Outdoor rotary mosquito killing device
By designing an outdoor rotary mosquito-killing device with a motor-driven tilt rotating mosquito-killing assembly and mosquito-attracting lamp tube, the problem of small mosquito-killing range and inability to provide simultaneous lighting in the prior art is solved, and a wider mosquito-killing and better lighting effect is achieved.
Patent Information
- Application Number
- CN202411915564.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-24
- Publication Date
- 2025-05-06
AI Technical Summary
The existing outdoor mosquito-killing lamp has a small range of mosquito-killing and poor mosquito-killing effects, and cannot meet the needs of lighting and mosquito-killing at the same time, which increases the burden on users.
An outdoor rotary mosquito-killing device is designed to drive the mosquito-killing component to tilt and rotate through the motor, combining high-voltage power grid and mosquito-attracting lamp tubes to improve the mosquito-killing range and effect, and provide lighting functions.
A larger range of mosquito hunting and better mosquito killing effects are achieved, while meeting campers' lighting needs and reducing the number of equipment carried by users.
Smart Images

Figure CN119924276A_ABST
Abstract
Description
Technical Field
[0001] The present invention discloses an outdoor rotary mosquito repellent device, which relates to a mosquito repellent device capable of improving the mosquito killing range and mosquito killing effect, and belongs to the technical field of insecticidal lamps. In particular, it relates to a mosquito repellent device in which a motor drives a mosquito killing component to rotate obliquely, and a high-voltage power grid electrocutes mosquitoes that come into contact with the mosquito repellent device, thereby improving the mosquito killing range and achieving better mosquito killing effect. Background Art
[0002] With the continuous improvement of living standards, outdoor activities have become a popular form of leisure and entertainment for modern people. On summer nights, camping lanterns and mosquito repellents are essential equipment. Camping lanterns provide essential lighting and safety, while also adding to the camping atmosphere. Mosquito repellents effectively prevent mosquito bites and enhance the comfort of outdoor activities. Currently, commonly used camping lanterns and mosquito repellents are often separate and independent, unable to meet the dual needs of lighting and mosquito repellent. This requires users to carry multiple devices when using them, increasing the burden and inconvenience of travel. Therefore, outdoor mosquito repellent lanterns have emerged. Existing outdoor mosquito repellent lanterns mainly consist of a high-voltage power grid and an ultraviolet fluorescent tube. The high-voltage power grid is usually surrounded by the outer periphery of the ultraviolet fluorescent tube. When mosquitoes are attracted by the ultraviolet rays and approach the mosquito repellent lantern, they come into contact with the high-voltage power grid and are electrocuted to death, thus achieving the mosquito repellent effect. However, existing outdoor mosquito repellent lamps mainly rely on ultraviolet fluorescent tubes to attract mosquitoes, but the lighting effect of ultraviolet fluorescent tubes is not good and cannot meet the lighting needs of campers; and the high-voltage power grid is fixed and cannot achieve the effect of killing mosquitoes until mosquitoes actively approach and contact. The mosquito killing range is small and the mosquito killing effect is poor.
[0003] Publication number CN106561598A discloses a solar-powered outdoor mosquito-repellent and insect-killing lamp, comprising a support column, a solar panel mounted on the top of the support column, the solar panel connected to the support column via a detachable mechanism, a base fixedly connected to the base, and a reinforcement plate connected to the base on both sides of the base, the reinforcement plates being fixed to the base and the support column, respectively. A retractable bracket is provided on the support column, one end of the retractable bracket being connected to the support column, the other end being connected to a connecting end, a mosquito-repellent liquid body being threadedly connected to the connecting end, a guard plate mounted on the bottom of the connecting end, the guard plate being clipped onto the mosquito-repellent liquid body. The retractable bracket in the above-mentioned mosquito-repellent and insect-killing lamp has one end connected to the support column and the other end connected to the connecting end, which can drive the mosquito-killing lamp body to extend and retract in one lateral direction, but cannot drive the mosquito-killing lamp body to rotate circumferentially, resulting in a small mosquito-killing range and poor mosquito-killing effect. Summary of the Invention
[0004] In order to improve the above situation, the present invention provides an outdoor rotary mosquito repellent device that uses a motor to drive the mosquito repellent component to rotate tiltably, and the high-voltage power grid electrocutes the mosquitoes that come into contact with it, thereby increasing the mosquito repellent range and achieving better mosquito repellent effect.
[0005] The outdoor rotary mosquito killer device of the present invention is realized as follows: The outdoor rotary mosquito killer device of the present invention is composed of a lighting component and a mosquito killer component. The lighting assembly consists of a connecting truncated table, a first supporting column, a rotating ring, a lampshade, a second supporting column, a rotating truncated table, a motor and a lighting lamp. The lampshade is a hollow structure with an opening on the top. The bottom surface of the lampshade is provided with a switch button and a charging port. The lighting lamp is placed in the lampshade, and one end of the lighting lamp is detachably placed on the inner bottom surface of the lampshade. The top surface height of the lampshade gradually decreases from one side to the other. The rotating ring is rotatably placed on the top surface of the lampshade, and the side surface of the rotating ring is flush with the edge of the top surface of the lampshade. The rotating frustum is placed in the lampshade and close to the top surface of the lampshade. The edge of the rotating table is rotatably embedded in the inner side of the lampshade. The motor is placed at the bottom center of the rotating table, and the motor shaft of the motor is connected to the bottom center of the rotating table. A plurality of second support columns are equidistantly arranged between the rotating ring and the rotating truncated table in the circumferential direction, and the heights of the plurality of second support columns gradually decrease from one side close to the top surface of the lampshade to the other side close to the top surface of the lampshade. The lampshade is made of transparent material from the position close to the rotating motor to the bottom surface of the lampshade. The connecting truncated cone is located above the rotating ring, and the center line of the connecting truncated cone coincides with the center line of the rotating ring. The outer diameter of the connecting truncated cone is smaller than the inner diameter of the rotating ring. A plurality of first support columns are equidistantly arranged circumferentially between the rotating ring and the connecting truncated cone. One end of the first support column is placed on the side of the connecting cone, and the other end of the first support column is placed on the inner side of the rotating ring. The mosquito-killing assembly is composed of an insulating layer, a safety net, a connecting shaft, an L-shaped connector, a columnar reinforcement, a mosquito-attracting lamp tube, and a high-voltage power grid. Multiple insulating layers are rotatably connected via a connecting shaft. The insulating layers are arc-shaped structures. Multiple insulating layers can be formed into a cylindrical structure. One side of the first and last two insulating layers can be detachably connected. Preferably, the insulating layer is made of a flexible and deformable material; The two safety protection nets are embedded in the placement opening on the insulating layer from the inside to the outside, and the two ends of the placement opening are close to the two ends of the insulating layer, and the two sides of the placement opening are close to the two sides of the insulating layer. Two high-voltage power grids are placed between the two safety protection nets, and the edges of the high-voltage power grids are connected to the inner side of the placement opening. A mosquito-attracting lamp tube is placed between the two high-voltage power grids, and the two ends of the mosquito-attracting lamp tube are respectively placed at the two ends of the placement opening. Preferably, there are multiple mosquito trap lamp tubes, and the multiple mosquito trap lamp tubes are arranged equidistantly along the length direction of the placement opening. Preferably, the surface of the mosquito trap lamp is coated with an insulating layer. One end of the L-shaped connector is placed on the bottom side of one of the insulating layers through a columnar reinforcement member, and the other end of the L-shaped connector is placed on the center of the top surface of the connecting cone through a columnar reinforcement member. Preferably, the bending portion of the L-shaped connector is an arc-shaped structure; Furthermore, a hanging rope is placed on the side of the lampshade, and the hanging rope is close to the bottom surface of the lampshade; Furthermore, a connecting ring is sleeved on the side of the lampshade, one side of the elastic buckle is rotatably connected to the side of the connecting ring, and two ends of the other side of the elastic buckle are detachably connected. Beneficial effects
[0006] 1. The motor drives the rotating table to rotate, the rotating table drives the rotating ring and the connecting table to rotate, and the connecting table drives the mosquito killing component to slowly tilt and rotate. The mosquito attracting lamp can attract more mosquitoes to approach. During the rotation of the mosquito killing component, the high-voltage power grid can electrocute the mosquitoes that come into contact with it, so that the mosquito killing range is larger and the mosquito killing effect is better.
[0007] 2. When the outdoor activities are over, the multiple insulation layers can be folded into a cylindrical shape through the connecting axis, which can reduce the space occupied and facilitate storage and carrying.
[0008] 3. The combination of mosquito-attracting lamps and lighting lamps has a better lighting effect and can meet the lighting needs of campers. BRIEF DESCRIPTION OF THE DRAWINGS
[0009] Figure 1 This is a three-dimensional structural diagram of an outdoor rotary mosquito-killing device according to the present invention; Figure 2 This is a three-dimensional structural diagram of an outdoor rotary mosquito-killing device of the present invention, in which only the structures of the lighting component and the mosquito-killing component are shown; Figure 3 This is a three-dimensional structural diagram of Example 2 of an outdoor rotary mosquito-killing device of the present invention; Figure 4This is a three-dimensional structural diagram of Example 3 of an outdoor rotary mosquito killing device of the present invention. Attached photos
[0010] The components include: an insulating layer (1), a safety net (2), a connecting shaft (3), a connecting truncated table (4), a first supporting column (5), a rotating ring (6), a lampshade (7), an L-shaped connecting piece (8), a cylindrical reinforcement piece (9), a second supporting column (10), a rotating truncated table (11), a motor (12), a mosquito trap lamp (13), a high-voltage power grid (14), a lighting lamp (15), a lifting rope (16), an elastic buckle (17), and a connecting ring (18). DETAILED DESCRIPTION Example 1
[0011] The outdoor rotary mosquito killer device of the present invention is realized as follows: The outdoor rotary mosquito killer device of the present invention is composed of a lighting component and a mosquito killer component. The lighting assembly is composed of a connecting truncated table (4), a first supporting column (5), a rotating ring (6), a lampshade (7), a second supporting column (10), a rotating truncated table (11), a motor (12) and a lighting lamp (15). The lampshade (7) is a hollow structure with an open top surface. The bottom surface of the lampshade (7) is provided with a switch button and a charging port. The lighting lamp (15) is placed in the lampshade (7), and one end of the lighting lamp (15) is detachably placed on the inner bottom surface of the lampshade (7). The top surface height of the lampshade (7) gradually decreases from one side to the other. The rotating ring (6) is rotatably placed on the top surface of the lampshade (7), and the side surface of the rotating ring (6) is flush with the edge of the top surface of the lampshade (7). The rotating truncated table (11) is placed inside the lampshade (7) and close to the top surface of the lampshade (7). The edge of the rotating table (11) is rotatably embedded in the inner side of the lampshade (7). The motor (12) is placed at the bottom center of the rotating truncated table (11), and the motor (12) shaft of the motor (12) is connected to the bottom center of the rotating truncated table (11). A plurality of second support columns (10) are equidistantly arranged circumferentially between the rotating ring (6) and the rotating truncated table (11), and the heights of the plurality of second support columns (10) gradually decrease from one side close to the top surface of the lampshade (7) to the other side close to the top surface of the lampshade (7). The lampshade (7) is made of transparent material from the position close to the rotating motor (12) to the bottom surface of the lampshade (7). The connecting truncated cone (4) is located above the rotating ring (6), and the center line of the connecting truncated cone (4) coincides with the center line of the rotating ring (6). The outer diameter of the connecting truncated cone (4) is smaller than the inner diameter of the rotating ring (6). A plurality of first support columns (5) are equidistantly arranged circumferentially between the rotating ring (6) and the connecting truncated cone (4). One end of the first support column (5) is placed on the side of the connecting truncated cone (4), and the other end of the first support column (5) is placed on the inner side of the rotating ring (6). The mosquito-killing assembly is composed of an insulating layer (1), a safety net (2), a connecting shaft (3), an L-shaped connecting piece (8), a columnar reinforcement piece (9), a mosquito-attracting lamp tube (13), and a high-voltage power grid (14). A plurality of insulating layers (1) are rotatably connected via a connecting shaft (3); the insulating layers (1) are arc-shaped structures; the plurality of insulating layers (1) can be arranged to form a cylindrical structure; one side of the first and last two insulating layers (1) are detachably connected. Preferably, the insulating layer (1) is made of a flexible and deformable material; Two safety protection nets (2) are embedded in the placement opening on the insulating layer (1) from the inside to the outside, and the two ends of the placement opening are close to the two ends of the insulating layer (1), and the two sides of the placement opening are close to the two sides of the insulating layer (1). Two high-voltage power grids (14) are placed between the two safety protection nets (2), and the edges of the high-voltage power grids (14) are connected to the inner side of the placement opening. A mosquito-attracting lamp tube (13) is placed between the two high-voltage power grids (14), and two ends of the mosquito-attracting lamp tube (13) are respectively placed at two ends of the placement opening. Preferably, there are a plurality of mosquito-attracting lamp tubes (13), and the plurality of mosquito-attracting lamp tubes (13) are arranged at equal distances along the length direction of the placement opening. Preferably, the surface of the mosquito trap lamp tube (13) is coated with an insulating layer (1). One end of the L-shaped connector (8) is placed at the bottom of the side of one of the insulating layers (1) through a columnar reinforcement (9), and the other end of the L-shaped connector (8) is placed at the center of the top surface of the connecting cone (4) through a columnar reinforcement (9). Preferably, the bending portion of the L-shaped connector is an arc-shaped structure; When in use, during outdoor activities, when light is insufficient, the lighting lamp (15) can be turned on by the switch button, thereby meeting the lighting needs of campers; when there are many mosquitoes and mosquitoes need to be killed, the multiple insulating layers (1) can be expanded by the connecting shaft (3), thereby increasing the contact area between the mosquito killing component and the mosquitoes. There are three ways to kill mosquitoes: The first method is to not start the motor (12), but only start the mosquito-attracting lamp (13) and the high-voltage power grid (14). The mosquito-attracting lamp (13) attracts mosquitoes to approach, and the mosquitoes will be electrocuted to death when they come into contact with the high-voltage power grid (14); The second method is to start the motor (12) and the high-voltage power grid (14), and not start the mosquito trap lamp (13). The motor (12) drives the rotating table (11) to rotate, the rotating table (11) drives the rotating ring (6) and the connecting table (4) to rotate, and the connecting table (4) drives the mosquito killing component to slowly tilt and rotate. The high-voltage power grid (14) can electrocute the mosquitoes that come into contact with it, and the mosquito killing component acts as an automatically rotating electric mosquito swatter. The third method is to start the motor (12), the mosquito-attracting lamp (13) and the high-voltage power grid (14), the motor (12) drives the rotating table (11) to rotate, the rotating table (11) drives the rotating ring (6) and the connecting table (4) to rotate, and the connecting table (4) drives the mosquito-killing component to slowly tilt and rotate, the mosquito-attracting lamp (13) can attract more mosquitoes to approach, and during the rotation of the mosquito-killing component, the high-voltage power grid (14) can electrocute the mosquitoes that come into contact with it, thereby achieving a better mosquito-killing effect; When outdoor activities are over, the multiple insulation layers (1) are folded into a cylindrical shape through the connecting shaft (3), which can reduce space occupation and facilitate storage and carrying; Example 2
[0012] The difference between this embodiment and embodiment 1 is that a hanging rope is provided on the side of the lampshade (7), and the hanging rope is close to the bottom surface of the lampshade (7); when in use, the hanging rope can facilitate the carrying of the mosquito killing device, thereby increasing the convenience of use for the user; Example 3
[0013] The difference between this embodiment and embodiment 1 is that: a connecting ring (18) is sleeved on the side of the lampshade (7), one side of the elastic buckle (17) is rotatably connected to the side of the connecting ring (18), and the two ends of the other side of the elastic buckle (17) are detachably connected; when in use, the user can fix the mosquito killing device on objects such as branches and tents through the elastic buckle (17), which can increase the convenience of use and prevent the mosquito killing device from being directly placed on the ground or other locations. The centrifugal force generated during the rotation of the mosquito killing component causes the mosquito killing device to fall over; The insulating layer (1) is designed to be made of a flexible and deformable material, which is more conducive to the expansion and folding of the multiple insulating layers (1), so as to increase the coverage of mosquito killing. At the end of outdoor activities, it is more convenient to form the multiple insulating layers (1) into a cylindrical shape for easy storage and carrying; The design of coating the surface of the mosquito-attracting lamp tube (13) with an insulating layer (1) can ensure that the user is not electrocuted by the high-voltage power grid (14) when replacing or maintaining the mosquito-attracting lamp tube (13), thereby improving safety; The bending portion of the L-shaped connector is designed as an arc-shaped structure. The L-shaped connector connects the mosquito-killing component and the connecting truncated platform (4). When the L-shaped connector with an arc-shaped structure rotates, it can better disperse and withstand the force and torque from the connecting truncated platform (4) and the mosquito-killing component, which helps to reduce damage caused by stress concentration, thereby improving the stability and reliability of the entire device. The top surface height of the lampshade (7) is designed to gradually decrease from one side to the other, and the top surface of the lampshade (7) is an inclined structure, so that the mosquito-killing component can be tilted and rotated, which can cover a wider area, increase the contact opportunities between the mosquito-killing component and mosquitoes, and improve the mosquito-killing effect.
[0014] The purpose is to achieve the purpose of being able to drive the mosquito killing component to tilt and rotate through the motor (12), and the high-voltage power grid (14) to electrocute the mosquitoes that come into contact with it, thereby increasing the mosquito killing range and achieving a better mosquito killing effect.
[0015] It should be noted that, unless otherwise expressly specified or limited, the terms "placed in," "connected," and "connected" should be understood in a broad sense. For example, they may refer to fixed connections such as hemming, rivet connection, pin connection, adhesive connection, and welding connection; detachable connections such as threaded connection, snap connection, and hinge connection; or integral connection; electrical connection; direct connection; indirect connection through an intermediate medium; or internal communication between two components. Those skilled in the art will understand the specific meanings of the above terms in the present invention based on specific circumstances.
[0016] It should be further pointed out that, when describing the above specific embodiment, for the sake of simplicity and clarity, only the differences between the above specific embodiment and other embodiments are described. However, those skilled in the art should know that the above specific embodiment itself is also an independent technical solution.
Claims
1. An outdoor rotary mosquito killer device, characterized by: The invention is composed of a lighting component and a mosquito-killing component. The lighting component is composed of a connecting truncated table, a first supporting column, a rotating ring, a lampshade, a second supporting column, a rotating truncated table, a motor and a lighting lamp. The lighting lamp is placed in the lampshade. The rotating ring is rotatably placed on the top surface of the lampshade. The rotating truncated table is placed in the lampshade and close to the top surface of the lampshade. The motor is placed at the bottom center of the rotating truncated table. A plurality of second supporting columns are equidistantly arranged between the rotating ring and the rotating truncated table. A plurality of first supporting columns are equidistantly arranged between the rotating ring and the connecting truncated table. The mosquito-killing component The utility model is composed of an insulating layer, a safety protection net, a connecting shaft, an L-shaped connecting piece, a columnar reinforcement piece, a mosquito-attracting lamp tube and a high-voltage power grid. The multiple insulating layers are rotatably connected to each other through the connecting shaft. Two safety protection nets are embedded in the placement openings opened on the insulating layer from the inside to the outside. Two high-voltage power grids are placed between the two safety protection nets. A mosquito-attracting lamp tube is placed between the two high-voltage power grids. One end of the L-shaped connecting piece is placed at the bottom of the side of one of the insulating layers through the columnar reinforcement piece, and the other end of the L-shaped connecting piece is placed at the center of the top surface of the connecting truncated cone through the columnar reinforcement piece.
2. The outdoor rotary mosquito killing device according to claim 1, characterized in that A hanging rope is arranged on the side of the lampshade, and the hanging rope is close to the bottom surface of the lampshade.
3. The outdoor rotary mosquito killing device according to claim 1, characterized in that A connecting ring is sleeved on the side of the lampshade, one side of the elastic buckle is rotatably connected to the side of the connecting ring, and two ends of the other side of the elastic buckle are detachably connected.
4. The outdoor rotary mosquito killing device according to claim 1, characterized in that The lampshade is a hollow structure with an open top surface, a switch button and a charging port are disposed on the bottom surface of the lampshade, one end of the lighting lamp is detachably disposed on the inner bottom surface of the lampshade, the height of the top surface of the lampshade gradually decreases from one side to the other, and the side surface of the swivel is flush with the edge of the top surface of the lampshade.
5. The outdoor rotary mosquito killing device according to claim 1, characterized in that The edge of the rotating table can be rotatably embedded in the inner side of the lampshade, the motor shaft of the motor is connected to the center of the bottom surface of the rotating table, the height of the plurality of second support columns gradually decreases from one side close to the top surface of the lampshade to the other side close to the top surface of the lampshade, and the lampshade is made of transparent material from the position close to the rotating motor to the bottom surface of the lampshade.
6. The outdoor rotary mosquito killing device according to claim 1, characterized in that The connecting cone is located above the rotating ring, and the center line of the connecting cone coincides with the center line of the rotating ring. The outer diameter of the connecting cone is smaller than the inner diameter of the rotating ring. One end of the first support column is placed on the side of the connecting cone, and the other end of the first support column is placed on the inner side of the rotating ring.
7. The outdoor rotary mosquito killing device according to claim 1, characterized in that The insulating layer is an arc-shaped structure, and a plurality of the insulating layers can be surrounded to form a cylindrical structure. One side of the first and last two insulating layers are detachably connected, and the insulating layer is made of a flexible and deformable material.
8. The outdoor rotary mosquito killing device according to claim 1, characterized in that The two ends of the placement opening are respectively close to the two ends of the insulating layer, the two sides of the placement opening are respectively close to the two sides of the insulating layer, and the edge of the high-voltage power grid is connected to the inner side of the placement opening.
9. The outdoor rotary mosquito killing device according to claim 1, characterized in that The bending part of the L-shaped connecting piece is an arc-shaped structure; the two ends of the mosquito attracting lamp tube are respectively placed at the two ends of the placement opening.
10. The outdoor rotary mosquito killing device according to claim 1, characterized in that There are a plurality of mosquito-attracting lamp tubes, which are arranged equidistantly along the length direction of the placement opening, and the surfaces of the mosquito-attracting lamp tubes are coated with an insulating layer.
Citation Information
Patent Citations
Solar energy outdoor mosquito repelling and pest killing lamp
CN106561598A