Disinfection device for animal husbandry and veterinary medicine

By designing an automated livestock and veterinary disinfection device and utilizing multiple spray valves, angle electromagnets and other components, all-round disinfection of livestock can be achieved, solving the time-consuming and labor-intensive problems and uneven disinfection issues of existing devices, and improving the disinfection effect and versatility of the equipment.

CN223380664UActive Publication Date: 2025-09-26周忠义
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Patent Information

Application Number
CN202422034453.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-21
Publication Date
2025-09-26
Estimated Expiration
2034-08-21

AI Technical Summary

Technical Problem

Existing livestock disinfection and cleaning devices for animal husbandry and veterinary medicine require manual operation, which is time-consuming and labor-intensive. In addition, livestock may move around during the disinfection process, affecting the disinfection effect.

Method used

A livestock and veterinary disinfection device was designed, which includes a circular disinfection box, a telescopic disinfection structure and a protective structure. It uses multiple spray valves, toothed spray pipes and angle electromagnets and other components to achieve automated and intelligent all-round disinfection of livestock. The full coverage and uniform spraying of the disinfectant are achieved through angle adjustment and magnetic adsorption.

Benefits of technology

It improves the comprehensiveness and uniformity of the disinfection effect, reduces the complexity and labor intensity of manual operation, adapts to livestock of different sizes and shapes, and ensures the stability and safety of the disinfection environment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an animal husbandry veterinary disinfection device which comprises a concentric-square-shaped disinfection box, a telescopic disinfection structure and a protection structure, and relates to the technical field of animal husbandry disinfection, a system can spray livestock in a sleeved mode in the vertical direction through a plurality of spraying valves and a tooth-mounted spraying pipe, it is ensured that disinfection liquid is fully covered, and the disinfection effect is improved. Spraying dead angles are effectively avoided, and the disinfection effect is improved; through the magnetic repulsive action of an angle electromagnet and an angle magnet, the system can flexibly adjust the spraying angle of the tooth-mounted spraying pipe, and the comprehensiveness and uniformity of disinfection are further enhanced; and by utilizing the magnetic adsorption or repulsive action of the adsorption electromagnet and the conductive metal rod, the system can realize the sealing of the concave bearing block, so that the leakage of the disinfectant is prevented, and the stability and the safety of a disinfection environment are ensured.
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Description

Technical Field

[0001] The utility model relates to the technical field of animal husbandry disinfection, in particular to an animal husbandry and veterinary disinfection device. Background Art

[0002] In short, animal husbandry involves the domestication and cultivation of economically valuable animals and birds, utilizing their natural functions, such as growth and reproduction, to produce livestock products or livestock (poultry) services. This sector broadly encompasses the raising of common livestock and poultry, such as cattle, horses, sheep, pigs, rabbits, chickens, and ducks, as well as the domestication of commercial animals, such as deer, musk deer, foxes, minks, and otters. Humans rely on animal husbandry for food resources such as meat, milk, eggs, and fat, as well as light industrial raw materials such as hides, hair, feathers, and bones. Animal husbandry also supports the development of crop production by providing livestock services and manure.

[0003] The veterinary industry refers to both the field dedicated to the prevention and treatment of animal diseases and the personnel who specialize in this work. Its core responsibilities include researching and implementing the diagnosis, treatment, prevention, quarantine of livestock and poultry diseases, as well as sanitary inspection of livestock products. In the process of treating livestock by animal husbandry and veterinarians, it is often necessary to inject livestock with relevant drugs. Before this, the skin of the livestock must be cleaned and disinfected to prevent infection of the injection wound. However, there is a significant problem in the use of existing livestock disinfection and cleaning devices for animal husbandry and veterinary medicine: the surface of the livestock body needs to be disinfected and flushed manually, which is not only time-consuming and labor-intensive, but also during the flushing process, the livestock may move around due to restlessness, thereby affecting the effect of disinfection and cleaning. In view of this, an in-depth study of the above-mentioned issues has resulted in this case. Utility Model Content

[0004] To achieve the above objectives, the present invention is implemented through the following technical solutions: A livestock and veterinary disinfection device, comprising: a circular disinfection box, a telescopic disinfection structure, and a protective structure, wherein the protective structure is installed on the inner side of the circular disinfection box, and the telescopic disinfection structure is installed on the inner side of the protective structure;

[0005] The telescopic disinfection structure comprises: a plurality of concave bearing blocks, a disinfection diversion pipe group, a plurality of spray valves, a plurality of toothed spray pipes, a plurality of circular liquid drainage shaft pipes, a plurality of L-shaped telescopic pipes, a disinfectant tank, a disinfection pump, a plurality of angle gears, a plurality of angle clamping strips, a plurality of convex angle sliders, a plurality of concave angle slideways, a plurality of angle magnets and a plurality of angle electromagnets;

[0006] Several of the concave bearing blocks are installed on the inner side of the circular disinfection box, several of the toothed spray pipes are respectively inserted on several of the concave bearing blocks, several of the L-shaped telescopic shaft tubes are respectively inserted on the inner sides of several of the toothed spray pipes, several of the circular liquid drainage shaft tubes are evenly inserted on the inner side of the circular disinfection box, and several of the circular liquid drainage shaft tubes are movably sleeved on the outer sides of several of the L-shaped telescopic tubes, the disinfection diversion pipe group is installed on the circular disinfection box, and several of the disinfection diversion pipe groups are respectively connected to several of the circular liquid drainage shaft tubes, the disinfectant tank is installed on the outer side of the circular disinfection box, and the disinfection pump is installed on On the disinfectant liquid tank, and the disinfection pump is connected to the disinfection diversion pipe group, several of the angle gears are respectively installed on several of the geared spray pipes, several of the concave angle slides are evenly installed on the inner side of the circular disinfection box, several of the convex angle sliders are respectively movably inserted on the inner sides of several of the concave angle slides, several of the angle clips are respectively installed on several of the convex angle sliders, and several of the angle clips are respectively engaged with the gears between several of the angle gears, several of the angle magnets are respectively installed on several of the convex angle sliders, and several of the angle electromagnets are respectively installed on the inner sides of several of the concave angle slides.

[0007] Preferably, the protective structure comprises: a plurality of circular limit blocks, a pair of trumpet-shaped support blocks, a plurality of circular telescopic sealing blocks, a plurality of circular telescopic blocks, a plurality of extruded shaft tubes, a plurality of extruded convex cylindrical shaft rods, a plurality of circular metal blocks, a plurality of conductive metal rods, a plurality of adsorption electromagnets, a plurality of adsorption magnets, and a plurality of set springs;

[0008] Several of the circular limit blocks are evenly installed on the inner side of the circular disinfection box, a pair of the horn-shaped support blocks are respectively installed on the two ends of the inner side of the circular disinfection box, and a pair of the horn-shaped support blocks are respectively connected to a pair of the circular limit blocks, several of the circular limit blocks are respectively provided with convex circular grooves and circular limit grooves, several of the circular telescopic blocks are respectively movably inserted in the inner sides of several convex circular grooves, several of the circular telescopic sealing blocks are respectively installed on several of the circular telescopic blocks, several of the extrusion shaft tubes are respectively inserted in the inner sides of several of the circular limit grooves, and several of the extrusion convex cylindrical shaft rods are respectively movably inserted in several of the extrusion On the inner side of the compression tube, several of the set springs are respectively set on several of the extruded cylindrical shafts, and several of the set springs are respectively connected to several of the extruded shaft tubes, several of the circular metal blocks are respectively installed on several of the circular limit blocks, several of the conductive metal rods are respectively inserted on several of the circular metal blocks on both sides, and several of the conductive metal rods are respectively inserted on several convex circular grooves and several of the extruded shaft tubes on both sides, several of the adsorption electromagnets are respectively installed on several of the circular metal blocks, and several of the adsorption magnets are respectively installed on several of the extruded convex cylindrical shafts and several of the circular telescopic sealing blocks.

[0009] Preferably, a plurality of the concave bearing blocks are located between a plurality of the circular limit blocks.

[0010] Preferably, a plurality of the meandering liquid drainage shaft tubes and a plurality of the L-shaped telescopic tubes are provided with sealing annular rubber rings.

[0011] Preferably, a plurality of the concave angle slideways are respectively provided with a limit buffer shaft, a plurality of the limit buffer shafts are respectively movably inserted into a plurality of the convex angle sliders, and a plurality of the limit buffer shafts are respectively provided with a set buffer spring.

[0012] Preferably, a plurality of infrared transmitters, a plurality of infrared receivers and a plurality of roller brushes are respectively provided on the plurality of circular limit blocks.

[0013] Beneficial effects

[0014] The utility model provides a livestock and veterinary disinfection device. The device has the following beneficial effects: the system, through multiple spray valves and toothed spray pipes, can spray livestock in a vertical direction, ensuring comprehensive coverage of the disinfectant, effectively avoiding spray blind spots, and improving the disinfection effect; through the magnetic repulsion of angle electromagnets and angle magnets, the system can flexibly adjust the spray angle of the toothed spray pipes, further enhancing the comprehensiveness and uniformity of the disinfection; utilizing the magnetic adsorption or repulsion of the adsorption electromagnet and the conductive metal rod, the system can seal the concave bearing block, preventing leakage of the disinfectant, and ensuring the stability and safety of the disinfection environment; the entire disinfection process can be achieved by controlling different electromagnets and spray valves, with a high degree of intelligence and automation, reducing the complexity and labor intensity of manual operation; the system can adapt to livestock of different sizes and shapes through the design of structures such as a circular limit block and a circular telescopic block, thereby improving the versatility and practicality of the device. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 This is a schematic front and sectional view of a livestock and veterinary disinfection device according to the present invention.

[0016] Figure 2 for Figure 1 A partial enlarged view of "A".

[0017] Figure 3 for Figure 1 A partial enlarged view of "B".

[0018] In the figure: 1. Ring-shaped disinfection box; 2. Concave bearing block; 3. Disinfection diversion pipe group; 4. Spray valve; 5. Geared spray pipe; 6. Ring-shaped liquid drainage shaft tube; 7. L-shaped telescopic tube; 8. Angle gear; 9. Angle clamping strip; 10. Convex angle slider; 11. Concave angle slide; 12. Angle magnet; 13. Angle electromagnet; 14. Ring-shaped limit block; 15. Trumpet-shaped support block; 16. Ring-shaped telescopic sealing block; 17. Ring-shaped telescopic block; 18. Extruded shaft tube; 19. Extruded convex cylindrical shaft rod; 20. Ring-shaped metal block; 21. Conductive metal rod; 22. Adsorption electromagnet; 23. Adsorption magnet; 24. Set spring. DETAILED DESCRIPTION

[0019] Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making any creative work shall fall within the scope of protection of the present invention.

[0020] Through the use of wires by those skilled in the art, all electrical components in this case are connected to their corresponding power supplies, and appropriate controllers and encoders should be selected according to actual conditions to meet control requirements. The specific connection and control sequence should refer to the following working principle, in which the electrical components are electrically connected in sequence. The detailed connection means are well-known technologies in this field. The following mainly introduces the working principle and process, and no longer explains the electrical control.

[0021] Example

[0022] like Figure 1-3 As shown, the protective structure is installed on the inner side of the circular disinfection box 1, and the telescopic disinfection structure is installed on the inner side of the protective structure;

[0023] Specifically, the telescopic disinfection structure includes: a plurality of concave bearing blocks 2, a disinfection diversion pipe group 3, a plurality of spray valves 4, a plurality of toothed spray pipes 5, a plurality of tortuous liquid drainage shaft tubes 6, a plurality of L-shaped telescopic tubes 7, a disinfectant tank, a disinfection pump, a plurality of angle gears 8, a plurality of angle clamping strips 9, a plurality of convex angle sliders 10, a plurality of concave angle slideways 11, a plurality of angle magnets 12, and a plurality of angle electromagnets 13;

[0024] Specifically, several of the concave bearing blocks 2 are installed on the inner side of the circular disinfection box 1, several of the toothed spray pipes 5 are respectively inserted on several of the concave bearing blocks 2, several of the L-shaped telescopic shaft tubes are respectively inserted on the inner sides of several of the toothed spray pipes 5, several of the circular liquid drainage shaft tubes 6 are evenly inserted on the inner side of the circular disinfection box 1, and several of the circular liquid drainage shaft tubes 6 are respectively movably sleeved on the outer sides of several of the L-shaped telescopic tubes 7, the disinfection diversion pipe group 3 is installed on the circular disinfection box 1, and several of the disinfection diversion pipe groups 3 are respectively connected to several of the circular liquid drainage shaft tubes 6, the disinfectant tank is installed on the outer side of the circular disinfection box 1, and the disinfection pump is installed on the disinfection On the venom tank, and the disinfection pump is connected to the disinfection diversion pipe group 3, several of the angle gears 8 are respectively installed on several of the toothed spray pipes 5, and several of the concave angle slides 11 are evenly installed on the inner side of the circular disinfection box 1, and several of the convex angle sliders 10 are movably inserted on the inner sides of several of the concave angle slides 11, and several of the angle clips 9 are respectively installed on several of the convex angle sliders 10, and several of the angle clips 9 are respectively engaged with the gears between several of the angle gears 8, several of the angle magnets 12 are respectively installed on several of the convex angle sliders 10, and several of the angle electromagnets 13 are respectively installed on the inner sides of several of the concave angle slides 11;

[0025] It should be noted that, in the above, by guiding the livestock to the inside of the circular disinfection box 1, the livestock is limited to the inside of the circular disinfection box 1 by the protective structure, the disinfectant inside the disinfectant box is drained to the inside of the disinfection shunt pipe group 3 by the disinfection pump, and drained to several spray valves 4 through the disinfection shunt pipe group 3. By opening different spray valves 4, the disinfectant is drained to the inside of the circular liquid drainage shaft tube 6 through the spray valve 4, and through several L-shaped telescopic tubes 7 on the circular liquid drainage shaft tube 6, the liquid is drained to the inside of the toothed spray pipe 5 on the concave bearing block 2 through the several L-shaped telescopic tubes 7. The operation of the several toothed spray pipes 5 sprays the livestock through the toothed spray pipes 5. The spraying is performed in the vertical direction, and at the same time, the angle electromagnets 13 on the several concave angle slides 11 are energized, and the several angle electromagnets 13 are respectively magnetically repelled to the several angle magnets 12, and the several angle magnets 12 are respectively driven by the convex angle sliders 10 thereon, so that the convex angle sliders 10 are respectively extended and retracted horizontally along the inner side of the concave angle slide 11, and the angle clamping strip 9 thereon is driven by the angle clamping strip 9, and the angle gear 8 engaged with the gear is driven by the gear 8, and the gear-mounted spray pipes 5 thereon are respectively driven by the several angle gears 8, so as to adjust the spraying angle of the toothed spray pipe 5, thereby avoiding the occurrence of dead angles in the spraying of livestock.

[0026] like Figure 1-3 As shown, the protective structure includes: a plurality of circular limit blocks 14, a pair of trumpet-shaped support blocks 15, a plurality of circular telescopic sealing blocks 16, a plurality of circular telescopic blocks 17, a plurality of extruded shaft tubes 18, a plurality of extruded convex cylindrical shaft rods 19, a plurality of circular metal blocks 20, a plurality of conductive metal rods 21, a plurality of adsorption electromagnets 22, a plurality of adsorption magnets 23 and a plurality of set springs 24;

[0027] Specifically, several of the circular limit blocks 14 are evenly installed on the inner side of the circular disinfection box 1, a pair of the horn-shaped support blocks 15 are respectively installed on the two ends of the inner side of the circular disinfection box 1, and a pair of the horn-shaped support blocks 15 are respectively connected to a pair of the circular limit blocks 14, and several of the circular limit blocks 14 are respectively provided with convex circular grooves and circular limit grooves, several of the circular telescopic blocks 17 are respectively movably inserted into the inner sides of several convex circular grooves, several of the circular telescopic sealing blocks 16 are respectively installed on several of the circular telescopic blocks 17, several of the extrusion shaft tubes 18 are respectively inserted into the inner sides of several of the circular limit grooves, and several of the extrusion convex cylindrical shafts 19 are respectively movably inserted into several of the extrusion shafts On the inner side of the tube 18, several of the set springs 24 are respectively set on several of the extruded cylindrical shafts, and several of the set springs 24 are respectively connected to several of the extruded shaft tubes 18, several of the circular metal blocks 20 are respectively installed on several of the circular limit blocks 14, and several of the conductive metal rods 21 are respectively inserted on both sides of the circular metal blocks 20, and several of the conductive metal rods 21 are respectively inserted on both sides of the convex circular grooves and several of the extruded shaft tubes 18, several of the adsorption electromagnets 22 are respectively installed on several of the circular metal blocks 20, and several of the adsorption magnets 23 are respectively installed on several of the extruded convex cylindrical shafts 19 and several of the circular telescopic sealing blocks 16;

[0028] It should be noted that, in the above, the livestock are guided to the plurality of circular limit blocks 14 by the trumpet-shaped support block 15, and the plurality of circular limit blocks 14 are sealed by the circular telescopic block 17. The adsorption electromagnet 22 is energized, and the magnetism generated by the adsorption electromagnet 22 is transmitted to the connected circular metal block 20, and the magnetism on the connected circular metal block 20 is conducted by the plurality of conductive metal rods 21. The magnetic attraction or repulsion on the conductive metal rod 21 (by changing the power on the adsorption electromagnet 22) is The magnet 23 on the circular telescopic sealing block 16 is attracted by the conductive metal rod 21. Similarly, the magnet 23 on the extruded convex cylindrical shaft 19 is magnetically attracted or repelled by the conductive metal rod 21. The circular telescopic block 17 is squeezed and limited by several extruded convex cylindrical shafts 19. At the same time, magnetic attraction can be used to shrink the circular telescopic sealing block 16 and the circular telescopic block 17 thereon to the inner side of the convex circular groove, thereby sealing the concave bearing block 2.

[0029] As a preferred solution, further, a plurality of the concave bearing blocks 2 are located between a plurality of the circular limit blocks 14 .

[0030] As a preferred solution, further, several of the meandering liquid drainage shaft tubes 6 and several of the L-shaped telescopic tubes 7 are provided with sealing annular rubber rings.

[0031] As a preferred solution, further, several of the concave angle slides 11 are respectively provided with limit buffer shafts, several of the limit buffer shafts are respectively movably inserted on several of the convex angle sliders 10, and several of the limit buffer shafts are respectively provided with set buffer springs.

[0032] As a preferred solution, further, a plurality of the circular limit blocks 14 are respectively provided with a plurality of infrared transmitters, a plurality of infrared receivers and a plurality of roller brushes.

[0033] Although the 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 variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A livestock and veterinary disinfection device, comprising: A circular disinfection box, a telescopic disinfection structure, and a protective structure, wherein the protective structure is installed on the inner side of the circular disinfection box, and the telescopic disinfection structure is installed on the inner side of the protective structure; The telescopic disinfection structure comprises: a plurality of concave bearing blocks, a disinfection diversion pipe group, a plurality of spray valves, a plurality of toothed spray pipes, a plurality of circular liquid drainage shaft pipes, a plurality of L-shaped telescopic pipes, a disinfectant tank, a disinfection pump, a plurality of angle gears, a plurality of angle clamping strips, a plurality of convex angle sliders, a plurality of concave angle slideways, a plurality of angle magnets and a plurality of angle electromagnets; Several of the concave bearing blocks are installed on the inner side of the circular disinfection box, several of the toothed spray pipes are respectively inserted on several of the concave bearing blocks, several of the L-shaped telescopic shaft tubes are respectively inserted on the inner sides of several of the toothed spray pipes, several of the circular liquid drainage shaft tubes are evenly inserted on the inner side of the circular disinfection box, and several of the circular liquid drainage shaft tubes are movably sleeved on the outer sides of several of the L-shaped telescopic tubes, the disinfection diversion pipe group is installed on the circular disinfection box, and several of the disinfection diversion pipe groups are respectively connected to several of the circular liquid drainage shaft tubes, the disinfectant tank is installed on the outer side of the circular disinfection box, and the disinfection pump is installed on On the disinfectant liquid tank, and the disinfection pump is connected to the disinfection diversion pipe group, several of the angle gears are respectively installed on several of the geared spray pipes, several of the concave angle slides are evenly installed on the inner side of the circular disinfection box, several of the convex angle sliders are respectively movably inserted on the inner sides of several of the concave angle slides, several of the angle clips are respectively installed on several of the convex angle sliders, and several of the angle clips are respectively engaged with the gears between several of the angle gears, several of the angle magnets are respectively installed on several of the convex angle sliders, and several of the angle electromagnets are respectively installed on the inner sides of several of the concave angle slides.

2. The animal husbandry and veterinary disinfection device according to claim 1, characterized in that: The protective structure includes: a plurality of circular limit blocks, a pair of trumpet-shaped support blocks, a plurality of circular telescopic sealing blocks, a plurality of circular telescopic blocks, a plurality of extruded shaft tubes, a plurality of extruded convex cylindrical shaft rods, a plurality of circular metal blocks, a plurality of conductive metal rods, a plurality of adsorption electromagnets, a plurality of adsorption magnets, and a plurality of set springs; Several of the circular limit blocks are evenly installed on the inner side of the circular disinfection box, a pair of the horn-shaped support blocks are respectively installed on the two ends of the inner side of the circular disinfection box, and a pair of the horn-shaped support blocks are respectively connected to a pair of the circular limit blocks, several of the circular limit blocks are respectively provided with convex circular grooves and circular limit grooves, several of the circular telescopic blocks are respectively movably inserted in the inner sides of several convex circular grooves, several of the circular telescopic sealing blocks are respectively installed on several of the circular telescopic blocks, several of the extrusion shaft tubes are respectively inserted in the inner sides of several of the circular limit grooves, and several of the extrusion convex cylindrical shaft rods are respectively movably inserted in several of the extrusion On the inner side of the compression tube, several of the set springs are respectively set on several of the extruded cylindrical shafts, and several of the set springs are respectively connected to several of the extruded shaft tubes, several of the circular metal blocks are respectively installed on several of the circular limit blocks, several of the conductive metal rods are respectively inserted on several of the circular metal blocks on both sides, and several of the conductive metal rods are respectively inserted on several convex circular grooves and several of the extruded shaft tubes on both sides, several of the adsorption electromagnets are respectively installed on several of the circular metal blocks, and several of the adsorption magnets are respectively installed on several of the extruded convex cylindrical shafts and several of the circular telescopic sealing blocks.

3. The animal husbandry and veterinary disinfection device according to claim 2, characterized in that: A plurality of concave bearing blocks are located between a plurality of circular limiting blocks.

4. The animal husbandry and veterinary disinfection device according to claim 3, characterized in that: A plurality of the serpentine liquid drainage shaft tubes and a plurality of the L-shaped telescopic tubes are provided with sealing annular rubber rings.

5. The animal husbandry and veterinary disinfection device according to claim 4, characterized in that: A plurality of the concave angle slideways are respectively provided with a limit buffer shaft, a plurality of the limit buffer shafts are respectively movably inserted into a plurality of the convex angle sliding blocks, and a plurality of the limit buffer shafts are respectively provided with a set buffer spring.

6. The animal husbandry and veterinary disinfection device according to claim 5, characterized in that: A plurality of infrared transmitters, a plurality of infrared receivers and a plurality of roller brushes are respectively arranged on the plurality of circular limit blocks.