Self-circulation water drinking anti-fouling device for parrot feeding
The design of the self-circulating drinking water anti-pollution device solves the problems of hygiene, maintenance cost and compatibility of parrot drinking devices, realizes automatic interception of food residue and dynamic self-cleaning, keeps the water clean and reduces the maintenance frequency.
Patent Information
- Application Number
- CN202521540672.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-23
- Publication Date
- 2026-08-25
- Estimated Expiration
- 2035-07-23
AI Technical Summary
Existing parrot drinking devices suffer from insufficient hygiene, high maintenance costs, and poor adaptability. In particular, open-style water bowls are prone to contamination, and ball-type water bowls are prone to jamming and are not suitable for parrots with different pecking strengths.
A self-circulating drinking water anti-pollution device was designed, including a water supply component, an interception net and a water storage tank. It utilizes a combination of siphon tube, air bag and filter grid, combined with the interception net and separator strips, to achieve automatic interception of food residue and dynamic self-cleaning.
It automatically intercepts food scraps, maintains water quality, reduces maintenance frequency, and adapts to the drinking needs of different pecking parrots.
Smart Images

Figure CN224670599U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of bird breeding equipment, specifically a self-circulating drinking water and anti-pollution device for parrot breeding. Background Technology
[0002] In parrot husbandry, proper water hygiene is a crucial factor affecting bird health. Common parrot water devices fall into two main categories: open water bowls, which are directly exposed to the environment, easily leading to food residue being carried into the water and rapid contamination. Experimental data shows that after 24 hours of use, the total bacterial count in these bowls can reach 28,000 CFU / mL, requiring daily cleaning and frequent maintenance, which is labor-intensive. The second type is ball-operated water bottles, where birds peck at the ball to dispense water. While this reduces food contamination, problems such as the ball getting stuck and water supply interruptions, and algae growth in the crevices, make them particularly unsuitable for parrots that like to fidget.
[0003] In the process of realizing this utility model, the inventors discovered the following problems in the prior art: First, it is not hygienic enough; the open design cannot isolate food residue and feathers, and the water becomes a breeding ground for bacteria, causing diseases such as diarrhea in parrots; Second, the maintenance cost is high; the daily water change operation is time-consuming, and the disassembly process is easy to disturb birds; Third, it has poor adaptability; the ball bearing structure requires high pecking force from small parrots, and young or old birds often cannot effectively trigger the water to come out. Utility Model Content
[0004] The purpose of this invention is to provide a self-circulating drinking water and anti-pollution device for parrot breeding, so as to solve the problems mentioned in the background art.
[0005] To solve the above-mentioned technical problems, on the one hand, a self-circulating drinking water and anti-pollution device for parrot breeding is provided, including: a water supply component, an interception net and a water storage tank;
[0006] The water supply assembly includes a water storage bottle, a sealing ring, a siphon tube, an air bladder, and a first filter screen.
[0007] The interception net includes a pivot and floats;
[0008] The water storage tank includes a limiting strip, a dividing strip, a sludge collection tank, a guide port, a drain port, a plug, and a second filter screen.
[0009] Preferably, the siphon tube includes a first siphon tube and a second siphon tube;
[0010] One end of the first siphon tube extends below the liquid surface of the water storage bottle, and the other end is connected to the air bag;
[0011] One end of the second siphon tube is connected to the airbag, and the other end extends to the bottom of the water storage tank.
[0012] Preferably, the mesh size of the intercepting net is smaller than the diameter of the food residue, the width of the intercepting net is the same as that of the water storage tank, and the length of the intercepting net is greater than or equal to the distance from the top of the left wall of the water storage tank to the top of the dividing strip;
[0013] The rotating shaft is used to fix one end of the interception net to the top of the left wall of the water storage tank, and can rotate along the fixed shaft;
[0014] The float is made of hollow food-grade silicone and is fixed to the bottom right edge of the interception net. The density of the float is maintained within the range of [0.6, 0.8 g / m³]. 3 [ ], used to support the interception net to float to the surface of the water.
[0015] Preferably, the limiting strip is installed on the top of the upper and lower walls of the water storage tank to limit the upward floating height of the interception net;
[0016] The separator is fixed to the bottom of the water tank, the slope has an inclination angle of 45°, and the surface of the slope is coated with a non-stick coating for food residue to slide down the slope.
[0017] The sludge collection tank is formed by the partition strip, and the edge of the sludge collection tank is provided with the guide port that connects the water storage tank and the sludge collection tank;
[0018] The sewage outlet is located at the bottom of the sewage collection tank and is equipped with a plug to block the water flow.
[0019] Preferably, the dividing strip is used to separate the water storage tank to form the sludge collection tank for processing food waste, and at the same time, to provide a support point for the interception net;
[0020] The flow guide is used to guide water flow into the sludge collection tank.
[0021] Preferably, one end of the interception net is fixed by the pivot, and the other end is controlled by the float to adjust its height. When the water level drops, the interception net creates a height difference, and food residue falls along the interception net. The lowest point of the fall is the top of the separator bar.
[0022] Preferably, the water bottle is fixed upright outside the water tank, with the bottom of the water bottle higher than the top of the water tank. Gravity and air pressure are used to automatically stop the water supply when the water level reaches the limit bar of the water tank.
[0023] The sealing ring is pressed into the hole at the top of the water storage bottle to maintain airtightness.
[0024] Preferably, the first filter screen is fitted onto the second siphon pipe port at the bottom of the water storage tank, and the mesh size is smaller than the diameter of the food residue;
[0025] The second filter screen is installed on the drain outlet, and the mesh size is the same as that of the first filter screen.
[0026] Preferably, the working process of the device includes:
[0027] Water supply phase: Press the airbag three times to expel the air from the siphon tube. Water from the storage bottle flows into the storage tank through the siphon tube due to gravity. When the water level in the storage tank rises to the top, the combined force of the air pressure and gravity in the storage bottle on the siphon tube equals the force of the weight of the water in the storage tank on the siphon tube, thus blocking the water flow. When the water level in the storage tank drops, the pressure on the siphon tube on one side of the storage tank is lower than the combined pressure of the air pressure and gravity in the storage bottle on the siphon tube, so water is added again to achieve dynamic balance.
[0028] Anti-fouling stage: When food scraps such as grains come into contact with the interception net, the floats are buoyed up, causing the interception net to emerge above the water surface and intercept the food scraps; at the same time, when the parrot drinks water, it gently presses the interception net, causing the floats to sink and pull the interception net into the water. The water flow impact causes the food scraps to detach from the interception net, completing the self-cleaning process.
[0029] Sewage discharge stage: Open the plug of the sewage outlet at the bottom of the sewage collection tank. The water level drops and the float moves the intercepting net to sink into the water for self-cleaning. At the same time, the left end of the intercepting net is fixed, so a height difference appears in the intercepting net. Food residue rolls off the intercepting net. Meanwhile, the water flows towards the sewage outlet. Due to the suction of the water flow, the food residue slides down the slope of the separator and collects in the residue collection box.
[0030] One of the technical methods in the above-mentioned technical solution has the following beneficial effects: due to the combination structure of water supply components and interception net, the problem of food contamination of water source and bacterial growth caused by parrot drinking is overcome, thereby achieving the effect of automatic interception of residue and dynamic self-cleaning of water storage tank, and maintaining water quality hygiene.
[0031] Another technical method in the above-mentioned technical solution has the following beneficial effects: due to the adoption of the connection port design of the sewage component and the slope of the partition strip, the problem of daily water changing and frequent maintenance of traditional water tanks is overcome, thereby achieving the long-term cleaning effect of directional sliding collection of residue and 72-hour water-free cleaning. Attached Figure Description
[0032] Figure 1 This is a top view of the drinking water anti-pollution device in an embodiment of this utility model;
[0033] Figure 2This is a front view of the drinking water anti-pollution device in an embodiment of this utility model;
[0034] Figure 3 This is a side view of the drinking water anti-pollution device in an embodiment of the present utility model;
[0035] Figure 4 This is the interception net of the drinking water pollution prevention device in the embodiments of this utility model;
[0036] Figure 5 This is a top view of the water storage tank of the drinking water anti-pollution device in this embodiment of the utility model.
[0037] In the diagram: 1. Water supply component; 110. Water storage bottle; 111. Sealing ring; 120. Siphon tube; 121. Airbag; 122. First filter screen; 2. Interception net; 210. Rotating shaft; 220. Float bar; 3. Water storage tank; 310. Limiting strip; 320. Separating strip; 321. Sludge collection tank; 322. Flow guide; 330. Sludge outlet; 331. Plug; 332. Second filter screen. Detailed Implementation
[0038] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0039] Please see Figures 1 to 5 One embodiment of this utility model is a self-circulating drinking water and anti-pollution device for parrot breeding, which includes a water supply component 1, an interception net 2, and a water storage tank 3.
[0040] Furthermore, the water supply assembly 1 includes a water storage bottle 110, a sealing ring 111, a siphon tube 120, an air bladder 121, and a first filter screen 122; the water storage bottle 100 is made of transparent PC material, has a capacity of 500mL, is installed upright, and is fixed by clamping plates on both sides of the outer surface of the bottle to prevent shaking; the top of the water storage bottle 100 has a hole for the siphon tube 120 to pass through; the air bladder 121 is made of food-grade silicone material, has a volume of 20mL, is ellipsoidal, and has connectors for the siphon tube 120 at the two edges of the major axis of the ellipsoid. The siphon tube 120 consists of two food-grade silicone tubes, with one end of the first siphon tube extending below the liquid surface of the water storage bottle 100 and the other end of the second siphon tube extending to the bottom of the water storage tank 3. The sealing ring 111 is made of rubber and is pressed into the interface hole between the cap of the water storage bottle 100 and the siphon tube 120 to keep the water storage bottle 100 sealed. The first filter screen 122 is a stainless steel woven mesh with a mesh size smaller than the diameter of food residues such as grains. It is designed to be detachable and covers the outlet of the second siphon tube at the bottom of the water storage tank 3.
[0041] Furthermore, the interception net 2 includes a rotating shaft 210 and floats 220; the interception net 2 is made of stainless steel woven mesh, and the mesh size of the interception net 2 should be smaller than the diameter of food residues such as grains. The width of the interception net 2 is the same as that of the water storage tank 3, and the length of the interception net 2 is greater than or equal to the distance from the top of the left wall of the water storage tank 3 to the top of the separator 320; the rotating shaft 210 is used to fix one end of the interception net 2 to the top of the left wall of the water storage tank 3, and can rotate along the fixed shaft; the floats 220 are made of hollow food-grade silicone and are fixed to the bottom right edge of the interception net 2. The density of the floats 220 is maintained within the range of [0.6, 0.8 g / m³]. 3 This allows the float 220 to support the interception net 2 to float above the water surface.
[0042] Furthermore, the water storage tank 3 includes a limiting strip 310, a separating strip 320, a sludge collection tank 321, a guide port 322, a drain port 330, a plug 331, and a second filter screen 332. The limiting strip 310 is installed on the top of the upper and lower tank walls of the water storage tank 3 to limit the floating height of the intercepting net 2. The separating strip 320 is fixed to the bottom of the water storage tank 3, at a distance of 1 / 5 of the length of the water storage tank 3 from the right tank wall, and is in the shape of a right-angled trapezoid, with the right-angled side facing the left tank wall of the water storage tank 3. The inclined angle of the right-angled side is 45°, and the surface of the slope is sprayed with a non-stick coating, such as a Teflon coating, so that food residues such as grains can slide smoothly along the slope. The separator 320 is used to separate the water storage tank 3, forming a sludge collection tank 321 for processing food residue, and at the same time, it provides a support point for the interception net 2. The sludge collection tank 321 is formed by the separator 320. The edge of the sludge collection tank 321 is provided with a guide port 322 connecting the water storage tank 3 and the sludge collection tank 321, which is used to guide water flow into the sludge collection tank 321. The drain outlet 330 is set at the bottom of the sludge collection tank 321 and is equipped with a plug 331 to block the water flow. The second filter screen 332 is set on the drain outlet 330, and the mesh size is the same as that of the first filter screen 122, which is used to prevent food residue from blocking the drain outlet 330.
[0043] Furthermore, the water bottle 100 is fixed upright outside the water tank 3, with the bottom of the water bottle 100 higher than the top of the water tank 3. Gravity and air pressure are used to automatically stop the water supply when the water level reaches the limit bar 310 of the water tank 3. One end of the first siphon tube extends through the hole at the top of the water bottle 100 to below the liquid surface inside the water bottle 100. The sealing ring 111 is pressed against the hole at the top of the water bottle 100, and the other end is connected to the long shaft interface of the air bag 121. One end of the second siphon tube extends to the bottom of the water tank 3. The first filter screen 122 is sleeved on the second siphon tube port at the bottom of the water tank 3 to prevent unblocked food residue from clogging the second siphon tube port. The other end is connected to the other long shaft interface of the air bag 121.
[0044] The left end of the interception net 2 is fixed to the top of the left wall of the water storage tank 3 by a pivot 210, and the other end is controlled by a float 220. When the water level drops, the right end of the interception net 2 falls down, and the lowest point of the fall is the top of the separator 320.
[0045] Furthermore, the workflow includes:
[0046] Water supply phase: Press the airbag 121 three times to expel the air from the siphon tube 120. Water from the water storage bottle 100 flows into the water storage tank 3 through the siphon tube 120 due to gravity. When the water level in the water storage tank 3 rises to the top of the tank, the combined force of the air pressure and gravity in the water storage bottle 100 on the siphon tube 120 is equal to the force of the gravity of the water in the water storage tank 3 on the siphon tube 120, thus blocking the water flow. When the water level in the water storage tank 3 drops, the pressure on the siphon tube 120 on one side of the tank 3 is lower than the combined pressure of the air pressure and gravity in the water storage bottle 100 on the siphon tube 120, so water is added again to achieve dynamic balance.
[0047] Anti-fouling stage: When food scraps such as grains come into contact with the interception net 2, the float 220 is buoyed up, causing the interception net 2 to be exposed above the water surface to intercept the food scraps; at the same time, when the parrot drinks water, it gently presses the interception net 2, and the float 220 is forced to sink, causing the interception net 2 to sink into the water. The water flow impact causes the food scraps to detach from the interception net 2, completing the self-cleaning process.
[0048] Sewage discharge stage: Open the plug 331 of the sewage outlet 330 at the bottom of the sewage collection tank 321. The water level drops and the float 220 drives the intercepting net 2 to sink into the water for self-cleaning. At the same time, the left end of the intercepting net 2 is fixed, so there is a height difference in the intercepting net 2. Food scraps roll off the intercepting net 2. At the same time, the water flows towards the sewage outlet 330 and converges. Due to the suction of the water flow, the food scraps slide down the slope of the separator 320 and concentrate in the scrap collection box.
[0049] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention. No reference numerals in the claims should be construed as limiting the scope of the claims.
Claims
1. A self-circulating drinking water and anti-pollution device for parrots, characterized in that, include: Water supply components (1), interception net (2) and water storage tank (3); The water supply assembly (1) includes a water storage bottle (100), a sealing ring (111), a siphon tube (120), an airbag (121), and a first filter screen (122). The interception net (2) includes a pivot (210) and floats (220); The water storage tank (3) includes a limiting strip (310), a separating strip (320), a sludge collection tank (321), a guide port (322), a drain port (330), a plug (331), and a second filter screen (332).
2. The self-circulating drinking water and anti-pollution device for parrot breeding according to claim 1, characterized in that: The siphon (120) includes a first siphon and a second siphon; One end of the first siphon tube extends below the liquid surface of the water storage bottle (100), and the other end is connected to the air bag (121). One end of the second siphon tube is connected to the airbag (121), and the other end extends to the bottom of the water storage tank (3).
3. A self-circulating drinking water and anti-pollution device for parrot breeding according to claim 1, characterized in that: The mesh size of the interception net (2) is smaller than the diameter of the food residue, the width of the interception net (2) is the same as that of the water storage tank (3), and the length of the interception net (2) is greater than or equal to the distance from the top of the left wall of the water storage tank (3) to the top of the separator (320). The rotating shaft (210) is used to fix one end of the intercepting net (2) to the top of the left wall of the water storage tank (3), and can rotate along the fixed shaft; The float (220) is made of hollow food-grade silicone and is fixed to the bottom right edge of the interception net (2). The density of the float (220) is maintained within the range of [0.6, 0.8 g / m³]. 3 ], used to support the interception net (2) to float to the surface of the water.
4. A self-circulating drinking water and anti-pollution device for parrot breeding according to claim 1, characterized in that: The limiting strip (310) is installed on the top of the upper and lower tank walls of the water storage tank (3) to limit the floating height of the interception net (2); The separator (320) is fixed to the bottom of the water tank (3), the slope has an inclination angle of 45°, and the surface of the slope is coated with a non-stick coating for food residue to slide down the slope. The sludge collection tank (321) is formed by the partition strip (320), and the edge of the sludge collection tank (321) is provided with the guide port (322) that connects the water storage tank (3) and the sludge collection tank (321). The drain outlet (330) is located at the bottom of the sludge collection tank (321) and is equipped with a plug (331) to block the water flow.
5. A self-circulating drinking water and anti-pollution device for parrot breeding according to claim 1, characterized in that: The dividing strip (320) is used to separate the water storage tank (3) to form the sludge collection tank (321) for processing food waste, and at the same time, provides a support point for the interception net (2); The guide port (322) is used to guide water flow into the sludge collection tank (321).
6. A self-circulating drinking water and anti-pollution device for parrot breeding according to claim 1, characterized in that: One end of the interception net (2) is fixed by the pivot (210), and the other end is controlled by the float (220) to control the height. When the water level drops, the interception net (2) forms a height difference, and food residue falls along the interception net (2). The lowest point of the fall is the top of the separator (320).
7. A self-circulating drinking water and anti-pollution device for parrot breeding according to claim 1, characterized in that: The water storage bottle (100) is fixed outside the water storage tank (3) with its body upright. The bottom of the water storage bottle (100) is higher than the top of the water storage tank (3). Gravity and air pressure are used to make the water supply automatically stop when the water level reaches the limiting bar (310) of the water storage tank (3). The sealing ring (111) is pressed against the hole at the top of the water storage bottle (100) to maintain airtightness.
8. A self-circulating drinking water and anti-pollution device for parrot breeding according to claim 1, characterized in that: The first filter screen (122) is fitted onto the second siphon pipe port at the bottom of the water storage tank (3), and the mesh size is smaller than the diameter of the food residue; The second filter screen (332) is disposed on the drain outlet (330), and the mesh size is the same as that of the first filter screen (122).