A sick chicken breeding fence
Patent Information
- Application Number
- CN202521320016.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-26
- Publication Date
- 2026-09-15
- Estimated Expiration
- 2035-06-26
AI Technical Summary
[0003]本实用新型主要是提供一种病鸡养殖分隔栏,解决现有技术存在病毒易传播、粪便处理不便等问题
[0010]Beneficial effects: 1. The first atomizing nozzle installed at the feed outlet of the poultry house can spray disinfectant on the manure during the manure transport process, reducing the spread of pathogens carried by the manure to the outside. The second atomizing nozzles on both sides of each partition can atomize and disinfect the air inside and around the partition, forming a disinfection barrier and reducing the risk of virus transmission through the air, while not affecting the entry of outside air, providing a good air environment for sick chickens. 2. The manure transport mechanism can promptly transport the manure produced by sick chickens to the outside of the poultry house. With the help of the closing and falling channel, the manure falls smoothly onto the conveyor belt, reducing the workload of manual cleaning of manure in the isolation poultry house, reducing the chance of workers directly contacting pathogens or being in the isolation poultry house, and preventing the accumulation of manure in the poultry house to breed bacteria and viruses. 3. The partitions, closing and falling channels and mounting frames are all detachable, which facilitates the cleaning, disinfection and replacement of each component, improves the hygiene of the poultry equipment, extends the service life of the equipment, and allows for easy adjustment of the layout and number of partitions according to the needs of poultry farming.
Smart Images

Figure CN224747245U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of breeding partition technology, specifically a partition for raising sick chickens. Background Technology
[0002] In the process of raising sick chickens, it is usually necessary to isolate sick chickens from healthy chickens to prevent the spread of disease. However, as disclosed in CN 222655999 U, the isolation pen for raising sick chickens only has a partition and does not include a structure for cleaning chicken manure, resulting in many problems with existing isolation facilities for raising sick chickens. On the one hand, if the manure produced by sick chickens is not cleaned in time, it is easy for bacteria and viruses to grow, and the cleaning process may lead to the spread of pathogens, increasing the risk of disease transmission. On the other hand, viruses in the environment where sick chickens are located can easily spread to the outside world through the air, and existing facilities are unable to effectively block airborne transmission routes, which is not conducive to the isolation and treatment of sick chickens and disease control, and also increases the chance of infection for other healthy chickens in the breeding house. Utility Model Content
[0003] The present invention mainly provides a separation pen for raising sick chickens, which solves the problems of easy virus transmission and inconvenient manure disposal in the existing technology.
[0004] To solve the above-mentioned technical problems, the present invention adopts the following technical solution: A diseased chicken breeding enclosure includes a manure conveying mechanism with its output end extending outside the breeding room and a mounting frame. A partition is detachably connected to the mounting frame above the manure conveying mechanism, and a closing drop channel is detachably connected to the mounting frame below the partition. It also includes a first atomizing nozzle located at the feed outlet of the breeding room for spraying manure onto the manure conveying mechanism, and second atomizing nozzles located on both sides of each partition on the mounting frame. The first and second atomizing nozzles are connected to an external medicine delivery mechanism. The manure conveying mechanism can be any existing technology, as long as it can transport manure falling onto it, thus preventing large amounts of manure accumulation. During installation, its output end extends through the isolation breeding room, facilitating cleaning. During use, ensure the conveyor belt's output end extends outside the breeding house. Detachably connect the partition to the mounting frame above the corresponding manure conveying mechanism. Then, install the closing drop channel on the mounting frame below the corresponding partition, ensuring its large-diameter end aligns with the bottom of the partition and its small-diameter end is on the conveyor belt. Next, install the first atomizing nozzle at the feed outlet of the breeding house to spray manure on the conveyor belt. Install the second atomizing nozzle on both sides of each partition on the mounting frame. Then, start the manure conveying mechanism, allowing the manure from sick chickens to fall through the closing drop channel onto the conveyor belt and be transported outside the breeding house for easy cleaning or to fall into external collection troughs or other components. During this process, an external medicine delivery mechanism delivers medicine to the first and second atomizing nozzles for spray disinfection as needed. The first atomizing nozzle disinfects the manure on the conveyor belt, while the second atomizing nozzle disinfects the air inside and around the partition, effectively blocking virus transmission and ensuring a safe breeding environment for sick chickens.
[0005] Furthermore, the manure conveying mechanism employs a belt conveyor, and the output end of the belt conveyor is equipped with a belt conveyor scraper assembly. The belt conveyor scraper assembly can be any type of existing technology, as long as it is sufficient to scrape manure off the surface of the conveyor belt, thereby preventing large amounts of manure from continuously accumulating without falling off. This structure effectively avoids the accumulation of highly viscous manure that would otherwise affect conveying efficiency, and also helps maintain a clean and hygienic farming environment, reducing the risk of pathogen growth.
[0006] Furthermore, the partition includes multiple independent pens detachably connected to the mounting frame. The mounting frame has mating grooves for the independent pens, and the independent pens are detachably connected to these grooves by bolts. Each independent pen has an entrance / exit, and each entrance / exit is equipped with an isolation door. The isolation door can be installed at the entrance / exit using any method found in existing technologies, as long as it can be opened and closed to prevent sick chickens from escaping. This structure allows the partition to be divided into multiple independent pens, enabling the rearing of sick chickens at different stages and preventing cross-infection of pathogens between pens.
[0007] Furthermore, the external medicine delivery mechanism includes a medicine tank, a first delivery pipe assembly, and a second delivery pipe assembly. The first atomizing nozzle is connected to the medicine tank via the first delivery pipe assembly, and the second atomizing nozzle is connected to the medicine tank via the second delivery pipe assembly. The first and second delivery pipe assemblies have identical structures. The first delivery pipe assembly includes a water pump with its input end connected to the medicine tank, and a diverter pipe connected to the output end of the water pump. Branch pipes matching the number of nozzles are installed on the diverter pipe, and a control valve is installed on each support. Specifically, the second delivery pipe assembly also includes a diverter pipe, branch pipes, and control valves, with the number of branch pipes corresponding to the number of second atomizing nozzles. Using this structure, by adjusting the control valves on each branch pipe, the spray volume and spray time of different nozzles can be adjusted according to actual needs, achieving precise disinfection and improving the efficiency of medicine usage.
[0008] Furthermore, both the first and second atomizing nozzles are ultrasonic atomizing nozzles. This structure enables the liquid medicine to be atomized into tiny particles, improving atomization effect and disinfection efficiency; the tiny droplets can remain suspended in the air for a long time, making full contact with the virus, effectively killing airborne pathogens and preventing the virus from spreading through the air.
[0009] Furthermore, the constricting drop channel is funnel-shaped, with its larger diameter end corresponding to the bottom of the separator and its smaller diameter end located above the conveyor belt of the manure transfer mechanism. This structure allows the manure produced by sick chickens to fall smoothly onto the conveyor belt, preventing manure from accumulating inside the separator and ensuring smooth manure transfer.
[0010] Beneficial effects: 1. The first atomizing nozzle installed at the feed outlet of the poultry house can spray disinfectant on the manure during the manure transport process, reducing the spread of pathogens carried by the manure to the outside. The second atomizing nozzles on both sides of each partition can atomize and disinfect the air inside and around the partition, forming a disinfection barrier and reducing the risk of virus transmission through the air, while not affecting the entry of outside air, providing a good air environment for sick chickens. 2. The manure transport mechanism can promptly transport the manure produced by sick chickens to the outside of the poultry house. With the help of the closing and falling channel, the manure falls smoothly onto the conveyor belt, reducing the workload of manual cleaning of manure in the isolation poultry house, reducing the chance of workers directly contacting pathogens or being in the isolation poultry house, and preventing the accumulation of manure in the poultry house to breed bacteria and viruses. 3. The partitions, closing and falling channels and mounting frames are all detachable, which facilitates the cleaning, disinfection and replacement of each component, improves the hygiene of the poultry equipment, extends the service life of the equipment, and allows for easy adjustment of the layout and number of partitions according to the needs of poultry farming. Attached Figure Description
[0011] Figure 1 This is a slanted view of the fecal transport mechanism in this embodiment; Figure 2 This is a front view schematic diagram of the fecal transport mechanism in this embodiment; Figure 3 This is a side view of the fecal transport mechanism in this embodiment.
[0012] Figure reference numerals: 1. Fecal transfer mechanism; 2. Mounting frame; 3. Closing drop channel; 4. First atomizing nozzle; 5. Second atomizing nozzle; 6. Independent enclosure; 7. Isolation door; 8. Diversion pipe; 9. Branch pipe; 10. Control valve. Detailed Implementation
[0013] The following will provide a more detailed description of the technical solution for separating sick chickens in the present invention, with reference to the embodiments.
[0014] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.
[0015] As shown in Figures 1, 2, and 3, this embodiment of a diseased chicken breeding partition includes a manure conveying mechanism 1 with its output end extending outside the breeding house and a mounting frame 2. A partition is detachably connected to the mounting frame 2 above the manure conveying mechanism 1, and a closing and falling channel 3 is detachably connected to the mounting frame 2 below the partition. It also includes a first atomizing nozzle 4 located at the discharge opening of the breeding house for spraying the manure conveying mechanism 1, and second atomizing nozzles 5 located on both sides of each partition on the mounting frame 2. The first atomizing nozzle 4 and the second atomizing nozzle 5 are connected to an external medicine delivery mechanism. The manure conveying mechanism 1 is a belt conveyor, and the output end of the belt conveyor is equipped with a belt conveyor scraper assembly. The partition includes multiple independent sections 6 detachably connected to the mounting frame 2. The mounting frame 2 has mating grooves for the independent sections 6, and the independent sections 6 are detachably connected to these grooves by bolts. Each independent section 6 has an inlet / outlet, and each inlet / outlet is equipped with an isolation door 7. The external medicine delivery mechanism includes a medicine tank, a first delivery pipe assembly, and a second delivery pipe assembly. The first atomizing nozzle 4 is connected to the medicine tank via the first delivery pipe assembly, and the second atomizing nozzle 5 is connected to the medicine tank via the second delivery pipe assembly. The first and second delivery pipe assemblies have identical structures. The first delivery pipe assembly includes a water pump with its input end connected to the medicine tank, and a branch pipe 8 connected to the output end of the water pump. The branch pipe 8 has branch pipes 9 matching the number of nozzles, and each branch pipe 9 is equipped with a control valve 10. Both the first atomizing nozzle 4 and the second atomizing nozzle 5 are ultrasonic atomizing nozzles. The converging drop channel 3 is funnel-shaped, with its large-diameter end corresponding to the bottom of the separator and its small-diameter end located above the conveyor belt of the fecal transfer mechanism 1.
[0016] During use, ensure the conveyor belt's output end extends outside the breeding house. Detachably connect the partition to the mounting frame 2 above the corresponding manure conveying mechanism 1. Then install the closing drop channel 3 below the corresponding partition on the mounting frame 2, ensuring its large-diameter end aligns with the bottom of the partition and its small-diameter end is on the conveyor belt. Next, install the first atomizing nozzle 4 at the feed outlet of the breeding house to spray manure on the conveyor belt. Install the second atomizing nozzle 5 on both sides of each partition on the mounting frame 2. Then, start the manure conveying mechanism 1, allowing the manure from sick chickens to fall through the closing drop channel 3 onto the conveyor belt and be transported outside the breeding house for easy cleaning or to fall onto external collection troughs or other components. During this process, as needed, an external medicine delivery mechanism delivers medicine to the first atomizing nozzle 4 and the second atomizing nozzle 5 for spray disinfection. The first atomizing nozzle 4 disinfects the manure on the conveyor belt, while the second atomizing nozzle 5... Disinfecting the air inside and around the enclosure effectively blocks the spread of the virus and ensures a safe environment for raising sick chickens. Beneficial effects: The first atomizing nozzle 4, installed at the feed outlet of the breeding house, can spray disinfectant on the manure during the manure transport process, reducing the spread of pathogens carried by the manure to the outside. The second atomizing nozzles 5 on both sides of each partition can atomize and disinfect the air inside and around the partition, forming a disinfection barrier and reducing the risk of virus transmission through the air, while not affecting the entry of outside air, providing a good air environment for sick chickens. The manure transport mechanism 1 can promptly transport the manure produced by sick chickens to the outside of the breeding house. In conjunction with the closing and falling channel 3, the manure falls smoothly onto the conveyor belt, reducing the workload of cleaning manure in the isolation breeding house and reducing the probability of workers directly contacting pathogens or being in the isolation breeding house. At the same time, it avoids the accumulation of manure in the breeding house, which breeds bacteria and viruses. The partitions, closing and falling channels 3, and mounting frame 2 are all detachable, which facilitates the cleaning, disinfection, and replacement of each component, improves the hygiene conditions of the breeding equipment, extends the service life of the equipment, and allows for easy adjustment of the layout and number of partitions according to breeding needs.
[0017] The water pump, medicine tank, scraper assembly, and other components are not shown in the figure, but these components can be made using existing technologies, as long as the technical principle can be achieved.
[0018] The control method of this utility model is automatic control through a controller. The control circuit of the controller can be implemented by simple programming by those skilled in the art. The power supply is also common knowledge or conventional technology in the field. Therefore, this utility model will not explain the control method and circuit connection in detail.
[0019] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A partition for raising sick chickens, characterized in that: The system includes a manure conveying mechanism and a mounting frame with the output end extending outside the breeding house. A partition is detachably connected to the mounting frame above the manure conveying mechanism, and a closing and falling channel is detachably connected to the mounting frame below the partition. The system also includes a first atomizing nozzle located at the discharge opening of the breeding house for spraying the manure conveying mechanism, and a second atomizing nozzle located on both sides of the mounting frame corresponding to each partition. The first and second atomizing nozzles are connected to an external medicine delivery mechanism.
2. The diseased chicken breeding partition according to claim 1, characterized in that: The fecal transport mechanism is a belt conveyor, and the output end of the belt conveyor is equipped with a belt conveyor scraper assembly.
3. The diseased chicken breeding partition according to claim 1, characterized in that: The partition includes multiple independent sections that are detachably connected to the mounting frame. The mounting frame has a groove for fitting the independent sections. The independent sections are detachably connected to the groove by bolts. Each independent section has an entrance / exit, and an isolation door is provided on the entrance / exit.
4. The diseased chicken breeding partition according to claim 1, characterized in that: The external medicine delivery mechanism includes a medicine tank, a first delivery pipe assembly, and a second delivery pipe assembly. The first atomizing nozzle is connected to the medicine tank through the first delivery pipe assembly, and the second atomizing nozzle is connected to the medicine tank through the second delivery pipe assembly. The first delivery pipe assembly and the second delivery pipe assembly have the same structure. The first delivery pipe assembly includes a water pump whose input end is connected to the medicine tank. The output end of the water pump is connected to a branch pipe. The branch pipe is provided with branch pipes matching the number of nozzles. Each support is provided with a control valve.
5. The diseased chicken breeding partition according to claim 1, characterized in that: Both the first atomizing nozzle and the second atomizing nozzle are ultrasonic atomizing nozzles.
6. The diseased chicken breeding partition according to claim 2, characterized in that: The converging drop channel is funnel-shaped, with its large-diameter end corresponding to the bottom of the separator and its small-diameter end located above the conveyor belt of the fecal transfer mechanism.
Citation Information
Patent Citations
Dividing fence for sick chicken breeding
CN222655999U