Kiwi fruit water-saving irrigation nozzle

By designing a flexible adjustment of kiwi water-saving irrigation sprinkler, the problem of fixed spraying angle of the sprinkler is solved, and efficient utilization of water resources according to the tree growth stage is achieved, improving water saving and practicality.

CN223168859UActive Publication Date: 2025-08-01CHAYU COUNTY XINGNONG KIWI FRUIT CO LTD
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Patent Information

Application Number
CN202422941236.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-30
Publication Date
2025-08-01
Estimated Expiration
2034-11-30

AI Technical Summary

Technical Problem

The existing kiwi sprinkler nozzles have fixed spray angles and cannot be flexibly adjusted according to the tree growth stage, resulting in waste of water resources.

Method used

A kiwi fruit water-saving irrigation sprinkler was designed to achieve flexible adjustment of the nozzle angle by adjusting the components, and adjusting the spray area and water volume according to the tree growth stage, including the combination of structures such as bottom plate, vertical plate, round rod, and adjustment components to ensure efficient use of the nozzle at different growth stages.

Benefits of technology

It effectively avoids waste of water resources, improves the efficiency of water resources utilization, enhances the water-saving and practicality of the sprinkler, and adapts to the irrigation needs of kiwi trees at different growth stages.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a water-saving irrigation sprayer for kiwi fruits, and belongs to the technical field of water-saving irrigation sprayers. Comprising a bottom plate and a spray head body, two symmetrically-distributed vertical plates are installed on the upper surface of the bottom plate, an adjusting assembly is installed in the middle of the side face of one vertical plate, two round rods are installed at the two ends of the spray head body and rotationally connected with the vertical plates, and one round rod is fixedly connected with the adjusting assembly. Through the arrangement of the adjusting assembly, the angle of the spray head body can be conveniently adjusted, so that the spraying irrigation amount can be conveniently controlled according to the growth stage of trees, and the utilization efficiency of water resources is improved; water resource waste (for example, when kiwifruits are small trees, the irrigation area is increased, and the water consumption per unit area is reduced) is effectively avoided, the water-saving property of the spray head is improved, the practicability is improved, the position of the push plate can be kept unchanged through matched use of the T-shaped block and the T-shaped groove, and the pushing effect on the gear is guaranteed.
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Description

Technical Field

[0001] The utility model relates to the technical field of water-saving irrigation nozzles, and particularly relates to a water-saving irrigation nozzle for kiwifruit trees. Background Art

[0002] The sizes of kiwifruit trees in different kiwifruit orchards are different (for example, some are adult trees and some are small trees). The spraying angles of existing nozzles are fixed and cannot be flexibly adjusted according to the growth stage of the trees (for example, small trees require less water. When the water inlet volume remains unchanged, the spraying area can be increased, and the water volume sprayed per unit area can be reduced to save water. When the nozzle is horizontal, the spraying distance is the farthest and the area is the largest). This is likely to cause waste of water resources, and the water-saving performance needs to be improved. Therefore, a technical measure is proposed to solve the problems that the spraying angle of the existing nozzle is fixed, cannot be flexibly adjusted according to the growth stage of the trees, is likely to cause waste of water resources, and the water-saving performance needs to be improved. Content of the Utility Model

[0003] The technical problem to be solved by the utility model is to provide a water-saving irrigation nozzle for kiwifruit trees to solve the problems that the spraying angle of the existing nozzle is fixed, cannot be flexibly adjusted according to the growth stage of the trees, is likely to cause waste of water resources, and the water-saving performance needs to be improved.

[0004] To solve the above technical problems, the utility model provides the following technical solutions:

[0005] A water-saving irrigation nozzle for kiwifruit trees includes a bottom plate and a nozzle body. Two groups of symmetrically distributed vertical plates are installed on the upper surface of the bottom plate. An adjusting component is installed at the middle position of the side surface of one group of vertical plates. Two round rods are installed at both ends of the nozzle body. The two round rods are rotatably connected to the vertical plates. One round rod is fixedly connected to the adjusting component. Thanks to the setting of the adjusting component, it is convenient to adjust the angle of the nozzle body, so as to conveniently control the amount of sprinkling irrigation according to the growth stage of the trees, improve the utilization efficiency of water resources, effectively avoid waste of water resources (for example, when the kiwifruit tree is a small tree, the irrigation area is increased, the water consumption per unit area is reduced, and the water consumption is reduced), improve the water-saving performance of the nozzle, improve the practicability, and the cooperation of the T-shaped block and the T-shaped groove can keep the position of the push plate unchanged, ensuring the pushing effect on the gear.

[0006] Optionally, a top plate is installed at the upper ends of the two groups of vertical plates, and the top plate is arc-shaped.

[0007] Optionally, a connecting pipe is installed through the middle of the bottom plate.

[0008] Optionally, the upper end of the connecting pipe is connected with a telescopic pipe, and the telescopic pipe is fixedly connected to the nozzle body.

[0009] Optionally, a hose is connected to the lower end of the connecting pipe, and a connector pipe is connected to the lower end of the hose. The connector pipe is connected to the water supply pipe.

[0010] Optionally, a plurality of groups of uniformly distributed insertion rods are installed at both ends of the lower part of the bottom plate, and the tips of the insertion rods are provided.

[0011] Optionally, the adjusting assembly includes a box body, an arc plate is installed at the upper end of the box body, and a plurality of groups of symmetrically distributed bolts are threaded through the arc plate. The box body is fixedly connected to the side surface of the vertical plate through the arc plate and the bolts.

[0012] Optionally, a screw pipe is installed at the lower end of the side surface of the box body, and a T-shaped block is installed at the lower end inside the box body.

[0013] Optionally, the screw pipe is threadedly connected to a screw rod, a rotating rod is installed at one end of the screw rod, a push plate is rotatably connected to the end of the screw rod away from the rotating rod, a T-shaped groove is formed on the lower surface of the push plate, and the T-shaped groove is slidably matched with the T-shaped block.

[0014] Optionally, a plurality of teeth are provided on the upper surface of the push plate, the teeth are engaged with a gear, a connecting rod is installed on the side surface of the gear, and the connecting rod is fixedly connected to the round rod.

[0015] Compared with the prior art, the present utility model has at least the following beneficial effects:

[0016] In the above solution, through the arrangement of the insertion rods, it is convenient to drive the nozzle to insert into the ground and fix the nozzle. Press down the top plate to drive the insertion rods to insert into the ground to complete the fixation of the nozzle.

[0017] Through the arrangement of the telescopic pipe, it is convenient to rotate the nozzle body, avoiding the situation that the fixed pipe connection causes the inability to rotate. When the nozzle body rotates, the telescopic pipe also moves.

[0018] Through the arrangement of the adjusting assembly, it is convenient to adjust the angle of the nozzle body, so as to conveniently control the amount of sprinkling irrigation according to the growth stage of the trees, improve the utilization efficiency of water resources, effectively avoid water resource waste (for example, when kiwifruit is a small tree, increase the irrigation area, reduce the water consumption per unit area, and reduce water consumption), improve the water-saving performance of the nozzle, improve the practicability, and the cooperation of the T-shaped block and the T-shaped groove can keep the position of the push plate unchanged, ensuring the pushing effect on the gear. Rotate the rotating rod to drive the teeth to move, and the movement of the teeth drives the nozzle body to rotate, thus completing the angle adjustment. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] The drawings incorporated herein and constituting a part of the specification illustrate embodiments of the present utility model, and together with the specification are further used to explain the principles of the present utility model and enable those skilled in the relevant art to implement and use the present utility model.

[0020] Figure 1 This is a schematic structural diagram of the present utility model;

[0021] Figure 2 This is a schematic structural diagram of the spray head body;

[0022] Figure 3 This is a schematic structural diagram of the adjusting assembly;

[0023] Figure 4 This is a schematic structural diagram of the connection between the rotating rod and the connecting rod;

[0024] Figure 5 This is a schematic cross-sectional structural diagram of the box body.

[0025] Reference numerals:

[0026] 1, bottom plate; 2, adjusting assembly; 3, vertical plate; 4, spray head body; 5, top plate; 6, telescopic pipe; 7, connecting pipe; 8, hose; 9, joint pipe; 10, inserting rod; 11, round rod; 201, box body; 202, rotating rod; 203, bolt; 204, arc plate; 205, screw pipe; 206, push plate; 207, locking tooth; 208, T-shaped groove; 209, gear; 210, connecting rod; 211, screw rod; 212, T-shaped block.

[0027] As shown in the figure, in order to clearly implement the structure of the embodiments of the present utility model, specific structures and devices are marked in the figure, but this is only for schematic needs and is not intended to limit the present utility model to this specific structure, device and environment. According to specific needs, those of ordinary skill in the art can adjust or modify these devices and environments. Specific embodiments

[0028] The following describes in detail a kiwifruit water-saving irrigation spray head provided by the present utility model in conjunction with the accompanying drawings and specific embodiments. At the same time, it should be noted here that in order to make the embodiments more detailed, the following embodiments are the best and preferred embodiments. For some well-known technologies, those skilled in the art can also adopt other alternative methods for implementation; and the accompanying drawings are only for more specific description of the embodiments and are not intended to specifically limit the present utility model.

[0029] It should be pointed out that in the specification, it is mentioned that "an embodiment", "embodiment", "exemplary embodiment", "some embodiments", etc. indicate that the described embodiments may include specific features, structures or characteristics, but not necessarily every embodiment includes the specific feature, structure or characteristic. In addition, when combining embodiments to describe specific features, structures or characteristics, implementing such features, structures or characteristics in combination with other embodiments (whether explicitly described or not) should be within the knowledge scope of those skilled in the relevant art.

[0030] Generally, terms can be understood at least in part from their use in context. For example, depending at least in part on the context, the term "one or more" as used herein can be used to describe any feature, structure, or property in the singular sense, or can be used to describe a combination of features, structures, or properties in the plural sense. Additionally, the term "based on" can be understood as not necessarily intended to convey a set of exclusive factors, but rather, depending at least in part on the context, can alternatively allow for the presence of other factors that may not be explicitly described.

[0031] It can be understood that the meanings of "on", "above", and "over" in the present utility model should be interpreted in the broadest manner, such that "on" not only means "directly on" something, but also includes the meaning of being "on" something with intervening features or layers therebetween, and "above" or "over" not only means "above" or "over" something, but can also include the meaning of being "above" or "over" something with no intervening features or layers therebetween.

[0032] In addition, spatial relative terms such as "under", "below", "lower", "above", "upper", etc. can be used herein for convenience of description to describe the relationship of one element or feature to another or other elements or features, as shown in the drawings. The spatial relative terms are intended to cover different orientations in the use or operation of the device other than the orientation depicted in the drawings. The device can be oriented in other ways, and the spatial relative descriptors used herein can be similarly interpreted accordingly.

[0033] As Figures 1 to 3As shown in the figure, an embodiment of the present utility model provides a water-saving irrigation nozzle for kiwifruit, which includes a bottom plate 1 and a nozzle body 4. On the upper surface of the bottom plate 1, two groups of symmetrically distributed vertical plates 3 are installed. In the middle position of the side surface of one group of vertical plates 3, an adjusting component 2 is installed. At both ends of the nozzle body 4, two groups of round rods 11 are installed. The two groups of round rods 11 are rotatably connected to the vertical plates 3. One group of round rods 11 is fixedly connected to the adjusting component 2. At the upper ends of the two groups of vertical plates 3, a top plate 5 is installed. The top plate 5 is arc-shaped. In the middle of the bottom plate 1, a connecting pipe 7 is installed through. The upper end of the connecting pipe 7 is connected to a telescopic pipe 6. The telescopic pipe 6 is fixedly connected to the nozzle body 4. The lower end of the connecting pipe 7 is connected to a hose 8. The lower end of the hose 8 is connected to a joint pipe 9. The joint pipe 9 is connected to the water supply pipe. At both ends of the lower part of the bottom plate 1, multiple groups of evenly distributed inserting rods 10 are installed, and the tips of the inserting rods 10 are pointed. When actually using this nozzle, first install the nozzle, connect it to the water supply pipe through the joint pipe 9. After the connection is completed, press down the top plate 5 to drive the inserting rods 10 to insert into the ground to complete the fixation of this nozzle. Subsequently, adjust the angle of the nozzle body 4 according to the size of the kiwifruit tree (for example, small trees require less water, and the spraying area can be increased while the water intake remains unchanged, and the water spraying amount per unit area is reduced, saving water. When the nozzle is horizontal, the spraying distance is the farthest and the area is the largest. Big trees require more water, and the nozzle is adjusted upward to reduce the spraying irrigation area). After the adjustment of the nozzle body 4 is completed, start spraying water for irrigation on the kiwifruit tree (in actual irrigation, multiple groups of nozzles can be set at the same position to achieve circular spraying irrigation). The water flow enters the hose 8 through the joint pipe 9, then enters the connecting pipe 7 and the telescopic pipe 6, and finally sprays out through the nozzle.

[0034] As Figures 1 to 5As shown in the figure, the adjustment component 2 includes a box body 201. An arc plate 204 is installed at the upper end of the box body 201. A plurality of symmetrically distributed bolts 203 are threadedly penetrated through the arc plate 204. The box body 201 is fixedly connected to the side surface of the vertical plate 3 through the arc plate 204 and the bolts 203. A screw tube 205 is installed at the lower end of the side surface of the box body 201. A T-shaped block 212 is installed at the lower end inside the box body 201. A screw rod 211 is threadedly connected to the screw tube 205. One end of the screw rod 211 is installed with a rotating rod 202. The end of the screw rod 211 away from the rotating rod 202 is rotatably connected to a push plate 206. A T-shaped groove 208 is opened on the lower surface of the push plate 206. The T-shaped groove 208 is slidably adapted to the T-shaped block 212. A toothed portion 207 is provided on the upper surface of the push plate 206. The toothed portion 207 meshes with a gear 209. A connecting rod 210 is installed on the side surface of the gear 209. The connecting rod 210 is fixedly connected to the round rod 11. Rotate the rotating rod 202 (for example, when irrigating a big tree, the spray head needs to be adjusted upward). The rotation of the rotating rod 202 drives the screw rod 211 to enter the box body 201 along the screw tube 205 (the screw rod 211 and the screw tube 205 are threadedly connected, and the threaded connection has self-locking property, and the denser the thread, the better the self-locking property). The entry of the screw rod 211 pushes the push plate 206 to slide along the T-shaped block 212. The sliding of the push plate 206 drives the toothed portion 207 to move. The movement of the toothed portion 207 drives the gear 209 to rotate. The rotation of the gear 209 drives the connecting rod 210 to rotate. The rotation of the connecting rod 210 drives the round rod 11 to rotate. The rotation of the round rod 11 drives the spray head body 4 to rotate, thus completing the angle adjustment.

[0035] The working principle of the technical solution provided by the present utility model is as follows:

[0036] When actually using this spray head, first install the spray head and connect it to the tap water pipe through the joint pipe 9. After the connection is completed, press down the top plate 5 to drive the insertion rod 10 to insert into the ground to complete the fixation of this spray head. Subsequently, adjust the angle of the spray head body 4 according to the size of the kiwifruit tree (for example, for a small tree, less water is required. The spray area can be increased while the water intake remains unchanged, and the water spray amount per unit area is reduced, saving water. When the spray head is horizontal, the spraying distance is the farthest and the area is the largest. For a big tree, more water is required. Adjust the spray head upward to reduce the spraying irrigation area). After the adjustment of the spray head body 4 is completed, start spraying water for irrigation on the kiwifruit tree (in actual irrigation, multiple groups of spray heads can be set at the same position to achieve circular spraying irrigation). The water flow enters the hose 8 through the joint pipe 9, then enters the connecting pipe 7 and the telescopic pipe 6, and finally sprays out through the spray head. Through the setting of the insertion rod 10, it is convenient to drive the spray head to insert into the ground and facilitate the fixation of the spray head. Through the setting of the telescopic pipe 6, it is convenient to rotate the spray head body 4 and avoid the situation that the fixed pipe connection causes inability to rotate;

[0037] The specific usage method of the adjusting component 2 is to rotate the rotary rod 202 (for example, when irrigating a big tree, it is necessary to adjust the sprinkler head upward). The rotation of the rotary rod 202 drives the screw rod 211 to enter the box body 201 along the screw tube 205 (the screw rod 211 is threadedly connected to the screw tube 205, and the threaded connection has self-locking property, and the denser the thread, the better the self-locking property). The entry of the screw rod 211 pushes the push plate 206 to slide along the T-shaped block 212. The sliding of the push plate 206 drives the movement of the locking teeth 207. The movement of the locking teeth 207 drives the rotation of the gear 209. The rotation of the gear 209 drives the rotation of the connecting rod 210. The rotation of the connecting rod 210 drives the rotation of the round rod 11. The rotation of the round rod 11 drives the rotation of the sprinkler head body 4, thus completing the angle adjustment. Through the setting of the adjusting component 2, it is convenient to adjust the angle of the sprinkler head body 4, so as to conveniently control the amount of sprinkler irrigation according to the growth stage of the trees, improve the utilization efficiency of water resources, and effectively avoid water resource waste (for example, when kiwifruit trees are small trees, increase the irrigation area, reduce the water consumption per unit area, and reduce the water consumption), improve the water-saving performance of the sprinkler head, improve the practicability, and the cooperation use of the T-shaped block 212 and the T-shaped groove 208 can keep the position of the push plate 206 unchanged, ensuring the pushing effect on the gear 209.

[0038] The present utility model covers any substitutions, modifications, equivalent methods and solutions made on the essence and scope of the present utility model. In order to enable the public to have a thorough understanding of the present utility model, specific details are described in detail in the following preferred embodiments of the present utility model. However, those skilled in the art can fully understand the present utility model without the description of these details. In addition, in order to avoid unnecessary confusion to the essence of the present utility model, well-known methods, processes, procedures, components and circuits are not described in detail.

[0039] The above are only the preferred embodiments of the present utility model. It should be noted that for those of ordinary skill in the art, without departing from the principle of the present utility model, several improvements and refinements can be made, and these improvements and refinements should also be regarded as the protection scope of the present utility model.

Claims

1. A kiwifruit water-saving irrigation sprinkler, comprising a bottom plate and a sprinkler body, characterized in that, Two sets of symmetrically distributed vertical plates are installed on the upper surface of the bottom plate. An adjustment component is installed at the middle position on the side of one set of vertical plates. Two round rods are installed at both ends of the spray head body. The two round rods are rotatably connected to the vertical plates, and one round rod is fixedly connected to the adjustment component.

2. The kiwifruit water-saving irrigation nozzle according to claim 1, characterized in that, Two sets of upper ends of the vertical plates are installed with a top plate, and the top plate is arc-shaped.

3. The kiwifruit water-saving irrigation nozzle according to claim 1, characterized in that, A connecting pipe is installed through the middle of the bottom plate.

4. The kiwifruit water-saving irrigation sprinkler according to claim 3, characterized in that, The upper end of the connecting pipe is connected with a telescopic pipe, and the telescopic pipe is fixedly connected to the spray head body.

5. The kiwifruit water-saving irrigation sprinkler according to claim 4, characterized in that, The lower end of the connecting pipe is connected with a hose, the lower end of the hose is connected with a joint pipe, and the joint pipe is connected to the water supply pipe.

6. The kiwifruit water-saving irrigation nozzle according to claim 1, characterized in that, Multiple sets of evenly distributed insertion rods are installed at both ends of the lower part of the bottom plate, and the insertion rods are pointed.

7. The kiwifruit water-saving irrigation sprinkler according to claim 1, characterized in that, The adjustment component includes a box body. An arc plate is installed at the upper end of the box body. Multiple sets of symmetrically distributed bolts are threaded through the arc plate. The box body is fixedly connected to the side of the vertical plate through the arc plate and the bolts.

8. The kiwifruit water-saving irrigation sprinkler according to claim 7, characterized in that, A screw pipe is installed at the lower end of the side of the box body, and a T-shaped block is installed at the lower end inside the box body.

9. The kiwifruit water-saving irrigation sprinkler according to claim 8, characterized in that, The screw pipe is threadedly connected with a screw rod. One end of the screw rod is installed with a rotating rod. The end of the screw rod away from the rotating rod is rotatably connected to a push plate. A T-shaped groove is opened on the lower surface of the push plate, and the T-shaped groove is slidably adapted to the T-shaped block.

10. The kiwifruit water-saving irrigation sprinkler according to claim 9, wherein, Teeth are provided on the upper surface of the push plate. The teeth are engaged with a gear. A connecting rod is installed on the side of the gear, and the connecting rod is fixedly connected to the round rod.