Electric mosquito swatter with three-layer protective electric net
Patent Information
- Application Number
- CN202522138528.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-10
- Publication Date
- 2026-08-21
- Estimated Expiration
- 2035-10-10
AI Technical Summary
[0005]本实用新型的目的在于提供一种具有三层防护电网的电蚊拍,以解决上述背景技术提出电蚊拍的外壳材质和内部的电池等零部件的外壳是轻质的塑料材质制成,塑料材料抗冲击能力较弱,容易在摔落时破裂或裂开的问题
1、本实用新型出的一种具有三层防护电网的电蚊拍,拍体的底端插进硅胶套的内部,放置槽与外槽对齐后,可从硅胶套的外侧按压其中端位置,半卡粒可穿过限位圈插进卡孔的内部,对硅胶套的位置进行卡位,当电蚊拍被打落时,硅胶套、橡胶垫和防滑粒处于电蚊拍的外侧,拍体的底端内部设有电池、电路板等零部件,此时拍体的底端首先接触地面,设置的硅胶套吸收冲击力而产生形变,避免电池等零部件产生位移,安装有电网的拍体的一端再与地面相接触,橡胶垫和防滑粒再与地面相接触,对撞击力进行吸收,设置的底护构件和防护构件对电蚊拍进行双重防护。
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Figure CN224654506U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of electric mosquito swatter technology, specifically an electric mosquito swatter with a three-layer protective electric grid. Background Technology
[0002] An electric mosquito swatter is a common household mosquito repellent tool, typically resembling a net-like swatter. It uses an electric current to kill flying insects through an electric grid, making it a common tool for mosquito prevention in homes during the summer. The electric mosquito swatter is designed primarily to effectively and quickly defeat flying mosquitoes, flies, and other pests. When the metal mesh of the swatter comes into contact with a mosquito, the current inside the swatter is rapidly conducted to the mesh, generating a high-voltage electric field that electrocutes and kills the mosquito. Because electric mosquito swatters typically use high voltage and act quickly, they are effective at eliminating mosquitoes and are easy to operate without causing serious harm to humans.
[0003] For example, an electric mosquito swatter with a protective cover, disclosed in CN216123734U, includes a swatter head with protective covers on both sides. Compared to existing electric mosquito swatters, the addition of protective covers to the swatter head, with gaps only allowing mosquitoes to pass through, prevents human fingers from touching the electric grid, thus avoiding the risk of electric shock and making it a safer electric mosquito swatter.
[0004] The aforementioned patent proposes that the electric mosquito swatter uses a 4V rechargeable high-capacity lead-acid battery or a 2.4V nickel-metal hydride / nickel-cadmium battery. During operation, a high-voltage DC current of approximately 1850V is generated between the positive and negative grids via a boost circuit. The current is less than 10 mA, which is harmless to humans. The electrostatic field between the grids has a strong attraction force. When pests such as mosquitoes and flies approach the grid, they can be sucked into the grid, and the resulting short-circuit current will then electrocute them. The protective cover includes a mesh surface and an arc-shaped contact surface. The mesh surface is composed of several interlaced rectangular frames. The height of the rectangular frames is smaller than the diameter of a human finger, preventing fingers from touching the grid and causing electric shock. However, in actual use, because the outer shell of the electric mosquito swatter and the shells of internal components such as the battery are made of lightweight plastic to reduce the overall weight and facilitate user use, the plastic material has weak impact resistance and is prone to breakage or cracking when dropped, affecting the product's performance. Utility Model Content
[0005] The purpose of this invention is to provide an electric mosquito swatter with a three-layer protective grid to solve the problem that the outer shell of the electric mosquito swatter and the outer shell of the internal battery and other components are made of lightweight plastic material, which has weak impact resistance and is prone to breakage or cracking when dropped.
[0006] To achieve the above objectives, this utility model provides the following technical solution: an electric mosquito swatter with a three-layer protective electric grid, comprising an electric mosquito swatter structure, wherein the electric mosquito swatter structure comprises a swatter body and an inner ring installed in the middle of the upper end of the swatter body, an electric grid is installed inside the inner ring, an installation groove is provided on the outer side of the swatter body, a protective component is installed inside the installation groove, a switch is installed in the middle of the swatter body, and a bottom protective component is installed on the outer side of the lower end of the swatter body. The lower end of the racket body is provided with a placement groove, and a plug is movably installed inside the placement groove.
[0007] Preferably, a retaining hole is provided on the outer side of the lower end of the racket body, and a limit ring is installed inside the retaining hole.
[0008] Preferably, the protective component includes a rubber pad and an adhesive installed on the inner side of the rubber pad, and anti-slip particles are installed on the outer side of the rubber pad.
[0009] Preferably, the bottom protection component includes a silicone sleeve, a positioning rod is installed on the inner side of the silicone sleeve, and a semi-clamp is installed at one end of the positioning rod.
[0010] Preferably, the lower end of the silicone sleeve is provided with a rotating plate, and hollow tubes are installed on both sides of the inside of the silicone sleeve. A movable shaft is movably installed between the hollow tubes, and a torsion spring is installed between the movable shaft and the hollow tubes.
[0011] Preferably, a rotating plate is installed on the outer side of the movable shaft, and an elastic pad is installed on the outer side of the rotating plate.
[0012] Compared with the prior art, the beneficial effects of this utility model are: 1. This utility model discloses an electric mosquito swatter with a three-layer protective electric grid. The bottom end of the swatter body is inserted into the interior of the silicone sleeve. After the placement groove is aligned with the outer groove, the middle position can be pressed from the outside of the silicone sleeve. The half-clamp can pass through the limiting ring and be inserted into the inside of the clamping hole to lock the position of the silicone sleeve. When the electric mosquito swatter is knocked down, the silicone sleeve, rubber pad, and anti-slip particles are on the outside of the electric mosquito swatter. The bottom end of the swatter body is equipped with components such as batteries and circuit boards. At this time, the bottom end of the swatter body first contacts the ground. The silicone sleeve absorbs the impact force and deforms to prevent the battery and other components from shifting. The end of the swatter body with the electric grid then contacts the ground, and the rubber pad and anti-slip particles then contact the ground to absorb the impact force. The bottom protection component and the protective component provide double protection for the electric mosquito swatter.
[0013] 2. This utility model discloses an electric mosquito swatter with a three-layer protective grid. When the rotating plate is pushed up, the top of the rotating plate drives the movable shaft to rotate between two sets of hollow tubes. The rotating movable shaft causes one end of the torsion spring to deform until one side of the elastic pad is infinitely close to the outer side of the silicone sleeve. At this time, the plug can be rotated from the vertical position inside the placement slot to the horizontal position, so that the electric mosquito swatter can be charged by inserting the plug into the socket. When the plug is pushed back to the vertical position, the elastic pad and the rotating plate protect the plug, achieving triple protection for the electric mosquito swatter. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the overall three-dimensional structure of this utility model; Figure 2 This is a schematic diagram of the three-dimensional structure of the racket body of this utility model; Figure 3 This is a schematic diagram of the protective component structure of this utility model; Figure 4 This is a three-dimensional structural diagram of the bottom protection component of this utility model.
[0015] In the diagram: 1. Electric mosquito swatter structure; 11. Swatter body; 111. Internal ring; 112. Placement slot; 113. Mounting slot; 114. Locking hole; 115. Limiting ring; 116. Plug; 12. Electric grid; 13. Protective component; 131. Rubber pad; 132. Adhesive; 133. Anti-slip particles; 14. Switch; 15. Bottom protection component; 151. Silicone sleeve; 152. Positioning rod; 153. Semi-locking element; 154. Hollow tube; 155. Movable shaft; 156. Torsion spring; 157. Rotating plate; 158. Elastic pad; 159. Outer groove. Detailed Implementation
[0016] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0017] Example 1: Please refer to Figures 1-4 An electric mosquito swatter with a three-layer protective electric grid includes an electric mosquito swatter structure 1. The electric mosquito swatter structure 1 includes a swatter body 11 and an inner ring 111 installed in the middle of the upper end of the swatter body 11. An electric grid 12 is installed inside the inner ring 111. An installation groove 113 is opened on the outer side of the swatter body 11. A protective component 13 is installed inside the installation groove 113. A switch 14 is installed in the middle of the swatter body 11. A bottom protective component 15 is installed on the outer side of the lower end of the swatter body 11.
[0018] The lower end of the racket body 11 is provided with a placement groove 112, and a plug 116 is movably installed inside the placement groove 112.
[0019] A locking hole 114 is provided on the outer side of the lower end of the racket body 11. A limit ring 115 is installed inside the locking hole 114, and the limit ring 115 restricts the position of the bottom protection component 15.
[0020] The protective component 13 includes a rubber pad 131 and an adhesive 132 installed on the inner side of the rubber pad 131. Anti-slip particles 133 are installed on the outer side of the rubber pad 131. The anti-slip particles 133 and the rubber pad 131 increase the friction between the electric mosquito swatter and other objects, preventing it from falling.
[0021] The bottom protective component 15 includes a silicone sleeve 151. A positioning rod 152 is installed on the inner side of the silicone sleeve 151. A semi-clamp 153 is installed at one end of the positioning rod 152. The diameter of the positioning rod 152 is consistent with the inner diameter of the limiting ring 115. When the bottom protective component 15 is peeled off, the semi-clamp 153 deforms and moves out from the inside of the limiting ring 115. The silicone sleeve 151 has a thickness of 1-5 mm and its main function is to cushion and protect.
[0022] In this embodiment: a mounting groove 113 is provided on the outer side of the swatter body 11, and the mounting groove 113 is located on the outer side of the electric grid 12. A rubber pad 131 is attached to the mounting groove 113 using an adhesive 132. The rubber pad 131 is located on the outer side of the swatter body 11. The bottom end of the swatter body 11 is inserted into the interior of the silicone sleeve 151. After the placement groove 112 is aligned with the outer groove 159, the middle position of the silicone sleeve 151 can be pressed from the outside. The semi-clamping piece 153 can pass through the limiting ring 115 and insert into the locking hole 114 to lock the position of the silicone sleeve 151, preventing it from falling off. The silicone sleeve 151 has a soft touch, effectively reducing the pressure on the hand from the edge of the electric mosquito swatter and increasing comfort during use. The silicone sleeve 151 provides comfort and has a certain anti-slip surface, which increases the stability of the grip and prevents the electric mosquito swatter from slipping. When the electric mosquito swatter is knocked down, the silicone sleeve 151, rubber pad 131, and anti-slip particles 133 are on the outside of the electric mosquito swatter. The bottom end of the swatter body 11 contains components such as batteries and circuit boards. At this time, the bottom end of the swatter body 11 first contacts the ground. The silicone sleeve 151 absorbs the impact force and deforms to prevent the battery and other components from shifting. The end of the swatter body 11 with the electric grid 12 then contacts the ground, and the rubber pad 131 and anti-slip particles 133 then contact the ground to absorb the impact force. The bottom protective component 15 and the protective component 13 provide double protection for the electric mosquito swatter.
[0023] Example 2: This example is an improvement upon Example 1. For details, please refer to [link / reference]. Figures 2-4The lower end of the silicone sleeve 151 is provided with a rotating plate 157. Hollow tubes 154 are installed on both sides of the inside of the silicone sleeve 151. A movable shaft 155 is movably installed between the hollow tubes 154. A torsion spring 156 is installed between the movable shaft 155 and the hollow tubes 154. When the movable shaft 155 rotates, it drives one end of the torsion spring 156 to rotate.
[0024] A rotating plate 157 is installed on the outer side of the movable shaft 155, and an elastic pad 158 is installed on the outer side of the rotating plate 157. The width of the elastic pad 158 and the rotating plate 157 is the same as the length of the outer groove 159.
[0025] In this embodiment: Before charging the electric mosquito swatter using the plug 116, the rotating plate 157 is pushed up. The top of the rotating plate 157 drives the movable shaft 155 to rotate between the two sets of hollow tubes 154. The rotating movable shaft 155 causes one end of the torsion spring 156 to deform until one side of the elastic pad 158 is infinitely close to the outside of the silicone sleeve 151. At this time, the plug 116 can be rotated from the vertical state inside the placement slot 112 to the horizontal state, making it convenient for the electric mosquito swatter to be charged by inserting the plug 116 into the socket. Conversely, when the plug 116 is pushed back to the vertical state, the movable shaft 155, the rotating plate 157 and the elastic pad 158 are rotated back to their original positions by the rebound force of the torsion spring 156. The elastic pad 158 and the rotating plate 157 protect the plug 116, achieving triple protection for the electric mosquito swatter.
[0026] The contents not described in detail in this specification are existing technologies known to those skilled in the art.
[0027] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. An electric mosquito swatter with a three-layer protective electric grid, comprising an electric mosquito swatter structure (1), characterized in that: The electric mosquito swatter structure (1) includes a swatter body (11) and an inner ring (111) installed in the middle of the upper end of the swatter body (11). An electric grid (12) is installed inside the inner ring (111). An installation groove (113) is opened on the outer side of the swatter body (11). A protective component (13) is installed inside the installation groove (113). A switch (14) is installed in the middle of the swatter body (11). A bottom protective component (15) is installed on the outer side of the lower end of the swatter body (11). The lower end of the clapper (11) is provided with a placement groove (112), and a plug (116) is movably installed inside the placement groove (112).
2. The electric mosquito swatter with a three-layer protective electric grid according to claim 1, characterized in that: The lower outer side of the beater body (11) is provided with a locking hole (114), and a limit ring (115) is installed inside the locking hole (114).
3. An electric mosquito swatter with a three-layer protective electric grid according to claim 1, characterized in that: The protective component (13) includes a rubber pad (131) and an adhesive (132) installed on the inside of the rubber pad (131), and anti-slip particles (133) are installed on the outside of the rubber pad (131).
4. An electric mosquito swatter with a three-layer protective electric grid according to claim 1, characterized in that: The bottom protective component (15) includes a silicone sleeve (151), a positioning rod (152) is installed on the inner side of the silicone sleeve (151), and a half-clamp (153) is installed at one end of the positioning rod (152).
5. An electric mosquito swatter with a three-layer protective electric grid according to claim 4, characterized in that: The lower end of the silicone sleeve (151) is provided with a rotating plate (157). Hollow tubes (154) are installed on both sides of the inside of the silicone sleeve (151). A movable shaft (155) is movably installed between the hollow tubes (154). A torsion spring (156) is installed between the movable shaft (155) and the hollow tubes (154).
6. An electric mosquito swatter with a three-layer protective electric grid according to claim 5, characterized in that: A rotating plate (157) is installed on the outside of the movable shaft (155), and an elastic pad (158) is installed on the outside of the rotating plate (157).
Citation Information
Patent Citations
Electric mosquito swatter with protective cover
CN216123734U