Main body seat of agricultural stirrer

By designing an agricultural mixer main body, turbulence is generated by using water pressure, which solves the problem of low mixing efficiency of pesticides and fertilizers, achieves uniform mixing of pesticides and fertilizers, reduces labor intensity, and adapts to harsh environments. It is suitable for spraying operations in farmland and fruit tree planting.

CN223474766UActive Publication Date: 2025-10-28TAIZHOU DONGGU MASCH CO LTD
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Patent Information

Application Number
CN202423028348.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-09
Publication Date
2025-10-28
Estimated Expiration
2034-12-09

AI Technical Summary

Technical Problem

In agricultural production, existing technologies make it difficult to efficiently mix pesticides and fertilizers, resulting in high labor intensity and the risk of poisoning.

Method used

An agricultural mixer body is designed. It uses water pressure to generate turbulence and achieves uniform mixing of pesticides and fertilizers through radial flow channels, partitions, and notch structures. It is made of nylon material to adapt to harsh environments, and the combined cover plate and bottom plate form a complete water flow channel.

Benefits of technology

It achieves uniform mixing of pesticides and fertilizers, reduces labor intensity, avoids the risk of poisoning, has a simple structure and low cost, and is suitable for spraying operations in farmland and fruit tree planting.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223474766U_ABST
Patent Text Reader

Abstract

A main body seat of an agricultural stirrer is in a straight tube shape and is provided with an upper edge and a lower edge, grid holes are formed in the circumferential wall of the main body seat, a water channel is formed in a built-in space of the main body seat, and the water channel comprises a water channel and all paths communicated with air; the stirrer main body seat is combined with a covering plate, an upper cover plate and a bottom plate to form the stirrer; in application, the stirrer is connected with a water suction pipe and a water outlet pipe of a pesticide sprayer, and the waterway is communicated with atmosphere; turbulent flow is generated under pressure conveying of water, pesticide or chemical fertilizer is promoted to be evenly mixed with the water, stirring of water, fertilizer and water pesticide is achieved, and the water and pesticide stirring device can be widely applied to water and pesticide stirring during spraying in farmland and fruit tree planting.
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Description

Technical Field

[0001] This utility model relates to the agricultural field, and in particular to a main body base for an agricultural mixer. Background Technology

[0002] In agricultural production, to ensure high crop yields and provide essential nutrients and control pests and diseases, fertilization and pesticide application are necessary during specific growth cycles. With advancements in sprinkler and drip irrigation technologies, integrated water and fertilizer management has been widely adopted in my country, leading to a corresponding increase in the workload of mixing pesticides and fertilizers. To ensure thorough mixing and dissolution of pesticides and fertilizers before spraying, a power-driven mixing method is needed. This not only reduces manual labor intensity but also avoids the risk of pesticide poisoning from prolonged exposure to pesticides. Summary of the Invention

[0003] This invention aims to solve the problem of water-fertilizer and water-pesticide mixing in the agricultural field. It proposes a mixer body base that uses water flow to drive the mixing, which is combined with a cover plate, an upper cover plate, and a bottom plate to form a mixer. In application, the mixer is connected to the water suction pipe and water discharge pipe of the sprayer, and the water path is open to the atmosphere. The turbulence generated by the water under pressure promotes the uniform mixing of pesticides or fertilizers with water, thus achieving water-fertilizer and water-pesticide mixing. This invention has a simple structure, small size, and low manufacturing cost, and can be widely used for water-pesticide mixing during spraying in farmland and fruit tree planting.

[0004] This utility model discloses an agricultural mixer body base, which is cylindrical in shape and has upper and lower edges. The circumferential wall of the body base has mesh holes 10, and the internal space of the body base has water channels. The main feature is that the center of the internal space of the body base has a radial flow channel 15, and the two ends of the radial flow channel 15 have partitions 16. The upper edge of the partition 16 has a notch 161 at the center position. The partitions 16 of the radial flow channel 15 extend radially to form a water channel confluence area 151, and the water channel confluence area 151 penetrates the transverse hole 11 of the circumferential wall. The two sides of the water channel confluence area 151 in the inner diameter of the body base form arc-shaped flow channels 17 in the internal space, and the arc-shaped flow channels 17 are connected to the path of the water channel confluence area 151. The inner wall of the radially opposite side of the arc-shaped flow channel 17 has a straight riser 120, and the inner hole of the straight riser 120 has an internal thread 12. The surface plane 181 around the water channel arrangement area of ​​the body base has a groove 2901 that cooperates with and positions the cover plate 2.

[0005] This utility model provides an embodiment of the main body base of an agricultural mixer.

[0006] The main body of this invention is made of plastic as raw material and is injection molded; nylon material is preferred; nylon material has corrosion resistance, high mechanical strength, and is suitable for use in harsh environments.

[0007] This utility model discloses an agricultural mixer body base, which, together with the cover plate 2, forms a complete water flow channel; together with the cover plate 2, the upper cover plate 3, and the bottom plate 4, it forms a complete mixer.

[0008] The main body of this utility model is precisely positioned by inserting the protruding rib 29 of the cover plate 2 into the groove 2901 of the main body during assembly. The main body and cover plate 2 are then fixed together with screws or welded together. The upper cover plate 3 is installed on the inner diameter of the upper opening of the main body. The first mating hole 31 of the upper cover plate 3 mates with the straight riser 120 of the main body, the second mating hole 32 of the upper cover plate 3 mates with the water inlet connector 230, and the third mating hole 33 of the upper cover plate 3 mates with the vent connector 220. The main body is fixed together with plastic welding or screws. The bottom plate 4 mates with the bottom section 19 of the main body and is fixed together with screws to the screw holes 191, thus completing the entire installation of the machine.

[0009] An agricultural mixer body is cylindrical in shape with upper and lower edges. The circumferential wall of the body has mesh holes 10, and the internal space of the body has water channels. The main feature is that a radial flow channel 15 is formed at the center of the internal space of the body, with partitions 16 at both ends of the radial flow channel 15. A notch 161 is formed at the center of the upper edge of the partition 16. A water channel confluence area 151 extends radially from the partitions 16 of the radial flow channel 15, penetrating a transverse hole 11 in the circumferential wall of the water channel confluence area 151. Arc-shaped flow channels 17 are formed within the internal space, starting from both sides of the water channel confluence area 151. The arc-shaped flow channels 17 are connected to the water channel confluence area 151. A straight vertical pipe 120 is formed on the radially opposite side of the inner wall of the arc-shaped flow channel 17. The inner hole of the straight vertical pipe 120 has an internal thread 12. A groove 2901 is formed on the surface plane 181 around the water channel arrangement area of ​​the body, which is positioned to cooperate with a cover plate 2.

[0010] In one embodiment, the transverse hole 11 of the main body is provided with an internal thread, which serves to connect with the water tap 5 during use.

[0011] The main body of this utility model is cylindrical with upper and lower edges. The circumferential wall of the main body has mesh holes 10, and the internal space of the main body has a water channel.

[0012] In one embodiment, the upper and lower edges refer to the technical dimensions that extend radially from the upper opening and bottom position, with a diameter greater than that of the middle part of the main body, in order to meet the installation dimensions of various accessories and ensure product strength.

[0013] The main body has a built-in space with a water channel, which includes all paths through which water and air pass.

[0014] The radial flow channel 15 is located at the center of the built-in space of the main body.

[0015] In one embodiment, the radial flow channel 15 has baffles 16 at both ends, and the baffles 16 have a notch 161 at the center of the upper edge.

[0016] Technicians can understand that the radial flow channel 15 is located in the center of the built-in space of the main body, which helps the equipment to achieve balanced force under the impact of water flow pressure during operation.

[0017] In one embodiment, the radial flow channel 15 serves as the first station for water to enter the equipment, and is separated from the outside by the baffle 16; then the flow is delivered to the outside through the notch 161; therefore, the radial flow channel 15, the baffle 16, and the notch 161 are the key components of this utility model. The radial flow channel 15 is used for water storage inside, the baffle 16 is used for water path separation, and the notch 161 changes the cross-sectional area of ​​the inlet flow.

[0018] Furthermore, the notch 161 in this invention reduces the cross-sectional area of ​​the water inlet flow while increasing the water pressure, causing the water to enter the bucket and generate greater turbulence, thus achieving a thorough mixing of the water-based medicine or water-based fertilizer.

[0019] The notch 161 described in this utility model does not specify the range of technical data. Those skilled in the art should clearly understand that the cross-sectional area of ​​the notch 161 is significantly smaller than the cross-sectional area of ​​the flow channel. The best solution should be obtained by comparing different technical data in practice.

[0020] In one embodiment, the baffle 16 of the radial flow channel 15 extends radially and has a water channel confluence area 151, which penetrates the transverse hole 11 of the circumferential wall.

[0021] In one form, arc-shaped flow channels 17 are created within the built-in space, with the confluence area 151 of the water channels inside the main body serving as the starting point on both sides.

[0022] In one configuration, the arc-shaped flow channel 17 is connected to the waterway confluence area 151.

[0023] In one form, the radially opposite inner wall of the arcuate flow channel 17 is provided with a straight riser 120, and the inner hole of the straight riser 120 is provided with an internal thread 12.

[0024] Furthermore, the straight riser 120 is located on the inner wall of the radially opposite side of the arc-shaped flow channel 17. The straight riser 120 extends from the upper surface of the main body to the bottom, exceeding the reverse bottom plane 182 of the water channel mating area. The circumferential wall at the bottom of the straight riser 120 is provided with an arc-shaped notch 121 for use as a water absorption space.

[0025] In one form, the surface plane 181 around the water channel arrangement area of ​​the main seat has a groove 2901 that is positioned to cooperate with the cover plate 2.

[0026] In one configuration, the cover plate 2 is combined with the main body to form a complete water flow channel.

[0027] The cover plate 2 is provided with a water inlet connection seat 230 and a vent connection seat 220, as well as water passage positions corresponding to the main body.

[0028] In one embodiment, the water inlet connector 230 is located on the upper surface of the cover plate 2, opposite to the water inlet chamber 28. The water inlet connector 230 has a water inlet through hole 23, and the end of the water inlet through hole 23 has an internal thread. The water inlet through hole 23 of the water inlet connector 230 is aligned with the water inlet chamber 28.

[0029] In one embodiment, the vent connector 220 is located on the upper surface of the cover plate 2, opposite to the arc-shaped waterway 27. The vent connector 220 has a vent hole 22 inside, and the opening end of the vent hole 22 has an internal thread.

[0030] In one embodiment, the cover plate 2 is provided with a water inlet chamber 28, and a water inlet connector 230 is formed by extending from the center of the water inlet chamber 28 to the bottom or in the opposite direction.

[0031] In one configuration, the water inlet chamber 28 is arranged in a position that matches the radial flow channel 15 of the main body.

[0032] In one embodiment, baffles 26 are provided at both ends of the water inlet chamber 28, and a transverse small hole 261 is provided at the center edge of the baffle 26. The baffle 26 cooperates with the partition 16.

[0033] In one form, the transverse small hole 261 and the notch 161 are closely matched, and the two together form a transverse hole, which acts on the path of the radial flow channel 15 or the water inlet 28 to transport water to the outside.

[0034] In one embodiment, the baffle 26 of the water inlet chamber 28 extends outward in a straight direction to form a water outlet 281, and the concave arc 24 on the outside of the water outlet 281 is seamlessly connected to the semi-arc 110 on the inside of the transverse hole 11 of the main body seat.

[0035] In one form, arc-shaped waterways 27 are formed on both sides of the water outlet 281 at corresponding positions to the arc-shaped flow channel 17 of the main body. The center position of the arc-shaped waterway 27 extends to the bottom or in the opposite direction to form a ventilated connecting seat 220.

[0036] Furthermore, the vent connector 220 has a vent hole 22 inside, and the opening end of the vent hole 22 has an internal thread.

[0037] In one embodiment, the outer straight wall of the cover plate 2 is provided with a concave arc notch 25, which is adjacent to and fitted with the straight riser 120 of the main body during installation.

[0038] In one embodiment, the water channel arrangement area of ​​the cover plate 2 is surrounded by raised ribs 29 that are positioned to cooperate with the grooves 2901 of the main body seat.

[0039] Furthermore, the ribs 29 of the cover plate 2 and the grooves 2901 of the main body can be interchanged.

[0040] In one embodiment, during assembly, the ribs 29 of the cover plate 2 are inserted into the grooves 2901 of the main body to achieve precise positioning. The screws are fixed to the screw holes 21 of the cover plate 2 through the screw holes 18 of the main body or by welding, thus completing the assembly.

[0041] Technicians should clearly understand that the cooperation between the rib 29 of the cover plate 2 and the groove 2901 of the main body seat only serves to position the product. There are many equivalent replacement methods in known technology to achieve accurate positioning, such as the shape limitation of the pin or the local shape. These replacement methods can achieve the same technical effect without the need for labor.

[0042] Furthermore, ignoring the fit between the rib 29 of the cover plate 2 and the groove 2901 of the main body, the product can still be used. Applying the rib 29 and the groove 2901 of the main body can achieve a higher technical precision in the fit, which is unrelated to the product's functional application.

[0043] After the entire machine is assembled, in application, the inner hole of the vertical riser 120 is connected to the water suction pipe A of the sprayer, the water inlet hole 23 is connected to the water outlet pipe B of the sprayer, and the vent hole 22 is connected to the air outlet hose C. When the agitator is placed in the pesticide tank and the sprayer is started, the water in the tank is drawn into the water suction pipe A of the sprayer through the water passage in the inner hole of the vertical riser 120. After being pressurized by the sprayer, it flows into the water inlet hole 23 through the water outlet pipe B and then into the radial flow channel 15. Under the obstruction of the partition 16, the water can only flow out from the notch 161 and the transverse small hole 261, which reduces the cross-sectional area of ​​the water flow channel and increases the pressure. When the water flows into the water channel confluence area 151, the vent hole 22 discharges air. Under its own weight, the water flows out from the water channel confluence area 151 through the water nozzle 5 matched with the transverse hole 11. The water flow generates turbulence under pressure, which promotes the uniform mixing of pesticide and water, thus achieving the purpose of this utility model. Attached Figure Description

[0044] Figure 1 This is a schematic diagram of the present invention.

[0045] Figure 2 This is a schematic diagram of the combination of this utility model and the cover plate.

[0046] Figure 3 This is a top-view diagram of the installation of this utility model.

[0047] Figure 4 This is a schematic diagram showing the relationship between the mounting plate and the cover plate of this utility model.

[0048] Figure 5 This is a top view of the present invention.

[0049] Figure 6 This is a schematic diagram showing the relationship between this utility model, the water outlet, and the cover plate.

[0050] Figure 7 This is a schematic diagram of the position distribution when viewed from below.

[0051] Figure 8 This is a schematic diagram of the cover plate.

[0052] Figure 9 This is a schematic diagram of the waterway distribution on the cover plate.

[0053] Figure 10 This is a schematic diagram of the ribs on the cover plate.

[0054] Figure 11 This is a schematic diagram of the groove of this utility model.

[0055] Figure 12 This is a schematic diagram showing the relationship between the cover plate and the top cover plate.

[0056] Figure 13 This is a schematic diagram of the top cover.

[0057] Figure 14 This is a schematic diagram of the equipment and the water outlet of the pipe. Detailed Implementation

[0058] This utility model discloses a main body base for an agricultural mixer, as shown in Figures 1-14. It is cylindrical with upper and lower edges, and the circumferential wall of the main body base has mesh holes 10. The main body base has an internal space containing water channels. The main feature is that a radial flow channel 15 is formed at the center of the internal space of the main body base, and partitions 16 are formed at both ends of the radial flow channel 15. A notch 161 is formed at the center of the upper edge of the partitions 16. The partitions 16 of the radial flow channel 15 extend radially to form a water channel confluence area 15. 1. A transverse hole 11 through the circumferential wall of the water confluence area 151; an arc-shaped flow channel 17 is made in the inner space of the main body base, with the two sides of the water confluence area 151 as the starting point, and the arc-shaped flow channel 17 is connected to the path of the water confluence area 151; a straight riser 120 is made on the inner wall of the radial opposite side of the arc-shaped flow channel 17, and an internal thread 12 is made in the inner hole of the straight riser 120; a groove 2901 is made on the surface plane 181 around the water channel arrangement area of ​​the main body base to cooperate with and position the cover plate 2.

[0059] This utility model provides an embodiment of the main body base of an agricultural mixer.

[0060] The main body of this invention is made of plastic as raw material and is injection molded; nylon material is preferred; nylon material has corrosion resistance, high mechanical strength, and is suitable for use in harsh environments.

[0061] This utility model discloses an agricultural mixer body base, which, together with the cover plate 2, forms a complete water flow channel; together with the cover plate 2, the upper cover plate 3, and the bottom plate 4, it forms a complete mixer.

[0062] The main body of this utility model is precisely positioned by inserting the protruding rib 29 of the cover plate 2 into the groove 2901 of the main body during assembly. The main body and cover plate 2 are then fixed together with screws or welded together. The upper cover plate 3 is installed on the inner diameter of the upper opening of the main body. The first mating hole 31 of the upper cover plate 3 mates with the straight riser 120 of the main body, the second mating hole 32 of the upper cover plate 3 mates with the water inlet connector 230, and the third mating hole 33 of the upper cover plate 3 mates with the vent connector 220. The main body is fixed together with plastic welding or screws. The bottom plate 4 mates with the bottom section 19 of the main body and is fixed together with screws to the screw holes 191, thus completing the entire installation of the machine.

[0063] An agricultural mixer body is cylindrical in shape with upper and lower edges. The circumferential wall of the body has mesh holes 10, and the internal space of the body has water channels. The main feature is that a radial flow channel 15 is formed at the center of the internal space of the body, with partitions 16 at both ends of the radial flow channel 15. A notch 161 is formed at the center of the upper edge of the partition 16. A water channel confluence area 151 extends radially from the partitions 16 of the radial flow channel 15, penetrating a transverse hole 11 in the circumferential wall of the water channel confluence area 151. Arc-shaped flow channels 17 are formed within the internal space, starting from both sides of the water channel confluence area 151. The arc-shaped flow channels 17 are connected to the water channel confluence area 151. A straight vertical pipe 120 is formed on the radially opposite side of the inner wall of the arc-shaped flow channel 17. The inner hole of the straight vertical pipe 120 has an internal thread 12. A groove 2901 is formed on the surface plane 181 around the water channel arrangement area of ​​the body, which is positioned to cooperate with a cover plate 2.

[0064] In one embodiment, the transverse hole 11 of the main body is provided with an internal thread, which serves to connect with the water tap 5 during use.

[0065] The main body of this utility model is cylindrical with upper and lower edges. The circumferential wall of the main body has mesh holes 10, and the internal space of the main body has a water channel.

[0066] In one embodiment, the upper and lower edges refer to the technical dimensions that extend radially from the upper opening and bottom position, with a diameter greater than that of the middle part of the main body, in order to meet the installation dimensions of various accessories and ensure product strength.

[0067] The main body has a built-in space with a water channel, which includes all paths through which water and air pass.

[0068] The radial flow channel 15 is located at the center of the built-in space of the main body.

[0069] In one embodiment, the radial flow channel 15 has baffles 16 at both ends, and the baffles 16 have a notch 161 at the center of the upper edge.

[0070] Technicians can understand that the radial flow channel 15 is located in the center of the built-in space of the main body, which helps the equipment to achieve balanced force under the impact of water flow pressure during operation.

[0071] In one embodiment, the radial flow channel 15 serves as the first station for water to enter the equipment, and is separated from the outside by the baffle 16; then the flow is delivered to the outside through the notch 161; therefore, the radial flow channel 15, the baffle 16, and the notch 161 are the key components of this utility model. The radial flow channel 15 is used for water storage inside, the baffle 16 is used for water path separation, and the notch 161 changes the cross-sectional area of ​​the inlet flow.

[0072] Furthermore, the notch 161 in this invention reduces the cross-sectional area of ​​the water inlet flow while increasing the water pressure, causing the water to enter the bucket and generate greater turbulence, thus achieving a thorough mixing of the water-based medicine or water-based fertilizer.

[0073] The notch 161 described in this utility model does not specify the range of technical data. Those skilled in the art should clearly understand that the cross-sectional area of ​​the notch 161 is significantly smaller than the cross-sectional area of ​​the flow channel. The best solution should be obtained by comparing different technical data in practice.

[0074] In one embodiment, the baffle 16 of the radial flow channel 15 extends radially and has a water channel confluence area 151, which penetrates the transverse hole 11 of the circumferential wall.

[0075] In one form, arc-shaped flow channels 17 are created within the built-in space, with the confluence area 151 of the water channels inside the main body serving as the starting point on both sides.

[0076] In one configuration, the arc-shaped flow channel 17 is connected to the waterway confluence area 151.

[0077] In one form, the radially opposite inner wall of the arcuate flow channel 17 is provided with a straight riser 120, and the inner hole of the straight riser 120 is provided with an internal thread 12.

[0078] Furthermore, the straight riser 120 is located on the inner wall of the radially opposite side of the arc-shaped flow channel 17. The straight riser 120 extends from the upper surface of the main body to the bottom, exceeding the reverse bottom plane 182 of the water channel mating area. The circumferential wall at the bottom of the straight riser 120 is provided with an arc-shaped notch 121 for use as a water absorption space.

[0079] In one form, the surface plane 181 around the water channel arrangement area of ​​the main seat has a groove 2901 that is positioned to cooperate with the cover plate 2.

[0080] In one configuration, the cover plate 2 is combined with the main body to form a complete water flow channel.

[0081] The cover plate 2 is provided with a water inlet connection seat 230 and a vent connection seat 220, as well as water passage positions corresponding to the main body.

[0082] In one embodiment, the water inlet connector 230 is located on the upper surface of the cover plate 2, opposite to the water inlet chamber 28. The water inlet connector 230 has a water inlet through hole 23, and the end of the water inlet through hole 23 has an internal thread. The water inlet through hole 23 of the water inlet connector 230 is aligned with the water inlet chamber 28.

[0083] In one embodiment, the vent connector 220 is located on the upper surface of the cover plate 2, opposite to the arc-shaped waterway 27. The vent connector 220 has a vent hole 22 inside, and the opening end of the vent hole 22 has an internal thread.

[0084] In one embodiment, the cover plate 2 is provided with a water inlet chamber 28, and a water inlet connector 230 is formed by extending from the center of the water inlet chamber 28 to the bottom or in the opposite direction.

[0085] In one configuration, the water inlet chamber 28 is arranged in a position that matches the radial flow channel 15 of the main body.

[0086] In one embodiment, baffles 26 are provided at both ends of the water inlet chamber 28, and a transverse small hole 261 is provided at the center edge of the baffle 26. The baffle 26 cooperates with the partition 16.

[0087] In one form, the transverse small hole 261 and the notch 161 are closely matched, and the two together form a transverse hole, which acts on the path of the radial flow channel 15 or the water inlet 28 to transport water to the outside.

[0088] In one embodiment, the baffle 26 of the water inlet chamber 28 extends outward in a straight direction to form a water outlet 281, and the concave arc 24 on the outside of the water outlet 281 is seamlessly connected to the semi-arc 110 on the inside of the transverse hole 11 of the main body seat.

[0089] In one form, arc-shaped waterways 27 are formed on both sides of the water outlet 281 at corresponding positions to the arc-shaped flow channel 17 of the main body. The center position of the arc-shaped waterway 27 extends to the bottom or in the opposite direction to form a ventilated connecting seat 220.

[0090] Furthermore, the vent connector 220 has a vent hole 22 inside, and the opening end of the vent hole 22 has an internal thread.

[0091] In one embodiment, the outer straight wall of the cover plate 2 is provided with a concave arc notch 25, which is adjacent to and fitted with the straight riser 120 of the main body during installation.

[0092] In one embodiment, the water channel arrangement area of ​​the cover plate 2 is surrounded by raised ribs 29 that are positioned to cooperate with the grooves 2901 of the main body seat.

[0093] Furthermore, the ribs 29 of the cover plate 2 and the grooves 2901 of the main body can be interchanged.

[0094] In one embodiment, during assembly, the ribs 29 of the cover plate 2 are inserted into the grooves 2901 of the main body to achieve precise positioning. The screws are fixed to the screw holes 21 of the cover plate 2 through the screw holes 18 of the main body or by welding, thus completing the assembly.

[0095] Technicians should clearly understand that the cooperation between the rib 29 of the cover plate 2 and the groove 2901 of the main body seat only serves to position the product. There are many equivalent replacement methods in known technology to achieve accurate positioning, such as the shape limitation of the pin or the local shape. These replacement methods can achieve the same technical effect without the need for labor.

[0096] Furthermore, ignoring the fit between the rib 29 of the cover plate 2 and the groove 2901 of the main body, the product can still be used. Applying the rib 29 and the groove 2901 of the main body can achieve a higher technical precision in the fit, which is unrelated to the product's functional application.

[0097] After the entire machine is assembled, in application, the inner hole of the vertical riser 120 is connected to the water suction pipe A of the sprayer, the water inlet hole 23 is connected to the water outlet pipe B of the sprayer, and the vent hole 22 is connected to the air outlet hose C. When the agitator is placed in the pesticide tank and the sprayer is started, the water in the tank is drawn into the water suction pipe A of the sprayer through the water passage in the inner hole of the vertical riser 120. After being pressurized by the sprayer, it flows into the water inlet hole 23 through the water outlet pipe B and then into the radial flow channel 15. Under the obstruction of the partition 16, the water can only flow out from the notch 161 and the transverse small hole 261, which reduces the cross-sectional area of ​​the water flow channel and increases the pressure. When the water flows into the water channel confluence area 151, the vent hole 22 discharges air. Under its own weight, the water flows out from the water channel confluence area 151 through the water nozzle 5 matched with the transverse hole 11. The water flow generates turbulence under pressure, which promotes the uniform mixing of pesticide and water, thus achieving the purpose of this utility model.

[0098] Those skilled in the art will understand that appropriate adjustments can be made to the disclosed configuration without departing from the present invention. Therefore, the examples described above are for illustrative purposes only and not for limiting purposes. Those skilled in the art will clearly recognize that minor modifications can be made to the configuration or installation process to achieve the same purpose without significantly altering the above operations. The present invention is limited by the claims.

Claims

1. A main body of an agricultural mixer, cylindrical in shape, with upper and lower edges, and a mesh hole (10) formed on the circumferential wall of the main body. The main body has an internal space containing a water channel, which includes all paths through which water and air pass; characterized in that... The main body has a radial flow channel (15) in the center of the internal space. The radial flow channel (15) has baffles (16) at both ends. The baffles (16) have a notch (161) at the center of the upper edge. The baffles (16) of the radial flow channel (15) extend radially to form a water channel confluence area (151). The water channel confluence area (151) passes through the transverse hole (11) of the circumferential wall. The two sides of the water channel confluence area (151) in the inner diameter of the main body form an arc-shaped flow channel (17) in the internal space, and the arc-shaped flow channel (17) and the water channel confluence area (151) are connected. The inner wall of the arc-shaped flow channel (17) has a straight riser (120) on the radially opposite side. The straight riser (120) has an internal thread (12) in its inner hole.

2. The main body of an agricultural mixer as described in claim 1, characterized in that... The main body, cover plate (2), upper cover plate (3), and bottom plate (4) together form a complete mixer.

3. The main body of an agricultural mixer as described in claim 1, characterized in that... The transverse hole (11) of the main body is threaded with internal threads, which act as a connection to the water tap (5) when the product is in use.

4. The main body of an agricultural mixer as described in claim 1, characterized in that... The radial flow channel (15) is located at the center of the built-in space of the main body.

5. The main body of an agricultural mixer as described in claim 1, characterized in that... The straight riser (120) is located on the inner wall of the radial opposite side of the arc flow channel (17). The straight riser (120) extends from the upper surface of the main body seat to the bottom, exceeding the reverse bottom plane (182) of the water channel mating area.

6. The main body of an agricultural mixer as described in claim 1, characterized in that... The surface plane (181) around the water channel arrangement area of ​​the main body is provided with a groove (2901) that is positioned to cooperate with the cover plate (2).