Disease livestock isolation cage

By combining cages and wire mesh with a design incorporating a drive belt, water pipes, and ventilation channels, the problem of easy damage to the interior of sick animal isolation cages has been solved. This ensures the safety and cleanliness of the isolation cages, reduces the risk of virus transmission, and promotes the recovery of sick animals.

CN223488946UActive Publication Date: 2025-10-31民和回族土族自治县北山乡畜牧兽医站
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Patent Information

Application Number
CN202422478713.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-14
Publication Date
2025-10-31
Estimated Expiration
2034-10-14

AI Technical Summary

Technical Problem

The existing isolation cages for sick animals, after being fitted with ventilation structures, are easily damaged by sick animals, lacking protection and increasing the risk of virus transmission.

Method used

An isolation cage consisting of a box cage and a wire mesh cage was designed. The box cage is equipped with a drive belt, a water pipe and a nozzle. An exhaust channel and an air filtration mechanism are set at the gap between the wire mesh cage and the box cage. The drive belt is used to receive the excrement of sick animals, the water pipe and nozzle are used for cleaning, and the exhaust channel is used for air filtration to prevent the spread of viruses.

Benefits of technology

It effectively prevents damage to the internal structure of the isolation cage for sick animals, ensures the cleanliness of the isolation cage, reduces the risk of virus transmission, provides a safe and comfortable isolation environment, and promotes the recovery of sick animals.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of diseased animal isolation, in particular to a diseased animal isolation cage which comprises an isolation cage body, a box cage is arranged outside the isolation cage body, a mesh cage is arranged in the box cage, a transmission belt is installed below the mesh cage in the box cage, the back of the box cage is in clearance fit with the back of the mesh cage, and a water pipe is transversely arranged on the inner side of the box cage. Nozzles facing the transmission belt are evenly installed on the water pipe at intervals, box doors are symmetrically installed at the front end of the box cage, a drawer door plate is further arranged below the front end of the box cage, the side face of the drawer door plate is connected with a dirt collecting frame movably clamped with the box cage, and the dirt collecting frame is located below the transmission belt and the water pipe. The diseased animal isolation cage is jointly composed of the box cage and the mesh cage which are in clearance fit, the water pipe with the nozzle is arranged in the gap between the box cage and the mesh cage, the isolation cage can be cleaned, the water pipe is prevented from being broken, the exhaust channel is formed in the box cage, air can be effectively filtered, and the safety of diseased animal isolation is ensured.
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Description

Technical Field

[0001] This utility model relates to the field of animal isolation technology, specifically an animal isolation cage. Background Technology

[0002] Isolating sick animals is one of the important measures to prevent and control the spread of animal diseases. By separating sick animals from healthy animals, the risk of cross-infection is reduced, and sick animals can receive specialized care. Isolation cages for sick animals are used to temporarily house them. They offer advantages such as good ventilation, ease of transport, and convenient observation, effectively creating a safe and comfortable temporary living environment for sick animals, which is beneficial for disease control and treatment.

[0003] Existing isolation cages for sick animals are usually mesh or box-type. Mesh cages have the advantage of convenient ventilation, while box-type cages can prevent the spread of viruses more effectively by adding ventilation structures. However, the internal structure usually does not have protective structures and is easily damaged by sick animals. Utility Model Content

[0004] The purpose of this utility model is to provide a sick animal isolation cage to solve the problem mentioned in the background art that when the sick animal isolation cages on the market are box-type, ventilation structures are added to more effectively prevent the spread of viruses, but the internal structure usually does not have a protective structure and is easily damaged by sick animals.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a sick animal isolation cage, comprising an isolation cage body, an outer cage body, and an inner cage body, with a mesh cage inside. A transmission belt is installed inside the cage body below the mesh cage. The back of the cage body and the mesh cage are fitted with a clearance. A water pipe is horizontally arranged inside the cage body, and nozzles facing the transmission belt are evenly spaced on the water pipe. A cage door is symmetrically installed at the front end of the cage body, and a drawer door panel is also provided below the front end of the cage body. A sludge collection frame is connected to the side of the drawer door panel and is movable and engaged with the cage body. The sludge collection frame is located below the transmission belt and the water pipe. An exhaust channel is engaged above the back of the cage body, and an air filter and an exhaust fan are installed in the exhaust channel.

[0006] Preferably, the bottom of the cage is integrally provided with a base, and the inside of the cage is integrally provided with symmetrically arranged support partitions on both sides, and the support partitions support the bottom of the cage on both sides. The inner back of the cage is screwed and fixed with a scraper below the water pipe, and the scraper is inclined.

[0007] Preferably, the cross-section of the transmission belt is U-shaped, and the planar dimensions of the transmission belt are larger than the planar dimensions of the wire mesh cage. The scraper is engaged with the U-shaped structure of the transmission belt, and the scraper is in contact with the transmission belt.

[0008] Preferably, the upper back of the cage is a slope, and the exhaust channel is located on the slope of the cage. The exhaust channel has an L-shaped structure, and the air filtration mechanism is located near the outer end of the exhaust channel.

[0009] Preferably, auxiliary rollers are screwed and fixed at even intervals on the outer side of the sludge collection frame, and the auxiliary rollers are supported on the base.

[0010] Preferably, the transmission belt is a gear belt, and gear shafts that are symmetrically installed at both ends inside the transmission belt and rotatably connected to the cage are mounted, and a drive handwheel is installed at the end of one of the gear shafts.

[0011] Compared with existing technologies, the beneficial effects of this utility model are as follows: This animal isolation cage is composed of a box cage and a mesh cage with gap fitting. A water pipe with a nozzle is placed in the gap between the box cage and the mesh cage to clean the isolation cage and prevent the water pipe from being broken. An exhaust channel is provided on the box cage to effectively filter the air and ensure the safety of the animal isolation. The animal isolation cage has a conveyor belt at the bottom of the mesh cage to catch the excrement of the sick animals and to quickly clean the conveyor belt, ensuring the cleanliness of the isolation cage and placing the sick animals in a relatively clean environment. This prevents the spread of viruses and facilitates the recovery of the sick animals. Attached Figure Description

[0012] Figure 1 This is a side view of a sick animal isolation cage according to the present invention;

[0013] Figure 2 This is a top view of a sick animal isolation cage according to the present invention;

[0014] Figure 3 This is a front view of a sick animal isolation cage according to the present invention.

[0015] In the diagram: 1. Main body of the isolation cage; 2. Cage; 201. Support partition; 202. Base; 3. Wire mesh cage; 4. Exhaust channel; 401. Air filter mechanism; 402. Exhaust fan; 5. Water pipe; 501. Nozzle; 6. Scraper; 7. Cage door; 8. Drawer door panel; 801. Sludge collection frame; 802. Auxiliary roller; 9. Drive belt; 901. Gear shaft; 902. Drive handwheel. Detailed Implementation

[0016] 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.

[0017] Please see Figure 1-3This utility model provides a technical solution: an isolation cage for sick animals, including an isolation cage body 1, a box cage 2 outside the isolation cage body 1, and a mesh cage 3 inside the box cage 2. A transmission belt 9 is installed inside the box cage 2 below the mesh cage 3. The back of the box cage 2 and the mesh cage 3 are fitted with a gap. A base 202 is integrally provided at the bottom of the box cage 2, and symmetrically arranged support partitions 201 are integrally provided on both sides inside the box cage 2, supporting the bottom sides of the mesh cage 3. A scraper 6 is screwed and fixed to the back of the inner side of the box cage 2 below a water pipe 5, and the scraper 6 is inclined. This structure, through the arrangement of the mesh cage 3 and the box cage 2, allows sick animals to be isolated through the mesh cage 3, while the box cage 2 can effectively prevent the spread of viruses. The water pipe 5 and the scraper 6 are located outside the mesh cage 3, which can prevent... The waterless pipe 5 and scraper 6 are damaged by sick animals. A water pipe 5 is horizontally installed inside the cage 2, and nozzles 501 are evenly spaced on the water pipe 5, pointing towards the transmission belt 9. A cage door 7 is symmetrically installed at the front end of the cage 2, and a drawer door panel 8 is located below the front end of the cage 2. A sludge collection frame 801, which is movably engaged with the cage 2, is connected to the side of the drawer door panel 8. The sludge collection frame 801 is located below the transmission belt 9 and the water pipe 5. The transmission belt 9 has a U-shaped cross-section, and its planar dimensions are larger than those of the mesh cage 3. The scraper 6 is engaged with the U-shaped structure of the transmission belt 9, and the scraper 6 contacts and cooperates with the transmission belt 9. This structure allows the transmission belt 9 to collect the excrement of sick animals, while the scraper 6 can scrape away dirt from the transmission belt 9, so that the isolation cage body 1 can... For cleaning and disinfection, an exhaust channel 4 is attached to the upper back of cage 2, and an air filter 401 and an exhaust fan 402 are installed inside the exhaust channel 4. The upper back of cage 2 is sloped, and the exhaust channel 4 is located on the slope of cage 2. The exhaust channel 4 has an L-shaped structure, and the air filter 401 is close to the outer end of the exhaust channel 4. This structure, through the slope of cage 2, increases the communication area between exhaust channel 4 and cage 2, and reduces the excessive installation space occupied by exhaust channel 4. The air filter 401 uses an existing air adsorption filter to prevent virus transmission. The exhaust fan 402 uses an existing fan structure. Auxiliary rollers 802 are evenly screwed and fixed to the outer side of the dirt collection frame 801, and the auxiliary rollers 802 are supported on the base 202. The auxiliary roller 802 assists in the pulling action of the sludge collection frame 801, allowing it to be pulled out for cleaning. The sludge collection frame 801 is used for collecting and treating sewage. The transmission belt 9 is a gear belt, and gear shafts 901 that are symmetrically installed at both ends of the transmission belt 9 and rotatably connected to the cage 2 are mounted on it. A drive handwheel 902 is installed at the end of one of the gear shafts 901. By rotating the drive handwheel 902 outside the cage 2, the drive handwheel 902 can drive the gear shaft 901 to rotate, thereby realizing the transmission of the transmission belt 9. This allows the excrement of sick animals on the transmission belt 9 to fall into the sludge collection frame 801. The nozzle 501 sprays water under high pressure to wash the transmission belt 9 and the scraper 6, ensuring the cleanliness of the isolation cage body 1 for the isolation and treatment of sick animals.

[0018] Working principle: When using this isolation cage for sick animals, the main body 1 of the isolation cage is first supported at the bottom by the base 202. The mesh cage 3 is securely installed inside the cage 2 by the support of the support partition 201. The cage door 7 is opened, and the sick animal is placed inside the main body 1 of the isolation cage. Then the cage door 7 is closed, and the mesh cage 3 restricts the movement space of the sick animal. An exhaust channel 4 and a water pipe 5 are set at the gap between the mesh cage 3 and the back of the cage 2. The exhaust channel 4 accelerates air circulation through the exhaust fan 402, and then the air is filtered by the air filtration mechanism 401 to prevent the spread of viruses. The excrement of the sick animal falls into the air. The waste is fed onto the drive belt 9. By manually or electrically rotating the drive handwheel 902, the gear shaft 901 can be rotated, thereby driving the drive belt 9 to drive the waste into the collection frame 801. At the same time as starting the drive belt 9, the water supply valve of the water pipe 5 is opened, so that the water pipe 5 sprays water onto the drive belt 9 through the nozzle 501 for cleaning. The scraper 6 is used to scrape off the dirt on the drive belt 9. After each cleaning, the collection frame 801 is pulled out through the drawer door panel 8 for cleaning. The auxiliary roller 802 plays a role in assisting the movement of the collection frame 801, thereby completing a series of tasks.

[0019] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. A cage for isolating sick animals, comprising a cage body (1), characterized in that: The isolation cage body (1) is provided with a cage (2) outside, and a net cage (3) is provided inside the cage (2). A transmission belt (9) is installed inside the cage (2) below the net cage (3). The back of the cage (2) and the net cage (3) are fitted with a gap. A water pipe (5) is arranged horizontally inside the cage (2). A nozzle (501) facing the transmission belt (9) is evenly spaced on the water pipe (5). A box door (7) is symmetrically installed at the front end of the cage (2). A drawer door panel (8) is also provided below the front end of the cage (2). A sludge collection frame (801) is connected to the side of the drawer door panel (8) and is movable and engaged with the cage (2). The sludge collection frame (801) is located below the transmission belt (9) and the water pipe (5). An exhaust channel (4) is engaged above the back of the cage (2). An air filter mechanism (401) and an exhaust fan (402) are installed in the exhaust channel (4).

2. The isolation cage for sick animals according to claim 1, characterized in that: The bottom of the cage (2) is integrally provided with a base (202), and the inside of the cage (2) is integrally provided with symmetrically arranged support partitions (201), and the support partitions (201) are supported on the bottom of the cage (3). The back of the inside of the cage (2) is screwed and fixed with a scraper (6) below the water pipe (5), and the scraper (6) is inclined.

3. The isolation cage for sick animals according to claim 2, characterized in that: The cross-section of the transmission belt (9) is U-shaped, and the planar dimension of the transmission belt (9) is larger than the planar dimension of the wire mesh (3). The scraper (6) is engaged with the U-shaped structure of the transmission belt (9), and the scraper (6) is in contact with the transmission belt (9).

4. The isolation cage for sick animals according to claim 1, characterized in that: The back of the cage (2) is sloped, and the exhaust channel (4) is located on the slope of the cage (2). The exhaust channel (4) has an L-shaped structure, and the air filter mechanism (401) is close to the outer end of the exhaust channel (4).

5. The isolation cage for sick animals according to claim 1, characterized in that: The outer side of the sludge collection frame (801) is screwed with auxiliary rollers (802) at even intervals, and the auxiliary rollers (802) are supported on the base (202).

6. The isolation cage for sick animals according to claim 1, characterized in that: The transmission belt (9) is a gear belt, and gear shafts (901) that are rotatably connected to the cage (2) are symmetrically installed at both ends inside the transmission belt (9), and a drive handwheel (902) is installed at the end of one of the gear shafts (901).