Epidemic prevention, disinfection and purification device for henhouse

By combining a centrally symmetrical array of ultraviolet lamps, shock-absorbing pads and heat dissipation fins, a transparent protective cover and a reflector, the problem of lamps being easily damaged in the chicken coop environment is solved, achieving efficient sterilization and extending service life.

CN223959023UActive Publication Date: 2026-03-03HUNAN DOW ECOLOGICAL POULTRY TECH DEV CO LTD
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Patent Information

Application Number
CN202520226542.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-13
Publication Date
2026-03-03
Estimated Expiration
2035-02-13

AI Technical Summary

Technical Problem

In existing chicken house disinfection and purification devices, ultraviolet lamps are easily corroded or physically damaged in high humidity and dust environments, resulting in shortened service life and reduced disinfection efficiency.

Method used

It adopts a centrally symmetrical array of ultraviolet lamps, equipped with shock-absorbing pads and heat dissipation fins, combined with a transparent protective cover, reflector and exhaust fan to ensure the uniformity and stability of the lamps. The lamps are protected by a tight connection between the protective cover and the reflector. Silicone spring buffer and rubber material layer are used to enhance stability. It is equipped with a removable filter and louvered air outlet to ensure smooth airflow.

Benefits of technology

While ensuring efficient sterilization, it extends the service life of the ultraviolet lamps, reduces damage to the lamps from external factors, and improves the stability and disinfection effect of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the utility model provides a henhouse epidemic prevention, disinfection and purification device, which comprises an ultraviolet lamp tube mounting frame, an ultraviolet lamp tube, an ultraviolet lamp tube fixing frame and an ultraviolet lamp tube fixing frame, wherein the ultraviolet lamp tube mounting frame is provided with a shock pad, heat dissipation fins are designed on the periphery of the lamp tubes to accelerate heat dissipation, the ultraviolet lamp tubes arranged in an array are arranged in a central symmetry mode, and the ultraviolet lamp tube sets arranged in a central symmetry mode are turned on or off at the same time to improve the uniformity of ultraviolet rays; the reflecting plate is arranged above the ultraviolet lamp tube mounting rack; the protective cover is arranged outside the ultraviolet lamp tube mounting rack in a sleeving manner, is transparent, and is buckled on the edge of the reflecting plate; the exhaust fan is communicated to the protective cover through a pipeline, and a detachable filter screen is arranged at an outlet of the fan; the supporting base is placed on the ground and used for providing bearing. According to the scheme of the embodiment of the invention, the lamp tube can be prevented from being damaged to influence the service life while efficient sterilization is ensured.
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Description

Technical Field

[0001] This application relates to the field of disinfection technology for livestock and poultry breeding equipment, specifically to a chicken house disinfection and purification device. Background Technology

[0002] Chicken house disinfection and purification devices primarily provide effective air purification and sterilization for chicken houses. These devices typically include key components such as ultraviolet lamps, filters, and airflow systems, which work together to eliminate pathogens and harmful particulate matter in the air. However, a problem arises in practical use: how to ensure efficient sterilization while preventing lamp damage that could shorten its lifespan. The high humidity and dust levels in chicken houses can corrode or physically damage ultraviolet lamps, potentially shortening their lifespan. This leads to decreased disinfection efficiency, frequent component replacements, and increased maintenance costs. Summary of the Invention

[0003] In view of this, the present disclosure provides a chicken coop disinfection and purification device, which at least partially solves the problems existing in the prior art.

[0004] This application discloses a chicken coop disinfection and purification device, comprising:

[0005] An ultraviolet lamp mounting bracket is used to fix ultraviolet lamps and arrange them in an array. The ultraviolet lamp mounting bracket is equipped with shock-absorbing pads, and heat dissipation fins are designed around the lamps to accelerate heat dissipation. The arrayed ultraviolet lamps are arranged in a centrally symmetrical manner, and the centrally symmetrical ultraviolet lamp groups are turned on or off simultaneously to improve the uniformity of ultraviolet light.

[0006] A reflector, placed above the UV lamp mounting bracket, is used to reflect UV rays;

[0007] The protective cover is fitted over the UV lamp mounting bracket and is transparent. The protective cover is fastened to the edge of the reflector.

[0008] An exhaust fan is connected to a protective cover via a duct; a removable filter is installed at the fan outlet; a support base is placed on the ground to provide support; and

[0009] The shock-absorbing pad consists of a double-layer structure, with an outer layer of rubber material and an inner layer of silicone spring buffer.

[0010] According to one embodiment, the rubber material layer has an anti-slip texture.

[0011] According to one embodiment, the heat dissipation fins are arranged in a spiral shape around the ultraviolet lamp tube.

[0012] According to one embodiment, the reflector is provided with an aluminum alloy reinforcing frame around its edge.

[0013] According to one embodiment, the reflector surface is provided with a silver-plated nano-coating.

[0014] According to one embodiment, the protective cover has an array of vents evenly distributed on it.

[0015] According to one embodiment, a waterproof sealing strip is provided between the protective cover and the reflector.

[0016] According to one embodiment, the exhaust fan is equipped with a louvered air outlet device.

[0017] According to one embodiment, the detachable filter is disposed on the outside of the exhaust fan and is fixed by magnetic attraction.

[0018] According to one embodiment, a pair of omnidirectional casters are installed at each of the four corners of the bottom of the support base.

[0019] This disclosure provides a chicken coop disinfection and purification device, comprising: an ultraviolet lamp mounting frame for fixing ultraviolet lamps arranged in an array; wherein the ultraviolet lamp mounting frame is equipped with shock-absorbing pads, and heat dissipation fins are designed around the lamps to accelerate heat dissipation; the arrayed ultraviolet lamps are arranged in a centrally symmetrical manner, and the centrally symmetrical ultraviolet lamp groups are simultaneously turned on or off to improve the uniformity of ultraviolet radiation; a reflector, disposed above the ultraviolet lamp mounting frame, for reflecting ultraviolet radiation; a protective cover, fitted over the ultraviolet lamp mounting frame and being transparent, the protective cover being fastened to the edge of the reflector; an exhaust fan, connected to the protective cover via a pipe, with a removable filter at the fan outlet; a support base, placed on the ground for bearing; and the shock-absorbing pads are composed of a double-layer structure, with an outer layer of rubber material and an inner layer of silicone spring buffer. The solution of this disclosure can ensure efficient sterilization while preventing damage to the lamps and affecting their service life. Attached Figure Description

[0020] To more clearly illustrate the technical solutions of the exemplary embodiments of this disclosure, the accompanying drawings used in the embodiments will be briefly described below. It should be understood that the following drawings only show some embodiments of this disclosure and should not be regarded as a limitation of the scope. For those skilled in the art, other related drawings can be obtained based on these drawings without creative effort.

[0021] Figure 1 This is a schematic diagram of the structure of the chicken coop disinfection and purification device of this utility model;

[0022] Figure 2This is a front view of the protective cover and aluminum alloy reinforced frame of the chicken coop disinfection and purification device of this utility model.

[0023] Figure 3 This is a cross-sectional view of the reflector of the chicken coop disinfection and purification device of this utility model;

[0024] Figure 4 This is a cross-sectional view of the shock-absorbing pad of the chicken coop disinfection and purification device of this utility model.

[0025] In the image: 1. UV lamp mounting bracket; 2. Reflector; 3. Protective cover; 4. Exhaust fan; 5. Support base; 7. Silicone spring buffer; 9. Aluminum alloy reinforced frame; 10. Silver-plated nano-coating; 11. Shock-absorbing pad; 12. Heat dissipation fins; 13. Ventilation hole array; 14. Waterproof sealing strip; 15. Louvered air outlet device; 16. Removable filter; 17. Universal casters. Detailed Implementation

[0026] In the following description, only certain exemplary embodiments are briefly described. As those skilled in the art will recognize, the described embodiments can be modified in various ways without departing from the spirit or scope of this application. Therefore, the drawings and description are considered to be exemplary in nature and not restrictive.

[0027] like Figure 1 As shown, the chicken coop disinfection and purification device of this application includes several key parts: an ultraviolet lamp mounting bracket 1, a reflector 2, a protective cover 3, an exhaust fan 4, and a support base 5. The ultraviolet lamp mounting bracket 1 is used to fix the ultraviolet lamps and arrange them in an array. To ensure that vibrations during system operation do not affect the stability and lifespan of the lamps, a specially designed shock-absorbing structure is installed in the connection area between the mounting bracket 1 and the lamps to mitigate the impact of vibrations caused by the external environment. A heat dissipation fin structure 12 is also specially installed around the lamps to improve air circulation, thereby promoting the rapid dissipation of heat energy around the heating elements into the surrounding environment and effectively reducing the risk of temperature accumulation. The lamps are arranged in a centrally symmetrical manner, and under control logic, all centrally symmetrically arranged lamp groups can be started or stopped simultaneously, ensuring higher uniformity of ultraviolet coverage. This layout not only improves light efficiency but also ensures ease of operation.

[0028] In other words, in this application, the ultraviolet lamp mounting bracket 1 is used to fix ultraviolet lamps and arrange them in an array. The ultraviolet lamp mounting bracket 1 is equipped with shock-absorbing pads 11, and heat dissipation fins 12 are designed around the lamps to accelerate heat dissipation. The arrayed ultraviolet lamps are arranged in a centrally symmetrical manner, and the centrally symmetrical ultraviolet lamp groups are simultaneously turned on or off to improve the uniformity of ultraviolet light. To ensure uniform disinfection, the ultraviolet lamps are designed in a centrally symmetrical array shape, thus providing relatively uniform ultraviolet light. Furthermore, for the centrally symmetrical ultraviolet lamps, a symmetrical group of ultraviolet lamps is simultaneously turned off or on, ensuring that the usage time of the symmetrical ultraviolet lamps is basically the same. Therefore, even with increased usage time, relatively uniform ultraviolet light can still be provided.

[0029] Furthermore, in this application, a reflector 2 is provided above the aforementioned mounting bracket 1. The reflector 2 is made of a highly reflective material, which can reflect part of the ultraviolet light emitted by the lamp tube but not directly hitting the target surface, thereby maximizing the recovery and utilization of light source energy and enhancing the overall disinfection efficiency.

[0030] In addition, a protective cover 3 made of transparent material surrounds the exterior. This component is completely fitted around the ultraviolet lamp tube and fits tightly with the edge of the reflector 2 to form an enclosed space, providing a layer of physical protection for the internal components. In other words, the transparent protective cover 3 serves to connect the ultraviolet lamp tube mounting bracket 1 and the reflector 2.

[0031] Meanwhile, this application also includes an exhaust fan 4 connected to the aforementioned protective cover 3. One end of the exhaust fan 4 is connected to a pipe extending into the interior of the protective cover 3, while the other side is equipped with an easily removable filter screen for later maintenance and cleaning. Its main task is to continuously introduce fresh airflow during operation and prevent larger particles from entering the device and affecting normal operation through the filter screen at the outlet. Finally, the entire device is placed on a stable platform provided on the ground—a support base 5—to bear the total weight of all components and maintain the overall structural balance and stable position.

[0032] In summary, this meticulously designed system enables the chicken coop disinfection and purification device to achieve efficient sterilization while maximizing the protection of the ultraviolet lamps, reducing the potential impact of external factors, and extending the overall lifespan of the lamps and the device.

[0033] In one embodiment, further reference Figure 4The shock-absorbing pad 11 of the chicken coop disinfection and purification device of this application consists of a double-layer structure. The outer layer is made of rubber material (i.e., the rubber material layer) to enhance friction and provide a preliminary cushioning effect. The inner layer is embedded with a silicone spring buffer 7, which can effectively absorb and mitigate external impact forces, thereby further improving the stability of the device during operation. The shock-absorbing pad 11 is set at the bottom of the ultraviolet lamp mounting bracket 1 to ensure the stable installation of the mounting bracket in the chicken coop. Through the double-layer shock-absorbing design, not only can vibration and noise be reduced during device operation, but internal precision components can also be protected from damage.

[0034] Specifically, the outer rubber layer of the shock-absorbing pad 11 contacts the ground, and its surface has an anti-slip texture, increasing friction and making the device more firmly fixed to the chicken coop floor. Silicone spring buffers 7 are evenly distributed within the rubber layer, forming a multi-layered buffer system. When external pressure is transmitted to the silicone springs, these springs can disperse and reduce the pressure through their own elasticity and deformation. This design is particularly suitable for chicken coop equipment requiring a stable working environment, such as in high-frequency ultraviolet irradiation scenarios, where the shock-absorbing pad 11 can ensure that the ultraviolet lamps and their related components are not affected by vibration.

[0035] For example, in actual operation, the shock-absorbing pad 11 with this special structure can be fixedly installed on the bottom surface of the ultraviolet lamp mounting bracket 1. Then, the entire device can be placed stably in the designated position, and it can be checked whether the shock-absorbing pad 11 is in full contact with the ground. The shock-absorbing pad 11 continues to function before and after the device is started and during normal operation to ensure the stability and reliability of the equipment.

[0036] In one embodiment, the heat dissipation fins 12 of the chicken coop disinfection and purification device of this application are arranged in a spiral shape around the ultraviolet lamp tube. Specifically, the heat dissipation fins 12 arranged around the ultraviolet lamp tube adopt a unique layout design, which are arranged sequentially along the spiral trajectory to form a compact and uniform spatial distribution pattern. This structure allows each fin to maximize its surface area per unit length and effectively avoids the airflow obstruction problem that may be caused by the traditional straight strip fin layout, thereby improving air circulation and heat dissipation efficiency.

[0037] Furthermore, the connection between the heat sink fins 12 and the ultraviolet lamp tube employs a direct contact or tight embedding design to ensure excellent heat conduction. The heat sink fins 12 themselves possess good thermal conductivity and are preferably made of high thermal conductivity materials such as aluminum alloy. To ensure long-term operational stability and durability, the entire heat dissipation structure also considers corrosion resistance and ease of cleaning and maintenance. Through a rational geometric configuration and material selection, this solution not only optimizes the physical properties of heat conduction and dissipation but also simplifies the manufacturing process and reduces the difficulty of subsequent maintenance.

[0038] For example, in practical implementation, after the ultraviolet lamp is installed onto the mounting bracket, a set of 12 modular spiral heat dissipation fins can be attached tightly and fixed to specific locations around the ultraviolet lamp. Each module is securely connected to the mounting bracket or ultraviolet lamp using threads or other mechanical fixing methods. This technical implementation scheme ensures both convenient installation and good heat dissipation performance.

[0039] In one embodiment, further reference Figure 2 The reflector 2 of the chicken coop disinfection and purification device of this application has an aluminum alloy reinforcing frame 9 around its edge. The reflector 2 is located above the ultraviolet lamp mounting bracket 1 and is used to reflect the light emitted by the ultraviolet lamp, making it more evenly cover the entire chicken coop space. To enhance the overall structural strength and rigidity of the reflector 2 and prevent deformation due to long-term use or external forces, a reinforcing frame 9 is designed around its edge. This reinforcing frame is made of high-quality aluminum alloy material and can effectively resist external physical damage.

[0040] The reinforcing frame 9 is tightly integrated with the reflector 2, ensuring a seamless fit and a smooth, aesthetically pleasing overall appearance. Specifically, the reinforcing frame 9 is securely installed to the edge of the reflector 2 using screws or welding. The reinforcing frame 9 also protects the edge of the reflector 2 from mechanical damage and provides a stable support base for subsequent installation steps. For example, when the protective cover 3 is fitted onto the edge of the reflector 2, the reinforcing frame 9 can bear some of the pressure and maintain its shape. This enhances the safety and durability of the device while also providing convenience for operators.

[0041] For example, in the actual manufacturing process, the aluminum alloy profile can be cut to an appropriate length and then bent into a shape suitable for surrounding the edge contour of the reflector 2. Next, the processed profile is installed and fixed around the reflector 2 in the predetermined position, thereby achieving effective protection of the component and structural optimization and reinforcement.

[0042] In one embodiment, further reference Figure 3 The reflector 2 of the chicken coop disinfection and purification device of this application has a silver-plated nano-coating 10 on its surface. This silver-plated nano-coating 10 can effectively reflect ultraviolet rays and enhance their irradiation range, allowing more ultraviolet rays to cover every corner of the chicken coop. Furthermore, the silver-plated nano-coating 10 also has excellent weather resistance and corrosion resistance, maintaining stable optical performance during long-term use.

[0043] Specifically, the reflector 2 is positioned above the ultraviolet lamp mounting bracket 1 to ensure that it can comprehensively and effectively collect and reflect the light emitted from the ultraviolet lamp. This arrangement not only enhances the energy utilization rate of ultraviolet light but also improves the overall disinfection effect on the environment. Because the silver-plated nano-coating 10 is evenly distributed on the entire outer surface of the reflector 2, ultraviolet light entering from different angles can be fully reflected, thereby ensuring that sufficient ultraviolet dose is received from all directions within the indoor space.

[0044] In one exemplary embodiment, treated high-purity silver material can first be made into an extremely thin film, which is then deposited onto a pre-prepared smooth surface under strictly controlled conditions to form a nanoscale silver coating. Subsequently, using advanced coating processes or electrophoretic deposition methods, this film is firmly adhered to the outer surface of the reflector 2, thereby obtaining a reflector 2 assembly with excellent reflective properties. To further ensure the quality and stability of the coating, special attention must be paid to the selection of the substrate and the precise control of factors such as temperature and humidity in the coating environment during the preparation process.

[0045] In one embodiment, the protective cover 3 of the chicken coop disinfection and purification device of this application has an array of air vents 13 evenly distributed on it (see...). Figure 2 The vent array 13 is designed to ensure effective airflow and gas exchange within the device, preventing excessive humidity or gas buildup from affecting the disinfection effect and the functionality of internal components. Furthermore, the vents help regulate the internal temperature by promoting air convection to remove heat. The protective cover 3 is installed outside the UV lamp mounting bracket 1 and fastened to the edge of the reflector 2, creating a closed yet breathable environment that ensures the safety and protection of the equipment without compromising its heat dissipation needs. To ensure good airtightness and ventilation, the protective cover 3 and the reflector 2 are tightly connected, and a sealing ring can be installed between them to prevent the leakage of harmful gases or the intrusion of external pollutants.

[0046] Specifically, the ventilation holes are arranged in an array, with multiple rows or columns evenly distributed on a complete protective cover 3, and the spacing between the holes in each row or column remains relatively fixed. From a technical implementation perspective, the ventilation hole array 13 can be manufactured using processes such as stamping or drilling; however, during actual assembly, ventilation holes of appropriate size and density must be selected according to the design specifications to achieve the intended functions and technical indicators. This design not only facilitates manufacturing but also allows for adjustment of specific ventilation parameters according to the needs of different chicken house environments to achieve optimal operating conditions.

[0047] In one embodiment, a waterproof sealing strip 14 is provided between the protective cover 3 and the reflector 2 of the chicken coop disinfection and purification device of this application. The introduction of this strip ensures the reliability of the device in humid environments. Specifically, the waterproof sealing strip 14 is installed at the contact point between the protective cover 3 and the reflector 2, and its tight fit prevents water vapor and moisture from penetrating the contact surface. This location not only ensures a good sealing effect but also does not affect the operation of other components. The sealing strip is typically made of materials with excellent elasticity and weather resistance to adapt to various complex farm environments and ensure its durability.

[0048] For example, in the specific implementation process, during the process of attaching the protective cover 3 to the reflector 2, the waterproof sealing strip 14 can be pre-installed in a specially designed groove at the joint between the two. This structural design ensures that the sealing strip remains firmly and reliably sealed even when the equipment vibrates or is subjected to external forces. This connection method is not only simple and feasible, but also does not damage the functionality and structural integrity of the original components. Due to the presence of the sealing strip, changes in airflow generated when the exhaust fan 4 is working or pressure differences caused by external climate changes will not affect the safety and stability of the ultraviolet lamp tubes and their auxiliary components inside the device.

[0049] In one embodiment, the protective cover 3 in the above design is made of transparent material, which can effectively prevent external objects from contacting the internal ultraviolet lamp tubes while not affecting the effective transmittance of ultraviolet rays, thus ensuring that the disinfection effect is not affected. Furthermore, by tightly integrating the protective cover 3 with the reflector 2, the entire system can reflect ultraviolet rays more efficiently, further enhancing its epidemic prevention performance. In actual operation, this design makes maintenance simpler and faster, allowing necessary cleaning and inspection to be completed without frequent disassembly and reassembly of components.

[0050] In one embodiment, the exhaust fan 4 of the chicken house disinfection and purification device of this application is equipped with a louvered air outlet device 15. Specifically, the air outlet device is installed at the outlet end of the exhaust fan 4 through a specific structure. The louvered air outlet device 15 is located outside the fan, and its blade angle can be automatically or manually adjusted according to ventilation needs. This configuration makes the device more adaptable, and can be adjusted according to the environmental conditions inside and outside the chicken house to ensure suitable airflow exchange while achieving effective ventilation and airflow management.

[0051] The louvered air outlet device 15 consists of several rotatable louvers and is equipped with a drive mechanism to control the opening and closing degree of these louvers. This drive mechanism can be composed of a motor, a linkage system, or other similar transmission components. Furthermore, the entire louvered unit is securely connected to the fan, providing smooth and efficient gas exhaust while ensuring airtightness. When the device is operating, the gas containing disinfectant and impurities discharged from the fan is pre-filtered through a filter screen and then released through the adjusted louvered channels.

[0052] In one specific embodiment, to install this louvered air outlet device 15, a certain space can be reserved at the outlet of the exhaust fan 4 to facilitate the assembly of the louvered unit. Then, suitable fasteners, such as bolt combinations, are used to tightly connect the two. Simultaneously, sufficient flexibility is ensured at the connection point to accommodate changes in blade opening and thermal expansion and contraction during prolonged use. Furthermore, a corresponding limiting mechanism is designed for the rotation of the louvered blades to prevent them from fully expanding or excessively closing under abnormal operating conditions, thus affecting performance. In addition, to prevent pollutants from flowing back into the equipment and causing secondary pollution, a one-way valve mechanism is also provided on one side of the louver, allowing only the purified gas to be discharged outwards and preventing it from flowing back into the equipment.

[0053] In one embodiment, the detachable filter 16 of the chicken coop disinfection and purification device of this application is located on the outside of the exhaust fan 4 and is fixed by magnetic attraction. This feature ensures that the filter can be easily replaced and cleaned after long-term use, improving the convenience of operation. For ease of maintenance, while ensuring structural stability and filtration efficiency, the detachable filter 16 is installed on the outside of the exhaust fan 4 and securely connected by a high-strength magnetic material. This design ensures smooth airflow and eliminates the need for tools or other auxiliary equipment to replace the filter, further optimizing the device's operational performance.

[0054] The detachable filter 16 is magnetically secured to the outside. Specifically, multiple high-density permanent magnets are arranged around the perimeter of the exhaust fan 4 housing. These magnets generate sufficient attraction to the metal filter, achieving a safe and reliable fixation without affecting ventilation. At the same time, this installation method provides users with a simple and intuitive assembly process. When the filter needs to be removed, users can easily complete the quick removal and installation process by simply pulling or placing the filter, without worrying about hardware damage from frequent operations.

[0055] For example, the filter frame can be constructed using a metal mesh of appropriate thickness and size. Soft rubber strips are evenly embedded around the frame to prevent the filter from loosening and to prevent dust from seeping into the internal system through gaps. Simultaneously, specific spacing is reserved near the edge of the exhaust fan 4 housing to install concealed magnets, ensuring the filter can be firmly attached to the designated position and easily removed under applied force.

[0056] In one embodiment, return to reference Figure 1 The support base 5 of the chicken coop disinfection and purification device of this application is equipped with a pair of universal casters 17 at each of the four corners of its bottom. The support base 5 is placed on the ground to support the weight of the entire device, and its structure is stable and reliable, ensuring the stability of the entire device during operation. Each pair of universal casters 17 is respectively located at the four corners of the support base 5, and the two casters are arranged parallel to each other at a certain distance. This layout gives the entire device good balance and mobility.

[0057] Specifically, each omnidirectional roller 17 consists of a bracket and a rotating body, wherein the rotating body can rotate freely in any direction. The bracket is fixedly connected to the support base 5 below, ensuring a firm connection between the roller and the support base 5. This connection method not only facilitates installation, disassembly, and maintenance, but also ensures that the roller will not easily fall off or fail due to external environmental factors.

[0058] In actual operation, for example, when moving the chicken coop disinfection and purification device to the required location, the universal rollers 17 can be smoothly moved by pushing the device, thus facilitating the movement of the entire device. Furthermore, since each pair of rollers is distributed at both corners, the center of gravity of the device is relatively concentrated, effectively preventing tilting or instability caused by uneven force at a single point.

[0059] In actual operation, when this device is in use, the stability of the entire device can be ensured by placing the support base 5 on the ground. The ultraviolet lamps are fixed to the ultraviolet lamp mounting bracket 1 and arranged in a centrally symmetrical manner to ensure uniform ultraviolet distribution. After startup, all centrally symmetrically arranged ultraviolet lamps turn on or off simultaneously, improving the consistency of illumination and disinfection efficiency. The heat dissipation fins 12 accelerate air circulation around the lamps, preventing high temperatures from affecting the lamps' lifespan. Meanwhile, the reflector 2, located above the ultraviolet lamp mounting bracket 1, reflects and scatters ultraviolet light to maximize the disinfection effect. The transparent protective cover 3 is fitted over the ultraviolet lamp mounting bracket 1, effectively protecting the ultraviolet lamps from external interference without hindering ultraviolet light transmission. The exhaust fan 4 is connected to the protective cover 3 via a pipe, and a removable filter 16 is installed at the fan outlet to discharge gases containing harmful substances. After the fan starts, it can promptly discharge ozone and other volatile compounds generated during the purification process, while ensuring air quality in the chicken house. In this way, environmental safety and hygiene conditions are ensured while carrying out disinfection.

[0060] The specific embodiments described above further illustrate the purpose, technical solutions, and beneficial effects of the embodiments of this disclosure. It should be understood that the above descriptions are merely specific embodiments of the embodiments of this disclosure and are not intended to limit the scope of protection of the embodiments of this disclosure. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the embodiments of this disclosure should be included within the scope of protection of the embodiments of this disclosure.

Claims

1. A chicken coop disinfection and purification device, characterized in that, include: An ultraviolet lamp mounting bracket (1) is used to fix ultraviolet lamps and arrange them in an array. The ultraviolet lamp mounting bracket (1) is equipped with shock-absorbing pads (11), and heat dissipation fins (12) are designed around the lamps to accelerate heat dissipation. The array of ultraviolet lamps is arranged in a centrally symmetrical manner, and the centrally symmetrical ultraviolet lamp groups are turned on or off at the same time to improve the uniformity of ultraviolet light. A reflector (2) is placed above the ultraviolet lamp mounting bracket (1) to reflect ultraviolet rays; The protective cover (3) is fitted onto the outside of the ultraviolet lamp mounting bracket (1) and is transparent. The protective cover (3) is fastened to the edge of the reflector (2). An exhaust fan (4) is connected to a protective cover (3) via a pipe, and a removable filter screen (16) is provided at the outlet of the fan (4); The support base (5) is placed on the ground to provide support; and The shock-absorbing pad (11) consists of a double-layer structure, with an outer layer of rubber material and an inner layer of silicone spring buffer (7).

2. The chicken coop disinfection and purification device according to claim 1, characterized in that: The rubber material layer has an anti-slip texture.

3. The chicken coop disinfection and purification device according to claim 1, characterized in that: The heat dissipation fins (12) are arranged in a spiral shape around the ultraviolet lamp tube.

4. The chicken coop disinfection and purification device according to claim 1, characterized in that: The reflector (2) is provided with an aluminum alloy reinforcing frame (9) around its edge.

5. The chicken coop disinfection and purification device according to claim 4, characterized in that: The reflector (2) has a silver-plated nano-coating (10) on its surface.

6. The chicken coop disinfection and purification device according to claim 1, characterized in that: The protective cover (3) has an array of vent holes (13) evenly distributed on it.

7. The chicken coop disinfection and purification device according to claim 6, characterized in that: A waterproof sealing strip (14) is provided between the protective cover (3) and the reflector (2).

8. The chicken coop disinfection and purification device according to claim 1, characterized in that: The exhaust fan (4) is equipped with a louvered air outlet device (15).

9. The chicken coop disinfection and purification device according to claim 1, characterized in that: The detachable filter (16) is located on the outside of the exhaust fan (4) and is fixed by magnetic attraction.

10. The chicken coop disinfection and purification device according to claim 1, characterized in that: The support base (5) is equipped with a pair of universal casters (17) at each of the four corners of its bottom.