An electric mosquito swatter with a diamond-shaped protective electric grid
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-22
- Publication Date
- 2026-08-11
AI Technical Summary
然而,现有技术中,防护网大多为单层结构,防护效果有限,仍存在用户手指或其他异物意外触碰电击网的风险
[0005]本实用新型的有益效果在于:通过双层菱形防护电网与弹性缓冲支撑的结合设计,一方面提升了防护效果,确保用户手指无法触碰到电击网;
Smart Images

Figure CN224611657U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of small household appliance technology, and in particular to an electric mosquito swatter with a diamond-shaped protective electric grid. Background Technology
[0002] Electric mosquito swatters are common mosquito repellent tools widely used in homes, offices, and outdoor areas. Existing electric mosquito swatters typically have a protective mesh on the outside of the electric shock net to prevent users from directly contacting the live wire. However, in current technology, most protective meshes are single-layered, offering limited protection and leaving the risk of accidental contact with the electric shock net by the user's fingers or other foreign objects. Furthermore, single-layered protective meshes are prone to permanent deformation due to external pressure or impacts, affecting the swatter's protective performance and aesthetics. Additionally, fixed protective meshes, when subjected to strong impacts, can easily transmit the force directly to the electric shock net, causing damage or poor contact and affecting the swatter's normal use. Therefore, how to improve the protective effect and extend the lifespan of electric mosquito swatters while maintaining their portability has become a technical problem that needs to be solved. Utility Model Content
[0003] To address the aforementioned issues, this invention provides an electric mosquito swatter with a diamond-shaped protective electric grid. By incorporating a double-layered diamond-shaped protective electric grid and an elastic buffer support structure, it effectively prevents the electric grid from being directly touched or damaged by external forces.
[0004] The technical solution of this utility model is as follows: An electric mosquito swatter with a rhomboid protective electric grid, comprising an electric mosquito swatter body, the body being composed of a swatter head and a handle, wherein an electric shock net is provided inside the swatter head, characterized in that: a double-layer rhomboid protective electric grid is uniformly provided circumferentially along the inner side of the swatter head frame on the outer side of the electric shock net, the protective electric grid being fixed to the swatter head frame by a number of radially distributed elastic support members, forming a safe distance from the electric shock net, wherein the elastic support members can undergo radial deformation and rebound when subjected to external force, thereby avoiding permanent deformation or damage to the protective electric grid.
[0005] The beneficial effects of this utility model are as follows: by combining the design of a double-layer diamond-shaped protective electric grid with an elastic buffer support, the protective effect is improved, ensuring that the user's fingers cannot touch the electric shock net.
[0006] On the other hand, the elastic support can effectively absorb impact force and prevent external force from being directly transmitted to the electric shock net, thereby improving the safety and durability of the product. Attached Figure Description
[0007] Figure 1The diagram shows the overall structure of the electric mosquito swatter body (1), in which the swatter head (2) is integrally connected with the handle (3), the electric shock net (4) is arranged inside the swatter head (2), and a double-layer diamond-shaped protective electric grid (5) surrounds the outside of the electric shock net (4), forming a safe distance between the two.
[0008] Figure 2 The diagram shows the relative positions of the double-layer rhomboid protective electric grid and the electric shock net. It shows that the electric shock net (4) and the double-layer rhomboid protective electric grid (5) are set in parallel. A buffer cavity of 3mm to 8mm is formed between the two layers of protective electric grids. The entire protective electric grid is located outside the electric shock net (4) and maintains a distance of 4mm to 10mm between it and the electric shock net.
[0009] Figure 3 The diagram shows the connection structure between the elastic support and the frame. The elastic support (6) is arranged radially along the frame (7) of the racket head. One end of the support is fixed to the protective grid (5), and the other end is embedded in the limiting groove (8) of the frame (7) of the racket head and fixed by a snap fastener.
[0010] Figure 4 The diagram shows the battery compartment (9) inside the handle (3). The battery compartment (9) is designed as a pull-out structure along the longitudinal direction. The battery can be pulled out or inserted from the bottom of the handle (3). The control switch (10) is located at the top of the handle (3) for easy operation.
[0011] Figure 5 This is a schematic diagram of the detachable connection structure between the handle and the racket head, showing the snap-fit connection between the racket head frame (7) and the handle (3). The snap-fit is fixed along the longitudinal direction, which can realize the separation or replacement of the racket head (2) and the handle (3).
[0012] In the picture: 1. Electric mosquito swatter body; 2. Swatter head; 3. Handle; 4. Electric shock net; 5. Double-layer diamond-shaped protective electric net; 6. Elastic support; 7. Swatter head frame; 8. Limiting groove; 9. Battery compartment; 10. Control switch. Detailed Implementation
[0013] Implementation method one: such as Figure 1 As shown, an electric mosquito swatter with a diamond-shaped protective electric grid includes an electric mosquito swatter body (1), which consists of a swatter head (2) and a handle (3). An electric shock net (4) is provided inside the swatter head (2). A double-layer diamond-shaped protective electric grid (5) is uniformly arranged circumferentially along the inner side of the swatter head frame (7) on the outer side of the electric shock net (4). The double-layer diamond-shaped protective electric grid (5) is fixedly connected to the swatter head frame (7) by several radially arranged elastic support members (6), forming a safe distance. This structure effectively prevents the user's fingers from contacting the electric shock net (4).
[0014] Implementation Method Two: (e.g.) Figure 2 As shown, the double-layered rhomboid protective grid (5) forms an annular buffer cavity, with a preferred spacing of 3mm to 8mm, further enhancing the protective effect. The grid spacing can be adjusted according to specific circumstances to ensure effective protection without affecting the mosquito-killing effect of the electric mosquito swatter.
[0015] Implementation Method 3: For example Figure 3 As shown, the elastic support (6) is a spring or rubber strip, one end of which is fixed to the protective grid (5), and the other end is embedded in the limiting groove (8) of the racket head frame (7) by an embedded buckle, and is arranged radially. When an external force is applied to the protective grid (5), the elastic element deforms, and automatically rebounds after the external force is released, keeping the protective grid stable.
[0016] Implementation Method Four: (e.g.) Figure 4 As shown, the wire diameter of the double-layer diamond protective electric grid (5) ranges from 0.3mm to 0.6mm, and the spacing between the electric shock net (4) and the double-layer diamond protective electric grid (5) is preferably 4mm to 10mm to ensure both safety and protection.
[0017] Implementation Method 5: (e.g.) Figure 5 As shown, the handle (3) has a battery compartment (9) and a control switch (10) inside. The battery compartment (9) is a pull-out structure located at the bottom of the handle (3), which facilitates quick battery replacement and improves ease of use. The racket head frame (7) is detachably connected to the handle (3) by a snap-fit mechanism and is fixed longitudinally. When the racket head or handle is damaged, it can be replaced separately, extending the overall lifespan of the machine.
Claims
1. An electric mosquito swatter with a diamond-shaped protective electric grid, comprising an electric mosquito swatter body (1), the electric mosquito swatter body (1) being composed of a swatter head (2) and a handle (3), wherein the swatter head (2) is provided with an electric shock net (4), characterized in that: A double-layer diamond-shaped protective electric grid (5) is uniformly arranged on the outer side of the electric shock net (4) along the inner circumference of the racket head frame (7). The double-layer diamond-shaped protective electric grid (5) is made of stainless steel wire mesh, and the spacing between the two layers is 3mm to 8mm. The double-layer diamond-shaped protective electric grid (5) is fixedly connected to the racket head frame (7) through multiple radially distributed elastic support members (6) to form a safe distance between it and the electric shock net (4).
2. The electric mosquito swatter according to claim 1, characterized in that: The elastic support (6) is a spring or a rubber strip, arranged radially along the frame (7) of the racket head.
3. The electric mosquito swatter according to claim 1, characterized in that: The wire diameter of the double-layer diamond protective electric grid (5) ranges from 0.3 mm to 0.6 mm.
4. The electric mosquito swatter according to claim 1, characterized in that: The frame (7) of the racket head is provided with a limiting groove (8) along the circumferential direction, and one end of the elastic support (6) is fixed in the limiting groove (8) by an embedded buckle.
5. The electric mosquito swatter according to claim 1, characterized in that: The mesh side length of the double-layer diamond protective electric grid (5) is smaller than that of the electric shock net (4), and it is set parallel to the electric shock net (4).
6. The electric mosquito swatter according to claim 1, characterized in that: The distance between the electric shock net (4) and the double-layer diamond protective net (5) ranges from 4 mm to 10 mm.
7. The electric mosquito swatter according to claim 1, characterized in that: The handle (3) is equipped with a battery compartment (9) and a control switch (10) inside. The battery compartment (9) and the racket head (2) are located on the same axis.
8. The electric mosquito swatter according to claim 7, characterized in that: The battery compartment (9) is a pull-out structure and is located at the bottom of the handle (3).
9. The electric mosquito swatter according to claim 1, characterized in that: The racket head frame (7) and the handle (3) are connected by a snap-fit detachable connection and fixed longitudinally, which facilitates the replacement of parts.