Mosquito and insect repelling device for livestock

CN224791526UActive Publication Date: 2026-09-25GUANGYUAN ANIMAL HUSBANDRY SEED MANAGEMENT STATION
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Patent Information

Application Number
CN202522036638.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-22
Publication Date
2026-09-25
Estimated Expiration
2035-09-22

AI Technical Summary

Benefits of technology

1.通过将外壳体设为圆柱管状并集成驱蚊组件与驱动组件,既作为核心支撑结构保护内部部件免受畜牧业环境中灰尘、牲畜碰撞的影响,又为空气与驱蚊烟混合流动提供封闭通道,相比传统分散式驱蚊虫设备,结构更紧凑、适配养殖场景的抗干扰需求。

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Abstract

The utility model relates to a kind of mosquito repellent equipment for livestock industry, comprising: shell body, shell body is fixedly connected with installation shell, shell body is equipped with air hole, installation shell is threadedly sealed with twist cap, twist cap is fixedly connected with cross limiting frame in, cross limiting frame is inserted with mosquito repellent incense in, shell body is threadedly connected with top cover, top cover is equipped with recess, recess is equipped with through groove, top cover is equipped with driving assembly in;By rotating twist cap to open installation shell, the ignited mosquito repellent incense is inserted on the twist cap inner wall cross limiting frame and ensures to be upright stable, again rotates twist cap to seal smoke body leakage;Start micro motor to drive fan rotation, form negative pressure in shell body interior, in through recess and through groove inhale external air, mixed with the smoke body that mosquito repellent incense enters through air hole, finally mixed airflow is discharged from multiple direction air outlet, realize that smoke body is rapidly scattered, improve mosquito repellent efficiency.
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Description

Technical Field

[0001] This utility model belongs to the technical field of mosquito repellent equipment, specifically relating to a mosquito repellent device for animal husbandry. Background Technology

[0002] In the process of animal husbandry, mosquito bites can not only cause livestock to become restless and have a reduced appetite, affecting their growth and development and breeding efficiency, but may also spread diseases, posing a serious threat to livestock health and the stable development of the breeding industry. Therefore, mosquito control is an important part of the daily management of animal husbandry.

[0003] Currently, the most common methods of mosquito control in the livestock industry rely on the natural burning and diffusion of traditional mosquito repellent incense, spraying of chemical mosquito repellent agents, or the use of simple hanging mosquito repellent devices. Traditional mosquito repellent coils lack a directional diffusion structure and rely solely on natural air convection to spread the mosquito repellent smoke. Due to factors such as the large space of the breeding area and unstable airflow, the mosquito repellent smoke spreads slowly and has a limited coverage area, making it difficult to quickly and evenly cover the livestock activity area. To address these issues, we propose a mosquito repellent device for animal husbandry. Utility Model Content

[0004] The purpose of this invention is to provide a mosquito repellent device for livestock farming, which addresses the problems existing in the prior art.

[0005] To achieve the above technical objectives, the technical solution adopted by this utility model is as follows: A mosquito repellent device for livestock farming includes: The outer shell is configured as a cylindrical tube, and a mosquito repellent component is provided on the outside of the outer shell; The mosquito repellent component includes: The mounting shell is fixedly connected to the outer side of the outer shell, and a plurality of evenly arranged vent holes are provided between the mounting shell and the outer shell. A twist cap, wherein the twist cap is threadedly sealed to the inner wall of the bottom end of the mounting housing; A cross-shaped limiting bracket is fixedly connected to the inner wall of the twist cover; Mosquito repellent incense, wherein the mosquito repellent incense is inserted into the center position of the cross-shaped limiting frame; The upper inner wall of the outer shell is threaded with a top cover. A groove is provided at the upper edge of the top cover. Several through slots are evenly distributed between the groove and the inside of the outer shell. A driving component is provided inside the top cover to draw in outside air into the inside of the outer shell and drive the mosquito repellent smoke from the burning mosquito repellent incense to spread in all directions.

[0006] Furthermore, the end of the twisted cap facing the interior of the mounting housing has a cavity.

[0007] Further specifying, the driving component includes: A micro motor is provided, with a mounting groove inside the top cover, and the micro motor is disposed inside the mounting groove; A fan, wherein the output shaft of the fan is fixedly connected to one end of the micro motor that extends into the interior of the housing; The battery has a placement slot inside the top cover, and the battery is placed inside the placement slot and electrically connected to the micro motor.

[0008] Furthermore, the groove is provided with a sealing cover, and the sealing cover has an air inlet that communicates with the groove.

[0009] Furthermore, the top cover is provided with a lifting handle on its outer side.

[0010] Further specified, the lower inner wall of the outer casing is threaded with a bottom cover, and the outer side of the bottom cover has a plurality of evenly distributed air vents.

[0011] Furthermore, the inner wall of the bottom cover is provided with a filter screen, which is configured to be dome-shaped.

[0012] The beneficial effects of this utility model are: 1. By designing the outer shell as a cylindrical tube and integrating mosquito repellent components and drive components, it serves as a core support structure to protect internal components from dust and livestock collisions in the livestock environment, while also providing a closed channel for the mixing and flow of air and mosquito repellent smoke. Compared with traditional decentralized mosquito repellent devices, it has a more compact structure and is more suitable for the anti-interference needs of the breeding scene.

[0013] 2. By opening a vent hole between the mounting shell and the outer shell, which faces the direction of airflow, it is ensured that the smoke from the burning mosquito repellent enters the outer shell in a directional manner, preventing the smoke from escaping. It also prevents the driving components from affecting the burning of the mosquito repellent, thus solving the problems of low smoke utilization and easy interference with combustion by airflow in traditional equipment.

[0014] 3. Through the threaded sealing connection between the twist cap and the mounting shell and the cavity design inside the twist cap, the mounting shell can be easily opened and closed to replace the mosquito repellent incense and prevent smoke leakage. On the other hand, the cavity can provide air buffer for the burning of the mosquito repellent incense, temporarily store the smoke to prevent the vent from being blocked, and collect soot. Compared with the traditional sealed structure without a cavity, it takes into account the combustion stability, smoke exhaust efficiency and subsequent cleaning convenience.

[0015] 4. By integrating the drive components (micro motor, fan, and battery) into the top cover and creating grooves and slots, the battery can provide power flexibly without an external power source. The fan rotation creates negative pressure to draw in outside air, breaking the limitations of natural diffusion in traditional mosquito repellent incense. Compared with devices that rely on external power or natural convection, it is more flexible to use and the mosquito repellent smoke diffuses faster.

[0016] 5. The threaded connection between the bottom cover and the outer shell, along with the multi-directional air vents on the outside of the bottom cover, not only seals the outer shell to ensure the directional discharge of mixed airflow, but also allows for the opening and closing of internal impurities through the threads. The multi-directional air vents also expand the diffusion range of the mosquito repellent smoke. Compared to a single air vent or a fixed bottom cover structure, this design balances diffusion effect with ease of maintenance. Attached Figure Description

[0017] This utility model can be further illustrated by the non-limiting embodiments given in the accompanying drawings.

[0018] Figure 1 This is a schematic diagram of the structure of a mosquito repellent device for animal husbandry according to the present invention; Figure 2 This is a cross-sectional structural diagram of a mosquito repellent device for animal husbandry according to the present invention. Figure 3 for Figure 2 Enlarged structural diagram at point A; Figure 4 for Figure 2 A magnified structural diagram at point B in the middle.

[0019] The symbols for the main components are explained below: Outer shell 100, mounting shell 101, vent 102, twist cap 103, cross-shaped retaining bracket 104, mosquito repellent incense 105, top cover 106, groove 107, through groove 108, cavity 109. Miniature motor 200, fan 201, storage battery 202 Sealing cap 300, air inlet 301, handle 302, bottom cover 303, air outlet 304, filter screen 305. Detailed Implementation

[0020] To enable those skilled in the art to better understand this utility model, the technical solution of this utility model will be further described below in conjunction with the accompanying drawings and embodiments.

[0021] like Figures 1-4 As shown, a mosquito repellent device for livestock farming includes: The outer shell 100 is configured as a cylindrical tube, and a mosquito repellent component is provided on the outside of the outer shell 100; Mosquito repellent components include: Mounting shell 101 is fixedly connected to the outside of outer shell 100, and a plurality of evenly arranged vent holes 102 are provided between mounting shell 101 and outer shell 100. The screw cap 103 is threadedly sealed to the inner wall of the bottom end of the mounting housing 101. The cross-shaped limiting bracket 104 is fixedly connected to the inner wall of the twist cover 103. Mosquito repellent incense 105 is inserted into the center of the cross-shaped limiting bracket 104. A top cover 106 is threadedly connected to the inner wall of the upper side of the outer casing 100. A groove 107 is provided at the upper edge of the top cover 106. Several through grooves 108 are evenly distributed between the groove 107 and the interior of the outer casing 100. A driving component is provided inside the top cover 106, which is used to draw in outside air into the interior of the outer casing 100 and drive the mosquito repellent smoke from the burning mosquito repellent incense 105 to spread in all directions.

[0022] The outer shell is 100mm in size and is designed as a cylindrical tube. It serves as the core support structure of the device. The outer side is used to install mosquito repellent components, while the inside provides a closed channel for the mixing and flow of air and mosquito repellent smoke. At the same time, it protects the internal components from the effects of dust and livestock collisions in the livestock environment.

[0023] The housing 101 forms an independent space for containing the mosquito repellent incense 105, which can confine the burning process of the mosquito repellent incense 105 inside. Each vent 102 allows the mosquito-repellent smoke generated by the burning mosquito repellent incense 105 to enter the interior of the outer shell 100 in a directed manner, preventing the smoke from dissipating randomly. The opening direction of each vent 102 is designed to face the airflow direction, which can prevent the drive component from affecting the normal combustion of the mosquito repellent incense 105.

[0024] The screw cap 103 can be opened and closed inside the mounting shell 101 through the screw thread, making it convenient to replace the mosquito repellent incense 105. On the other hand, the "sealed connection" design ensures that the smoke from the burning mosquito repellent incense 105 is only discharged from the vent 102, avoiding leakage from the bottom of the mounting shell 101 and improving the utilization rate of the smoke.

[0025] The cross-shaped limit bracket 104 can prevent the mosquito repellent incense 105 from tipping over due to collisions with livestock or airflow disturbances during combustion, ensuring that the mosquito repellent incense remains in a burning state.

[0026] The mosquito repellent incense 105 releases smoke with mosquito-repelling effects through combustion. It is the core consumable for the device to achieve the mosquito-repelling function. The smoke it produces enters the outer shell 100 through the vent 102 and can be diffused to the breeding area with the airflow.

[0027] The top cover 106 is the main mounting carrier for the drive components; The groove 107 and the through groove 108 together form a channel for outside air to enter the outer casing 100, providing a path for the drive component to draw in air.

[0028] The core function of the drive component is to actively draw in outside air into the outer casing 100, thereby driving the diffusion of mosquito-repellent smoke. When in operation, it generates airflow through its own power, breaking the limitation of the traditional mosquito repellent incense 105's "natural diffusion". Specifically, the inhaled outside air mixes with the mosquito repellent smoke entering through the vent 102 inside the outer shell, and then pushes the mixed smoke to spread in all directions, expanding the mosquito repellent range and accelerating the diffusion speed.

[0029] The end of the twist cap 103 facing the inside of the mounting housing 101 has a cavity 109.

[0030] Cavity 109 is a special design for the burning of mosquito repellent incense 105; Its function is to provide additional air buffer space for the burning of mosquito repellent incense 105, to prevent the mosquito repellent incense from going out due to lack of oxygen caused by the excessively sealed internal space of the installation shell 101, and to ensure a continuous and stable burning process. Secondly, it can temporarily store some of the newly generated mosquito repellent smoke, allowing the smoke to accumulate briefly in the cavity before entering the outer shell 100 more evenly through the vent 102. This prevents the smoke from clogging the vent 102 due to excessively high concentration during combustion, while also improving the uniformity of subsequent mixing with air. Third, the soot produced after burning mosquito repellent incense 105 will be collected to facilitate subsequent cleaning by staff.

[0031] The driver components include: The micro motor 200 has a mounting slot inside the top cover 106, and the micro motor 200 is located inside the mounting slot; Fan 201 is fixedly connected to one end of the output shaft of micro motor 200 that extends into the housing 100. The battery 202 has a placement slot inside the top cover 106. The battery 202 is placed inside the placement slot and is electrically connected to the micro motor 200.

[0032] The core function of the micro motor 200 is to convert electrical energy into mechanical energy. The rotation of the output shaft drives the fan 201 to rotate, providing direct power for airflow. It is the "power core" of the drive component. The mounting slot can fix and limit the micro motor 200 to prevent it from shifting due to vibration during operation.

[0033] The fan 201 generates negative pressure inside the outer casing 100 during rotation, thereby drawing in outside air through the groove 107 and through slot 108 of the top cover 106, and simultaneously driving the airflow inside the outer casing 100, providing an airflow carrier for the diffusion of mosquito repellent smoke. It is the direct execution component for "airflow generation and guidance".

[0034] The battery 202 can continuously provide the power required for the micro motor 200 to work without relying on an external power source, allowing the device to be flexibly moved to any location in the livestock breeding area to meet the mosquito control needs of different scenarios. The placement slot can fix the battery 202 in place and prevent the battery 202 from shaking.

[0035] The groove 107 is provided with a sealing cover 300, and the sealing cover 300 is provided with an air inlet 301 that communicates with the groove 107.

[0036] The sealing cover 300 can form a certain sealing effect on the groove 107 and also cover the battery 202 to prevent the battery 202 from falling off and affecting the rotation of the fan 201; The function of the air inlet 301 is to "limit and guide" the air entering the groove 107 - by controlling the amount of air entering per unit time through the size of the hole, it avoids the large amount of air entering in disorderly due to the negative pressure of the drive component, which would cause the airflow inside the outer casing 100 to become turbulent.

[0037] A lifting handle 302 is provided on the outer side of the top cover 106.

[0038] The lifting handle 302 is designed to provide a convenient gripping point for staff. When external force is applied to the lifting handle 302, the top cover 106 and the outer shell 100 connected to it can be moved directly without contacting other functional parts of the equipment, thus avoiding accidental contact or damage to the parts during movement. Among them, the 302 handle can be hung above the livestock's activity area or placed on the ground, offering multiple installation methods to adapt to different installation environments.

[0039] The lower inner wall of the outer casing 100 is threaded with a bottom cover 303, and the outer side of the bottom cover 303 has a number of evenly distributed air vents 304.

[0040] The bottom cover 303 opens and closes the lower side of the outer casing 100 by screwing in and out the threads; When screwed in, the lower side of the outer shell 100 can be sealed to ensure that the mixed airflow is only discharged from the air outlet 304; When unscrewed, the bottom of the outer casing 100 can be opened, making it easy to clean any mosquito repellent residue or impurities that may have accumulated inside, or to replace or maintain the bottom components.

[0041] The vent 304 is a dedicated channel for the mixed airflow to be discharged from the inside of the outer casing 100; The "uniformly distributed" design of the air outlet 304 allows the mixed airflow to be discharged from multiple directions simultaneously, avoiding the limitation of diffusion range caused by concentrated airflow being discharged from a single direction. The size of the air outlet 304 can control the airflow speed, preventing the airflow from being too fast and causing a sudden drop in the concentration of mosquito repellent smoke in a local area, or too slow and causing excessive air pressure inside the outer casing, which would affect the normal operation of the fan.

[0042] The inner wall of the bottom cover 303 is provided with a filter screen 305, which is designed to be dome-shaped.

[0043] The core function of the filter screen 305 is to perform "reverse filtration" on the airflow through the air outlet 304 of the bottom cover 303. On the one hand, it can block impurities such as dust, hay scraps, and livestock hair from the external environment from entering the interior of the outer shell 100 through the air outlet 304. On the other hand, it can filter out mosquito repellent residue that may be carried in the mixed airflow inside the outer shell 100, preventing the residue from being discharged through the air outlet 304 and falling into the breeding area to contaminate feed, water sources or attaching to the surface of livestock. The dome-shaped structure can significantly increase the contact area between the filter screen 305 and the airflow. For example, when the mixed airflow flows from the inside of the outer casing 100 to the bottom cover 303, it can make more full contact with the filter screen 305, improving the impurity filtration efficiency. At the same time, the dome-shaped protrusion can prevent impurities from accumulating excessively on the filter screen, reducing the probability of the filter screen 305 becoming clogged and extending its service life. In addition, the dome-shaped structure can also adapt to the internal space of the bottom cover 303, preventing the filter screen 305 from obstructing the smooth flow of air through the air outlet 304 due to its shape.

[0044] When using the device: First, rotate the twist cap 103 to disengage it from the threads on the inner wall of the bottom of the mounting shell 101, open the mounting shell, and insert the lit mosquito repellent incense 105 into the center of the cross-shaped limiting bracket 104 on the inner wall of the twist cap 103 to ensure that the mosquito repellent incense 105 is upright and stable. Then, screw the cap 103 back to the bottom of the mounting housing 101 until the threaded seal is connected to prevent smoke leakage during subsequent combustion. Finally, the micro motor 200 is started, and its output shaft drives the fan 201, which extends into the housing 100, to rotate synchronously. The rotation of the fan 201 creates a negative pressure inside the housing 100, which draws in outside air through the groove 107 and the through slot 108 into the housing 100.

[0045] When air passes through the inside of the outer casing 100, the smoke produced by the burning mosquito repellent incense 105 also enters the outer casing 100 through the vent 102. At this time, the smoke mixes with the flowing air and is finally discharged from the vent 304. Since the vents 304 are designed to be distributed in all directions, the discharged smoke can be quickly dispersed, thereby improving the mosquito repellency efficiency of the entire device.

[0046] In this embodiment, the mounting shell is opened by rotating the twist cap, and the lit mosquito repellent incense is inserted into the cross-shaped limiting bracket on the inner wall of the twist cap to ensure it is upright and stable. Then, the twist cap is screwed back to seal and prevent smoke leakage. The micro motor is started to drive the fan to rotate, creating a negative pressure inside the outer shell. Outside air is drawn in through the groove and slot, and mixed with the smoke from the mosquito repellent incense that enters through the vent. Finally, the mixed airflow is discharged from the multi-directional vent, realizing the rapid dispersion of the smoke and improving the mosquito repellent efficiency.

[0047] The above embodiments are merely illustrative of the principles and effects of this utility model and are not intended to limit the scope of this utility model. Any person skilled in the art can modify or alter the above embodiments without departing from the spirit and scope of this utility model. Therefore, all equivalent modifications or alterations made by those skilled in the art without departing from the spirit and technical concept disclosed in this utility model should still be covered by the claims of this utility model.

Claims

1. A mosquito repellent device for livestock farming, characterized in that, include: The outer shell (100) is configured as a cylindrical tube, and a mosquito repellent component is provided on the outside of the outer shell (100); The mosquito repellent component includes: Mounting shell (101), which is fixedly connected to the outside of the outer shell (100), and a plurality of evenly arranged vent holes (102) are provided between the mounting shell (101) and the outer shell (100). A twist cap (103) is threadedly sealed to the inner wall of the bottom end of the mounting shell (101); A cross-shaped limiting bracket (104) is fixedly connected to the inner wall of the twist cover (103); Mosquito repellent incense (105), wherein the mosquito repellent incense (105) is inserted into the center of the cross-shaped limiting frame (104); The inner wall of the outer shell (100) is threaded with a top cover (106). A groove (107) is provided at the upper edge of the top cover (106). A plurality of through grooves (108) are evenly distributed between the groove (107) and the interior of the outer shell (100). A driving component is provided inside the top cover (106) for drawing in outside air into the interior of the outer shell (100) and driving the mosquito smoke from the burning mosquito repellent incense (105) to spread in all directions.

2. The mosquito repellent device for livestock farming according to claim 1, characterized in that: The twist cap (103) has a cavity (109) at one end facing the interior of the mounting shell (101).

3. The mosquito repellent device for livestock farming according to claim 1, characterized in that: The driving component includes: A micro motor (200) is provided inside the top cover (106), and the micro motor (200) is located inside the mounting groove; A fan (201) is fixedly connected to one end of the output shaft of the micro motor (200) that extends into the interior of the housing (100); The battery (202) has a placement slot inside the top cover (106), and the battery (202) is placed inside the placement slot and is electrically connected to the micro motor (200).

4. The mosquito repellent device for livestock farming according to claim 1, characterized in that: The groove (107) is provided with a sealing cover (300), and the sealing cover (300) is provided with an air inlet (301) that communicates with the groove (107).

5. The mosquito repellent device for livestock farming according to claim 1, characterized in that: The top cover (106) is provided with a handle (302) on the outside.

6. The mosquito repellent device for livestock farming according to claim 1, characterized in that: The lower inner wall of the outer shell (100) is threaded with a bottom cover (303), and the outer side of the bottom cover (303) has a plurality of evenly distributed air vents (304).

7. A mosquito repellent device for livestock farming according to claim 6, characterized in that: The inner wall of the bottom cover (303) is provided with a filter screen (305) and is configured in a dome shape.