Water drinking device for breeding poultry

By designing a sealing cap structure, the problem of cumbersome operation when cleaning waste from poultry drinking devices was solved, achieving automatic waste discharge and rapid recovery of use.

CN223994188UActive Publication Date: 2026-03-17FEICHENG LIUHE JINGWEI BREEDING CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-18
Publication Date
2026-03-17

AI Technical Summary

Technical Problem

The existing poultry drinking devices are cumbersome to clean, easily get hands or clothes dirty, and are not easy to restore to use quickly.

Method used

A drinking device including a sealing cap was designed. The sealing cap consists of an outer sleeve and an inner cone plug. By rotating the outer sleeve, the inner cone plug is controlled to seal the lower port of the sewage collection pipe. The sewage is automatically discharged by using the flow channel and the sewage outlet, simplifying the cleaning process.

Benefits of technology

It enables automatic discharge of waste, avoids soiling hands or clothes, simplifies the cleaning process, and allows the device to be quickly put back into use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The poultry breeding water drinking device comprises a water supply mechanism and a gutter, the gutter communicates with the water supply mechanism, and the top of the gutter is higher than the highest water storage level in the water supply mechanism; the bottom of the gutter extends downwards to form a vertical sewage collecting pipe, and the lower end of the sewage collecting pipe is connected with a sealing cap; the sealing cap comprises an outer sleeve and an inner conical plug, the outer sleeve is in threaded connection with the outer side face of the dirt collecting pipe, the inner conical plug is used for blocking a lower port of the dirt collecting pipe, a flow channel is arranged between the inner conical plug and the inner wall of the outer sleeve, the lower ends of the inner conical plug and the outer sleeve are fixedly connected, and a drain outlet communicated with the flow channel is formed in the lower end of the sealing cap. According to the device, sewage can be directly discharged by unscrewing the sealing cap, the situation that hands or clothes are dirtied due to reverse overflow from the upper end of the sealing cap is avoided, water drainage or hole blocking in advance is not needed, and operation is easy. In addition, water in the water drinking trough and the water supply mechanism is directly used for flushing the sewage collecting pipe, additional cleaning work is not needed, and the water drinking device can be quickly put into use again.
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Description

Technical Field

[0001] This utility model relates to the technical field of poultry breeding equipment, specifically a drinking water device for poultry breeding. Background Technology

[0002] During poultry breeding, it is essential to ensure that the poultry have sufficient drinking water. However, manually replenishing the water troughs is labor-intensive and tedious. In addition, during the drinking process, dirt or food from the poultry's beaks will sink into the water troughs, which is difficult to clean and can easily contaminate the drinking water.

[0003] The attached diagram in the instruction manual Figure 1 This is a currently used poultry drinking device that connects the drinking trough and water tank via a U-shaped tube to automatically replenish the drinking water in the trough. A sedimentation pipe and a sludge collection pipe are installed below the drinking trough to collect settled sludge and other debris, which can then be disassembled for cleaning. However, in actual use, it has been found that during cleaning, the water level needs to be lowered below the U-shaped tube port, or the U-shaped tube port needs to be blocked; otherwise, water easily sprays out from the gaps when unscrewing the sludge collection pipe, soiling hands or clothing, which is quite troublesome. Furthermore, the sludge collection pipe needs to be cleaned separately after disassembly, which is extremely inconvenient and requires further improvement. Utility Model Content

[0004] To address the technical problems existing in the background art, this utility model provides a drinking water device for poultry breeding.

[0005] The technical solution of this utility model is as follows:

[0006] A drinking water device for breeding poultry includes a water supply mechanism and a water inlet trough, the water inlet trough being connected to the water supply mechanism and having its top higher than the highest water level in the water supply mechanism;

[0007] A vertical sludge collection pipe extends downward from the bottom of the water intake channel, and a sealing cap is connected to the lower end of the sludge collection pipe;

[0008] The sealing cap includes an outer sleeve and an inner cone plug. The outer sleeve is threaded to the outer side of the sewage collection pipe. The inner cone plug is used to seal the lower end of the sewage collection pipe. There is a flow channel between the inner cone plug and the inner wall of the outer sleeve, and the two are fixedly connected at their lower ends. The lower end of the sealing cap is provided with a sewage outlet that connects to the flow channel.

[0009] Furthermore, the tip of the inner cone plug extends into the sludge collection pipe and is positioned at a predetermined distance above the lower end of the sludge collection pipe.

[0010] Preferably, the taper of the inner cone plug is 1 / 5 to 2 / 5.

[0011] Furthermore, the outer sleeve includes, from top to bottom, a first vertical section, an outwardly inclined conical section, and a second vertical section. The first vertical section is threadedly connected to the sewage collection pipe, the flow channel is formed between the conical section and the inner conical plug, and the sewage outlet is opened between the second vertical section and the inner conical plug.

[0012] Furthermore, the sewage outlets consist of several, evenly spaced in a ring.

[0013] Furthermore, a partition is formed between adjacent sewage outlets, and the top surface of the partition is ridge-shaped.

[0014] Furthermore, a conical groove that mates with the inner conical plug is provided on the inner side of the lower port of the sewage collection pipe.

[0015] Furthermore, the water supply mechanism includes a water storage tank and a water inlet pipe. The water inlet pipe extends horizontally, with one end connected to the water storage tank. The water inlet tank is connected to the water inlet pipe, and its top is higher than the maximum water level set in the water storage tank.

[0016] Furthermore, the water supply system also includes a water replenishment tank, which is equipped with a water outlet pipe that extends from the top of the water storage tank. The inlet of the water outlet pipe is higher than the outlet, and the outlet of the water outlet pipe is not higher than the maximum water level set in the water storage tank.

[0017] Furthermore, a rubber sheet is provided on the inner wall of the water intake channel to seal the water inlet formed by the water intake channel and the water supply mechanism.

[0018] This utility model provides a drinking water device for poultry farming. It seals the lower end of the sludge collection pipe with an inner conical plug. When sludge needs to be discharged, the sealing cap is loosened, and sludge is discharged downwards through the flow channel and discharge port between the inner conical plug and the outer sleeve. This prevents backflow from the top of the sealing cap, which could soil hands or clothing. Furthermore, it eliminates the need for pre-drainage or plugging, making operation simple. Additionally, no further cleaning is required; during sludge discharge, water from the drinking trough and water supply mechanism directly flushes the sludge collection pipe, simplifying the cleaning process and allowing the drinking water device to be quickly put back into use. Attached Figure Description

[0019] In the attached diagram:

[0020] Figure 1 This is a schematic diagram of a currently used poultry drinking system.

[0021] Figure 2 This is a schematic diagram of a drinking water device according to an embodiment of this application;

[0022] Figure 3 This is a cross-sectional schematic diagram of a drinking water device according to an embodiment of this application;

[0023] Figure 4 This is a cross-sectional schematic diagram of a drinking trough according to an embodiment of this application.

[0024] The components represented by the various reference numerals in the diagram are:

[0025] 1. Water supply mechanism; 11. Water storage tank; 12. Water inlet pipe; 13. Water supply tank; 14. Water outlet pipe; 21. Water inlet trough; 22. Sewage collection pipe; 221. Conical groove; 23. Sealing cap; 231. Outer sleeve; 2311. First vertical section; 2312. Outwardly inclined conical section; 2313. Second vertical section; 232. Inner conical plug; 233. Flow channel; 234. Sewage outlet; 235. Baffle plate; 24. Rubber sheet. Detailed Implementation

[0026] like Figure 2 and Figure 3 As shown in the figure, this utility model embodiment provides a drinking water device for poultry breeding, including a water supply mechanism 1 and a water inlet trough 21. The water inlet trough 21 is connected to the water supply mechanism 1, and its top is higher than the highest water level in the water supply mechanism 1.

[0027] The water inlet trough 21 is an inverted conical trough with an installation pipe extending outward from its side wall, which connects to the water supply mechanism 1. After the water inlet trough 21 is connected to the water supply mechanism 1, the water levels of the two are the same, thereby ensuring that there is sufficient drinking water in the drinking trough by maintaining the water level in the water supply mechanism 1.

[0028] The water supply mechanism 1 specifically includes a water storage tank 11 and a water inlet pipe 12. The water inlet pipe 12 extends horizontally, with one end connected to the water storage tank 11. The water inlet trough 21 is connected to the drinking water pipe, and multiple water inlet troughs 21 can be arranged on both sides along the extension direction of the water inlet pipe 12.

[0029] During use, the water level in the water storage tank 11 is kept at a level not lower than that of the drinking water pipe. The drinking water tank is connected to the water storage tank 11 through the water inlet pipe 12, so that the water level in the water inlet 21 is level with that in the water storage tank 11. The top of the drinking water tank is higher than the maximum water level set in the water storage tank 11 to prevent water from overflowing from the water inlet 21.

[0030] The water storage tank 11 can be isolated from the breeding area, or the top of the water storage tank 11 can be equipped with a ventilated cover to allow breeding poultry to enter the water storage tank 11 or soil the water storage tank 11.

[0031] like Figure 4 As shown, a vertical waste collection pipe 22 extends downwards from the bottom of the water trough 21, communicating with the internal space of the water trough 21. A sealing cap 23 is connected to the lower end of the waste collection pipe 22. When poultry drink, waste (e.g., food from their beaks, dirt, etc.) enters the water in the drinking trough, then settles and collects in the waste collection pipe 22 for unified treatment. Collecting waste through the waste collection pipe 22 also prevents the waste from re-turbidifying the water in the drinking trough.

[0032] The main technical feature of this application is that the sealing cap 23 is not an ordinary cap. The sealing cap 23 of this application includes an outer sleeve 231 and an inner cone plug 232. The outer sleeve 231 is threaded to the outer side of the collection pipe 22, allowing the sealing cap 23 to be detachably connected to the collection pipe 22. The inner cone plug 232 is located inside the outer sleeve 231 and is used to seal the lower port of the collection pipe 22. A distance is maintained between the inner cone plug 232 and the inner wall of the outer sleeve 231, forming a flow channel 233. The lower ends of the two are fixedly connected, integrating the inner cone plug 232 and the outer sleeve 231. Rotation of the outer sleeve 231 controls whether the inner cone plug 232 seals the lower port of the collection pipe 22. The lower end of the sealing cap 23 has a drain port 234 communicating with the flow channel 233.

[0033] When the outer sleeve 231 is screwed in, the inner cone plug 232 blocks the lower port of the sewage collection pipe 22, and the outer cone surface of the inner cone plug 232 contacts the lower port of the sewage collection pipe 22.

[0034] When the outer sleeve 231 is rotated back, the inner cone plug 232 descends along with it, and the flow channel 233 is connected to the sewage collection pipe 22. The sewage collected in the sewage collection pipe 22 is discharged from the sewage outlet 234 through the flow channel 233.

[0035] During sewage discharge, because a channel is provided for the outflow of waste, waste and water will not overflow from the top of the sealing cap 23, thus preventing soiling hands or clothes. Furthermore, there is no need for pre-drainage or plugging, making operation simple. In addition, no further cleaning is required; during sewage discharge, water from the drinking trough and water supply mechanism 1 is directly used to flush the sewage collection pipe 22, simplifying the cleaning process and allowing the drinking water device to be quickly put back into use.

[0036] Waste and sewage can be collected and treated using containers.

[0037] More specifically, the tip of the inner cone plug 232 preferably extends into the sludge collection pipe 22 and is a predetermined distance above the lower end of the sludge collection pipe 22, so that dirt accumulates between the circumferential side of the inner cone plug 232 and the inner sidewall of the sludge collection pipe 22, which can prevent the sludge collection pipe 22 from being blocked by dirt, and make it easier for dirt to be flushed away during sewage discharge.

[0038] The taper of the inner cone plug 232 is preferably 1 / 5 to 2 / 5.

[0039] The inner edge of the lower port of the sludge collection pipe 22 is provided with a conical groove 221 that mates with the inner conical plug 232, thereby improving the sealing effect of the inner conical plug 232. More preferably, a sealing ring is provided on the inner side of the conical groove 221, which abuts against the outer conical surface of the inner conical plug 232.

[0040] The outer sleeve 231 specifically includes, from top to bottom, a first vertical section 2311, an outwardly inclined conical section 2312, and a second vertical section 2313.

[0041] The inner wall of the first vertical section 2311 is fitted to the outer wall of the sewage collection pipe 22, and the two are threaded together. A sealing ring may also be provided between the two to further prevent sewage from overflowing.

[0042] The flow channel 233 is formed between the conical section and the inner conical plug 232, and the drain outlet 234 is opened between the second vertical section 2313 and the inner conical plug 232. The taper of the conical section is preferably not less than the taper of the inner conical plug 232. By setting the conical section, the radial width of the flow channel 233 can be increased, allowing the waste to flow out smoothly.

[0043] It is preferable to have several sewage outlets 234, which are evenly distributed in a ring. A partition 235 is formed between adjacent sewage outlets 234. The top surface of the partition 235 is ridge-shaped, that is, the top surface of the partition 235 is inclined to the two adjacent sewage outlets 234 to form a conical top surface, so as to prevent sewage from staying on the top of the partition 235.

[0044] In addition, a rubber sheet 24 is provided on the inner wall of the water inlet trough 21 to seal the water inlet formed by the water supply mechanism 1 connected to the water inlet trough 21. The rubber sheet 24 is lightweight, thin, and has a certain degree of elasticity.

[0045] When the water level in the drinking trough is the same as the water level in the storage tank 11, the rubber sheet 24, due to its elasticity, blocks the water inlet of the water inlet trough 21, preventing the water in the drinking trough from flowing into the water inlet pipe 12. Therefore, even if the water in the drinking trough becomes turbid or dirty, it will not diffuse into the water inlet pipe 12 and cause a deterioration in the water quality. When the water level in the water inlet trough 21 is lower than the water level in the storage tank 11, the pressure difference created by the water pressure on both sides of the rubber sheet 24 allows the water in the water inlet pipe 12 to push aside the rubber sheet 24 and flow into the drinking trough. Therefore, the water used for replenishment is always of high quality.

[0046] For example Figure 2 and Figure 3 As shown, in this embodiment, the water supply mechanism 1 may also include a water replenishment tank 13, on which a water outlet pipe 14 is provided. The water outlet pipe 14 extends from the top of the water storage tank 11, and the inlet of the water outlet pipe 14 is higher than the outlet, while the outlet of the water outlet pipe 14 is not higher than the maximum water storage level set in the water storage tank 11.

[0047] After the water tank 13 is filled with water and sealed, when the water level in the storage tank 11 exceeds the outlet of the outlet pipe 14 (i.e., the water level in the storage tank 11 is slightly higher than the outlet of the outlet pipe 14), the pressure inside and outside the outlet of the outlet pipe 14 reaches equilibrium, so no more water flows into the storage tank 11, and the storage tank 11 reaches the required water level. When the water level in the storage tank 11 drops below the outlet of the outlet pipe 14, air enters the water tank 13 from the outlet pipe 14, causing a pressure imbalance inside and outside the outlet of the outlet pipe 14. Water in the water tank 13 flows into the storage tank 11, causing the water level in the storage tank 11 to rise again to exceed the outlet of the outlet pipe 14, thereby achieving the purpose of automatically replenishing the water inlet tank 21.

[0048] In practical use, the water storage tank 11 and the water inlet pipe 12 can be supported and fixed by the frame, or they can be directly fixed to the ground. The installation height of the water replenishment tank 13 is preferably higher than that of the water storage tank 11.

[0049] In addition, water troughs of different sizes can be set up according to the size of the individual poultry, and water troughs of the corresponding size can be replaced at different breeding stages.

Claims

1. A drinking water device for breeding poultry, characterized in that, The water supply mechanism (1) and the water guide groove (21) are communicated, and the top of the water guide groove (21) is higher than the highest water storage level in the water supply mechanism (1); The bottom of the water guide groove (21) extends downwardly and is provided with a vertical sewage collecting pipe (22), and the lower end of the sewage collecting pipe (22) is connected with a sealing cap (23); The sealing cap (23) comprises an outer sleeve (231) and an inner tapered plug (232), the outer sleeve (231) is threadedly connected with the outer side of the sewage collecting pipe (22), the inner tapered plug (232) is used for plugging the lower end of the sewage collecting pipe (22), and a flow channel (233) is formed between the inner tapered plug (232) and the inner wall of the outer sleeve (231) and fixedly connected at the lower ends of the two.

2. The poultry breeding water drinking device according to claim 1, characterized in that, The tip of the inner tapered plug (232) extends into the sewage collecting pipe (22) and is higher than the lower end of the sewage collecting pipe (22) by a preset distance.

3. The poultry breeding water drinking device according to claim 2, wherein, The taper of the inner tapered plug (232) is 1 / 5-2 / 5.

4. The poultry breeding water drinking device according to claim 2, wherein, The outer sleeve (231) comprises a first vertical section (2311), an outwardly inclined tapered section (2312) and a second vertical section (2313) from top to bottom, the first vertical section (2311) is threadedly connected with the sewage collecting pipe (22), the flow channel (233) is formed between the tapered section and the inner tapered plug (232), and the sewage discharge opening (234) is arranged between the second vertical section (2313) and the inner tapered plug (232).

5. The poultry breeding water drinking device according to claim 4, characterized in that, The sewage discharge opening (234) comprises a plurality of ring-shaped openings which are uniformly and spacedly arranged.

6. The poultry breeding water drinking device according to claim 5, wherein, A partition plate (235) is arranged between adjacent sewage discharge openings (234), and the top surface of the partition plate (235) is in a ridge shape.

7. The poultry breeding water drinking device according to claim 1, wherein, A tapered notch (221) is arranged on the inner side of the lower end of the sewage collecting pipe (22) and matched with the inner tapered plug (232).

8. The poultry breeding water drinking device according to claim 1, wherein, The water supply mechanism (1) comprises a water storage tank (11) and a water guide pipe (12), the water guide pipe (12) extends horizontally, one end of the water guide pipe (12) is communicated with the water storage tank (11), and the water guide groove (21) is connected with the water guide pipe (12) and the top of the water guide groove (21) is higher than the maximum water storage level in the water storage tank (11).

9. The poultry breeding water drinking device according to claim 8, characterized in that, The water supply mechanism (1) further comprises a water supplement tank (13), the water supplement tank (13) is provided with a water outlet pipe (14), the water outlet pipe (14) extends into the water storage tank (11) from the top of the water storage tank (11), the inlet of the water outlet pipe (14) is higher than the outlet, and the outlet of the water outlet pipe (14) is not higher than the maximum water storage level in the water storage tank (11).

10. The poultry breeding water drinking device according to any one of claims 1-9, characterized in that, A rubber sheet (24) is arranged on the inner side wall of the water guide groove (21) and seals the water inlet formed by the water guide groove (21) and the water supply mechanism (1).