperate with each other to form a stirring mechanism (5).

7. The integrated water and fertilizer drip irrigation equipment according to claim 1, characterized in that, A set of slots is opened on the inner side of the valve body (701), and the slots are distributed in a ring array. A first adjusting knob (702) is installed on the inner side of the valve body (701). A positioning rod (703) is provided on both sides of the first adjusting knob (702). A locking plate (704) is installed on the outer side of the positioning rod (703). A sliding hole is opened in the middle of the locking plate (704). The positioning rod (703) passes through the interior of the sliding hole and a support spring is installed on the outer side. The valve body (701), the first adjusting knob (702), the positioning rod (703), and the locking plate (704) cooperate with each other to form a flow control structure (7).