Poultry needle valve drinker
By using locking buckles, securing buckles, and a double-sealing structure, combined with a filter housing and activated carbon granules for purification, the stability and purification issues of poultry drinkers are solved, achieving efficient and clean drinking water supply, adapting to the pecking habits of poultry at different growth stages, and simplifying maintenance operations.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- QINGDAO DETIANYUAN MASCH CO LTD
- Filing Date
- 2025-07-10
- Publication Date
- 2026-07-24
Smart Images

Figure CN224539133U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of poultry farming technology, and in particular to a poultry cone valve waterer. Background Technology
[0002] In the poultry farming industry, the performance of waterers directly affects farming efficiency and poultry health. Existing poultry waterers have many technical shortcomings in practical applications. For example, nipple-type and cup-type waterers are difficult to meet the needs of large-scale farming. Specific problems are as follows: The valve body of existing water dispensers is basically secured by a single layer of clips, which can easily cause the valve body to loosen and be damaged by frequent pecking by poultry; The sealing structure of the valve body is mostly a single-layer rubber gasket, which is prone to gaps when the water pipe pressure fluctuates or the equipment vibrates, leading to water leakage. Water leakage not only wastes water resources, but also makes the chicken coop floor damp, causing mold and bacteria growth in the bedding, increasing the risk of poultry diseases. At the same time, the valve core of some equipment does not reset in time, which can easily cause continuous dripping, further aggravating water waste and environmental degradation. When using traditional water dispenser valves, impurities such as mud, sand, and rust in the water can easily enter the interior of the dispenser, causing valve core blockage and affecting normal water supply. Odors and tiny pollutants in the water can directly enter the poultry's body, and long-term consumption can easily lead to digestive system diseases and reduce the survival rate of poultry. Utility Model Content
[0003] This utility model relates to a poultry cone valve waterer. When the water pipe valve is opened, the water flows sequentially through the filter holes of the filter housing and the activated carbon particles in the storage housing. After purification, it flows into the stabilizing sleeve. At this time, the nipple valve core is in a vertically closed state under the action of the auxiliary return spring, blocking the water flow. When the poultry pecks at the nipple valve core, the valve core is tilted in any direction under force. The trumpet-shaped swing groove provides sufficient space for movement. At this time, the flow groove above the nipple valve core is connected to the water flow channel. The purified water flows down along the flow groove for the poultry to drink. After the poultry stops pecking, the elasticity of the auxiliary return spring pushes the nipple valve core to quickly return to the vertical state. The flow groove separates from the water flow channel, and the water flow is cut off to prevent continuous leakage.
[0004] This utility model provides a poultry cone valve waterer, specifically including: a locking buckle, a stabilizing buckle installed at the bottom of the locking buckle, a positioning groove opened in the middle of the inner side of the stabilizing buckle, a sealing plug installed in the inner side of the positioning groove, a set of locking grooves opened on both sides of the locking buckle, a set of locking blocks provided on both sides of the top of the stabilizing buckle, the locking blocks extending into the interior of the locking grooves, a filter housing installed in the inner side of the flow sleeve, a storage housing installed at the bottom of the filter housing, the filter housing and the storage housing cooperating with each other to form a filter structure, a stabilizing sleeve installed in the inner side of the stabilizing buckle, and a nipple valve core installed in the inner side of the stabilizing sleeve.
[0005] Furthermore, a docking block is provided on one side of the stabilizing buckle, and the docking block has a dovetail groove structure.
[0006] Furthermore, a sealing gasket is installed above the sealing plug. The sealing plug and the sealing gasket cooperate to form a sealing structure. A flow sleeve is provided in the middle of the fastener. The flow sleeve passes through the interior of the sealing plug and the sealing gasket. A sealing groove is opened above the sealing plug and the sealing gasket.
[0007] Furthermore, a set of locking grooves is provided on the inner side of the upper part of the flow sleeve, and a set of locking blocks corresponding to the locking grooves are provided on the outer side of the filter housing.
[0008] Furthermore, a positioning groove is formed above the nipple valve core, and an auxiliary return spring is installed inside the positioning groove. The stabilizing sleeve, stabilizing ring, nipple valve core, and auxiliary return spring cooperate to form the valve structure.
[0009] Furthermore, a funnel-shaped swing groove is provided on the inner side of the stabilizing sleeve, and a set of flow grooves distributed in a ring array are provided above the nipple valve core.
[0010] Furthermore, a set of filter holes is provided at the top of the filter housing, and a set of flow holes is provided on the storage housing.
[0011] Furthermore, an annular groove is formed on the outer side of the stabilizing sleeve, and a stabilizing ring is installed on the inner side of the annular groove. The outer side of the stabilizing ring is in flexible contact with the inner wall of the stabilizing buckle.
[0012] This utility model provides a poultry cone valve waterer, which has the following beneficial effects: This utility model features locking buckles and stabilizing buckles to reinforce the water dispenser. The filter structure is quickly disassembled and assembled via locking grooves and locking blocks, allowing for replacement or cleaning without tools, significantly reducing maintenance time. The interlocking connection of the locking buckles and stabilizing buckles, along with the dovetail groove docking design of the water tray, simplifies the overall installation process and reduces the difficulty of operation for aquaculture personnel.
[0013] The double-sealing structure consisting of a sealing plug and a sealing gasket, combined with the sealing groove design, can effectively block the gap between the water pipe and the drinker, effectively reducing the leakage rate and avoiding water waste and dampness in the chicken house. At the same time, the secondary purification of the filter holes and activated carbon particles can intercept large particles of impurities and absorb odors, improving water cleanliness and reducing diseases in poultry caused by unclean drinking water.
[0014] The horn-shaped swing groove provides multi-angle movement space for the nipple valve core, adapting to the pecking habits of poultry in different directions, so that even chicks can easily trigger the water flow; the elasticity of the auxiliary return spring can be adjusted as needed, ensuring that adult chickens can quickly return to stop the water flow after pecking, while also meeting the needs of weaker chickens. The applicable range covers the entire growth cycle of poultry. The vertical closing design of the nipple valve core and the efficient action of the return spring ensure complete water cut-off when not in use, preventing water accumulation and deterioration in the water tray; the various structures work together to ensure convenient drinking for poultry, reduce the frequency of manual cleaning, and improve the efficiency of breeding management. Attached Figure Description
[0015] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings of the embodiments will be briefly described below.
[0016] The accompanying drawings described below are only related to some embodiments of the present invention and are not intended to limit the scope of the present invention.
[0017] In the attached diagram: Figure 1 This diagram shows the axonal structure of the cone valve water dispenser after assembly. Figure 2 This utility model illustrates Figure 1 A schematic diagram of the axonal structure from an elevation viewpoint; Figure 3 This invention provides a schematic diagram of the axial side structure of the cone valve water dispenser with disassembled components. Figure 4 This diagram shows a partial cross-sectional view of the cone valve water dispenser of this invention. Figure 5 This diagram shows a further cross-sectional view of the cone valve water dispenser of this invention. Figure 6 This utility model illustrates Figure 5 Front view structural diagram; Figure 7 The diagram shows the axial side view of the filter structure of this utility model from an elevation perspective; Figure 8 This utility model illustrates Figure 4 A magnified structural diagram at point A.
[0018] List of reference numerals 1. Lock the buckle; 2. Secure buckle; 201. Flowing sleeve; 3. Sealing structure; 301. Sealing plug; 302. Sealing gasket; 4. Filter structure; 401. Filter housing; 402. Storage housing; 5. Valve structure; 501. Stabilizing sleeve; 502. Stabilizing ring; 503. Nipple valve core; 504. Auxiliary return spring. Detailed Implementation
[0019] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this utility model. Based on the described embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.
[0020] Example 1: Please refer to Figures 1 to 8 : This utility model proposes a poultry cone valve waterer, comprising: a locking buckle 1; a stabilizing buckle 2 installed at the bottom of the locking buckle 1; a positioning groove formed in the middle of the inner side of the stabilizing buckle 2; a sealing plug 301 installed inside the positioning groove; a sealing gasket 302 installed above the sealing plug 301; the sealing plug 301 and the sealing gasket 302 cooperate to form a sealing structure 3; a flowing sleeve 201 is provided in the middle of the stabilizing buckle 2, passing through the interior of the sealing plug 301 and the sealing gasket 302; a sealing groove is formed above the sealing plug 301 and the sealing gasket 302; after the stabilizing buckle 2 is installed at the bottom of the water pipe, the sealing plug 301 and the sealing gasket 302 cooperate to seal the joint between the water pipe and the stabilizing buckle 2. Specific function: The double sealing structure 3 can effectively enhance the sealing of the connection between the water pipe and the stable buckle 2, prevent water from leaking from the joint, avoid water waste, keep the chicken house dry, reduce the problem of bacterial growth caused by water leakage, and improve the safety and reliability of the waterer. In this embodiment, a set of locking grooves is provided on both sides of the locking buckle 1. A set of locking blocks is provided on both sides of the upper part of the stabilizing buckle 2, extending into the interior of the locking grooves. After the stabilizing buckle 2 is installed, the locking buckle 1 is quickly and securely secured. A filter housing 401 is installed on the inner side of the flowing sleeve 201, and a storage housing 402 is installed at the bottom of the filter housing 401. The filter housing 401 and the storage housing 402 cooperate to form the filter structure 4. A set of locking grooves is provided on the inner side of the upper part of the flowing sleeve 201, and a set of locking blocks corresponding to the locking grooves is provided on the outer side of the filter housing 401. The locking grooves, in conjunction with the locking blocks, achieve the effect of quickly locking the installation position of the filter housing 401. Specific function: This structure allows the filter housing 401 to be quickly installed and fixed inside the flow sleeve 201 without the need for additional tools, simplifying the installation process. It also facilitates the subsequent disassembly, replacement, or cleaning of the filter housing 401, ensuring continuous filtration efficiency and improving the maintainability of the water dispenser. A set of filter holes is provided at the top of the filter housing 401 to filter impurities in the water flow. A set of flow holes is provided on the storage housing 402, which is used to store activated carbon particles. Specifically, the filter holes intercept larger particles of impurities in the water, preventing them from entering subsequent structures and causing blockages; the activated carbon particles in the storage housing 402 can fully contact the water flow through the flow holes, adsorbing tiny impurities and odors in the water, further purifying the water quality and providing cleaner drinking water for poultry, reducing the risk of diseases caused by water quality problems. In this embodiment, a stabilizing sleeve 501 is installed on the inner side of the stabilizing buckle 2, and a nipple valve core 503 is installed on the inner side of the stabilizing sleeve 501. A connecting block is provided on one side of the stabilizing buckle 2. The connecting block has a dovetail groove structure, which facilitates the installation of the water receiving tray. Its specific function is to enable quick positioning and installation of the water receiving tray through the dovetail groove structure connecting block, while ensuring the stability of the water receiving tray after installation, preventing it from shaking or falling off when the nipple valve core 503 is pecked, ensuring that the water receiving tray can accurately receive the flowing water, and also facilitating subsequent disassembly and cleaning of the water receiving tray. The upper part of the nipple valve core 503 has a conical structure, and a positioning groove is opened at the upper part of the nipple valve core 503. An auxiliary return spring 504 is installed on the inner side of the positioning groove. The stabilizing sleeve 501, the stabilizing ring 502, the nipple valve core 503, and the auxiliary return spring 504 cooperate with each other to form the valve structure 5. The auxiliary reset spring 504 provides sufficient elasticity to quickly restore the nipple valve core 503 to its vertical closed state after it is pecked by a chicken, ensuring timely water flow cut-off and preventing continuous leakage. The spring force can be selected as needed to adapt to the pecking force of poultry of different sizes, ensuring the reliability of the nipple valve core 503's reset. A funnel-shaped swing groove is provided on the inner side of the stabilizing sleeve 501, providing ample swing space for the nipple valve core 503. A set of flow grooves arranged in a circular array is provided above the nipple valve core 503. When the nipple valve core 503 is tilted under force, the water flows downwards along the flow grooves. When the nipple valve core 503 is in its natural vertical state, it cuts off the flow. Specific functions: The horn-shaped swing groove provides a larger range of motion for the nipple valve core 503, allowing the valve core to be easily triggered to tilt and release water when poultry pecks from different angles, thus improving the ease of use of the equipment; while the design of the flow groove can guide the water flow smoothly when the valve core is tilted, and can reliably cut off the water flow when it is vertical, ensuring the effectiveness of water release and water shut-off. In this embodiment, an annular groove is formed on the outer side of the stabilizing sleeve 501, and a stabilizing ring 502 is installed on the inner side of the annular groove. The outer side of the stabilizing ring 502 is in flexible contact with the inner wall of the stabilizing buckle 2. The friction of the stabilizing ring 502 makes the stabilizing sleeve 501 firmly installed inside the stabilizing buckle 2. Specifically, the stabilizing ring 502 firmly fixes the stabilizing sleeve 501 in the stabilizing buckle 2 through friction, preventing it from loosening or shifting when the nipple valve core 503 is frequently pecked, thus ensuring the overall stability of the valve structure 5. At the same time, the flexible contact method also facilitates the disassembly and maintenance of the stabilizing sleeve 501, taking into account both stability and maintenance convenience.
[0021] Example 2, based on Example 1, such as Figure 1As shown, select a standard water receiving tray according to actual needs, and set an installation groove on the top of the water receiving tray. The water receiving tray is installed in conjunction with the installation groove and positioned on one side of the stable buckle 2.
[0022] Example 3, based on Example 1, such as Figures 1-8 As shown, each component is made of wear-resistant materials and features a modular design. When a single component is damaged, it can be replaced individually without the need for the entire device to be scrapped. This extends the service life by two to three times compared to traditional waterers, reducing the cost of aquaculture equipment.
[0023] The working principle of this embodiment: First, the activated carbon granules are loaded into the storage shell 402. Then, the filter shell 401 is docked and combined with the storage shell 402 to form a complete filter structure 4. Align the locking groove on the inside of the flow sleeve 201 with the locking block on the outside of the filter shell 401, and push the filter structure 4 into the flow sleeve 201 until the locking block is completely locked into the locking groove, thus completing the rapid fixation of the filter structure 4. Place the auxiliary reset spring 504 into the positioning groove above the nipple valve core 503, then install the nipple valve core 503 into the trumpet-shaped swing groove of the stabilizing sleeve 501 to ensure that the nipple valve core 503 can swing flexibly. Put the stabilizing ring 502 into the annular groove of the stabilizing sleeve 501, and then install the entire stabilizing sleeve 501 into the inner side of the stabilizing buckle 2. The stabilizing ring 502 and the inner wall of the stabilizing buckle 2 are used to achieve a stable fixation. Place the sealing plug 301 and sealing gasket 302 onto the flowing sleeve 201 in sequence, aligning their sealing grooves. Align the locking block above the stabilizing buckle 2 with the locking grooves on both sides of the locking buckle 1. Press the stabilizing buckle 2 until the locking block is fully embedded in the locking groove, completing the quick assembly of the two. At this time, the sealing structure 3 tightly fits the water pipe interface, forming a double seal. The waterer is fixed to the bottom of the water pipe in the chicken house by locking buckle 1, ensuring that the sealing structure 3 is in close contact with the water pipe interface. According to embodiment 2, select a suitable water receiving tray, align the installation groove of the water receiving tray with the dovetail groove docking block on one side of the stabilizing buckle 2, push it in and lock it in, and complete the positioning and installation of the water receiving tray. When the water pipe valve is opened, the water flows through the filter holes of the filter housing 401 and the activated carbon particles of the storage housing 402 in sequence. After purification, it flows into the stabilizing sleeve 501. At this time, the nipple valve core 503 is in a vertically closed state under the action of the auxiliary reset spring 504, blocking the water flow. When poultry peck at the nipple valve core 503, the valve core is tilted in any direction under force, and the trumpet-shaped swing groove provides enough space for movement. At this time, the flow groove above the nipple valve core 503 is connected to the water flow channel, and the purified water flows down along the flow groove for the poultry to drink. After the poultry stops pecking, the elastic force of the auxiliary return spring 504 pushes the nipple valve core 503 to quickly return to the vertical state, the flow groove separates from the water flow channel, the water flow is cut off, and continuous leakage is avoided; Periodically disassemble the filter structure 4, push the filter housing 401 in the reverse direction to disengage the locking block from the locking groove of the flow sleeve 201, remove the filter structure 4, replace the activated carbon particles, and clean the filter holes of the filter housing 401 to prevent impurities from clogging it. Through the above steps, this poultry cone valve drinker can be easily installed, provides stable water supply, efficiently purifies water, and is easy to maintain, meeting the daily drinking water needs of poultry farming.
Claims
1. Poultry cone valve drinker, including: The filter consists of a locking buckle (1), a filter housing (401), and a nipple valve core (503). A stabilizing buckle (2) is installed at the bottom of the locking buckle (1). A positioning groove is opened in the middle of the inner side of the stabilizing buckle (2). The stabilizing buckle (2) is characterized by a sealing plug (301) installed in the inner side of the positioning groove. A set of locking grooves is opened on both sides of the locking buckle (1). A set of locking blocks is provided on both sides of the upper part of the stabilizing buckle (2). The locking blocks extend into the interior of the locking groove. A filter housing (401) is installed in the inner side of the flow sleeve (201). A storage housing (402) is installed at the bottom of the filter housing (401). The filter housing (401) and the storage housing (402) cooperate with each other to form a filter structure (4). A stabilizing sleeve (501) is installed in the inner side of the stabilizing buckle (2). A nipple valve core (503) is installed in the inner side of the stabilizing sleeve (501).
2. The poultry cone valve drinker according to claim 1, characterized in that, A docking block is provided on one side of the stabilizing buckle (2).
3. The poultry cone valve drinker according to claim 1, characterized in that, A sealing gasket (302) is installed above the sealing plug (301). The sealing plug (301) and the sealing gasket (302) cooperate to form a sealing structure (3). A flow sleeve (201) is provided in the middle of the stabilizing buckle (2). The flow sleeve (201) passes through the interior of the sealing plug (301) and the sealing gasket (302). A sealing groove is opened above the sealing plug (301) and the sealing gasket (302).
4. The poultry cone valve drinker according to claim 1, characterized in that, A set of locking grooves is provided on the inner side of the upper part of the flow sleeve (201), and a set of locking blocks corresponding to the locking grooves are provided on the outer side of the filter housing (401).
5. The poultry cone valve drinker according to claim 1, characterized in that, A positioning groove is provided above the nipple valve core (503), and an auxiliary return spring (504) is installed inside the positioning groove. The stabilizing sleeve (501), the stabilizing ring (502), the nipple valve core (503), and the auxiliary return spring (504) cooperate with each other to form the valve structure (5).
6. The poultry cone valve drinker according to claim 1, characterized in that, A horn-shaped swing groove is provided on the inner side of the stabilizing sleeve (501), and a set of flow grooves distributed in a ring array are provided above the nipple valve core (503).
7. The poultry cone valve drinker according to claim 1, characterized in that, A set of filter holes is provided on the upper part of the filter housing (401), and a set of flow holes is provided on the storage housing (402).
8. The poultry cone valve drinker according to claim 1, characterized in that, An annular groove is formed on the outer side of the stabilizing sleeve (501), and a stabilizing ring (502) is installed on the inner side of the annular groove. The outer side of the stabilizing ring (502) is in flexible contact with the inner wall of the stabilizing buckle (2).