Watering device
By designing the water tray and attachment plate structure, the problems of impact damage to bean seedlings and uneven watering caused by traditional sprinkler devices are solved, achieving uniform watering and automated control, and reducing water waste.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-16
- Publication Date
- 2026-03-24
AI Technical Summary
Traditional sprinkler systems require a large amount of kinetic energy for their rotating sprinkler heads, resulting in strong water flow that can easily damage tender bean seedlings. Additionally, the water spray range is too far, causing some bean seedlings to not receive enough water.
A watering device was designed, comprising a water outlet tray, a water outlet, and an attachment plate. The water is absorbed by the water baffle and the multiple rings of attachment plates, allowing the water to enter the cultivation box in a dripping manner, avoiding direct impact on the bean seedlings, and the water is evenly distributed by the multiple rings of attachment plates.
It achieves even watering without damaging bean seedlings, increases the water coverage area, reduces water waste, and improves the automation and quality of watering.
Smart Images

Figure CN224022544U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a functional device for crop cultivation, in particular to a watering device. BACKGROUND
[0002] In the cultivation of bean seedlings, water supply is indispensable. In the cultivation of a large number of bean seedlings, the watering device needs to be able to widely sprinkle water into the bean seedlings. In the traditional bean seedling cultivation system, in order to achieve the purpose of widely watering, the watering device adopted has a rotating water spraying head, which is rotated by water pressure impact to enable water to be sprayed in different directions.
[0003] However, the aforementioned watering device needs a large amount of kinetic energy to drive the rotation of the water spraying head, so that the water flow sprayed by the rotating water spraying head not only has a large water volume but also has a very strong impact. However, the stems of newly germinated bean seedlings are tender and fragile and cannot withstand the impact of the water flow sprayed by the traditional rotating water spraying head, which is easily injured and causes rotting. In addition, due to the strong water pressure, the water flow is sprayed far away, resulting in that the bean seedlings located around the rotating water spraying head cannot receive water.
[0004] Therefore, it is necessary to propose a new technical solution to solve the aforementioned problems. SUMMARY
[0005] The main purpose of the utility model is to propose a new watering device which can uniformly sprinkle water into bean seedlings and will not damage the bean seedlings by water flow.
[0006] In order to achieve the aforementioned purpose, the watering device proposed by the utility model comprises:
[0007] a water outlet plate having:
[0008] a top surface and a bottom surface, a water inlet is formed on the top surface and a water outlet is formed on the bottom surface, the water inlet and the water outlet are in communication with each other;
[0009] a water outlet device having a rod portion and a water blocking plate, the rod portion is arranged through the water outlet and protrudes from the bottom surface, the water blocking plate is connected to one end of the rod portion and located outside the water outlet, and a water blocking surface of the water blocking plate faces the water outlet; and
[0010] a plurality of adhesive pieces, a plurality of the adhesive pieces are arranged at intervals between each other, one end of each of the adhesive pieces is arranged on the bottom surface, the other end extends away from the bottom surface, and an adhesive surface of each of the adhesive pieces faces the water outlet device.
[0011] Therefore, the water is prevented from directly impacting the bean seedlings, and the water is evenly distributed in the cultivation box of the bean seedlings through the multiple rings of the attachment sheets and the spacing between the attachment sheets
[0012] The water distribution device as described above, wherein the multiple attachment sheets are arranged in multiple rings around the water outlet.
[0013] The water distribution device as described above, wherein the multiple attachment sheets in the outermost ring are located at the periphery of the bottom surface.
[0014] The water distribution device as described above, wherein each attachment sheet in the outermost ring extends along the circumferential direction of the bottom surface to form an arc shape.
[0015] The water distribution device as described above, wherein the width of each attachment sheet in the outermost ring is greater than the width of each attachment sheet in other rings.
[0016] The water distribution device as described above, wherein the water outlet plate further has multiple air holes formed through the top surface and the bottom surface of the water outlet plate, and the multiple air holes are spaced apart from each other.
[0017] The water distribution device as described above, further comprising a pipe set connected to the water outlet plate.
[0018] The water distribution device as described above, wherein the pipe set comprises a ring-shaped pipe, and multiple water outlet plates are connected to and communicate with the ring-shaped pipe; and a water inlet pipe connected to and communicating with the ring-shaped pipe, and one end of the water inlet pipe forms a water inlet.
[0019] The water distribution device as described above, further comprising a pump connected to the pipe set.
[0020] The water distribution device as described above, further comprising a timing device electrically connected to the pump. BRIEF DESCRIPTION OF DRAWINGS
[0021] Figure 1 A schematic view of a bean seedling cultivation device using the present application.
[0022] Figure 2 A schematic view of the connection of elements of the present application.
[0023] Figure 3 A schematic view of the side view of the connection of the water outlet plate to the pipe set of the present application.
[0024] Figure 4 A schematic view of the top view of the water outlet plate of the present application.
[0025] Figure 5 is a bottom view of the water outlet plate.
[0026] Figure 6 is a bottom view of the water outlet plate. DETAILED DESCRIPTION
[0027] The technical means adopted by the utility model to achieve the predetermined utility model purposes are further described below in combination with the drawings and the preferred embodiments of the utility model.
[0028] First, please refer to Figures 1 to 2 One of the embodiments of the water sprinkling device proposed by the utility model can be arranged in the cultivation box A of the bean seedlings.
[0029] The water sprinkling device in this embodiment comprises a pipeline set 10, a plurality of water outlet plates 20, a pump 30, and a timing device 40.
[0030] Please refer to Figures 1 to 3 The pipeline set 10 comprises a ring-shaped pipe 11 and a water inlet pipe 12. The ring-shaped pipe 11 is connected at the head and tail to form a ring shape, and the water inlet pipe 12 is connected and communicated with the ring-shaped pipe 11. In this embodiment, the ring-shaped pipe 11 forms a round rectangular ring shape, and the water inlet pipe 12 is a three-way pipe. Two ends of the water inlet pipe 12 are connected and communicated with the central parts of the two long sides of the ring-shaped pipe 11, and one end of the water inlet pipe 12 not connected with the ring-shaped pipe 11 forms a water inlet 121. Water flow can enter the water inlet pipe 12 through the water inlet 121 and then flow into the ring-shaped pipe 11.
[0031] The pump 30 is connected with the pipeline set 10, and the timing device 40 is electrically connected with the pump 30. The pump 30 is used to pump water into the water inlet pipe 12 and provide the pressure of water. In this embodiment, the pump 30 adopts a submersible pump, which is beneficial to the irrigation with circulating water in this embodiment. The timing device 40 is used to control the opening / closing time of the pump 30 and the length of time of each irrigation, so as to control the water amount of each sprinkling, save manpower, and achieve the best irrigation quality, but it is not limited thereto. In other embodiments, the pump 30 can adopt other types and can not have the timing device 40.
[0032] Next, please refer to Figure 1 and Figures 3 to 6 The utility model has a plurality of water outlet plates 20, and the plurality of water outlet plates 20 are connected and communicated with the ring-shaped pipe 11 of the pipeline set 10. Specifically, the water outlet plates 20 are connected with the side wall of the ring-shaped pipe 11, and the water outlet plates 20 and the water inlet pipe 12 are respectively located on the opposite sides of the ring-shaped pipe 11, but it is not limited thereto.
[0033] The water outlet plate 20 comprises a top surface 21, a bottom surface 22, a water outlet 23, and a plurality of adhesive pieces 24. The top surface 21 and the bottom surface 22 are opposite surfaces of the water outlet plate 20, and a water inlet 211 is formed on the top surface 21 and a water outlet 221 is formed on the bottom surface 22. The water inlet 211 and the water outlet 221 are in communication with each other.
[0034] In this embodiment, a connecting pipe portion 212 of the water outlet plate 20 is connected to the water inlet 211 at one end, and the other end of the connecting pipe portion 212 can be screwed to the side wall of the annular pipe 11 of the pipe set 10, thereby facilitating the connection between the water outlet plate 20 and the annular pipe 11, but this is not the only way.
[0035] The water outlet 23 is arranged at the position of the water outlet 221. Specifically, the water outlet 23 of this embodiment has a rod portion 231 and a water baffle 232. The rod portion 231 is arranged through the water outlet 221 and protrudes from the bottom surface 22, and the water baffle 232 is connected to one end of the rod portion 231 and located outside the water outlet 221, and a water baffle surface 2321 of the water baffle 232 faces the water outlet 221. The water baffle 232 is used to change the direction of the water flowing out of the water outlet 221, and specifically to allow the water sprayed from the water outlet 221 to move along the bottom surface 22. In this embodiment, the water baffle surface 2321 of the water baffle 232 is larger than the water outlet 221 and directly faces the water outlet 221, thereby effectively allowing the water flowing out of the water outlet 221 to hit the water baffle 232 and then be sprayed outward along the transverse direction of the bottom surface 22, but this is not the only way.
[0036] The plurality of adhesive pieces 24 are arranged at intervals from each other, one end of each adhesive piece 24 is connected to the bottom surface 22, the other end extends away from the bottom surface 22, and an adhesive surface 241 of each adhesive piece 24 faces the water outlet 23.
[0037] In this embodiment, the plurality of adhesive pieces 24 are arranged in multiple circles around the water outlet 23, specifically, the plurality of adhesive pieces 24 in this embodiment are arranged in three circles, each circle has a spacing, and the plurality of adhesive pieces 24 in each circle are arranged at intervals from each other along the circumferential direction of the bottom surface 22 of the water outlet plate 20, and preferably, the adhesive pieces 24 in any two adjacent circles are arranged in a staggered manner, but this is not the only way. Among them, the plurality of adhesive pieces 24 arranged in the outermost circle are located at the circumference of the bottom surface 22 and extend in an arc shape along the circumferential direction of the bottom surface 22, and the width of each adhesive piece 24 in the outermost circle is greater than the width of each adhesive piece 24 arranged in other circles, thereby more effectively intercepting the water sprayed from the position of the water outlet 23 and splashing in the direction of the bottom surface 22, but this is not the only way, and the form of the adhesive pieces 24 can be adjusted as needed.
[0038] In the embodiment, the water outlet tray 20 can also have a plurality of air holes 25, which are formed through the water outlet tray 20 and communicate with the top surface 21 and the bottom surface 22, and are arranged at intervals. When the cells of the bean sprouts produce hot air through respiration, or when the water vapor in the incubator A is excessive, the air flow can smoothly escape to the outside air through the plurality of air holes 25 of the water outlet tray 20, helping the bean sprouts to dissipate heat and remove excess moisture, thereby avoiding the death of the bean sprouts and affecting the harvest.
[0039] Please refer to Figures 1 to 3 , when using the utility model, as shown in Figure 1 , the utility model is arranged above the modularized bean sprout incubator A. When the pump 30 pressurizes the water, the water enters the pipe group 10 and can be evenly distributed in the annular pipe 11 to the plurality of water outlet trays 20, so that the water outlet amounts of the plurality of water outlet trays 20 are equal to each other. Then, the pressurized water passes through the water inlet 211 and the water outlet 221, hits the water baffle 232 of the water outlet device 23, and because the water baffle surface 2321 faces the water outlet 221, the water can be sprayed laterally along the bottom surface 22, contacts and adheres to the adhesive sheet 24, and when the water adhered to the adhesive sheet 24 reaches a certain amount, can drip downward into the bean sprout incubator A.
[0040] The water pressurized by the pump 30 is impacted twice by the water baffle 232 and the adhesive sheet 24, and the water enters the incubator A in a dripping manner, avoiding direct impact of the water on the bean sprouts. In addition, through the plurality of adhesive sheets 24 arranged at intervals, the utility model can evenly distribute the water in the bean sprout incubator A. The water outlet tray 20 of the utility model also has a plurality of air holes 25, so that the hot air or water vapor in the bean sprout incubator A can be discharged through the water outlet tray 20, and will not be accumulated in the incubator A to affect the growth of the bean sprouts.
[0041] Further, the water spraying device for bean sprout cultivation in the utility model can control the time and length of water spraying through the timing device 40, so as to automate the water spraying, reduce the waste of manpower, and improve the quality of water spraying. The pump 30 can adopt a submersible pump, and if it is arranged in the water collecting tank at the bottom of the entire bean sprout incubator A, the water can be recycled, thereby reducing the waste of water resources.
[0042] The above merely describes preferred embodiments of the present application and is not intended to limit the present application in any form. Although the present application has been disclosed with preferred embodiments, it is not intended to limit the present application. Any skilled person in the art can make some changes or modifications to the disclosed technical content without departing from the scope of the present application, and any simple modification, equivalent change and modification of the above embodiments based on the technical essence of the present application still belong to the scope of the present application.
Claims
1. A sprinkler system, characterized in that, Include: A water outlet plate has the following features: A top surface and a bottom surface, an inlet is formed on the top surface and an outlet is formed on the bottom surface, the inlet and the outlet are connected to each other; A water dispenser has a rod and a baffle plate. The rod passes through the water outlet and protrudes from the bottom surface. The baffle plate is connected to one end of the rod and is located outside the water outlet. One water-blocking surface of the baffle plate faces the water outlet. as well as Multiple attachment plates are spaced apart from each other. One end of each attachment plate is disposed on the bottom surface, and the other end extends away from the bottom surface. One attachment surface of each attachment plate faces the water outlet.
2. The sprinkler device according to claim 1, characterized in that, Multiple of these attachment plates are arranged in multiple rings around the water outlet.
3. The sprinkler device according to claim 2, characterized in that, The multiple attachment plates located on the outermost ring are situated around the perimeter of the bottom surface.
4. The sprinkler device according to claim 3, characterized in that, Each of the attachment plates located on the outermost ring extends in an arc shape along the circumferential direction of the bottom surface.
5. The sprinkler device according to claim 2, characterized in that, The width of each attachment piece located on the outermost ring is greater than the width of each attachment piece located on the other rings.
6. The sprinkler device according to any one of claims 1 to 5, characterized in that, The water outlet plate further features: Multiple vent holes are formed through the top and bottom surfaces of the water outlet plate, and the multiple vent holes are spaced apart from each other.
7. The sprinkler device according to any one of claims 1 to 5, characterized in that, It further has the following characteristics: A pipe assembly connected to the outlet tray.
8. The sprinkler device according to claim 7, characterized in that, This piping assembly includes: A ring-shaped pipe, wherein the ring is formed, and a plurality of the outlet plates are connected and communicate with the ring-shaped pipe; and A water inlet pipe is connected to and communicates with the annular pipe, and one end of the water inlet pipe forms a water inlet.
9. The sprinkler device according to claim 7, characterized in that, It further has the following characteristics: A pump, which is connected to the pipeline assembly.
10. The sprinkler device according to claim 9, characterized in that, It further has the following characteristics: A timing device, which is electrically connected to the pump.