Separate full protection mosquito repellent clothing
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HUAIAN XIAODONGFENG TRADING CO LTD
- Filing Date
- 2025-07-22
- Publication Date
- 2026-08-07
AI Technical Summary
但现有产品透气性、轻便性以及无死角防叮效果并不佳,蚊虫口器能穿过防蚊衣进行叮咬
[0016]1. The outer layer of mesh gauze is upright and sturdy, while the inner layer is soft and skin-friendly. A non-continuous connection with triangular notches in the spacer support structure (made of the same material as the outer mesh gauze) accommodates different sizes of the inner and outer layers, forming a three-dimensional hollow cavity mosquito-proof mechanism. One type uses Velcro for detachable connection, facilitating cleaning; the other type has the spacer support structure directly sewn to the inner mesh gauze, resulting in better structural stability.
Smart Images

Figure CN224597609U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of summer protective equipment, and in particular to a two-piece, fully protective mosquito-proof suit. Background Technology
[0002] During summer outdoor activities or work, mosquitoes are plentiful, often relentlessly biting and causing redness, swelling, and intense itching. Some mosquito species also carry pathogens, threatening people's health after a bite. Therefore, various mosquito repellent products have been designed. However, existing products are not ideal in terms of breathability, portability, or complete protection against bites, as mosquitoes can penetrate mosquito-proof clothing to bite. Utility Model Content
[0003] To address the problems existing in the prior art, this utility model provides a split-type full-protection mosquito-proof clothing. The spacer support forms a hollow three-dimensional cavity between the outer mesh gauze and the human body, preventing mosquito mouthparts from touching the skin. In addition, the overall mesh structure has good breathability, is lighter, and will not collapse during exercise.
[0004] To achieve the above objectives, the present invention provides the following technical solution: The two-piece, fully protective mosquito-proof clothing includes a separate top, trousers, and hood. Both the top and trousers include: A rigid outer layer of mesh gauze; The spacer support structure is fixedly installed on the inner side of the outer mesh fabric, with multiple layers spaced around the whole body of the top and on the sleeves, and multiple layers spaced around the hips and legs of the trousers, to form a mosquito-proof hollow cavity with a width of 0.5-1cm between the outer mesh fabric and the inner edge of the spacer support structure. The hat body includes a 360-degree sun protection hat and a mesh gauze face shield. The mesh gauze face shield is attached to the outer perimeter of the full brim of the sun protection hat, and the bottom edge of the face shield extends below the neck.
[0005] One improvement is that the spacer support structure is made of the same material as the outer mesh gauze, and multiple triangular notches are cut at intervals on the spacer support structure, with the apex of the triangular notches facing the outer mesh gauze. Velcro A is sewn onto the spacer support structure. It also includes a soft and breathable inner mesh gauze, which is smaller than the outer mesh gauze, and Velcro B is sewn onto it at corresponding positions. The Velcro is bonded on both sides to connect the outer mesh gauze and the inner mesh gauze, forming a mosquito-proof hollow cavity.
[0006] The spaced support structure features a triangular notch and a discontinuous design. Its outer and inner edges are connected to outer and inner mesh fabrics of different sizes, supporting the hollow cavity between the two layers of mesh fabric. This ensures that mosquitoes cannot come into contact with the skin. Moreover, the discontinuous connection can expand and contract with human movement, preventing the cavity from collapsing. The Velcro connection is detachable, easy to clean, and solves the problem of sweat accumulation.
[0007] Another improvement is that the spacer support structure is made of the same material as the outer mesh gauze, and multiple triangular notches are cut at intervals on the spacer support structure, with the apex of the triangular notches facing the outer mesh gauze; it also includes a soft and breathable inner mesh gauze, which is smaller than the outer mesh gauze, and the inner edge of the spacer support structure is continuously and directly sewn onto the inner mesh gauze, forming a mosquito-proof hollow cavity between the outer and inner mesh gauze.
[0008] The spacer support structure is sewn to the inner mesh fabric. The triangular notch of the spacer support structure allows its inner and outer edges to be sewn to the inner and outer mesh fabrics of different sizes to form a three-dimensional hollow cavity, which has better structural stability and the fixed structure can be used immediately after leaving the factory.
[0009] A further improvement is that the outer mesh fabric and the spacer support structure are made of polyester or nylon, while the inner mesh fabric is made of a blend of nylon and spandex.
[0010] A further improvement is that the area where the collar of the top overlaps with the face mask, and the area where the waist of the trousers overlaps with the hem of the top, have only a single layer of inner mesh fabric. This makes it more breathable and cooler while still providing mosquito protection.
[0011] A further improvement is that the outer and inner mesh gauze are gauzes of different mesh counts, ranging from 40 to 60, forming a misaligned structure between the inner and outer mesh layers.
[0012] Another improvement is that the spacer support structure is a sponge strip or silicone strip sewn onto the outer mesh fabric. The sponge strip or silicone strip provides direct support, eliminating the need for an inner layer, simplifying the process, and enhancing breathability.
[0013] A further improvement is that the spacer support structure is a cylindrical strip with a diameter of 0.5-1cm. The outer layer of mesh gauze wraps around the outer cylindrical strip and is sewn on the outside of the cylindrical strip, thus creating a structure where the cylindrical strip is on the inside of the outer layer of mesh gauze. This simplifies the sewing process.
[0014] A further improvement is that the bottom edge of the visor of the hat is detachably connected to the collar of the shirt via Velcro or a zipper, preventing mosquitoes from entering through the gaps.
[0015] A further improvement is to add drawstrings to the cuffs of the top and the hems of the trousers. Beneficial effects
[0016] 1. The outer layer of mesh gauze is upright and sturdy, while the inner layer is soft and skin-friendly. A non-continuous connection with triangular notches in the spacer support structure (made of the same material as the outer mesh gauze) accommodates different sizes of the inner and outer layers, forming a three-dimensional hollow cavity mosquito-proof mechanism. One type uses Velcro for detachable connection, facilitating cleaning; the other type has the spacer support structure directly sewn to the inner mesh gauze, resulting in better structural stability.
[0017] Second, the single-layer structure, with the outer mesh gauze sewn with sponge strips or silicone strips, achieves a three-dimensional hollow cavity design, which is not only more breathable but also simplifies the production process. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the structure of Embodiment 1 of the present utility model; Figure 2 This is a schematic diagram showing the unfolded spaced support structure of Embodiment 1 and Embodiment 2; Figure 3 This is a top view schematic diagram of the connection between the outer mesh gauze and the spacer support structure in Embodiment 1; Figure 4 This is a side view of the structure forming the mosquito-proof hollow cavity in Example 1; Figure 5 This is a schematic diagram of the sleeve cross-section in Example 2; Figure 6 This is a side view schematic diagram of the connection between the outer mesh gauze and the spacer support structure in Example 3. Detailed Implementation Example 1
[0019] like Figures 1 to 4 As shown, this utility model includes a separate top 2, trousers 3, and a hat 1. Both the top 2 and the trousers 3 include: The outer layer of the molded, relatively stiff mesh fabric 4 is made of polyester or nylon. The spacer support structure 5 is made of the same material as the outer mesh fabric 4 and is double-folded and fixedly sewn inside the outer mesh fabric 4. Multiple triangular notches 51 are cut at intervals on the spacer support structure 5, with the apex of the triangular notches facing the outer mesh fabric. Velcro A is sewn on the inner edge of the spacer support structure 5. The spacer support structure 5 is set in multiple loops around the whole body of the top and the sleeves, and in multiple loops around the hip and leg of the trousers. The soft and breathable inner mesh fabric 7 is made of a blend of nylon and spandex, and its size is smaller than that of the outer mesh fabric 4. Velcro B is sewn onto the corresponding position on it. The Velcro 8 is used to attach the outer mesh gauze 4 to the inner mesh gauze 7 on both sides, forming a mosquito-proof hollow cavity 6 with a width of 0.5-1cm. The hat body 1 includes a 360-degree sun protection hat 11 and a mesh gauze face mask 12. The mesh gauze face mask 12 is attached to the outer perimeter of the full brim of the sun protection hat 11, and the bottom edge of the face mask extends below the neck.
[0020] The area where the neckline 21 of the top overlaps with the mask 12, and the area where the waist 31 of the trousers overlaps with the hem of the top, has only a single layer of inner mesh fabric 7. The bottom edge of the mask 12 of the hat is detachably connected to the neckline 21 of the top via Velcro 8.
[0021] The outer mesh gauze 4 and the inner mesh gauze 7 are gauzes with different mesh counts of 40-60, forming a misaligned structure of inner and outer meshes.
[0022] The cuffs of the top and the hems of the trousers are fitted with drawstrings 9. Example 2
[0023] like Figure 5 As shown, the spacer support structure 5 is made of the same material as the outer mesh gauze 4, and the inner edge of the spacer support structure 5 is continuously and directly sewn onto the inner mesh gauze 7, forming a mosquito-proof hollow cavity 6 between the outer mesh gauze 4 and the inner mesh gauze 7. The rest is the same as in Embodiment 1. Example 3
[0024] like Figure 6 As shown, the spacer support structure 5 is a sponge strip (or silicone strip) with a diameter of 0.5-1cm sewn onto the outer mesh gauze 4. The outer mesh gauze wraps around the outer sponge strip and is sewn on the outside of the sponge strip, thus creating a structure where the sponge strip is on the inside of the outer mesh gauze. The sponge strip is used to form a mosquito-proof hollow cavity 6 between the outer mesh gauze 4 and the inner edge of the sponge strip. Because the sponge strip has good support performance, it can be achieved without an inner layer, which simplifies the process, reduces production costs, and has better breathability.
[0025] The above description is merely a preferred embodiment of this utility model. The protection scope of this utility model is not limited to the above embodiments. All technical solutions falling within the scope of this utility model's concept are protected. It should be noted that for those skilled in the art, any improvements and modifications made without departing from the principle of this utility model should also be considered within the protection scope of this utility model.
Claims
1. A two-piece, fully protective mosquito-proof garment, comprising a two-piece top (2), trousers (3), and a hood (1), characterized in that: The top (2) and trousers (3) both include: A rigid outer mesh gauze (4); A spacer support structure (5) is fixedly installed inside the outer mesh fabric (4), with multiple loops around the whole body of the top and sleeves, and multiple loops around the hips and legs of the trousers, to form a mosquito-proof hollow cavity (6) with a width of 0.5-1cm between the outer mesh fabric (4) and the inner edge of the spacer support structure (5); the spacer support structure (5) is made of the same material as the outer mesh fabric (4), and multiple triangular notches (51) are cut at intervals on the spacer support structure (5), with the apex of the triangular notches facing the outer mesh fabric. In the fabric direction, it also includes a soft and breathable inner mesh gauze (7), which is smaller than the outer mesh gauze (4). The spacer support structure (5) is sewn with Velcro A side, and the inner mesh gauze (7) is sewn with Velcro B side at the corresponding position. The Velcro is bonded on both sides to connect the outer mesh gauze (4) and the inner mesh gauze (7), or the inner edge of the spacer support structure (5) is continuously and directly sewn onto the inner mesh gauze (7) to form a mosquito-proof hollow cavity (6) between the outer mesh gauze (4) and the inner mesh gauze (7). The hat body (1) includes a 360-degree sun protection hat (11) and a mesh gauze face mask (12). The mesh gauze face mask (12) is attached to the outer perimeter of the full brim of the sun protection hat (11), and the bottom edge of the face mask extends below the neck.
2. The split-type full-protection mosquito-proof clothing according to claim 1, characterized in that: The outer mesh fabric (4) and the spacer support structure (5) are made of polyester or nylon, while the inner mesh fabric (7) is made of a blend of nylon and spandex.
3. The split-type full-protection mosquito-proof clothing according to claim 1, characterized in that: The area where the neckline (21) of the top overlaps with the mask (12), and the area where the waist (31) of the trousers overlaps with the hem of the top, has only a single layer of inner mesh gauze (7).
4. The split-type full-protection mosquito-proof clothing according to claim 1, characterized in that: The outer mesh gauze (4) and the inner mesh gauze (7) are gauzes with different mesh counts of 40-60, forming an inner and outer mesh misalignment structure.
5. The split-type full-protection mosquito-proof clothing according to claim 1, characterized in that: The spacer support structure (5) is a sponge strip or silicone strip sewn onto the outer mesh gauze (4).
6. The split-type full-protection mosquito-proof clothing according to claim 5, characterized in that: The spacer support structure (5) is a cylindrical strip with a diameter of 0.5-1cm. The outer layer of mesh gauze wraps the outer cylindrical strip and sews it on the outside of the cylindrical strip, thus forming a structure in which the cylindrical strip is inside the outer layer of mesh gauze.
7. The split-type full-protection mosquito-proof clothing according to claim 1, characterized in that: The bottom edge of the face shield (12) of the hat body is detachably connected to the collar (21) of the shirt via Velcro (8) or zipper.
8. The split-type full-protection mosquito-proof clothing according to claim 1, characterized in that: The cuffs of the jacket and the hems of the trousers are fitted with drawstrings (9).