Anti-static sun-proof quick-dry oversleeve
By designing antistatic and sun-protective fabric, combined with conductive yarn and an anti-UV layer, the problem of unstable static electricity and ultraviolet protection in existing sleeves is solved, providing stable protection and comfort, and is suitable for industries such as electronics, chemicals, pharmaceuticals, and textiles.
Patent Information
- Application Number
- CN202423073321.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-13
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2034-12-13
AI Technical Summary
Existing sleeves lack comprehensive protection against static electricity and ultraviolet rays, and their anti-static and sun protection functions are unstable, making it difficult to meet the needs of industries such as electronics, chemicals, pharmaceuticals, and textiles.
It uses antistatic and sun-protective fabric, including a quick-drying layer, an elastic layer, an anti-UV layer, and an antistatic outer layer. Conductive fibers are embedded in the antistatic outer layer, and the blending technology ensures stability and durability. Combined with the anti-UV layer, it provides sun protection.
It achieves stable antistatic and sun protection effects even after multiple washes and uses, protects the skin from UV damage, improves comfort and durability, and is suitable for industries that require antistatic properties.
Smart Images

Figure CN223653283U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of sleeve, especially to a quick-drying sleeve with anti-static and anti-sunscreen functions. BACKGROUND
[0002] With the rapid development of modern industry and electronic communication technology, people are increasingly exposed to various environments that may generate static electricity and ultraviolet rays in daily life and work. Static electricity not only causes equipment failure and affects product quality, but also may cause serious accidents such as fire or explosion, especially in the electronics, chemical, pharmaceutical, and textile industries, where the harm of static electricity is particularly prominent. At the same time, the threat of ultraviolet radiation to human skin health cannot be ignored, and long-term exposure to ultraviolet rays can accelerate skin aging and increase the risk of skin cancer.
[0003] Traditional sleeves often only have a single function of warmth, protection, or aesthetics, and lack consideration for static electricity and ultraviolet protection. Although there are some sleeves on the market with anti-static or sunscreen functions, they usually only meet one of these needs, and have problems such as unstable performance, poor durability, and uncomfortable wear. For example, existing anti-static sleeves use anti-static agents to treat the surface of the fabric, but their effectiveness often decreases with the number of washes. While existing sunscreen sleeves can effectively block ultraviolet rays, they do not have anti-static properties and cannot avoid the dangers of static electricity, making them difficult to apply in the electronics, chemical, pharmaceutical, and textile industries. SUMMARY
[0004] The purpose of the present utility model is to provide a quick-drying sleeve with anti-static and anti-sunscreen functions to solve one or more of the technical problems in the background art.
[0005] To achieve this purpose, the utility model adopts the following technical solutions:
[0006] A quick-drying sleeve with anti-static and anti-sunscreen functions, comprising a sleeve body made of anti-static and anti-sunscreen fabric, the anti-static and anti-sunscreen fabric including a quick-drying layer, an elastic layer, an anti-UV layer, and an anti-static outer layer, the anti-static outer layer being located on the outside of the elastic layer, the anti-UV layer being located between the elastic layer and the anti-static outer layer, the quick-drying layer being located on the inside of the elastic layer, and conductive filaments being embedded in the anti-static outer layer.
[0007] Preferably, the anti-static outer layer is made of a blend of spandex and conductive filaments.
[0008] Preferably, the elastic layer is made of a blend of nylon and spandex.
[0009] Preferably, the quick-drying layer is made of ice silk material.
[0010] Preferably, the anti-UV layer is coated between the elastic layer and the anti-static outer layer, and the anti-UV layer is formed by curing an anti-reflective type anti-UV material.
[0011] Preferably, the sleeve body is provided with a first tightening portion and a second tightening portion at two ends respectively, and the circumference of the first tightening portion is greater than that of the second tightening portion.
[0012] Preferably, a plurality of strip-shaped concaves are arranged on the sleeve body, and the plurality of strip-shaped concaves are arranged alternately and extend from the second tightening portion to the corresponding human arm.
[0013] The sleeve has the advantages that: the conductive wire embedded in the anti-static outer layer enables the sleeve to have the function of eliminating static electricity, prevents various problems caused by static electricity, and can be applied to industries such as electronics, chemical industry, medicine, and textile that need anti-static function; meanwhile, the anti-UV layer can efficiently block ultraviolet radiation, protects the skin of the user from ultraviolet damage, and reduces the risk of skin aging and skin cancer. Compared with the prior art, the conductive wire is embedded in the sleeve by blending, so that the sleeve can still maintain stable anti-static and sunscreen effects after being washed and used for many times, and the service life of the sleeve is prolonged. The sleeve has the effect of moisture absorption and quick drying due to the setting of the quick-drying layer, and the comfort and hygiene of wearing are maintained. BRIEF DESCRIPTION OF DRAWINGS
[0014] The drawings further illustrate the utility model, but the contents in the drawings do not constitute any limitation on the utility model.
[0015] Figure 1 is a schematic diagram of the overall structure of one embodiment of the utility model;
[0016] Figure 2 is a schematic diagram of the internal structure of the anti-static sunscreen fabric of one embodiment of the utility model.
[0017] Among them: sleeve body 1, anti-static sunscreen fabric 110, quick-drying layer 111, elastic layer 112, anti-UV layer 113, anti-static outer layer 114, first tightening portion 120, second tightening portion 130, strip-shaped concave 131. DETAILED DESCRIPTION
[0018] The technical scheme of the utility model will be further illustrated below by combining the drawings and specific embodiments.
[0019] The sleeve body 1 of the anti-static sunscreen quick-drying sleeve of the embodiment is provided with the anti-static sunscreen fabric 110, the quick-drying layer 111, the elastic layer 112, the anti-UV layer 113, the anti-static outer layer 114, the first tightening portion 120, the second tightening portion 130, and the strip-shaped concave 131. Figure 1 and 2, including a sleeve body 1, the sleeve body 1 is cut from an anti-static sunscreen fabric 110, the anti-static sunscreen fabric 110 includes an elastic layer 112, an anti-UV layer 113 and an anti-static outer layer 114, the anti-static outer layer 114 is arranged on the outer side of the elastic layer 112, the anti-UV layer 113 is arranged between the elastic layer 112 and the anti-static outer layer 114, and the anti-static outer layer 114 is embedded with a conductive wire.
[0020] The conductive wire embedded in the anti-static outer layer 114 enables the sleeve to have the function of eliminating static electricity, prevents various problems caused by static electricity, and can be applied to industries such as electronics, chemicals, medicine and textiles that require anti-static. At the same time, the anti-UV layer 113 can efficiently block ultraviolet radiation and protect the user's skin from ultraviolet damage, reducing the risk of skin aging and skin cancer. Compared with the prior art, the conductive wire is embedded in the sleeve by blending, ensuring that the sleeve can maintain stable anti-static and sunscreen effects after multiple washes and uses, prolonging the service life of the sleeve. The setting of the quick-drying layer 111 enables the sleeve to have the effect of moisture absorption and quick drying, maintaining the comfort and hygiene of wearing. The setting of the elastic layer 112 enables the sleeve to have good elasticity and recovery, which can adapt to the needs of different arm sizes and activity ranges, ensuring that the sleeve is tightly fitted when worn without causing a sense of restraint, improving the user's wearing experience.
[0021] Preferably, the anti-static outer layer 114 is made of spandex and conductive wire blending. Using fiber spandex with high elasticity as one of the blended materials enables the anti-static outer layer 114 to have elasticity and recovery, further improving the overall elasticity of the sleeve body 1, ensuring comfort and fit during wearing. Using conductive wire as a blended material for the anti-static outer layer 114 enables the conductive wire to be embedded in the anti-static outer layer 114. The embedding of the conductive wire can quickly dissipate static electricity, preventing static electricity accumulation and discharge, thereby protecting equipment and the human body from static hazards. After blending with spandex, the conductive wire is more evenly distributed in the fabric, further improving the anti-static effect. Blending with conductive wire enables the anti-static sunscreen fabric 110 to maintain its anti-static function while also having good durability and stability, even after multiple washes and long-term use, the fabric can still maintain its anti-static performance and elasticity.
[0022] Preferably, the elastic layer 112 is made of nylon and spandex blending. The elastic layer 112 made of nylon and spandex blending improves the elasticity and recovery of the sleeve body 1, can adapt to various arm movements, ensures the comfortable fit of the sleeve, and has good wear resistance, which can resist wear and tear during daily use and washing, prolonging the service life of the sleeve. In addition, this elastic layer 112 also has good air permeability, which helps to keep the arm dry and comfortable, reducing the discomfort when wearing for a long time.
[0023] Preferably, the quick-drying layer 111 is made of ice silk material. By setting the quick-drying layer 111 made of ice silk material, the sleeve body 1 has the function of moisture absorption and quick drying. When the sleeve contacts sweat or a humid environment, the ice silk quick-drying layer 111 can quickly absorb moisture and spread it to the surface of the fabric, accelerating the evaporation speed, thereby keeping the inside of the sleeve dry. Moreover, the ice silk material has a good cool touch, even in hot or humid environments, it can bring a cool and comfortable feeling to the wearer, and has better air permeability. The quick-drying layer 111, the elastic layer 112 and the anti-static outer layer 114 are connected by compounding.
[0024] Preferably, the anti-UV layer 113 is coated between the elastic layer 112 and the anti-static outer layer 114, and the anti-UV layer 113 is formed by curing an anti-reflective anti-UV material. By coating the anti-reflective anti-UV material between the elastic layer 112 and the anti-static outer layer 114 to form the anti-UV layer 113, the sleeve body 1 has the effect of sun protection and anti-ultraviolet.
[0025] Preferably, the sleeve body 1 is provided with a first tightening part 120 and a second tightening part 130 at both ends, respectively, and the circumference of the first tightening part 120 is greater than that of the second tightening part 130. By setting the first tightening part 120 and the second tightening part 130, the sleeve body 1 can be closely fitted to the human arm, and the circumference of the first tightening part 120 is greater than that of the second tightening part 130, which can better adapt to different parts of the arm, ensuring that the sleeve can provide a comfortable fit on the entire arm, effectively preventing the sleeve from slipping or moving during use. This ensures the stability and protection effect of the sleeve when worn.
[0026] Preferably, the sleeve body 1 is provided with a plurality of strip-shaped recesses 131, which are arranged alternately and extend from the second tightening part 130 to the corresponding human arm. By setting the strip-shaped recesses 131, not only can the sleeve be better fitted to the arm, but also the flexibility of movement is improved. When the arm is bent or performs other activities, the strip-shaped recesses 131 can stretch the sleeve material to a certain extent, thereby maintaining a comfortable fit. Moreover, the strip-shaped recesses 131 can serve as channels for evaporation of sweat, helping to guide sweat from the skin surface to the outer layer of the sleeve and accelerate its evaporation, thereby keeping the arm dry.
[0027] The technical principles of the present utility model are described above in conjunction with specific embodiments. These descriptions are only to explain the principles of the present utility model, and cannot be interpreted in any way as a limitation on the scope of protection of the present utility model. Based on the explanations here, those skilled in the art can think of other specific embodiments of the present utility model without creative labor, and these embodiments will fall within the scope of protection of the present utility model.
Claims
1. An anti-static, sun-protective, quick-drying sleeve characterized in that, The sleeve body is cut from an anti-static and sun-proof fabric, which comprises a quick-drying layer, an elastic layer, an anti-UV layer and an anti-static outer layer.
2. A quick-drying anti-static, sun-protective sleeve according to claim 1, wherein, The anti-static outer layer is made of spandex and conductive yarn.
3. A quick-drying anti-static, sun-protective sleeve according to claim 1, wherein, The elastic layer is made of spandex and nylon.
4. A quick-drying anti-static, sun-protective sleeve according to claim 1, wherein, The quick-drying layer is made of ice silk material.
5. A quick-drying anti-static, anti-sun sleeve according to claim 1, characterized in that, The anti-UV layer is coated between the elastic layer and the anti-static outer layer and is formed by curing anti-reflective anti-UV material.
6. A quick-drying anti-static, sun-protective sleeve according to claim 1, wherein, The sleeve body is provided with a first tightening part and a second tightening part at two ends respectively.
7. A quick-drying anti-static, sun-protective sleeve according to claim 6, wherein, The sleeve body is provided with a plurality of strip-shaped concaves, which are arranged alternately and extend from the second tightening part to the corresponding human arm.