Disinfecting equipment for livestock breeding
Patent Information
- Application Number
- CN202522317738.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-31
- Publication Date
- 2026-09-18
- Estimated Expiration
- 2035-10-31
AI Technical Summary
[0003]目前,传统消毒设备大多采用人工手持喷洒的方式进行消毒,这种方式不仅效率低下,而且难以保证消毒的全面性和精准性,尤其是在面对大型养殖场时,人工消毒的方式不仅耗费大量人力和时间,还可能因人为因素导致消毒不均匀,部分区域消毒过度而部分区域消毒不足,进而影响畜牧的健康
[0010] Compared with the prior art, this utility model has the following beneficial effects: by setting up a disinfection mechanism, it achieves comprehensive, efficient and precise disinfection of the livestock breeding environment. When in use, the staff only needs to operate the conveying parts, adjusting parts and other components to easily complete a series of tasks such as conveying disinfectant, adjusting the spray position and retracting the water delivery hose. The entire disinfection process is highly automated, which greatly reduces the labor intensity of the staff. Moreover, the dual-nozzle design not only ensures the coverage area, but also facilitates subsequent maintenance, effectively improving the reliability and practicality of the disinfection equipment.
Smart Images

Figure CN224762236U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of animal husbandry technology, and in particular to a disinfection device for animal husbandry. Background Technology
[0002] Livestock farming is an important part of agricultural production, and the hygiene of the farming environment directly affects the health and growth quality of livestock. During livestock farming, factors such as dense livestock populations and manure accumulation can easily lead to the proliferation and spread of pathogens such as bacteria and viruses, causing livestock diseases and impacting farming efficiency. Therefore, the application of disinfection equipment in livestock farming is particularly important.
[0003] Currently, most traditional disinfection equipment uses manual hand-held spraying. This method is not only inefficient but also struggles to guarantee comprehensive and accurate disinfection. Especially in large-scale farms, manual disinfection is not only labor-intensive and time-consuming but can also lead to uneven disinfection due to human error, resulting in over-disinfection in some areas and under-disinfection in others, thus affecting livestock health. Therefore, installing multiple fixed nozzles in livestock farming areas for comprehensive disinfection, while improving efficiency to some extent, suffers from high installation costs, poor flexibility, and an inability to adjust the disinfection range and intensity according to actual farming conditions. Furthermore, maintaining multiple nozzles presents numerous inconveniences, increasing farming costs and management complexity. Utility Model Content
[0004] The purpose of this invention is to provide a disinfection device for livestock farming to solve the aforementioned technical problems. To achieve the above objectives, the present invention adopts the following technical solution: a disinfection device for livestock breeding, comprising a disinfection device and a disinfection mechanism. The disinfection mechanism is disposed on the disinfection device and includes a conveying component, a water inlet pipe, an adjusting component, a pipe receiving assembly, a slider, an atomizing nozzle, and a guide component. The conveying component is disposed on the disinfection device, with one end of the water inlet pipe connected to the disinfection device and the other end of the water inlet pipe connected to the input end of the conveying component. The adjusting component is disposed on the disinfection device, and the slider is disposed on the bottom wall of the adjusting component. One end of the pipe receiving assembly is connected to the output end of the conveying component, and the other end of the pipe receiving assembly is connected to the slider. The atomizing nozzle is disposed on the outer wall of the slider, and the guide component is disposed on the outer wall of the disinfection device.
[0005] Preferably, the pipe receiving assembly includes a water supply hose, a drive unit, and a pipe receiving reel. One end of the water supply hose is connected to the output end of the conveying unit, and the other end of the water supply hose is connected to the slider. The drive unit is disposed on the outer wall of the disinfection equipment, and the pipe receiving reel is connected to the drive unit's rotating shaft. The water supply hose is wound around the outer wall of the pipe receiving reel.
[0006] Preferably, the guide component includes a connecting rod, a guide pulley, and a support beam. The connecting rod is disposed on the outer wall of the disinfection equipment, the guide pulley is disposed on the outer wall of the connecting rod, and the support beam is disposed on the outer wall of the disinfection equipment, with the other end of the support beam connected to the connecting rod.
[0007] Preferably, the disinfection equipment includes a support frame and a storage tank, with the storage tank mounted on the support frame.
[0008] Preferably, the medicine storage tank is equipped with a sealing cap, and the sealing cap is threadedly connected to the medicine storage tank.
[0009] Preferably, an observation hole is provided on the outer wall of the medicine storage tank, and a transparent cover is provided on the inner wall of the observation hole.
[0010] Compared with the prior art, this utility model has the following beneficial effects: by setting up a disinfection mechanism, it achieves comprehensive, efficient and precise disinfection of the livestock breeding environment. When in use, the staff only needs to operate the conveying parts, adjusting parts and other components to easily complete a series of tasks such as conveying disinfectant, adjusting the spray position and retracting the water delivery hose. The entire disinfection process is highly automated, which greatly reduces the labor intensity of the staff. Moreover, the dual-nozzle design not only ensures the coverage area, but also facilitates subsequent maintenance, effectively improving the reliability and practicality of the disinfection equipment. Attached Figure Description
[0011] Figure 1 This is a schematic diagram of the structure of this utility model; Figure 2 This is a schematic diagram of the disinfection mechanism in this utility model; Figure 3 This is a schematic diagram of the structure of the tube receiving assembly in this utility model; Figure 4 This is a schematic diagram of the guide component in this utility model; Figure 5 for Figure 1 A magnified structural diagram of point A in the middle.
[0012] Reference numerals: 1. Disinfection equipment; 11. Support frame; 12. Storage tank; 2. Disinfection mechanism; 21. Conveying component; 22. Water inlet pipe; 23. Adjusting component; 24. Sliding block; 25. Atomizing nozzle; 3. Tube retraction assembly; 31. Water delivery hose; 32. Driving component; 33. Tube retraction disc; 4. Guide component; 41. Connecting rod; 42. Guide pulley; 43. Support beam; 5. Sealing cover; 6. Observation hole; 7. Transparent cover. Detailed Implementation
[0013] The embodiments of this utility model are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain this utility model, and should not be construed as limiting this utility model.
[0014] like Figures 1-5 As shown, the present invention proposes a disinfection device for livestock breeding, which includes a disinfection device 1 and a disinfection mechanism 2, wherein the disinfection mechanism 2 is disposed on the disinfection device 1.
[0015] The disinfection mechanism 2 includes a conveyor 21, an inlet pipe 22, an adjusting component 23, a pipe receiving assembly 3, a slider 24, an atomizing nozzle 25, and a guide 4. The conveyor 21 is mounted on the disinfection device 1, and one end of the inlet pipe 22 is connected to the disinfection device 1, while the other end of the inlet pipe 22 is connected to the input end of the conveyor 21. The adjusting component 23 is mounted on the disinfection device 1, and the slider 24 is mounted on the bottom wall of the adjusting component 23. One end of the pipe receiving assembly 3 is connected to the output end of the conveyor 21, and the other end of the pipe receiving assembly 3 is connected to the slider 24. The atomizing nozzle 25 is mounted on the outer wall of the slider 24, and the guide 4 is mounted on the outer wall of the disinfection device 1.
[0016] The pipe receiving assembly 3 includes a water delivery hose 31, a drive unit 32, and a pipe receiving reel 33. One end of the water delivery hose 31 is connected to the output end of the delivery unit 21, and the other end of the water delivery hose 31 is connected to the slider 24. The drive unit 32 is disposed on the outer wall of the disinfection equipment 1, and the pipe receiving reel 33 is connected to the rotating shaft of the drive unit 32. The water delivery hose 31 is wound around the outer wall of the pipe receiving reel 33.
[0017] The guide component 4 includes a connecting rod 41, a guide pulley 42, and a support beam 43. The connecting rod 41 is disposed on the outer wall of the disinfection equipment 1, the guide pulley 42 is disposed on the outer wall of the connecting rod 41, and the support beam 43 is disposed on the outer wall of the disinfection equipment 1, with the other end of the support beam 43 connected to the connecting rod 41.
[0018] In this embodiment, the conveying component 21 is a water pump. When the conveying component 21 is started, it can draw the disinfectant in the medicine storage tank 12 into the water inlet pipe 22, and after being pressurized by the conveying component 21, it is delivered to the water delivery hose 31. Finally, it is delivered to the atomizing nozzle 25 through the internal channel of the slider 24. The atomizing nozzle 25 sprays the disinfectant in the form of atomization, thereby achieving comprehensive disinfection of the breeding environment.
[0019] In this embodiment, the adjusting component 23 is an electric slide table. When the adjusting component 23 is started, it can drive the slider 24 to move linearly in the horizontal direction, thereby adjusting the spraying position of the atomizing nozzle 25 on the outer wall of the slider 24. At the same time, the driving component 32 is a motor. When the driving component 32 is started, the retractor 33 rotates accordingly, thereby performing the retracting and unretracting operation of the water delivery hose 31. During the retracting process, the water delivery hose 31 can be orderly wound around the retractor 33 to avoid tangling or messiness, ensuring the smooth delivery of disinfectant.
[0020] In one embodiment of this application, such as Figure 1 As shown, the disinfection equipment 1 includes a support frame 11 and a storage tank 12. The storage tank 12 is mounted on the support frame 11. The support frame 11 supports and secures the entire disinfection equipment 1, ensuring its stability during operation. The storage tank 12 stores the disinfectant solution. When disinfection of the livestock farming environment is required, the disinfectant solution in the storage tank 12 is extracted and atomized by the disinfection mechanism 2 to achieve a comprehensive and efficient disinfection effect.
[0021] In one embodiment of this application, such as Figure 1 As shown, the medicine storage tank 12 is equipped with a sealing cap 5, and the sealing cap 5 is threadedly connected to the medicine storage tank 12. The sealing cap 5 is installed on the medicine storage tank 12 via a threaded connection. This connection method is not only stable and reliable, but also convenient for workers to open and close. When adding disinfectant or cleaning and maintaining the medicine storage tank 12, simply rotate the sealing cap 5 to remove or reinstall it; the operation is simple and quick. At the same time, the sealing cap 5 effectively prevents the disinfectant inside the medicine storage tank 12 from leaking or evaporating, ensuring the storage quality and effectiveness of the disinfectant.
[0022] In addition, the threaded connection between the sealing cap 5 and the medicine storage tank 12 also has a certain sealing performance, which can reduce the entry of external impurities into the medicine storage tank 12, thereby avoiding contamination of the disinfectant and ensuring the purity and safety of the disinfectant.
[0023] In one embodiment of this application, such as Figure 1 As shown, an observation hole 6 is provided on the outer wall of the medicine storage tank 12, and a transparent cover 7 is provided on the inner wall of the observation hole 6.
[0024] The observation port 6 provides staff with a direct view of the remaining disinfectant level in the storage tank 12. Through the observation port 6, staff can quickly ascertain the remaining disinfectant level without opening the sealing cap 5, allowing for timely decisions to replenish the disinfectant and preventing disruptions to the disinfection process due to insufficient disinfectant. The transparent cover 7 further protects the observation port 6 from external contamination while ensuring clear visibility.
[0025] The working principle of this utility model is as follows: When disinfection of the livestock farming environment is required, the relevant personnel first activate the conveyor 21. After the conveyor 21 starts working, it draws the disinfectant stored in the storage tank 12 through the water inlet pipe 22. After entering the conveyor 21, the disinfectant is pressurized and then conveyed to the water delivery hose 31. The disinfectant is then transported through the water delivery hose 31 to the position connected to the slider 24, and then conveyed to the atomizing nozzle 25 through the internal channel of the slider 24. At this time, the atomizing nozzle 25 sprays the disinfectant evenly in the form of atomization. The atomizing nozzle 25 is set on the outer wall of the left and right sides of the slider 24, so that the atomized disinfectant can be sprayed on both sides at the same time, effectively expanding the disinfection range.
[0026] Next, the relevant staff activated the adjusting component 23, which caused the slider 24 to move back and forth in a straight line in the horizontal direction. During the movement of the slider 24, the atomizing nozzle 25 on its outer wall also moved, thereby changing the spraying position of the disinfectant and enabling the disinfectant to evenly cover all corners of the breeding environment, avoiding the occurrence of disinfection dead spots.
[0027] Meanwhile, when a specific location needs to be disinfected, staff can control the movement distance of the adjusting component 23 so that the slider 24 can drive the atomizing nozzle 25 to the target location, and then start the conveying component 21 to carry out the fixed-point disinfection operation. This precise control method not only improves the disinfection efficiency, but also effectively saves the amount of disinfectant used.
[0028] Furthermore, when the adjusting component 23 moves the slider 24, the driving component 32 starts synchronously. When the slider 24 moves away from the take-up coil 33, the driving component 32 drives the take-up coil 33 to rotate, so that the water delivery hose 31 is released from the take-up coil 33, ensuring that the water delivery hose 31 can extend freely as the slider 24 moves. When the slider 24 moves closer to the take-up coil 33, the driving component 32 drives the take-up coil 33 to rotate in the opposite direction, so that the water delivery hose 31 is orderly retracted and wound around the take-up coil 33. This flexible retraction and release setting avoids problems such as tangling and knotting of the water delivery hose 31 during movement, ensuring the smooth progress of the entire disinfection process.
[0029] It should be noted that the start, stop, and rotation direction of the drive component 32 can be precisely controlled by the control system. This control system is interconnected with the control system of the regulating component 23. When the regulating component 23 starts and drives the slider 24 to move, the control system automatically controls the start, stop, rotation direction, and speed of the drive component 32 according to the movement direction and speed of the slider 24, so as to achieve synchronous coordination between the water delivery hose 31 and the slider 24.
[0030] During the movement of the water delivery hose 31 driven by the slider 24, the guide member 4 plays an important guiding and supporting role. The connecting rod 41 is firmly set on the outer wall of the disinfection equipment 1, providing a solid supporting foundation for the entire guiding structure. The guide pulley 42 is installed on the outer wall of the connecting rod 41. When the water delivery hose 31 moves, the guide pulley 42 can guide the water delivery hose 31 to slide along a predetermined path, reducing the friction between the water delivery hose 31 and the outer wall of the disinfection equipment 1 or other components, reducing wear, and also ensuring the smooth movement of the water delivery hose 31, preventing the water delivery hose 31 from sagging or deviating from the predetermined movement trajectory.
[0031] In summary, this utility model, by setting up a disinfection mechanism 2, achieves comprehensive, efficient, and precise disinfection of the livestock breeding environment. During use, staff only need to operate components such as the conveyor 21 and the adjusting component 23 to easily complete a series of tasks such as conveying disinfectant, adjusting the spray position, and extending and retracting the water delivery hose 31. The entire disinfection process is highly automated, greatly reducing the labor intensity of staff. Furthermore, the dual-nozzle design not only ensures the coverage area but also facilitates subsequent maintenance, effectively improving the reliability and practicality of the disinfection equipment 1.
[0032] The contents not described in detail in this specification are existing technologies known to those skilled in the art.
[0033] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely preferred examples and are not intended to limit the utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed utility model.
Claims
1. Livestock breeding disinfection apparatus characterized by: The device includes a disinfection device (1) and a disinfection mechanism (2). The disinfection mechanism (2) is mounted on the disinfection device (1). The disinfection mechanism (2) includes a conveyor (21), a water inlet pipe (22), an adjusting component (23), a pipe receiving assembly (3), a slider (24), an atomizing nozzle (25), and a guide component (4). The conveyor (21) is mounted on the disinfection device (1), and one end of the water inlet pipe (22) is connected to the disinfection device (1), while the other end of the water inlet pipe (22) is connected to the disinfection device (1). The adjustment component (23) is connected to the input end of the conveying component (21), the slider (24) is located on the bottom wall of the adjustment component (23), one end of the tube receiving component (3) is connected to the output end of the conveying component (21), and the other end of the tube receiving component (3) is connected to the slider (24), the atomizing nozzle (25) is located on the outer wall of the slider (24), and the guide component (4) is located on the outer wall of the disinfection device (1).
2. The livestock breeding disinfecting apparatus according to claim 1, characterized in that: The pipe receiving assembly (3) includes a water delivery hose (31), a drive unit (32), and a pipe receiving reel (33). One end of the water delivery hose (31) is connected to the output end of the conveying unit (21), and the other end of the water delivery hose (31) is connected to the slider (24). The drive unit (32) is disposed on the outer wall of the disinfection equipment (1), and the pipe receiving reel (33) is connected to the rotating shaft of the drive unit (32). The water delivery hose (31) is wound around the outer wall of the pipe receiving reel (33).
3. The livestock breeding disinfecting apparatus according to claim 1, characterized in that: The guide member (4) includes a connecting rod (41), a guide pulley (42), and a support beam (43). The connecting rod (41) is disposed on the outer wall of the disinfection equipment (1), the guide pulley (42) is disposed on the outer wall of the connecting rod (41), and the support beam (43) is disposed on the outer wall of the disinfection equipment (1). The other end of the support beam (43) is connected to the connecting rod (41).
4. The livestock breeding disinfecting apparatus according to claim 1, characterized in that: The disinfection equipment (1) includes a support frame (11) and a medicine storage tank (12), the medicine storage tank (12) being mounted on the support frame (11).
5. The livestock breeding disinfecting apparatus according to claim 4, characterized in that: The medicine storage tank (12) is provided with a sealing cover (5), and the sealing cover (5) is threadedly connected to the medicine storage tank (12).
6. The livestock breeding disinfecting apparatus according to claim 4, wherein: An observation hole (6) is provided on the outer wall of the medicine storage tank (12), and a transparent cover (7) is provided on the inner wall of the observation hole (6).