Irrigation device facilitating mixing

By introducing a mixing mechanism and water mixing technology into the irrigation device, the problem of uneven fertilizer mixing was solved, achieving uniform fertilizer distribution and efficient irrigation, thereby improving crop yield and quality.

CN224098234UActive Publication Date: 2026-04-10NORTHEASTERN UNIV AT QINHUANGDAO
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-07
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

Existing irrigation systems often result in uneven fertilizer mixing during the application of fertilizers, leading to localized issues of excessively high or low concentrations, which negatively impacts crop absorption efficiency and resource utilization.

Method used

The system employs a mixing mechanism, including components such as a mixing chamber, inlet, motor, inner rotating rod, circular arc gear, bevel gear, stirring rod, and stirring blades. Through mechanical stirring and water flow mixing, it ensures that the fertilizer is fully mixed in the irrigation pipe, and uses a filter screen to block incompletely mixed fertilizer.

Benefits of technology

It achieves uniform mixing of fertilizers, improves crop absorption efficiency, reduces resource waste and environmental pollution, and enhances the adaptability and applicability of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an irrigation device convenient for mixing, which relates to the technical field of intelligent agriculture and comprises an irrigation pipe, a mixing mechanism is arranged on the surface of the irrigation pipe, and a material conveying mechanism is arranged on the surface of the mixing mechanism. The material storage box is connected with the mixing mechanism through the second fixing plate, fertilizer is stored in the material storage box, and when the fertilizer needs to be supplemented to the mixing mechanism, the second motor drives the rotating shaft in the protective shell to rotate, so that the conveying belt extends to one end of the material storage box to convey the fertilizer to the feeding pipe, and the fertilizer is conveyed to the mixing mechanism through the conveying belt. A baffle in the material storage box can prevent the fertilizer from entering the structure through a gap to cause the blockage of the conveying belt, bosses are also uniformly arranged on the surface of the conveying belt, so that the fertilizer cannot fall back into the material storage box in the climbing process, and a cover plate is opened to maintain a motor II; and common tools can be stored in the storage groove, so that the adaptability of the device is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of wisdom agriculture, specifically relates to a kind of irrigation device of facilitating mixing. BACKGROUND

[0002] In modern agricultural irrigation and horticultural landscape maintenance operation, different substances such as fertilizer, pesticide and soil conditioner often need to be fully mixed with irrigation water in a specific ratio, and then delivered to the roots of crops. Only uniform mixing can ensure that crops accurately and efficiently absorb various nutrients, thereby improving yield and quality, while reducing resource waste and environmental pollution.

[0003] Patent publication number CN222302614U discloses an irrigation device, which includes a water filter tank, a water inlet pipe and a drain pipe are fixed and connected on both sides of the water filter tank, a clamping groove is formed in the inner wall of both sides of the water filter tank, a rectangular frame is slidably connected in the clamping groove, a filter screen is fixed in the rectangular frame, and a travel groove is formed on both sides of the rectangular frame, an installation rack is slidably connected in the travel groove, a plurality of cutters are fixed at equal intervals in the installation rack, and the cutters and the filter screen are attached.

[0004] To solve the problem of not being convenient to clean the filter screen, the prior art uses the method of pressing the connecting plate to drive the cylindrical rod, the installation rack and the cutter to move down when there are many impurities adhering to the filter screen that need to be cleaned, so that the cutter cuts off the impurities adhering to the surface of the filter screen, and then the filter screen is washed, so that the impurities adhering to the filter screen are removed. However, the fertilizer may not be mixed uniformly, which may cause the problem of local over-concentration or under-concentration. UTILITY MODEL CONTENTS

[0005] The utility model aims to provide an irrigation device for facilitating mixing to solve the problems raised in the background art.

[0006] To solve the above technical problems, the utility model adopts the following technical scheme:

[0007] An irrigation device for facilitating mixing, comprising an irrigation pipe, a mixing mechanism is provided on the surface of the irrigation pipe, and a material conveying mechanism is provided on the surface of the mixing mechanism.

[0008] The mixing mechanism comprises a mixing bin, a filter screen fixedly installed at one end of the mixing bin, a fixed plate I fixedly installed on the surface of the mixing bin, a water tank fixedly installed on the surface of the fixed plate I, a water pump fixedly installed on the surface of the water tank, an input end of the water pump extending into the water tank, a connecting pipe fixedly installed on the output end of the water pump, a water delivery pipe fixedly installed at one end of the connecting pipe, a plurality of drain pipes fixedly installed on the surface of the water delivery pipe, and the drain pipes being uniformly distributed on the surface of the water delivery pipe and extending into the mixing bin.

[0009] The further improvement of the utility model technical scheme lies in that: the surface of the mixing bin is fixedly installed with a feeding inlet, the top end of the mixing bin is fixedly installed with a motor I, and the output end of the motor I is fixedly installed with an inner rotating rod.

[0010] The further improvement of the utility model technical scheme lies in that: the inner rotating rod is movably installed and extends into the mixing bin, the surface of the inner rotating rod is fixedly installed with a circular-arc gear I, the surface of the inner rotating rod is uniformly distributed and fixedly installed with stirring rods, and the surface of the stirring rods is uniformly distributed and fixedly installed with stirring blades I.

[0011] The further improvement of the utility model technical scheme lies in that: the inside of the mixing bin is fixedly installed with a shell, a bevel gear is movably installed in the inside of the shell, the bevel gear is engaged with the surface of the circular-arc gear I, the surface of the bevel gear is engaged with a circular-arc gear II, the surface of the circular-arc gear II is fixedly installed with an outer rotating rod, and the outer rotating rod is movably installed on the surface of the shell.

[0012] The further improvement of the utility model technical scheme lies in that: the surface of the outer rotating rod is fixedly installed with stirring blades II, the stirring blades II are provided in multiple groups, the stirring blades II are uniformly distributed on the surface of the outer rotating rod, the stirring blades II are matched with the stirring blades I, and the surface of the outer rotating rod is fixedly installed with mixing leaves.

[0013] The further improvement of the utility model technical scheme lies in that: the feeding mechanism comprises a fixed plate II, the fixed plate II is fixedly installed on the surface of the mixing bin, the surface of the fixed plate II is fixedly installed with a storage tank, the inside of the storage tank is fixedly installed with a baffle, and the surface of the storage tank is movably installed with a cover plate.

[0014] The further improvement of the utility model technical scheme lies in that: the inside of the storage tank is provided with a storage groove, the inside of the storage groove is fixedly installed with a motor II, the output end of the motor II is fixedly installed with a rotating shaft, the surface of the rotating shaft is movably installed with a protective shell, the surface of the rotating shaft is movably connected with a conveying belt, one end of the protective shell is fixedly installed with a feeding pipe, and the feeding pipe is fixedly installed on the surface of the feeding inlet.

[0015] Due to the adoption of the above technical scheme, the present application has the following technical progress compared with the prior art:

[0016] 1. The irrigation device provided by the present application is convenient to mix, and is composed of a mixing bin, a feeding port, a motor one, a shell, an inner rotating rod, a circular arc gear one, a bevel gear, a circular arc gear two, a stirring rod, a stirring blade one, a stirring blade two, a mixing blade, a water delivery pipe, a drain pipe, a filter screen, a fixed plate one, a water tank, a water pump, a connecting pipe and an outer rotating rod. Fertilizer is delivered into the mixing bin through a feeding mechanism, the inner rotating rod is driven to rotate by the motor one, the stirring rod on the surface of the inner rotating rod is rotated, and the stirring blade one is driven to rotate along with the stirring rod to stir the fertilizer inside the mixing bin. At this time, the circular arc gear one is driven to rotate by the bevel gear inside the shell, the circular arc gear two on the surface of the circular arc gear one is driven to rotate to drive the stirring blade two on the surface of the outer rotating rod to rotate along with the stirring blade one to stir the material inside the mixing bin in the opposite direction. The connecting holes on the surface of the outer rotating rod can make the fertilizer move in disorder to achieve the effect of full mixing. The mixing blade at the bottom end of the outer rotating rod can also stir the fertilizer and water mixed more completely at the lower end to keep the consistency of the fertilizer and water as much as possible. Meanwhile, the fixed plate one fixes the water tank, the water tank is connected to an external water pipe, the water pump draws the water flow inside the water tank through the connecting pipe and injects it into the water delivery pipe, and then injects it into the mixing bin through multiple drain pipes. The part of the drain pipe inside the mixing bin is arranged upward at an angle of 45 degrees to make the water flow sprayed to further mix the fertilizer inside the mixing bin. The filter screen at the bottom end of the mixing bin can block the fertilizer that is not mixed completely. When irrigation of farmland is needed, the fertilizer mixed inside the mixing bin is discharged through the irrigation pipe, thereby improving the adaptability of the device.

[0017] 2. The irrigation device provided by the present application is convenient to mix, and is composed of a feeding pipe, a protective shell, a conveying belt, a storage tank, a cover plate, a baffle, a rotating shaft, a fixed plate two, a motor two and a storage groove. The storage tank is connected with the mixing mechanism through the fixed plate two, and the fertilizer is stored in the storage tank. When the mixing mechanism needs to be supplemented with fertilizer, the rotating shaft inside the protective shell is driven to rotate by the motor two, the conveying belt is extended to one end of the storage tank to transport the fertilizer to the feeding pipe, and then the fertilizer is mixed in the mixing bin through the feeding port. The baffle inside the storage tank can prevent the fertilizer from entering the structure through the gap to cause the conveying belt to be stuck. The surface of the conveying belt is uniformly provided with bosses, so that the fertilizer will not fall back into the storage tank during the climbing process. The cover plate can be opened to maintain the motor two and store common tools in the storage groove, thereby improving the adaptability of the device. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 It is a three-dimensional structure schematic view of the present application;

[0019] Figure 2 It is a structure schematic view of the shaft view of the present application;

[0020] Figure 3 It is a structure schematic view of the mixing mechanism of the utility model;

[0021] Figure 4 It is a structure schematic view of the material conveying mechanism of the utility model;

[0022] Figure 5 It is a structure schematic view of the storage groove of the utility model.

[0023] In the drawing: 1, irrigation pipe; 2, mixing mechanism; 201, mixing bin; 202, inlet; 203, motor one; 204, shell; 205, inner rotating rod; 206, circular arc gear one; 207, bevel gear; 208, circular arc gear two; 209, stirring rod; 210, stirring blade one; 211, stirring blade two; 212, mixing blade; 213, water conveying pipe; 214, drain pipe; 215, filter screen; 216, fixed plate one; 217, water tank; 218, water pump; 219, connecting pipe; 220, outer rotating rod; 3, material conveying mechanism; 301, inlet pipe; 302, protective shell; 303, conveying belt; 304, storage tank; 305, cover plate; 306, baffle; 307, rotating shaft; 308, fixed plate two; 309, motor two; 310, storage groove. DETAILED DESCRIPTION

[0024] The utility model will be further explained in detail in combination with examples:

[0025] Example 1

[0026] As Figures 1-5The utility model provides a kind of irrigation device convenient to mix, including irrigation pipe 1, valve is arranged on the surface of irrigation pipe 1, the surface of irrigation pipe 1 is provided with mixing mechanism 2, the surface of mixing mechanism 2 is provided with material conveying mechanism 3, and mixing mechanism 2 includes mixing bin 201, and mixing bin 201 is fixedly installed on the surface of irrigation pipe 1, and the one end of mixing bin 201 is fixedly installed with filter screen 215, and the surface of mixing bin 201 is fixedly installed with fixed plate one 216, and the surface of fixed plate one 216 is fixedly installed with water tank 217, and the surface of water tank 217 is fixedly installed with water pump 218, and the input end of water pump 218 extends to the inside of water tank 217, and the output end of water pump 218 is fixedly installed with connecting pipe 219, and one end of connecting pipe 219 is fixedly installed with water delivery pipe 213, and the surface of water delivery pipe 213 is fixedly installed with drain pipe 214, and drain pipe 214 is provided with multiple groups, and drain pipe 214 is evenly distributed on the surface of water delivery pipe 213, and one end of drain pipe 214 extends to the inside of mixing bin 201, and the surface of mixing bin 201 is fixedly installed with inlet 202, and the top of mixing bin 201 is fixedly installed with motor one 203, and the output end of motor one 203 is fixedly installed with inner rotary rod 205, and inner rotary rod 205 is movably installed and extends to the inside of mixing bin 201, and the surface of inner rotary rod 205 is fixedly installed with arc gear one 206, and the surface of inner rotary rod 205 is evenly distributed and fixedly installed with stirring rod 209, and the surface of stirring rod 209 is evenly distributed and fixedly installed with stirring blade one 210, and the inside of mixing bin 201 is fixedly installed with shell 204, and the inside of shell 204 is movably installed with bevel gear 207, and bevel gear 207 is engaged on the surface of arc gear one 206, and the surface of bevel gear 207 is engaged with arc gear two 208, and the surface of arc gear two 208 is fixedly installed with outer rotary rod 220, and outer rotary rod 220 is movably installed on the surface of shell 204, and the surface of outer rotary rod 220 is fixedly installed with stirring blade two 211, and stirring blade two 211 is provided with multiple groups, and stirring blade two 211 is evenly distributed on the surface of outer rotary rod 220, and stirring blade two 211 is adapted with stirring blade one 210, and the surface of outer rotary rod 220 is fixedly installed with mixing blade 212.

[0027] In the embodiment, the fertilizer is transported into the mixing bin 201 by the feeding mechanism 3, the inner rotating rod 205 is driven to rotate by the motor 203, the stirring rod 209 on the surface of the inner rotating rod 205 is rotated, and the stirring blade 210 is followed to stir the fertilizer in the mixing bin 201, at the same time, the arc gear 206 is driven to rotate by the bevel gear 207 in the shell 204, the arc gear 208 meshing with the surface of the arc gear 206 is rotated to drive the stirring blade 211 on the surface of the outer rotating rod 220 to follow the stirring blade 210 to stir the material in the mixing bin 201 in the opposite direction, the connecting holes on the surface can make the fertilizer move disorderly to achieve the effect of full mixing, the mixing blade 212 at the bottom end of the outer rotating rod 220 can also stir the fertilizer and water mixed more completely at the lower end, so that the consistency of the fertilizer and water concentration is maintained as much as possible, the water tank 217 is fixed by the fixed plate 216, the water tank 217 is connected with an external water pipe, the water pump 218 draws the water flow in the water tank 217 to be injected into the water feeding pipe 213 through the connecting pipe 219, and is injected into the mixing bin 201 through the plurality of drainage pipes 214, the part of the drainage pipe 214 located in the mixing bin 201 is arranged upward at an angle of 45 degrees, so that the sprayed water flow pushes the fertilizer in the mixing bin 201 to be further mixed, and the filter screen 215 at the bottom end of the mixing bin 201 can block the fertilizer that is not completely mixed, when it is needed to irrigate the farmland, the water valve (not shown in the figure) on the surface of the irrigation pipe 1 is opened, the fertilizer mixed in the mixing bin 201 is discharged by the irrigation pipe 1, and the adaptability of the device is improved.

[0028] Embodiment 2

[0029] As Figures 1-5 shown, on the basis of embodiment 1, the utility model provides a technical scheme: preferably, the feeding mechanism 3 includes the fixed plate two 308, the fixed plate two 308 fixed mounting is arranged on the surface of mixing bin 201, the fixed plate two 308's surface fixed mounting has the storage tank 304, the storage tank 304's inside fixed mounting has the baffle 306, the storage tank 304's surface swing mounting has the cover plate 305, the storage tank 304 inside is provided with the storage groove 310, the storage groove 310's inside fixed mounting has the motor two 309, the motor two 309's output fixed mounting has the pivot 307, the pivot 307's surface swing mounting has the protection shell 302, the pivot 307's surface swing connection has the conveyer belt 303, the protection shell 302 one end fixed mounting has the inlet pipe 301, the inlet pipe 301 fixed mounting is arranged on the surface of inlet 202.

[0030] In this embodiment, the storage tank 304 is connected with the mixing mechanism 2 through the fixed plate two 308, and the fertilizer is stored in the storage tank 304. When the mixing mechanism 2 needs to be supplemented with fertilizer, the rotating shaft 307 inside the protective shell 302 is driven by the motor two 309 to rotate, so that the conveying belt 303 extends to one end of the storage tank 304 to transport the fertilizer to the inlet pipe 301, and then enters the mixing bin 201 through the inlet 202 for mixing. The baffle 306 inside the storage tank 304 can prevent the fertilizer from entering the structure through the gap, causing the conveying belt 303 to be stuck. The surface of the conveying belt 303 is uniformly provided with bosses, so that the fertilizer will not fall back into the storage tank 304 during the climbing process. By opening the cover plate 305, the motor two 309 can be maintained, and common tools can be stored in the storage groove 310, improving the adaptability of the device.

[0031] The working principle of the device will be described below.

[0032] As Figures 1-5As shown, the storage tank 304 is connected with the mixing mechanism 2 through the fixed plate two 308, and the fertilizer is stored in the storage tank 304. When the mixing mechanism 2 needs to be supplemented with fertilizer, the rotating shaft 307 in the protective shell 302 is driven by the motor two 309 to rotate, so that the conveying belt 303 extends to one end of the storage tank 304 to transport the fertilizer to the inlet pipe 301, and then enters the mixing bin 201 through the inlet 202 for mixing. The baffle 306 in the storage tank 304 can prevent the fertilizer from entering the structure through the gap, causing the conveying belt 303 to be stuck. The surface of the conveying belt 303 is uniformly provided with bosses, so that the fertilizer will not fall back into the storage tank 304 during the climbing process. By opening the cover plate 305, the motor two 309 can be maintained, and common tools can be stored in the storage groove 310. The fertilizer is conveyed into the mixing bin 201 by the feeding mechanism 3. The inner rotating rod 205 is driven by the motor one 203 to rotate, so that the stirring rod 209 on the surface of the inner rotating rod 205 rotates, and the stirring blade one 210 follows the stirring rod 209 to stir the fertilizer in the mixing bin 201. At this time, the arc gear one 206 substitutes the bevel gear 207 in the shell 204 to rotate, so that the arc gear two 208 meshing on the surface thereof rotates to drive the stirring blade two 211 on the surface of the outer rotating rod 220 to follow the stirring blade one 210 to jointly stir the material in the mixing bin 201 in the opposite direction. The communication hole on the surface thereof can make the fertilizer move disorderly to achieve the effect of full mixing. The mixing blade 212 at the bottom end of the outer rotating rod 220 can also stir the fertilizer and water at the lower end to be mixed more completely, so as to maintain the consistency of the fertilizer and water as much as possible. The water tank 217 is fixed by the fixed plate one 216. The water tank 217 is connected with an external water pipe. The water pump 218 extracts the water flow in the water tank 217 and injects it into the water conveying pipe 213 through the connecting pipe 219, and then injects it into the mixing bin 201 through the plurality of drainage pipes 214. The part of the drainage pipe 214 located in the mixing bin 201 is arranged at an angle of 45 degrees upward, so that the sprayed water flow pushes the fertilizer in the mixing bin 201 to be further mixed. The filter screen 215 at the bottom end of the mixing bin 201 can block the fertilizer that is not completely mixed. When irrigation is needed, the water valve on the surface of the irrigation pipe 1 is opened, and the mixed fertilizer in the mixing bin 201 is discharged from the irrigation pipe 1, thereby improving the adaptability of the device.

[0033] The above is a detailed description of the general application, but some modifications or improvements can be made on the basis of the application, which is obvious to those skilled in the art. Therefore, without departing from the spirit of the application, the modifications or improvements are within the scope of the application.

Claims

1. A device for the mixed application of irrigation, comprising an irrigation pipe (1), characterized in that: The surface of the irrigation pipe (1) is provided with a mixing mechanism (2), and the surface of the mixing mechanism (2) is provided with a material conveying mechanism (3); The mixing mechanism (2) comprises a mixing bin (201) fixedly installed on the surface of the irrigation pipe (1), one end of the mixing bin (201) is fixedly installed with a filter screen (215), the surface of the mixing bin (201) is fixedly installed with a fixed plate (216), the surface of the fixed plate (216) is fixedly installed with a water tank (217), the surface of the water tank (217) is fixedly installed with a water pump (218), the input end of the water pump (218) extends to the inside of the water tank (217), the output end of the water pump (218) is fixedly installed with a connecting pipe (219), one end of the connecting pipe (219) is fixedly installed with a water conveying pipe (213), the surface of the water conveying pipe (213) is fixedly installed with a drain pipe (214), the drain pipe (214) is provided in multiple groups, the drain pipes (214) are uniformly distributed on the surface of the water conveying pipe (213), and one end of the drain pipe (214) extends to the inside of the mixing bin (201).

2. A pour-on device for facilitating mixing as claimed in claim 1, wherein: The surface of the mixing bin (201) is fixedly installed with a material inlet (202), and the top end of the mixing bin (201) is fixedly installed with a motor (203).

3. A pour-on device for facilitating mixing as claimed in claim 2, wherein: The inner rotating rod (205) is movably installed and extends to the inside of the mixing bin (201), the surface of the inner rotating rod (205) is fixedly installed with a circular arc gear (206), the surface of the inner rotating rod (205) is uniformly distributed and fixedly installed with stirring rods (209), and the surface of the stirring rods (209) is uniformly distributed and fixedly installed with stirring blades (210).

4. The pour-on device of claim 1, wherein: The inside of the mixing bin (201) is fixedly installed with a shell (204), the inside of the shell (204) is movably installed with a bevel gear (207), the bevel gear (207) is meshed with the surface of the circular arc gear (206), the surface of the bevel gear (207) is meshed with a circular arc gear (208), the surface of the circular arc gear (208) is fixedly installed with an outer rotating rod (220), and the outer rotating rod (220) is movably installed on the surface of the shell (204).

5. A pour-on device for facilitating mixing as claimed in claim 4, wherein: The surface of the outer rotating rod (220) is fixedly installed with stirring blades (211), the stirring blades (211) are provided in multiple groups, the stirring blades (211) are uniformly distributed on the surface of the outer rotating rod (220), the stirring blades (211) are matched with the stirring blades (210), and the surface of the outer rotating rod (220) is fixedly installed with mixing leaves (212).

6. The pour-on device of claim 1, wherein: The material conveying mechanism (3) comprises a fixed plate (308) fixedly installed on the surface of the mixing bin (201), the surface of the fixed plate (308) is fixedly installed with a material storage box (304), the inside of the material storage box (304) is fixedly installed with a baffle (306), and the surface of the material storage box (304) is movably installed with a cover plate (305).

7. A pour-on device for facilitating mixing as claimed in claim 6, wherein: The inside of the storage tank (304) is provided with a storage groove (310), the inside of the storage groove (310) is fixedly installed with a motor two (309), the output end of the motor two (309) is fixedly installed with a rotating shaft (307), the surface of the rotating shaft (307) is movably installed with a protective shell (302), the surface of the rotating shaft (307) is movably connected with a conveying belt (303), one end of the protective shell (302) is fixedly installed with a feeding pipe (301), and the feeding pipe (301) is fixedly installed on the surface of the feeding port (202).

Citation Information

Patent Citations

  • Irrigation device

    CN222302614U