Efficient intensive pigeon breeding water system integration device
By designing an efficient and intensive pigeon farming water system integration device, the problems of insufficient mixing of medicine and water and unstable water supply were solved, achieving full mixing of medicine and stable water supply, reducing labor intensity and water waste.
Patent Information
- Application Number
- CN202520609168.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-02
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2035-04-02
AI Technical Summary
In existing pigeon farming water systems, the mixing of medicines and water is insufficient, resulting in reduced effectiveness of the medicines and unstable water supply, which easily leads to water waste.
An efficient and intensive pigeon farming water system integrated device was designed, including a water storage component, a water replenishment component, a stirring component, a reflux component, and a cleaning component. The stirring component mixes the medicine with water, the reflux component realizes the recycling of water, and the cleaning component keeps the water clean.
This method achieves thorough mixing of the reagent and water, stabilizes water supply, reduces manual labor intensity, improves the effectiveness of the reagent, and saves water resources.
Smart Images

Figure CN223653001U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to pigeon breeding technical field, especially in kind high -efficient intensive pigeon breeding water system integration device. BACKGROUND
[0002] With the improvement of people's living standards, people's consumption requirements for meat are higher and higher, pigeon meat is paid more and more attention due to its good edible value, and meat pigeon breeding is a new industry. An important part of keeping pigeons healthy and growing well is to provide clean and fresh drinking water.
[0003] The patent document with the publication number CN222425075U discloses an automatic water supply device for pigeon breeding, which can periodically automatically clean the inner wall of the water feeding cylinder by setting the brushing assembly and the electronic valve, and can automatically discharge the cleaning wastewater after cleaning to ensure the cleanliness of the drinking water of the pigeons and prevent the accumulated impurities and growing moss from being drunk by the pigeons due to long-term water supply in the water feeding cylinder, which is harmful to the health of the pigeons. The water in the water feeding cylinder is always filtered in circulation by setting the water filtering assembly, which prevents the water quality from deteriorating due to the deposition of impurities caused by the non-flowing water source, and further improves the cleanliness of the water source. The water source can be directly observed by the pigeons by setting the water feeding cylinder, and the pigeons can drink water conveniently. The dust cover is set to prevent the pigeon excrement from falling into the water feeding cylinder or contaminating the brushing assembly, and the pigeons can only land on the edge of the water feeding cylinder to drink water, which ensures that the water source is not contaminated.
[0004] Although the above-mentioned automatic water supply device for pigeon breeding can solve the corresponding technical problems, in the process of feeding water to the pigeons, in order to enhance the physique of the pigeons, the medicament is sometimes mixed into the water. However, the structure of the water storage tank and the water pipe is relatively simple, the function is relatively single, and the medicament and the water in the water storage tank are difficult to mix fully, which reduces the use effect of the medicament. Moreover, the water in the water storage tank flows to the water feeding cylinder through the water pipe to supply water to the pigeons, which is easy to cause unstable water supply, which not only affects the growth process of the pigeons, but also causes waste of water resources.
[0005] Therefore, a kind of high -efficient intensive pigeon breeding water system integration device is provided. Utility model content
[0006] The utility model aims at providing a kind of high -efficient intensive pigeon breeding water system integration device, to solve the problems raised in the above background art.
[0007] In order to achieve the above purpose, the main technical scheme adopted by the utility model includes:
[0008] A kind of high -efficient intensive pigeon breeding water system integration device, it include:
[0009] The water feeding assembly is provided with a water supply assembly on one side, and a backflow assembly is arranged between the water feeding assembly and the water supply assembly.
[0010] The water supply assembly comprises a water storage part for storing water, a water supplementing part is arranged between the bottom of the water storage part and the water feeding assembly, and a stirring part is arranged on the water storage part for mixing materials.
[0011] The water supplementing part comprises a drain pipe arranged at the bottom of the water storage part, the bottom end of the drain pipe is communicated with a water guide pipe, the water guide pipe is connected with the water feeding assembly, the water guide pipe and the drain pipe are jointly connected with a plug, the bottom of the plug is fixedly connected with a floating block, and a guide part is arranged between the floating block and the water guide pipe.
[0012] As a preferred technical solution, the guide part comprises a limiting groove arranged on the surface of the floating block, and a limiting strip is slidably connected in the inner cavity of the limiting groove.
[0013] As a preferred technical solution, the water feeding assembly comprises a water feeding cylinder, one end of the water feeding cylinder is communicated with a sewage pipe, the end of the water guide pipe away from the drain pipe is communicated with the water feeding cylinder, and the cleaning assembly is located directly above the water feeding cylinder.
[0014] As a preferred technical solution, the water storage part comprises a water storage barrel arranged on one side of the water feeding cylinder, the top of the water storage barrel is communicated with two feeding pipes, the top end of the feeding pipe is threadedly connected with a pipe cover, and the bottom of the water storage barrel is communicated with the drain pipe.
[0015] As a preferred technical solution, the stirring part comprises a motor installed at the center of the top of the water storage barrel, the output shaft of the motor penetrates into the inner cavity of the water storage barrel and is fixedly connected with a rotating rod, and a plurality of stirring blades are fixedly connected to the surface of the rotating rod from top to bottom.
[0016] As a preferred technical solution, the backflow assembly comprises a branch pipe communicated with the sewage pipe, the end of the branch pipe away from the sewage pipe is provided with a filter part, a water pump is installed on the cleaning assembly, a hose is communicated between the water inlet of the water pump and the filter part, a backflow pipe is communicated between the water outlet of the water pump and the water storage barrel, and valves are respectively installed on the sewage pipe and the branch pipe.
[0017] As a preferred technical solution, the filter part comprises a transition pipe threadedly connected to the end of the branch pipe, the transition pipe is communicated with one end of the hose, and a plurality of regularly distributed filter screens are arranged in the inner cavity of the transition pipe.
[0018] As a preferred technical solution, a clamping strip is jointly fixedly connected between the plurality of filter screens, a clamping groove matched with the clamping strip is arranged in the inner cavity of the transition pipe, and the clamping strip is inserted into the corresponding clamping groove.
[0019] As a preferred technical scheme, the surface of the card strip is fixedly connected with a protruding block.
[0020] As a preferred technical scheme, the transition pipe and the branch pipe are provided with a sealing ring gasket, the inner cavity of the transition pipe is provided with an annular groove matched with the sealing ring gasket, the sealing ring gasket is clamped in the inner cavity of the annular groove, and one side of the inner cavity of the clamping groove is communicated with the annular groove.
[0021] The utility model at least has following beneficial effects:
[0022] The application can supplement water in the water feeding assembly in time, realize more stable water supply, avoid too much or too little water supply, mix water and medicament sufficiently according to actual water feeding demand through the cooperation of the water storage element and the water supplement element, so that the pigeon can drink water with medicament, and the use effect of the medicament is improved, the device can realize water feeding, medicine feeding, water circulation, water filtration and cleaning of intensive pigeon breeding, reduce labor intensity in the process of pigeon raising, guarantee optimal breeding conditions, and achieve the effects of high yield and high efficiency. BRIEF DESCRIPTION OF DRAWINGS
[0023] Figure 1 It is a structural schematic view of the utility model high -efficient intensive pigeon breeding water system integrated device;
[0024] Figure 2 It is a structural cut open schematic view of the utility model high -efficient intensive pigeon breeding water system integrated device water supply assembly;
[0025] Figure 3 It is an explosive structural schematic view of the utility model high -efficient intensive pigeon breeding water system integrated device branch pipe and filter element;
[0026] Figure 4 It is an explosive structural schematic view of the utility model high -efficient intensive pigeon breeding water system integrated device filter element.
[0027] In the figure: 100, water feeding assembly; 110, water feeding cylinder; 120, drain pipe; 200, water supply assembly; 210, water storage part; 211, water storage barrel; 212, feeding pipe; 213, pipe cover; 220, water replenishing part; 221, drain pipe; 222, water guide pipe; 223, plug; 224, floating block; 225, limiting groove; 226, limiting strip; 230, stirring part; 231, motor; 232, rotating rod; 233, stirring blade; 300, backflow assembly; 310, branch pipe; 320, filter part; 321, transition pipe; 3211, clamping groove; 3212, annular groove; 322, filter screen; 323, clamping strip; 3231, protruding block; 324, sealing ring pad; 330, water pump; 340, hose; 350, backflow pipe; 400, cleaning assembly. DETAILED DESCRIPTION
[0028] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0029] Please refer to Figures 1-4 The embodiment of the present application provides a high-efficiency intensive pigeon breeding water system integrated device, which comprises a water feeding assembly 100, a water supply assembly 200, a backflow assembly 300 and a cleaning assembly 400. The water supply assembly 200 is arranged on one side of the water feeding assembly 100, the backflow assembly 300 is arranged between the water feeding assembly 100 and the water supply assembly 200, and the cleaning assembly 400 is arranged above the water feeding assembly 100. The water supply assembly 200 comprises a water storage part 210 for storing water. A water replenishing part 220 for replenishing water is arranged between the bottom of the water storage part 210 and the water feeding assembly 100. A stirring part 230 for mixing materials is arranged on the water storage part 210. The water replenishing part 220 comprises a drain pipe 221 arranged at the bottom of the water storage part 210. The bottom end of the drain pipe 221 is communicated with a water guide pipe 222. The water guide pipe 222 is connected with the water feeding assembly 100. The water guide pipe 222 and the drain pipe 221 are movably connected with a plug 223. The bottom of the plug 223 is fixedly connected with a floating block 224. A guide part is arranged between the floating block 224 and the water guide pipe 222.
[0030] It should be noted that the working principle of the cleaning assembly 400 is consistent with the brush cleaning assembly of the automatic water feeding device for pigeon breeding disclosed in the existing patent No. CN222425075U. The inner wall of the water feeding cylinder 110 can be brushed to prevent impurities and moss accumulated due to long-term water supply in the water feeding cylinder 110 from being drunk by pigeons, which is harmful to the health of pigeons. It is prior art, so it is not described in detail in this technical solution.
[0031] The guide piece includes a limiting groove 225 opened on the surface of the floating block 224. The inner cavity of the limiting groove 225 is slidably connected to a limiting strip 226. One side of the limiting strip 226 is fixedly connected to the inner wall surface of the water guide pipe 222. The cross sections of the limiting groove 225 and the limiting strip 226 are dovetail-shaped or T-shaped structures. When the floating block 224 moves up and down with the water surface, the limiting groove 225 can be driven to move synchronously, so that the floating block 224 can stably move up and down along the surface of the limiting strip 226, to ensure that the plug 223 can be aligned with the drain pipe 221 without deviation.
[0032] The water feeding assembly 100 includes a water feeding cylinder 110. One end of the water feeding cylinder 110 is communicated with a drain pipe 120. The end of the water guide pipe 222 away from the drain pipe 221 is communicated with the water feeding cylinder 110. The cleaning assembly 400 is located directly above the water feeding cylinder 110. The water flow channel can be formed between the drain pipe 221 and the water guide pipe 222, so that the water in the water storage device 210 can flow into the water feeding cylinder 110, to realize the water feeding effect for each pigeon.
[0033] The water storage device 210 includes a water storage barrel 211 located on one side of the water feeding cylinder 110. The top of the water storage barrel 211 is communicated with two feed pipes 212. The top end of the feed pipe 212 is threadedly connected with a pipe cover 213. The bottom of the water storage barrel 211 is communicated with the drain pipe 221. A large amount of water can be stored in the water storage device 210, so that subsequent timely water replenishment operation can be performed in the water feeding assembly 100.
[0034] The stirring piece 230 includes a motor 231 installed at the top center of the water storage barrel 211. The output shaft of the motor 231 penetrates into the inner cavity of the water storage barrel 211 and is fixedly connected with a rotating rod 232. The surface of the rotating rod 232 is sequentially fixedly connected with a plurality of stirring blades 233 from top to bottom. By starting the motor 231, the output shaft of the motor 231 can drive the rotating rod 232 and the stirring blades 233 to rotate synchronously, so that the water and the medicament in the water storage device 210 can be fully mixed, to ensure the use effect of the medicament.
[0035] The backflow assembly 300 comprises a branch pipe 310 communicated with the blowdown pipe 120, the branch pipe 310 is provided with a filter 320 at an end away from the blowdown pipe 120, a water pump 330 is mounted on the cleaning assembly 400, a hose 340 is communicated between the water inlet of the water pump 330 and the filter 320, a backflow pipe 350 is communicated between the water outlet of the water pump 330 and the water storage bucket 211, and the blowdown pipe 120 and the branch pipe 310 are respectively provided with valves, by opening the valve on the branch pipe 310, closing the valve on the blowdown pipe 120, and starting the water pump 330, the water in the water feeding cylinder 110 can be transported to the water storage device 210 through the blowdown pipe 120, the branch pipe 310, the filter 320, the water pump 330, the hose 340 and the backflow pipe 350 for repeated use.
[0036] The filter 320 comprises a transition pipe 321 threadedly connected to the end of the branch pipe 310, the transition pipe 321 is communicated with one end of the hose 340, and the inner cavity of the transition pipe 321 is provided with a plurality of regularly distributed filter screens 322, when the water in the water feeding cylinder 110 enters the filter 320, the water can be filtered by the plurality of filter screens 322 in sequence to ensure the cleanliness of the water entering the water storage device 210, and the filter 320 and the branch pipe 310 and the filter 320 and the hose 340 are respectively detachably connected by threads to facilitate the cleaning operation of impurities in the filter 320 later.
[0037] The plurality of filter screens 322 are fixedly connected with a clamping strip 323, the inner cavity of the transition pipe 321 is provided with a clamping groove 3211 matched with the clamping strip 323, the clamping strip 323 is inserted into the corresponding clamping groove 3211, and the detachable connection of the filter screen 322 and the transition pipe 321 is realized by the cooperation of the clamping groove 3211 and the clamping strip 323, so that the filter screen 322 can be easily disassembled, cleaned or replaced later to improve the filtering effect.
[0038] The surface of the clamping strip 323 is fixedly connected with a protruding block 3231, the clamping strip 323 can be easily pushed by the protruding block 3231, so that the clamping strip 323 quickly slides out of the inner cavity of the clamping groove 3211, thereby improving the disassembly efficiency of the filter screen 322.
[0039] The transition pipe 321 and the branch pipe 310 are provided with a sealing ring pad 324, the inner cavity of the transition pipe 321 is provided with an annular groove 3212 matched with the sealing ring pad 324, the sealing ring pad 324 is clamped in the inner cavity of the annular groove 3212, one side of the inner cavity of the clamping groove 3211 is communicated with the annular groove 3212, and the sealing ring pad 324 can improve the sealing property between the transition pipe 321 and the branch pipe 310 to avoid leakage.
[0040] The utility model discloses a working principle is: twist one of the pipe covers 213, and the water is added in the storage water bucket 211 through one of the feed tubes 212 and stores, when the water level in the water feeding cylinder 110 is higher and does not need to supplement water, water will float the float block 224 on the water surface, so that the plug 223 is clamped at the bottom of the drain pipe 221 and seals it, when the water level in the water feeding assembly 100 drops and needs to supplement water, water will drive the float block 224 and the plug 223 to drop, and the float block 224 drives the limit groove 225 to move synchronously, so that the float block 224 stably slides on the surface of the limiting strip 226, until the plug 223 no longer seals the drain pipe 221, and then the water in the storage water bucket 211 enters the water feeding cylinder 110 through the drain pipe 221 and the water guide pipe 222 in turn and carries out the water supplement operation, and the pigeon can be watered through the water feeding cylinder 110, twist the other pipe cover 213, and the medicament is added in the storage water bucket 211 through the other feed tube 212, and the motor 231 is started, and the output shaft of the motor 231 drives the rotating rod 232 and the stirring blade 233 to rotate, and the medicament and water are fully mixed, and then the water with medicament can be transported to the water feeding cylinder 110 through the water supplement part 220, and the pigeon can be watered through the water feeding cylinder 110, open the valve on the branch pipe 310, close the valve on the blow-off pipe 120, start the water pump 330, and the water in the water feeding cylinder 110 enters the storage water bucket 211 through the blow-off pipe 120, the branch pipe 310, the transition pipe 321, the hose 340, the water pump 330 and the backflow pipe 350 in turn, so that the water in the water feeding cylinder 110 is kept in a flowing state, and the backflow water is filtered through the filter screen 322, so as to guarantee the cleanliness of the water source, the transition pipe 321 is removed from the transition pipe 321 by twisting, the sealing ring pad 324 is taken out from the annular groove 3212, the lug 3231 is used to move the clamping strip 323, the clamping strip 323 slides in the inner cavity of the clamping groove 3211, the clamping strip 323 drives the filter screen 322 to move, until the filter screen 322 completely separates from the inner cavity of the transition pipe 321, and the transition pipe 321 and the filter screen 322 can be cleaned regularly, so as to guarantee the filtering effect, open the valve on the blow-off pipe 120, close the valve on the branch pipe 310, and the inner wall of the water feeding cylinder 110 can be cleaned through the cleaning assembly 400.
[0041] The parts not involved in the utility model are the same as the prior art or can be realized by using the prior art. Although the embodiments of the utility model have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and spirits of the utility model, and the scope of the utility model is defined by the appended claims and their equivalents.
Claims
1. A high-efficiency intensive pigeon breeding water system integrated device, characterized in that, The application relates to a water feeding assembly (100) which is provided with a water supply assembly (200) on one side, the water supply assembly (200) is provided with a backflow assembly (300) between the water feeding assembly (100), and the water feeding assembly (100) is provided with a cleaning assembly (400) above. The water supply assembly (200) comprises a water storage part (210) for storing water, the water storage part (210) is provided with a water supplement part (220) between the bottom and the water feeding assembly (100) for supplementing water, and the water storage part (210) is provided with a stirring part (230) for mixing materials. The water supplement part (220) comprises a drain pipe (221) arranged at the bottom of the water storage part (210), the bottom end of the drain pipe (221) is communicated with a water guide pipe (222), the water guide pipe (222) is connected with the water feeding assembly (100), the water guide pipe (222) and the drain pipe (221) are jointly connected with a plug (223), the bottom of the plug (223) is fixedly connected with a floating block (224), and a guide part is arranged between the floating block (224) and the water guide pipe (222). The guide part comprises a limiting groove (225) arranged on the surface of the floating block (224), the inner cavity of the limiting groove (225) is slidably connected with a limiting strip (226), and one side of the limiting strip (226) is fixedly connected with the inner wall surface of the water guide pipe (222).
2. The high-efficiency intensive pigeon breeding water system integrated device according to claim 1, characterized in that: The water feeding assembly (100) comprises a water feeding cylinder (110), one end of the water feeding cylinder (110) is communicated with a sewage pipe (120), the end, away from the drain pipe (221), of the water guide pipe (222) is communicated with the water feeding cylinder (110), and the cleaning assembly (400) is located directly above the water feeding cylinder (110).
3. The high-efficiency intensive pigeon breeding water system integrated device according to claim 1, characterized in that: The water storage part (210) comprises a water storage barrel (211) located on one side of the water feeding cylinder (110), the top of the water storage barrel (211) is communicated with two feeding pipes (212), the top end of the feeding pipe (212) is threadedly connected with a pipe cover (213), and the bottom of the water storage barrel (211) is communicated with the drain pipe (221).
4. The high-efficiency intensive pigeon breeding water system integrated device according to claim 3, characterized in that: The stirring part (230) comprises a motor (231) arranged at the top center of the water storage barrel (211), the output shaft of the motor (231) penetrates into the inner cavity of the water storage barrel (211) and is fixedly connected with a rotating rod (232), and a plurality of stirring blades (233) are fixedly connected to the surface of the rotating rod (232) from top to bottom.
5. The high-efficiency intensive pigeon breeding water system integrated device according to claim 4, characterized in that: The backflow assembly (300) comprises a branch pipe (310) communicated with the sewage pipe (120), the end, away from the sewage pipe (120), of the branch pipe (310) is provided with a filtering part (320), a water pump (330) is arranged on the cleaning assembly (400), a hose (340) is communicated between the water inlet of the water pump (330) and the filtering part (320), a backflow pipe (350) is communicated between the water outlet of the water pump (330) and the water storage barrel (211), and valves are arranged on the sewage pipe (120) and the branch pipe (310) respectively.
6. The high-efficiency intensive pigeon breeding water system integrated device according to claim 4, characterized in that: 7. The high-efficiency intensive pigeon breeding water system integrated device according to claim 6, characterized in that: The filter (320) comprises a transition pipe (321) threadedly connected to the end of the branch pipe (310), the transition pipe (321) is communicated with one end of the hose (340), and the inner cavity of the transition pipe (321) is provided with a plurality of regularly distributed filter screens (322).
8. The high-efficiency intensive pigeon breeding water system integrated device according to claim 7, characterized in that: A plurality of the filter screens (322) are fixedly connected together with a clamping strip (323), the inner cavity of the transition pipe (321) is provided with a clamping groove (3211) matched with the clamping strip (323), and the clamping strip (323) is inserted into the corresponding clamping groove (3211).
9. The high-efficiency intensive pigeon breeding water system integrated device according to claim 8, characterized in that: The surface of the clamping strip (323) is fixedly connected with a protruding block (3231).
10. The high-efficiency intensive pigeon breeding water system integrated device according to claim 8, characterized in that: The transition pipe (321) is provided with a sealing ring pad (324) between the transition pipe (321) and the branch pipe (310), the inner cavity of the transition pipe (321) is provided with an annular groove (3212) matched with the sealing ring pad (324), the sealing ring pad (324) is clamped in the inner cavity of the annular groove (3212), and one side of the inner cavity of the clamping groove (3211) is communicated with the annular groove (3212).
Citation Information
Patent Citations
Automatic water supply device for pigeon breeding
CN222425075U