Precious and rare pheasant brooding cage

By designing cages suitable for rare pheasant broods, and using equipment such as automatic electronic heaters and dimmable incandescent lamps to regulate temperature and light sources, the temperature regulation problem in breeding of rare pheasants is solved, and the survival rate of young birds is improved and the breeding cost is reduced.

CN223067760UActive Publication Date: 2025-07-08HUNAN WILDLIFE RESCUE & BREEDING CENT
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Patent Information

Application Number
CN202421864945.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-02
Publication Date
2025-07-08
Estimated Expiration
2034-08-02

AI Technical Summary

Technical Problem

The existing technology lacks professional rare pheasant breeding equipment and is unable to effectively regulate the temperature of the chicks and other factors, resulting in difficulty in breeding, high cost and low survival rate.

Method used

A rare pheasant brood cage is designed, which uses 304 stainless steel material, has a three-layer structure, and is equipped with automatic electronic heater, temperature sensor, electric heating tube and dimmable incandescent lamp. The temperature and light source are controlled in real time through the controller, and a universal wheel is equipped for easy movement.

Benefits of technology

Provides suitable temperature and light source environment, improves the survival rate of young birds, reduces breeding costs, and improves economic benefits. The cage structure is strong and durable.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to animal protection breeding cages, and provides a rare pheasant brooding cage which comprises a frame body with a cuboid structure, a steel wire mesh and a door with a door lock are installed on the front face of the frame body, the top face, the back face, the left face and the right face of the frame body are all of a closed structure, a hole plate is installed on the bottom face of the frame body, and the hole plate is connected with the frame body. And an automatic electronic heater and a lamp holder are mounted at the top in the frame body. The rare pheasant brooding cage provided by the utility model can provide required living factors such as temperature and water of a living scene for rare pheasant nestlings, so that the survival rate of the rare pheasant nestlings is improved, the nestling breeding cost is reduced, and the economic benefit is increased. The cage provided by the utility model is durable, can well solve a series of technical problems existing in rare pheasant brooding, is made of 304 stainless steel materials, and is convenient to move and simple to operate as four universal wheels with locking functions are arranged at the bottom of the cage.
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Description

Technical Field

[0001] The utility model belongs to the animal protection and breeding cages, and particularly relates to a breeding cage for rare pheasants. Background Technique

[0002] Rare pheasants such as yellow-bellied tragopan, white-crowned long-tailed pheasant, and red-bellied tragopan are mostly national first- and second-class protected wild animals. Their numbers in the wild are very scarce, and there is an urgent need for artificial breeding, expansion, and reintroduction.

[0003] Due to the lack of professional breeding equipment for rare pheasants, most of the current breeding methods and equipment are in a rough mode, without overall consideration of the key requirements of chicks for temperature and other factors, and unable to regulate the temperature and other elements required by rare pheasant chicks. As a result, it is difficult to breed rare pheasants artificially, with high costs and low survival rates. Content of the Utility Model

[0004] The utility model provides a breeding cage for rare pheasants, aiming to solve the above technical problems.

[0005] The utility model is realized as follows: A breeding cage for rare pheasants includes a frame with a cuboid structure. A wire mesh and a door with a door lock are installed on the front of the frame. The top surface, back surface, and left and right surfaces of the frame are all closed structures. A perforated plate is installed on the bottom surface of the frame, and an automatic electronic heater and a lamp holder are installed at the top inside the frame.

[0006] Furthermore, a drinking water hole and a food bowl hole are opened at the bottom left of the front of the wire mesh, and a lifting door that can slide up and down is installed in the food bowl hole.

[0007] Even further, a pull-out feces tray is arranged below the perforated plate.

[0008] Even further, the cage has a three-layer structure, and the three-layer structure is vertically connected by four columns.

[0009] Even further, universal wheels with a locking function are installed at the bottom of the four columns.

[0010] Even further, the four columns are made of stainless steel square tubes.

[0011] Even further, a dimmable incandescent lamp is installed in the lamp holder.

[0012] Even further, the automatic electronic heater includes a temperature sensor and an electric heating tube. A controller is also installed on the outer wall of the cage, and the controller is electrically connected to the power supplies of the temperature sensor, the electric heating tube, and the lamp holder respectively.

[0013] The rare pheasant chick rearing cage provided by the utility model can provide the temperature, water and other living elements required for the living scenarios of rare pheasant chicks, improve the survival rate of rare pheasants, reduce the cost of breeding chicks, and increase economic benefits. The cage provided by the utility model is durable and can well solve a series of technical problems existing in the rearing of rare pheasants. The cage is made of 304 stainless steel material, and at the same time, four universal wheels with locking functions are arranged at the bottom of the cage, which is convenient to move and simple to operate. Description of the Drawings

[0014] Figure 1 is a schematic structural diagram of a rare pheasant chick rearing cage provided by an embodiment of the utility model;

[0015] Figure 2 is Figure 1 the front view of

[0016] Figure 3 is Figure 1 the rear and upward views of

[0017] Figure 4 is Figure 1 the enlarged view of the middle layer;

[0018] Figure 5 is a schematic diagram of the connection relationship of the controller.

[0019] The reference numerals in the figure respectively represent: 1-frame body, 2-wire mesh, 3-door, 4-perforated plate, 5-lamp holder, 6-temperature sensor, 7-electric heating tube, 8-controller, 9-drinking water hole, 10-food basin hole, 11-feces tray. Detailed Embodiment

[0020] In order to make the purpose, technical solutions and advantages of the utility model more clear and understandable, the following further details the utility model in conjunction with the drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the utility model and are not used to limit the utility model.

[0021] See Figures 1 to 5 , an embodiment of the utility model provides a rare pheasant chick rearing cage for providing a suitable temperature environment for chicks and improving the survival rate of chicks. The cage includes a frame body 1 with a cuboid structure. A wire mesh 2 and a door 3 with a door lock are installed on the front surface of the frame body 1. The top surface, back surface and left and right surfaces of the frame body 1 are all closed structures. A perforated plate 4 is installed on the bottom surface of the frame body 1, and an automatic electronic heater and a lamp holder 5 are installed at the top inside the frame body 1.

[0022] In the embodiment of the present utility model, the birdcage has a three-layer structure. The three-layer structure is vertically connected by four columns. The structures of the three-layer birdcages are the same and can accommodate multiple kinds of baby birds at the same time. The columns and the frame 1 are made of 304 stainless steel square tubes. Optionally, the side length of the stainless steel square tube is 20 mm or 25 mm, and the wall thickness is 0.8 mm or 1 mm. The mesh size of the wire mesh 2 is 10 mm×50 mm. The top surface, the back surface, and the left and right sides of the frame 1 are wrapped and closed by 304 stainless steel plates with a thickness of 0.8 mm to facilitate providing a windproof and constant-temperature environment for the baby birds.

[0023] The hole diameter of the hole plate 4 at the bottom of the frame 1 is 0.8 mm, and the distance between holes is 0.2 mm. The feces of the baby birds can leak through the hole plate 4. In the embodiment of the present utility model, a pull-out feces tray 11 is arranged below the hole plate 4. The pull-out feces tray 11 is made of PVC material. The leaked feces of the baby birds are collected by the feces tray 11. After collection, the feces tray 11 is pulled out for cleaning, and then inserted into the space below the hole plate 4.

[0024] Except for the square door frame, the middle part of the door 3 with a door lock is also connected by wire mesh. Optionally, the door lock of the door 3 adopts a bolt lock.

[0025] In the embodiment of the present utility model, a drinking water hole 9 and a food bowl hole 10 are opened at the bottom on the left side of the front of the wire mesh 2. A lifting door that can slide up and down is installed in the food bowl hole 10.

[0026] The drinking water bowl is extended into the birdcage through the drinking water hole 9 for the baby birds to drink. The lifting door is pulled up to open the food bowl hole 10, and the food bowl filled with food is put into the birdcage for the baby birds to eat. After taking out the food bowl, the lifting door is pushed down to close the food bowl hole to prevent the baby birds from running out. The size of the drinking water hole 9 is set to 4 cm×3.5 cm, and the size of the food bowl hole is set to 8.2 cm×5.2 cm.

[0027] In order to facilitate the movement of the birdcage, universal wheels with a locking function are installed at the bottoms of the four columns of the birdcage. Through the universal wheels, the birdcage can be pushed to an environment with appropriate temperature and humidity, which is convenient and labor-saving.

[0028] In an embodiment of the present utility model, a dimmable incandescent lamp is installed in the lamp holder 5. By dimming the incandescent lamp, light sources with different color temperatures can be provided for the baby birds, which is beneficial to the growth of the baby birds.

[0029] The automatic electronic heater at least includes a temperature sensor 6 and an electric heating tube 7. A controller 8 is also installed on the outer wall of the birdcage. The controller 8 is electrically connected to the power supplies of the temperature sensor 6, the electric heating tube 7, and the lamp holder 5 respectively.

[0030] Use an automatic electric heater to raise the temperature inside the cage. The temperature sensor 6 monitors the temperature inside the cage in real time. When the temperature is lower than the preset temperature, the electric heating tube 7 is started to raise the temperature inside the cage, ensuring that the chicks have an environment with a suitable temperature. The electric heating tube 7 is installed at the top inside the cage and surrounded by a wire mesh cylinder to avoid scalding the chicks. In addition, incandescent lamps can also be used to raise the temperature inside the cage. When the humidity inside the cage is too high, the humidity inside the cage can be reduced through the heating functions of the automatic electric heater and the incandescent lamps. The controller 8 can be a PLC logic controller, and the controller 8 controls the turning on and off of the electric heating tube 7 and the incandescent lamps.

[0031] In summary of the above embodiments, when the rare pheasant chick-rearing cage provided by the embodiment of the present invention is in use, the cage is pushed to an environment conducive to the growth of the chicks by using the universal wheels, and the position of the cage is fixed by using the locking function of the universal wheels. Pull out the bolt on the door 3 to open the door 3, and put different types of chicks into the three-layer cage respectively. Close the door 3 and insert the bolt. Insert the water basin into the water hole 9 for the chicks to drink. Lift the lifting door upward, and put the food basin containing food into the cage through the food basin hole 10 for the chicks to eat. Appropriate temperature values are set for the chicks in the three-layer cage in the controller 8 respectively. When the ambient temperature drops below the set temperature value, the controller 8 controls the electric heating tube 7 to start heating the cage. When the temperature sensor 6 detects that the temperature inside the cage reaches the set temperature value or is within a certain range higher than the set temperature value, the controller 8 controls the electric heating tube 7 to stop heating. The power supply of the lamp holder 5 can also be connected or disconnected through the controller 8 to turn on or off the incandescent lamp, providing lighting for the cage or providing light sources with different color temperatures for the cage through the dimmable incandescent lamp.

[0032] In addition, optionally, if it is necessary to control the humidity inside the cage, a humidity sensor can also be installed inside the cage. The humidity sensor is electrically connected to the controller 8. The humidity sensor monitors the humidity inside the cage in real time. When the humidity is too high, the humidity inside the cage is reduced by turning on the electric heating tube 7 or the incandescent lamp for heating.

[0033] The above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, and improvements made within the spirit and principles of the present invention should be included in the protection scope of the present invention.

Claims

1. A rare pheasant chick rearing cage, characterized in that, It includes a frame with a cuboid structure. A wire mesh and a door with a door lock are installed on the front of the frame. The top surface, the back surface, and the left and right sides of the frame are all closed structures. A perforated plate is installed on the bottom surface of the frame, and an automatic electronic heater and a lamp holder are installed at the top inside the frame.

2. The rare pheasant chick-rearing cage according to claim 1, characterized in that, A drinking hole and a food bowl hole are provided at the bottom on the left side of the front of the wire mesh, and a lifting door that can slide up and down is installed in the food bowl hole.

3. The rare pheasant chick rearing cage according to claim 2, characterized in that, A pull-out feces tray is provided below the perforated plate.

4. The rare pheasant chick rearing cage according to claim 3, characterized in that, The cage has a three-layer structure, and the three-layer structure is vertically connected by four columns.

5. The rare pheasant chick-rearing cage according to claim 4, characterized in that, Four universal wheels with locking functions are installed at the bottoms of the four columns.

6. The rare pheasant chick rearing cage according to claim 5, characterized in that, The four columns are made of stainless steel square tubes.

7. The rare pheasant chick rearing cage according to claim 6, characterized in that, An adjustable incandescent lamp is installed in the lamp holder.

8. The rare pheasant chick-rearing cage according to claim 7, characterized in that, The automatic electronic heater includes a temperature sensor and an electric heating tube. A controller is also installed on the outer wall of the cage, and the controller is electrically connected to the power supplies of the temperature sensor, the electric heating tube, and the lamp holder respectively.