Veterinary isolation equipment for preventing invasion of germs

By introducing a blower, exhaust fan and disinfection system into veterinary isolation equipment, the contact risks and poor air flow problems caused by the need to be turned on and fed in existing equipment are solved, and the convenience of feeding and water is achieved without turning on the equipment is achieved, and the isolation and cleaning efficiency of the equipment is improved.

CN223080763UActive Publication Date: 2025-07-11马春凤
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Patent Information

Application Number
CN202422372274.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-27
Publication Date
2025-07-11
Estimated Expiration
2034-09-27

AI Technical Summary

Technical Problem

The existing veterinary isolation equipment needs to be opened during use before feeding, which increases the risk of contact between veterinarians and sick animals. The air flow inside the equipment is poor, which can easily lead to the spread and breeding of bacteria.

Method used

An isolation device including a blower, exhaust fan, disinfection box, activated carbon filter plate and ultraviolet sterilization lamp is designed to increase air circulation through the air supply and exhaust system, and purify the air in the disinfection box. The feeding funnel and feeding conduit are used to achieve feeding and water feeding without opening the equipment. The combination of a dual-axis motor and a sprocket system facilitates the removal and cleaning of the feeding tank.

Benefits of technology

It effectively avoids the spread of bacteria through the air, reduces the risk of contact between veterinarians and sick animals, improves the isolation effect of the equipment, and facilitates the cleaning and disinfection of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of veterinary equipment, and particularly relates to veterinary isolation equipment for preventing invasion of germs, which comprises an isolation box, a supporting transverse plate is fixedly connected in the isolation box, two feeding troughs are lapped at the upper end of the supporting transverse plate, and mounting clamping plates are fixedly connected at the lower ends of the two feeding troughs. Through cooperation of the air feeder, the air supply pipe, the exhaust fan, the exhaust pipe and the conveying pipe, fresh air can be injected into the isolation box, meanwhile, air in the isolation box can be pumped out, circulation of the air in the isolation box is increased, the situation that the air in the isolation box is not smooth in circulation is effectively avoided, and the service life of the isolation box is prolonged. The air extracted from the interior of the isolation box can be purified and disinfected under the action of a disinfectant in the disinfection box and an activated carbon filter plate, the situation that the germs are spread through the air due to the fact that the air is directly exhausted is avoided, and invasion of the germs is avoided.
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Description

Technical Field

[0001] The utility model belongs to the technical field of veterinary equipment, and in particular relates to a veterinary isolation device for preventing pathogens from invading. Background Art

[0002] With the development of animal husbandry, there are more and more large-scale livestock farms. However, once the farms are large-scale, the number of livestock and poultry raised will increase. Once an epidemic occurs, it will cause large-scale infection, causing great economic losses to the farms. In the process of treating the bacteria, veterinarians need to use isolation equipment to isolate sick animals, thereby preventing further spread and invasion of the bacteria.

[0003] Problems with existing technologies:

[0004] Most existing veterinary isolation equipment needs to be opened during use to feed sick animals, which increases the contact between veterinarians and sick animals, and also causes pathogens to come into contact with the external environment, thereby causing the risk of pathogen transmission. In addition, the air flow inside the existing isolation equipment is poor, which easily leads to the breeding of pathogens. Utility Model Content

[0005] The utility model aims to provide a veterinary isolation device for preventing pathogens from invading, which can solve the problem that most existing veterinary isolation devices need to be opened during use to feed sick animals, which increases the contact between veterinarians and sick animals, and also makes pathogens contact with the external environment, thereby causing the risk of pathogens spreading. In addition, the existing isolation devices have poor air flow inside, which easily leads to the problem of the growth of pathogens.

[0006] The technical solution adopted by the utility model is as follows:

[0007] A veterinary isolation device for preventing pathogen invasion comprises an isolation box, wherein a supporting cross plate is fixedly connected inside the isolation box, two feeding troughs are overlapped at the upper end of the supporting cross plate, and the lower ends of the two feeding troughs are fixedly connected with a mounting card plate, the lower ends of the two mounting card plates pass through the supporting cross plate and the lower end of the isolation box in turn and are both clamped with a fixing mechanism, the upper end of the fixing mechanism is fixedly connected to the isolation box, and the left and right ends of the fixing mechanism are fixedly connected with a sprocket wheel 1;

[0008] Two feeding hoppers are fixedly connected to the upper end of the isolation box, the lower ends of the two feeding hoppers pass through the upper end of the isolation box and are fixedly connected to the driving and adjusting mechanism, the left and right sides of the driving and adjusting mechanism are respectively fixedly connected to the left and right sides of the inside of the isolation box, the left and right ends of the driving and adjusting mechanism pass through the left and right side walls of the isolation box and are respectively fixedly connected to the two sprocket wheels 2, and the two sprocket wheels 2 are respectively connected to the two sprocket wheels 1 through two chains.

[0009] The lower end of the supporting horizontal plate is fixedly connected to a fixed vertical plate, and the lower end of the fixed vertical plate is fixedly connected to a mesh leakage plate. A dirt collection box is correspondingly arranged on the lower side of the mesh leakage plate, and the lower end of the dirt collection box is overlapped on the inner bottom surface of the isolation box. The upper end of the isolation box is fixedly connected to an exhaust fan, and the rear end of the exhaust fan is fixedly connected to a delivery pipe, and the lower end of the delivery pipe passes through the upper end of the disinfection box and multiple activated carbon filter plates in sequence and is arranged inside the disinfection box.

[0010] An exhaust duct is provided at the front end of the exhaust fan, the lower end of the exhaust duct is fixedly connected to the isolation box, the upper end of the isolation box is fixedly connected to the supply fan, and an air supply duct is provided at the rear end of the supply fan, the lower side of the air supply duct is fixedly connected to the isolation box, and both the air supply duct and the exhaust duct are provided with a one-way valve.

[0011] Several of the activated carbon filter plates are fixedly connected to the upper side of the interior of the disinfection box, the front end of the disinfection box is fixedly connected to the isolation box, the upper end of the disinfection box is provided with an exhaust pipe, the lower end of the disinfection box is provided with a sewage pipe, and the sewage pipe is provided with a sewage valve, the disinfection box is provided with a rubber stopper through the opening opened on the upper side, and the upper surface of the interior of the isolation box is provided with an ultraviolet sterilization lamp.

[0012] The mesh leakage plate is fixedly connected to the lower side of the isolation box. The isolation box is movably connected to two slide blocks through two slide grooves opened on the lower surface of the interior. The upper ends of the two slide blocks are fixedly connected to the dirt collection box.

[0013] The front end of the isolation box is provided with two sealed box doors, and both sealed box doors are provided with transparent observation windows, the lower end of the rear side of the isolation box is fixedly connected to two supporting legs, the upper ends of the two feeding funnels are provided with sealing covers, and the left and right side surfaces inside the isolation box are fixedly connected to dirt guide plates.

[0014] The fixing mechanism includes a dual-axis motor, the upper end of which is fixedly connected to the isolation box, and the dual-axis motor is fixedly connected to two threaded rods through two output shafts arranged thereon, and the two threaded rods are respectively threadedly connected to two T-shaped plates with threaded holes provided inside.

[0015] Two relatively distant ends of the two T-shaped plates are fixedly connected with two clamping rods respectively. The four clamping rods are respectively clamped with two installation clamping plates, and the two T-shaped plates are respectively movably connected with two first fixing rods through circular holes opened in their interiors.

[0016] Relatively distant ends of the two first fixing rods are fixedly connected with fixing plates respectively. Upper ends of the two fixing plates are fixedly connected with an isolation box. The two fixing plates are respectively movably connected with relatively distant sides of two threaded rods, and relatively distant ends of the two threaded rods are respectively fixedly connected with two first chain wheels.

[0017] The driving and adjusting mechanism includes a bidirectional screw rod. The left and right sides of the bidirectional screw rod are respectively movably connected with the left and right ends of the isolation box. The left and right ends of the bidirectional screw rod are respectively fixedly connected with two second chain wheels. Two threaded blocks are threadedly connected to the bidirectional screw rod, and lower ends of the two threaded blocks are fixedly connected with L-shaped plates.

[0018] The two L-shaped plates are respectively fixedly connected with two feeding conduits. Upper ends of the two feeding conduits are respectively fixedly connected with two feeding hoses. Upper ends of the two feeding hoses are respectively fixedly connected with lower ends of two feeding funnels. The two threaded blocks are respectively movably connected with a second fixing rod through circular holes opened in their interiors, and the left and right ends of the second fixing rod are respectively fixedly connected to left and right inner side surfaces inside the isolation box.

[0019] The technical effects achieved by the present utility model are as follows:

[0020] Through the cooperation among the air blower, the air delivery pipe, the air extractor, the air extraction pipe and the conveying pipe provided in the present utility model, fresh air can be injected into the interior of the isolation box, and at the same time, the air inside the isolation box can be extracted, increasing the air circulation inside the isolation box, effectively avoiding the situation that the air circulation inside the isolation box is not smooth, which is likely to cause the breeding of germs. The air extracted from the isolation box can be purified and disinfected under the action of the disinfectant liquid and the activated carbon filter plate inside the disinfection box, avoiding the situation of directly discharging the air, which may cause the spread of germs through the air, and preventing the invasion of germs. Through the mutual cooperation among the feeding funnel, the feeding hose and the feeding conduit, it is convenient to add feed and water into the interiors of the two feeding troughs without opening the isolation box, reducing the contact between the veterinarian and the diseased livestock during the feeding process and increasing the isolation effect of the device. Through the mutual cooperation among the double-shaft motor, the threaded rod, the T-shaped plate, the first fixing rod and the mounting plate, after the use of the device, the four clamping rods can be driven to move away from each other, so that the four clamping rods are no longer clamped with the two installation clamping plates. Then, under the cooperation of the first chain wheel, the second chain wheel, the bidirectional screw rod, the threaded block and the L-shaped plate, the two feeding conduits can be moved away from above the two feeding troughs respectively. At this time, the two feeding troughs can be conveniently taken out from the interior of the device and cleaned and disinfected. Brief Description of the Drawings

[0021] Figure 1 is the front view three-dimensional structure schematic diagram of the present utility model;

[0022] Figure 2 is the right view sectional three-dimensional structure schematic diagram of the present utility model;

[0023] Figure 3 is the front view sectional three-dimensional structure schematic diagram of the present utility model;

[0024] Figure 4 is the right view three-dimensional structure schematic diagram of the feeding trough of the present utility model;

[0025] Figure 5 is the rear view three-dimensional structure schematic diagram of the fixing mechanism of the present utility model;

[0026] Figure 6 is the front view three-dimensional structure schematic diagram of the driving and adjusting mechanism of the present utility model.

[0027] In the drawings, the list of components represented by each reference numeral is as follows:

[0028] 1. Isolation box; 2. Dirt collection box; 3. Sealed box door; 4. Transparent observation window; 5. Blower; 6. Feeding funnel; 7. Exhaust duct; 8. Exhaust fan; 9. Delivery pipe; 10. Sprocket two; 11. Sprocket one; 12. Fixing mechanism; 121. Fixed plate; 122. Clamping rod; 123. T-shaped plate; 124. Fixed rod one; 125. Threaded rod; 126. Biaxial motor; 13. Mesh leakage plate; 14. Fixed vertical plate; 15. Support cross plate; 16. Driving and adjusting mechanism; 161. Feeding conduit; 162. L-shaped plate; 163. Feeding hose; 164. Threaded block; 165. Bidirectional screw; 166. Fixed rod two; 17. Air supply duct; 18. Support leg; 19. Disinfection box; 20. Activated carbon filter plate; 21. Slide block; 22. Dirt guide plate; 23. Feeding trough; 24. Ultraviolet sterilization lamp; 25. Installation clamping plate. Detailed Description of the Preferred Embodiments

[0029] In order to make the purpose and advantages of the present utility model clearer, the present utility model will be specifically described below in conjunction with embodiments. It should be understood that the following text is only used to describe one or several specific implementation manners of the present utility model, and does not strictly limit the specific protection scope claimed by the present utility model.

[0030] As Figure 1-6As shown in the figure, a veterinary isolation device for preventing the invasion of germs includes an isolation box 1. Inside the isolation box 1, a supporting cross plate 15 is fixedly connected. Two feeding troughs 23 are lapped on the upper end of the supporting cross plate 15. At the lower ends of the two feeding troughs 23, mounting clamping plates 25 are fixedly connected. The lower ends of the two mounting clamping plates 25 sequentially pass through the supporting cross plate 15 and the lower end of the isolation box 1 and are both clamped with a fixing mechanism 12. The upper end of the fixing mechanism 12 is fixedly connected to the isolation box 1. On the left and right ends of the fixing mechanism 12, a first sprocket 11 is fixedly connected. By arranging the supporting cross plate 15, it is convenient for sick livestock to lie down. Through the mutual cooperation between the fixing mechanism 12 and the mounting clamping plate 25, the fixing effect on the two feeding troughs 23 can be quickly achieved, thereby increasing the stability of the two feeding troughs 23 placed inside the isolation box 1. Correspondingly, when the device is used up, the two feeding troughs 23 can be conveniently taken out from the inside of the isolation box 1, and then it is convenient to clean and disinfect the two feeding troughs 23. During the process of taking out the feeding troughs 23, under the action of the set fixing mechanism 12, the two first sprockets 11 can be driven to rotate;

[0031] At the upper end of the isolation box 1, two feeding funnels 6 are fixedly connected. The lower ends of the two feeding funnels 6 both pass through the upper end of the isolation box 1 and are both fixedly connected to a driving and adjusting mechanism 16. The left and right sides of the driving and adjusting mechanism 16 are respectively fixedly connected to the left and right sides inside the isolation box 1. The left and right ends of the driving and adjusting mechanism 16 respectively pass through the left and right side walls of the isolation box 1 and are respectively fixedly connected to two second sprockets 10. The two second sprockets 10 are respectively connected to the two first sprockets 11 through two chains arranged. By the rotation of the two first sprockets 11, under the action of the two second sprockets 10 arranged, the left and right sides of the driving and adjusting mechanism 16 can be made to approach each other, thereby avoiding affecting the process of taking out the two feeding troughs 23. By putting feed and water into the two feeding funnels 6 respectively, and then under the cooperation of the set driving and adjusting mechanism 16, the feed and water can be respectively guided into the two feeding troughs 23, thus avoiding the contact between the veterinarian and the sick livestock during the feeding process of the sick livestock, and increasing the convenience during the process of feeding the feed and water by the device;

[0032] The lower end of the supporting cross plate 15 is fixedly connected to a fixed vertical plate 14. The lower end of the fixed vertical plate 14 is fixedly connected to a mesh leakage plate 13. A dirt collection box 2 is correspondingly arranged below the mesh leakage plate 13. The lower end of the dirt collection box 2 is lapped on the inner bottom surface of the isolation box 1. The upper end of the isolation box 1 is fixedly connected to an exhaust fan 8. The rear end of the exhaust fan 8 is fixedly connected to a conveying pipe 9. The lower end of the conveying pipe 9 sequentially passes through the upper end of a disinfection box 19 and a plurality of activated carbon filter plates 20 and is arranged inside the disinfection box 19. By adding an appropriate amount of disinfectant liquid into the disinfection box 19, and then starting the exhaust fan 8, under the action of the arranged exhaust duct 7 and the conveying pipe 9, the air inside the isolation box 1 can be pumped into the disinfection box 19. With the cooperation of the disinfectant liquid added inside the disinfection box 19 and the activated carbon filter plates 20, the air purification and disinfection effect can be achieved, effectively avoiding the spread of germs through the air and effectively reducing the risk of infection. Through the arranged mesh leakage plate 13, the excrement excreted by the diseased livestock can directly fall into the dirt collection box 2 for centralized collection, which is convenient for subsequent treatment by veterinarians.

[0033] Furthermore, an exhaust duct 7 is arranged at the front end of the exhaust fan 8. The lower end of the exhaust duct 7 is fixedly connected to the isolation box 1. The upper end of the isolation box 1 is fixedly connected to a blower 5. A supply duct 17 is arranged at the rear end of the blower 5. The lower side of the supply duct 17 is fixedly connected to the isolation box 1. A plurality of activated carbon filter plates 20 are all fixedly connected to the upper side inside the disinfection box 19. The front end of the disinfection box 1 is fixedly connected to the isolation box 1. An ultraviolet sterilization lamp 24 is arranged on the upper surface inside the isolation box 1. The mesh leakage plate 13 is fixedly connected to the lower side inside the isolation box 1. The isolation box 1 is movably connected to two sliders 21 through two chutes opened on its inner lower surface. The upper ends of the two sliders 21 are both fixedly connected to the dirt collection box 2. Two sealed box doors 3 are arranged at the front end of the isolation box 1, and transparent observation windows 4 are arranged on both of the two sealed box doors 3. Two support legs 18 are fixedly connected to the lower end at the rear of the isolation box 1. Sealing covers are arranged at the upper ends of both feeding funnels 6. Dirt guide plates 22 are fixedly connected to both the left and right side surfaces inside the isolation box 1. Through the mutual cooperation between the arranged blower 5 and the supply duct 17, fresh air can be injected into the isolation box 1, and then through the cooperation with the exhaust fan 8, the air circulation inside the isolation box 1 can be increased, effectively reducing the situation of germ growth inside the isolation box 1 caused by poor air circulation. Through the arranged ultraviolet sterilization lamp 24, the inside of the isolation box 1 can be sterilized. Through the arranged sliders 21 and the chutes opened on the inner bottom surface of the isolation box 1, the stability during the pulling process of the dirt collection box 2 can be increased.

[0034] Further, the fixing mechanism 12 includes a biaxial motor 126. The upper end of the biaxial motor 126 is fixedly connected to the isolation box 1. The biaxial motor 126 is fixedly connected to two threaded rods 125 respectively through two output shafts arranged thereon. The two threaded rods 125 are respectively threadedly connected to two T-shaped plates 123 each internally provided with a threaded hole. Both relatively far ends of the two T-shaped plates 123 are fixedly connected with two clamping rods 122 respectively. The four clamping rods 122 are respectively clamped with two mounting clamping plates 25. Both of the two T-shaped plates 123 are movably connected to two first fixing rods 124 respectively through circular holes opened in their interiors. Both relatively far ends of the two first fixing rods 124 are fixedly connected with fixing plates 121. The upper ends of the two fixing plates 121 are both fixedly connected to the isolation box 1. The two fixing plates 121 are respectively movably connected to the relatively far sides of the two threaded rods 125. The relatively far ends of the two threaded rods 125 are respectively fixedly connected to two first sprockets 11. By rotating the output shafts of the biaxial motor 126, the two threaded rods 125 are driven to rotate. Furthermore, with the cooperation of the provided first fixing rods 124 and the fixing plates 121, the effect of driving the two T-shaped plates 123 to approach each other can be achieved. Furthermore, the four clamping rods 122 can be driven to approach each other, so that the four clamping rods 122 are no longer clamped with the two mounting clamping plates 25. Furthermore, the feeding trough 23 can be conveniently taken out from the interior of the device for cleaning and disinfection treatment. During the process of driving the two threaded rods 125 to rotate, the two first sprockets 11 can be driven to rotate.

[0035] The driving and adjusting mechanism 16 includes a bidirectional screw 165. The left and right sides of the bidirectional screw 165 are respectively movably connected to the left and right ends of the isolation box 1. The left and right ends of the bidirectional screw 165 are respectively fixedly connected to two second sprockets 10. Two threaded blocks 164 are threadedly connected to the bidirectional screw 165. The lower ends of the two threaded blocks 164 are both fixedly connected with L-shaped plates 162. The two L-shaped plates 162 are respectively fixedly connected to two feeding conduits 161. The upper ends of the two feeding conduits 161 are respectively fixedly connected to two feeding hoses 163. The upper ends of the two feeding hoses 163 are respectively fixedly connected to the lower ends of two feeding funnels 6. The two threaded blocks 164 are both movably connected to a second fixing rod 166 through circular holes opened in their interiors. The left and right ends of the second fixing rod 166 are respectively fixedly connected to the left and right inner side surfaces of the isolation box 1. By rotating the two first sprockets 11, the two second sprockets 10 can be driven to rotate, and thus the bidirectional screw 165 can be driven to rotate. By rotating the bidirectional screw 165, with the cooperation of the provided second fixing rod 166, threaded blocks 164 and L-shaped plates 162, the two feeding conduits 161 can be driven to approach each other, so that the two feeding conduits 161 are respectively moved away from above the two feeding troughs 23, thereby avoiding affecting the removal process of the feeding troughs 23. Through the mutual cooperation among the feeding funnels 6, feeding hoses 163 and feeding conduits 161, feed and water can be conveniently added into the two feeding troughs 23.

[0036] The working principle of the present utility model is as follows:

[0037] During the use of the device, first add an appropriate amount of disinfectant liquid into the interior of the disinfection box 19, then start the air blower 5. Subsequently, under the action of the provided air delivery pipe 17, fresh air can be delivered into the interior of the isolation box 1. During this process, start the exhaust fan 8. Then, under the cooperation of the provided exhaust pipe 7 and the delivery pipe 9, the air inside the isolation box 1 can be delivered into the interior of the disinfection box 19. And under the action of the disinfectant liquid added in the disinfection box 19 and the provided activated carbon filter plate 20, the purification and disinfection of the germs in the air can be achieved. Through the cooperation of the exhaust fan 8 and the air blower 5, the air circulation inside the isolation box 1 can be increased, thereby reducing the growth of germs inside the isolation box 1. By starting the ultraviolet sterilization lamp 24, the interior of the isolation box 1 can be sterilized. When it is necessary to add feed and water into the two feeding troughs 23 respectively, by removing the sealing covers provided on the two feeding funnels 6 and putting the feed and water into the two feeding funnels 6 respectively, then under the cooperation of the provided feeding flexible pipe 163 and the feeding conduit 161, the feed and water can be delivered into the two feeding troughs 23 respectively, and thus the process of feeding the feed and water can be completed without opening the isolation box 1. When the device is used up and it is necessary to take out the feeding troughs 23 and clean and disinfect them, start the biaxial motor 126 to drive the two threaded rods 125 to rotate. Then, under the action of the provided T-shaped plate 123, the four clamping rods 122 can be driven to approach each other, so that the four clamping rods 122 are no longer clamped with the two mounting clamping plates 25. At the same time, during the rotation of the two threaded rods 125, under the action of the provided sprocket one 11 and the sprocket two 10, the bidirectional screw rod 165 can be driven to rotate. Then, under the cooperation of the provided threaded block 164 and the L-shaped plate 162, the two feeding conduits 161 can be driven to move away from above the two feeding troughs 23 respectively. At this time, the two feeding troughs 23 can be conveniently taken out for cleaning and disinfection treatment.

[0038] The above are only the preferred embodiments of the present invention. It should be noted that for those of ordinary skill in the art of the present technology, without departing from the principle of the present invention, several improvements and retouches can be made, and these improvements and retouches should also be regarded as the protection scope of the present invention. The structures, devices and operation methods not specifically described and explained in the present invention, unless otherwise specifically stated and defined, are implemented according to the conventional means in the art.

Claims

1. A veterinary isolation device for preventing the invasion of germs, comprising an isolation box (1), characterized in that: Inside the isolation box (1), there is a support cross plate (15) fixedly connected. On the upper end of the support cross plate (15), there are two feeding troughs (23) lapped. At the lower ends of the two feeding troughs (23), there are mounting clamping plates (25) fixedly connected. The lower ends of the two mounting clamping plates (25) sequentially pass through the support cross plate (15) and the lower end of the isolation box (1) and are both clamped with a fixing mechanism (12). The upper end of the fixing mechanism (12) is fixedly connected to the isolation box (1). On the left and right ends of the fixing mechanism (12), there are sprockets one (11) fixedly connected respectively; On the upper end of the isolation box (1), there are two feeding funnels (6) fixedly connected. The lower ends of the two feeding funnels (6) both pass through the upper end of the isolation box (1) and are both fixedly connected to a driving and adjusting mechanism (16). The left and right sides of the driving and adjusting mechanism (16) are respectively fixedly connected to the left and right sides inside the isolation box (1). The left and right ends of the driving and adjusting mechanism (16) respectively pass through the left and right side walls of the isolation box (1) and are respectively fixedly connected to two sprockets two (10). The two sprockets two (10) are respectively driven and connected to the two sprockets one (11) through two chains provided; At the lower end of the support cross plate (15), there is a fixing vertical plate (14) fixedly connected. At the lower end of the fixing vertical plate (14), there is a mesh leakage plate (13) fixedly connected. Below the mesh leakage plate (13), there is a dirt collection box (2) correspondingly arranged. The lower end of the dirt collection box (2) is lapped on the inner bottom surface of the isolation box (1). On the upper end of the isolation box (1), there is an exhaust fan (8) fixedly connected. At the rear end of the exhaust fan (8), there is a conveying pipe (9) fixedly connected. The lower end of the conveying pipe (9) sequentially passes through the upper end of a disinfection box (19) and a plurality of activated carbon filter plates (20) and is arranged inside the disinfection box (19).

2. The isolation device for preventing the invasion of germs for veterinary use according to claim 1, characterized in that: In front of the exhaust fan (8), there is an exhaust duct (7). The lower end of the exhaust duct (7) is fixedly connected to the isolation box (1). On the upper end of the isolation box (1), there is a blower (5) fixedly connected. At the rear end of the blower (5), there is an air supply duct (17). The lower side of the air supply duct (17) is fixedly connected to the isolation box (1).

3. An isolation device for preventing the invasion of germs for veterinary use according to claim 1, characterized in that: A number of the activated carbon filter plates (20) are all fixedly connected to the upper side inside the disinfection box (19). The front end of the disinfection box (19) is fixedly connected to the isolation box (1). On the upper surface inside the isolation box (1), there is an ultraviolet sterilization lamp (24).

4. An isolation device for preventing the invasion of germs for veterinary use according to claim 1, characterized in that: The mesh leakage plate (13) is fixedly connected to the lower side inside the isolation box (1). The isolation box (1) is movably connected to two sliders (21) through two chutes opened on its inner lower surface. The upper ends of the two sliders (21) are both fixedly connected to the dirt collection box (2).

5. An isolation device for preventing the invasion of germs for veterinary use according to claim 1, characterized in that: Two sealed box doors (3) are provided at the front end of the isolation box (1), and transparent observation windows (4) are provided on both of the two sealed box doors (3). Two support legs (18) are fixedly connected to the lower end of the rear side of the isolation box (1). Sealing covers are provided at the upper ends of the two feeding funnels (6). Dirt guide plates (22) are fixedly connected to the left and right inner side surfaces of the isolation box (1).

6. The isolation device for preventing the invasion of germs for veterinary use according to claim 1, characterized in that: The fixing mechanism (12) includes a double-shaft motor (126). The upper end of the double-shaft motor (126) is fixedly connected to the isolation box (1). The double-shaft motor (126) is fixedly connected to two threaded rods (125) respectively through two output shafts provided thereon. The two threaded rods (125) are respectively threadedly connected to two T-shaped plates (123) each internally provided with a threaded hole.

7. An isolation device for preventing the invasion of germs for veterinary use according to claim 6, characterized in that: Two clamping rods (122) are fixedly connected to the relatively far ends of the two T-shaped plates (123). The four clamping rods (122) are respectively clamped with two mounting clamping plates (25). The two T-shaped plates (123) are respectively movably connected to two fixing rods one (124) through circular holes opened in their interiors.

8. An isolation device for preventing the invasion of germs for veterinary use according to claim 7, characterized in that: Fixing plates (121) are fixedly connected to the relatively far ends of the two fixing rods one (124). The upper ends of the two fixing plates (121) are fixedly connected to the isolation box (1). The two fixing plates (121) are respectively movably connected to the relatively far sides of the two threaded rods (125). The relatively far ends of the two threaded rods (125) are respectively fixedly connected to two sprockets one (11).

9. An isolation device for preventing the invasion of germs for veterinary use according to claim 1, characterized in that: The driving and adjusting mechanism (16) includes a bidirectional screw rod (165). The left and right sides of the bidirectional screw rod (165) are respectively movably connected to the left and right ends of the isolation box (1). The left and right ends of the bidirectional screw rod (165) are respectively fixedly connected to two sprockets two (10). Two threaded blocks (164) are threadedly connected to the bidirectional screw rod (165). L-shaped plates (162) are fixedly connected to the lower ends of the two threaded blocks (164).

10. An isolation device for preventing the invasion of germs for veterinary use according to claim 9, characterized in that: The two L-shaped plates (162) are respectively fixedly connected to two feeding guide pipes (161). The upper ends of the two feeding guide pipes (161) are respectively fixedly connected to two feeding hoses (163). The upper ends of the two feeding hoses (163) are respectively fixedly connected to the lower ends of the two feeding funnels (6). The two threaded blocks (164) are respectively movably connected to a fixing rod two (166) through circular holes opened in their interiors. The left and right ends of the fixing rod two (166) are respectively fixedly connected to the left and right inner side surfaces of the isolation box (1).