Moisture-absorbing, quick-drying and breathable summer uniform fabric and preparation method thereof

By attaching insect-repellent components to the surface of summer uniform fabric and combining components with multiple fiber layers, the problem of traditional summer uniform fabrics being unable to prevent mosquito bites has been solved. This achieves mosquito-repellent effects and good moisture-wicking and quick-drying properties in the hot summer, improving wearing comfort.

CN120921759APending Publication Date: 2025-11-11SHICHUN TEXTILE WEAVING & DYEING IND CO LTD
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Patent Information

Application Number
CN202511069869.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-09-18
Publication Date
2025-11-11

AI Technical Summary

Technical Problem

Traditional summer uniform fabrics are not effective at protecting against mosquito bites in the hot summer; they can only meet the body's need for perspiration and cannot meet people's needs for wearing them.

Method used

Insect-repellent components are attached to the surface of the uniform fabric, including a graphene functional fiber layer, a silk layer, an acetate fiber layer, and a Velcro layer. These are combined with a first moisture-wicking component, a second moisture-wicking component, an antibacterial component, and a quick-drying component. The antibacterial, antiviral, and anti-mite functions of the graphene functional fiber layer, the warmth retention, moisture absorption, and breathability of the silk layer, and the moisture-wicking and quick-drying properties of the other fiber layers are used to improve the insect-repellent effect.

Benefits of technology

It helps prevent mosquito bites when worn in hot summer, improves wearing comfort, and has good moisture-wicking and quick-drying properties.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a moisture-absorbing, quick-drying and breathable summer uniform fabric and a preparation method thereof.The moisture-absorbing, quick-drying and breathable summer uniform fabric comprises a uniform fabric body, the surface of the uniform fabric body is connected with a plurality of insect-proof assemblies in an adhesive mode, and the uniform fabric body comprises a first perspiration assembly, a second perspiration assembly, an antibacterial assembly and a quick-drying assembly; the bottom end of the first perspiration component is fixedly connected with the top end of the second perspiration component, the bottom end of the second perspiration component is fixedly connected with the top end of the antibacterial component, and the bottom end of the antibacterial component is fixedly connected with the top end of the quick-drying component. The mulberry silk layer is smooth, soft, glossy, warm-keeping, moisture-absorbing, good in air permeability, anti-ultraviolet, anti-aging, good in extensibility and good in heat resistance, and the acetate fiber layer is light, comfortable, silk-like and good in elasticity, so that a wearer is prevented from being bitten by mosquitoes when wearing the fabric in hot summer, and the comfort level of the wearer is improved.
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Description

Technical Field

[0001] This invention relates to the field of summer uniform fabric preparation technology, specifically to a moisture-wicking, quick-drying, and breathable summer uniform fabric and its preparation method. Background Technology

[0002] Summer work clothes need to be lightweight, breathable, and moisture-wicking. Cotton is soft and breathable with good moisture absorption; linen is cool and heat-dissipating, suitable for high temperature and high humidity; polyester is lightweight and durable, and wicks away moisture quickly; nylon is lightweight and durable, but requires careful washing; blended fabrics offer complementary properties to meet specific needs. Multiple factors need to be considered when choosing a material. Among them, cotton, as a classic summer workwear material, is highly favored for its natural softness, superior breathability, and excellent moisture absorption. It effectively absorbs and quickly dissipates body sweat, keeping the skin dry. Combined with its ease of washing and maintenance, it has become the first choice for many industries. Linen fabric stands out in the hot summer with its outstanding breathability and moisture-wicking properties. Its cool texture helps lower body temperature and is skin-friendly, making it especially suitable for high-temperature and high-humidity working environments. As a synthetic fiber, polyester is valued for its lightweight, durability, and wrinkle resistance. Although its moisture absorption is slightly less than cotton and linen, it has good breathability and moisture wicking capabilities, allowing clothes to dry quickly, making it suitable for jobs requiring frequent movement or quick-drying.

[0003] However, traditional summer uniform fabrics have the following drawbacks: In the hot summer, there are many mosquitoes. Traditional summer uniform fabrics can only meet the body's need for perspiration and cannot protect against mosquito bites, thus failing to meet people's wearing needs. Summary of the Invention

[0004] The purpose of this invention is to provide a moisture-wicking, quick-drying, and breathable summer uniform fabric and its preparation method, in order to solve the problem mentioned in the background art that in the hot summer, there are many mosquitoes, and traditional summer uniform fabrics can only meet the needs of human body perspiration, but cannot protect against mosquito bites and cannot meet people's wearing needs.

[0005] To achieve the above objectives, the present invention provides the following technical solution: a moisture-wicking, quick-drying, and breathable summer uniform fabric, comprising a uniform fabric body, wherein a plurality of insect-repellent components are adhered to the surface of the uniform fabric body; the uniform fabric body includes a first moisture-wicking component, a second moisture-wicking component, an antibacterial component, and a quick-drying component; the bottom end of the first moisture-wicking component is fixedly connected to the top end of the second moisture-wicking component; the bottom end of the second moisture-wicking component is fixedly connected to the top end of the antibacterial component; the bottom end of the antibacterial component is fixedly connected to the top end of the quick-drying component; the antibacterial component includes a plurality of Ula grass fiber strips, a plurality of cotton fiber strips, and a plurality of irregularly shaped polyester fiber strips; the plurality of Ula grass fiber strips and the plurality of cotton fiber strips... The insect-repellent component is woven and connected with several irregularly shaped polyester fiber strips. It includes a graphene functional fiber layer, a silk layer, an acetate fiber layer, and a Velcro layer. The bottom end of the graphene functional fiber layer is fixedly connected to the top end of the silk layer, the bottom end of the silk layer is fixedly connected to the top end of the acetate fiber layer, and the bottom end of the acetate fiber layer is adhesively connected to the top end of the Velcro layer. The silk layer is smooth, soft, and lustrous, with good warmth retention, moisture absorption, breathability, UV resistance, anti-aging properties, good extensibility, and good heat resistance. The acetate fiber layer is lightweight, comfortable, has a silk-like feel, and good elasticity. The graphene functional fiber layer is specifically "Karina" functional fiber developed by Johnson & Johnson, which has antibacterial, antiviral, and anti-mite composite functions.

[0006] As a preferred embodiment of the present invention, the bottom end of the Velcro layer is bonded to the first sweat-wicking component.

[0007] As a preferred embodiment of the present invention, the quick-drying component includes a flax layer, a cotton layer, and a ramie fiber layer. The bottom end of the flax layer is fixedly connected to the top end of the cotton layer, the bottom end of the cotton layer is fixedly connected to the top end of the ramie fiber layer, and the top end of the flax layer is fixedly connected to an antibacterial component. This quick-drying component has the advantage of reducing the discomfort of fabric irritation.

[0008] As a preferred embodiment of the present invention, the top ends of several Ula grass fiber strips, the top ends of several cotton fiber strips, and the top ends of several irregularly shaped polyester fiber strips are all connected to the second moisture-wicking component, and the bottom ends of several Ula grass fiber strips, the bottom ends of several cotton fiber strips, and the bottom ends of several irregularly shaped polyester fiber strips are all connected to the quick-drying component. The moisture-wicking and quick-drying fabric has obvious moisture-wicking and quick-drying effects, the fabric has certain anti-yellowing and antibacterial properties, and the preparation method is simple.

[0009] In a preferred embodiment of the present invention, the first moisture-wicking component comprises a Solona fabric layer, a cupro cotton layer, and an ice ion fiber fabric layer. The bottom end of the Solona fabric layer is fixedly connected to the top end of the cupro cotton layer, the bottom end of the cupro cotton layer is fixedly connected to the top end of the ice ion fiber fabric layer, and the bottom end of the ice ion fiber fabric layer is fixedly connected to the second moisture-wicking component. The Solona fabric layer is made of plant-derived renewable functional fiber fabric, which has many advantages, including a soft touch, a cooling sensation, natural antibacterial properties, high elasticity and tensile strength, and is durable and resistant to wear and tear after repeated washing. This fabric is also resistant to chlorine and UV rays, and is stain-resistant and easy to care for. It features vibrant colors and high colorfastness. The cupro cotton layer is a regenerated cupro filament, which is 99.9% cellulose fiber. Cupro fabric is soft and smooth, with ideal moisture absorption, breathability, and antistatic properties. It also has good dyeing and color development properties, as well as excellent abrasion resistance. The ice ion fiber fabric layer generates a large number of negative ions upon contact with the skin, which can accelerate the dissipation of heat from the body surface and bring a long-lasting comfortable cooling sensation. Therefore, ice ion fabric has the characteristics of being skin-friendly, moisture-wicking and quick-drying, and naturally antibacterial. It also has excellent drape, making it wrinkle-free and wrinkle-resistant.

[0010] As a preferred embodiment of the present invention, the second sweat-wicking component includes a liquid ammonia cotton fabric layer, an ice silk fabric layer, a silk fabric layer, a modal fabric layer, and a mercerized cotton layer. The bottom end of the liquid ammonia cotton fabric layer is fixedly connected to the top end of the ice silk fabric layer, the bottom end of the ice silk fabric layer is fixedly connected to the top end of the silk fabric layer, the bottom end of the silk fabric layer is fixedly connected to the top end of the modal fabric layer, and the bottom end of the modal fabric layer is fixedly connected to the top end of the mercerized cotton layer. The liquid ammonia cotton fabric layer has a very smooth feel, providing an instant cooling sensation upon contact. It also has antibacterial, deodorizing, and antiviral functions, keeping the wearer fresh and clean for a long time, especially in summer. Furthermore, the liquid ammonia cotton fabric layer has excellent abrasion resistance, is soft and drapey, wrinkle-resistant, and not easily deformed. The ice silk fabric layer is a commercial name for a chemical fiber, specifically a modified polyviscose fiber. The ice silk fabric layer has good moisture absorption and breathability, while also possessing good shape retention and drape. The moisture content of ice silk is most suitable for… The physiological requirements of human skin necessitate smoothness, coolness, breathability, anti-static properties, UV protection, and vibrant colors. Ice silk fabric combines the essence of cotton with the fibers of silk, originating from nature but superior to it. Real silk fabric, as opposed to imitation silk fabric, refers to silkworm silk, including mulberry silk and tussah silk. Real silk is lightweight, comfortable, and lustrous; however, because it is difficult to colorfast and not very durable, it is mostly blended. Modal fabric is soft, smooth, and brightly colored. The fabric feels soft and exceptionally smooth, with a bright sheen, good drape, and a silk-like luster and feel. Modal is also highly absorbent and colorfast, making it more comfortable to wear than pure cotton. Mercerized cotton uses cotton as raw material, spun into high-count yarn, and then undergoes special processing steps such as singeing and mercerizing to create a smooth, bright, soft, and wrinkle-resistant high-quality mercerized yarn. Mercerized cotton has the luster of silk fabric, is crisp, wrinkle-resistant, not prone to pilling or deformation, and has good drape.

[0011] As a preferred embodiment of the present invention, the bottom end of the mercerized cotton layer is fixedly connected to the antibacterial component, and the top end of the liquid ammonia cotton fabric layer is fixedly connected to the first perspiration wicking component.

[0012] This invention discloses a method for preparing a moisture-wicking, quick-drying, and breathable summer uniform fabric, comprising the following steps: Step 1: Preparation of the first moisture-wicking component: The Solona fabric layer, cupro cotton layer and ice ion fiber fabric layer are bonded together, and then dried and baked. Step 2: Preparation of the second perspiration component: The liquid ammonia cotton fabric layer, ice silk fabric layer, silk fabric layer, modal fabric layer and mercerized cotton layer are bonded together, and then dried and baked. Step 3: Preparation of antibacterial components: Blend Ula grass fiber strips with cotton fiber strips to obtain blended yarn, then weave to obtain a hydrophilic inner layer. Blend irregularly shaped polyester fiber strips to form an outer layer. Combine the hydrophilic inner layer and outer layer by bonding, then dry and bake. Step 4: Prepare quick-drying components: Combine the flax layer, cotton layer, and ramie fiber layer by bonding, and then dry and bake them; Step 5: Fabric bonding: The prepared first moisture-wicking component, second moisture-wicking component, antibacterial component, and quick-drying component are bonded together in sequence; Step 6: Preparation of insect-proof components: The graphene functional fiber layer, mulberry silk layer, acetate fiber layer and hook and loop layer are bonded together, and then dried and baked. Step 7: Attach the insect-repellent components: Attach the insect-repellent components to the outside of the prepared fabric.

[0013] Compared with the prior art, the beneficial effects of the present invention are: By incorporating insect-repellent components, the graphene functional fiber layer possesses antibacterial, antiviral, and anti-mite properties, while the silk layer is smooth, soft, and lustrous, offering excellent warmth, moisture absorption, breathability, UV resistance, anti-aging properties, good extensibility, and heat resistance. The acetate fiber layer is lightweight, comfortable, and has a silk-like appearance with good elasticity, preventing wearers from being bitten by mosquitoes during the hot summer months and enhancing their comfort. By incorporating a first moisture-wicking component and a second moisture-wicking component, the uniform fabric itself possesses excellent moisture-wicking properties, exhibits significant moisture-wicking and quick-drying effects, and is highly practical. Attached Figure Description

[0014] Figure 1 This is a side view of the uniform fabric body of the present invention; Figure 2 This is a schematic diagram of the insect-repellent component of the present invention; Figure 3 This is a schematic diagram of the architecture of the first perspiration-wicking component of the present invention; Figure 4 This is a schematic diagram of the architecture of the second perspiration component of the present invention; Figure 5 This is a schematic diagram of the architecture of the antibacterial component of the present invention; Figure 6 This is a schematic diagram of the architecture of the fast-drying component of the present invention; Figure 7 This is a flowchart of the present invention.

[0015] In the diagram: 1. Uniform fabric body; 2. Insect repellent component; 21. Graphene functional fiber layer; 22. Mulberry silk layer; 23. Acetate fiber layer; 24. Velcro layer; 3. First moisture-wicking component; 31. Solona fabric layer; 32. Cupro cotton layer; 33. Ice ion fiber fabric layer; 4. Second moisture-wicking component; 41. Liquid ammonia cotton fabric layer; 42. Ice silk fabric layer; 43. Silk fabric layer; 44. Modal fabric layer; 45. Mercerized cotton layer; 5. Antibacterial component; 51. Ula grass fiber strip; 52. Cotton fiber strip; 53. Shaped polyester fiber strip; 6. Quick-drying component; 61. Linen layer; 62. Cotton layer; 63. Ramie fiber layer. Detailed Implementation

[0016] The technical solutions of the present invention will be clearly and completely described below with reference to the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present invention.

[0017] Please see Figure 1-7 This invention provides a moisture-wicking, quick-drying, and breathable summer uniform fabric, comprising a uniform fabric body 1. A plurality of insect-repellent components 2 are adhered to the surface of the uniform fabric body 1. The uniform fabric body 1 includes a first moisture-wicking component 3, a second moisture-wicking component 4, an antibacterial component 5, and a quick-drying component 6. The bottom end of the first moisture-wicking component 3 is fixedly connected to the top end of the second moisture-wicking component 4, the bottom end of the second moisture-wicking component 4 is fixedly connected to the top end of the antibacterial component 5, and the bottom end of the antibacterial component 5 is fixedly connected to the top end of the quick-drying component 6. The antibacterial component 5 includes a plurality of ulao fiber strips 51, a plurality of cotton fiber strips 52, and a plurality of irregularly shaped polyester fiber strips 53. 3. The weaving connection and insect-proof component 2 include a graphene functional fiber layer 21, a silk layer 22, an acetate fiber layer 23, and a Velcro layer 24. The bottom end of the graphene functional fiber layer 21 is fixedly connected to the top end of the silk layer 22, the bottom end of the silk layer 22 is fixedly connected to the top end of the acetate fiber layer 23, and the bottom end of the acetate fiber layer 23 is adhesively connected to the top end of the Velcro layer 24. The silk layer 22 is smooth and soft, lustrous, warm, moisture-wicking, breathable, UV-resistant, anti-aging, has good extensibility, and good heat resistance. The acetate fiber layer 23 is lightweight and comfortable, has a silk-like style, and good elasticity. The graphene functional fiber layer 21 is specifically the "Karina" functional fiber developed by Johnson & Johnson, which has antibacterial, antiviral, and anti-mite composite functions.

[0018] The bottom end of the Velcro layer 24 is attached to the first sweat-wicking component 3.

[0019] The quick-drying component 6 includes a linen layer 61, a cotton layer 62, and a ramie fiber layer 63. The bottom end of the linen layer 61 is fixedly connected to the top end of the cotton layer 62, the bottom end of the cotton layer 62 is fixedly connected to the top end of the ramie fiber layer 63, and the top end of the linen layer 61 is fixedly connected to the antibacterial component 5. This quick-drying component 6 has the advantage of reducing the discomfort of fabric scratching the skin.

[0020] The top ends of several Ula grass fiber strips 51, several cotton fiber strips 52, and several irregularly shaped polyester fiber strips 53 are all connected to the second moisture-wicking component 4, and the bottom ends of several Ula grass fiber strips 51, several cotton fiber strips 52, and several irregularly shaped polyester fiber strips 53 are all connected to the quick-drying component 6. The moisture-wicking and quick-drying fabric has obvious moisture-wicking and quick-drying effects, and the fabric has certain anti-yellowing and antibacterial properties. Moreover, the preparation method is simple.

[0021] The first moisture-wicking component 3 includes a Solona fabric layer 31, a cupro cotton layer 32, and an ice ion fiber fabric layer 33. The bottom end of the Solona fabric layer 31 is fixedly connected to the top end of the cupro cotton layer 32, and the bottom end of the cupro cotton layer 32 is fixedly connected to the top end of the ice ion fiber fabric layer 33. The bottom end of the ice ion fiber fabric layer 33 is fixedly connected to the second moisture-wicking component 4. The Solona fabric layer 31 is made of plant-derived renewable functional fiber fabric, which has many advantages. It is not only soft to the touch and has a cooling sensation, but also has natural antibacterial properties. Furthermore, it is highly elastic and tensile-resistant, wear-resistant, and does not easily deform after repeated washing. With its chlorine / UV resistance, stain resistance, and easy care properties, this fabric boasts vibrant colors and high colorfastness. The cupro cotton layer 32 is a regenerated cupro filament, 100% cellulose fiber. Cupro fabrics are soft and smooth, possessing ideal moisture absorption, breathability, and antistatic properties. They also exhibit good dyeing and color development, and excellent abrasion resistance. The ice ion fiber fabric layer 33 generates a large number of negative ions upon contact with the skin, accelerating heat dissipation and providing a long-lasting, comfortable cooling sensation. Therefore, ice ion fabric is characterized by its skin-friendly, moisture-wicking, quick-drying, and natural antibacterial properties, along with excellent drape, wrinkle-free operation, and wrinkle resistance.

[0022] The second moisture-wicking component 4 includes a liquid ammonia cotton fabric layer 41, an ice silk fabric layer 42, a silk fabric layer 43, a modal fabric layer 44, and a mercerized cotton layer 45. The bottom end of the liquid ammonia cotton fabric layer 41 is fixedly connected to the top end of the ice silk fabric layer 42, the bottom end of the ice silk fabric layer 42 is fixedly connected to the top end of the silk fabric layer 43, the bottom end of the silk fabric layer 43 is fixedly connected to the top end of the modal fabric layer 44, and the bottom end of the modal fabric layer 44 is fixedly connected to the top end of the mercerized cotton layer 45. The cotton fabric layer 41 has a smooth feel, providing an instant cooling sensation upon contact. It also has antibacterial, deodorizing, and antiviral functions, keeping you fresh and clean for summer wear. Furthermore, the liquid ammonia cotton fabric layer 41 has excellent abrasion resistance, is soft and drapey, wrinkle-resistant, and does not easily deform. The ice silk fabric layer 42 is a commercial name for a chemical fiber, specifically a modified polyviscose fiber. Ice silk fabric layer 42 has good moisture absorption and breathability, as well as good shape retention and drape. The moisture content of ice silk perfectly matches the physiological requirements of human skin, offering a smooth, cool, breathable, anti-static, UV-protective, and vibrant color profile. Ice silk fabric layer 42 combines the essence of cotton with the fiber properties of silk, originating from nature but superior to it. The silk fabric layer 43, in contrast to imitation silk fabrics, refers to silkworm silk, including mulberry silk and tussah silk. Silk is lightweight, comfortable, and lustrous; however, because silk is not easy to colorfast and is not very durable, it is mostly used in blends. The modal fabric layer 44 is soft and smooth. With vibrant colors, a soft and exceptionally smooth feel, a lustrous sheen, and excellent drape, it possesses a silk-like sheen and feel. Modal is also highly absorbent and breathable with excellent colorfastness, making it more comfortable to wear compared to pure cotton. Mercerized cotton layer 45 is made from cotton, spun into high-count yarn, and then undergoes special processing steps such as singeing and mercerizing to create a smooth, lustrous, soft, and wrinkle-resistant high-quality mercerized yarn. Mercerized cotton layer 45 has the luster of silk fabric, and the fabric is crisp, wrinkle-resistant, and not prone to pilling or deformation, with good drape.

[0023] The bottom end of the mercerized cotton layer 45 is fixedly connected to the antibacterial component 5, and the top end of the liquid ammonia cotton fabric layer 41 is fixedly connected to the first perspiration wicking component 3.

[0024] This invention discloses a method for preparing a moisture-wicking, quick-drying, and breathable summer uniform fabric, comprising the following steps: Step 1: Preparation of the first perspiration-wicking component 3: The Solona fabric layer 31, the cupro cotton layer 32, and the ice ion fiber fabric layer 33 are bonded together, and then dried and baked. Step 2: Preparation of the second perspiration-wicking component 4: The liquid ammonia cotton fabric layer 41, ice silk fabric layer 42, silk fabric layer 43, modal fabric layer 44 and mercerized cotton layer 45 are bonded together, and then dried and baked. Step 3: Preparation of antibacterial component 5: Blend Ula grass fiber strip 51 with cotton fiber strip 52 to obtain blended yarn, and then weave it to obtain a hydrophilic inner layer. Blend irregular polyester fiber strip 53 and then weave it to form an outer layer. Combine the hydrophilic inner layer and the outer layer by bonding, and then dry and bake it. Step 4: Preparation of quick-drying component 6: The flax layer 61, cotton layer 62 and ramie fiber layer 63 are bonded together, and then dried and baked. Step 5, Fabric pressing: Press the prepared first moisture-wicking component 3, second moisture-wicking component 4, antibacterial component 5 and quick-drying component 6 together in sequence; Step 6: Preparation of insect-proof component 2: The graphene functional fiber layer 21, the silk layer 22, the acetate fiber layer 23 and the Velcro layer 24 are bonded together, and then dried and baked. Step 7: Attach insect-repellent component 2: Attach insect-repellent component 2 to the outside of the prepared fabric.

[0025] Example 1: In this invention, the Sorona fabric layer 31, cupro cotton layer 32, and ice ion fiber fabric layer 33 are bonded together, then dried and baked; the liquid ammonia cotton fabric layer 41, ice silk fabric layer 42, silk fabric layer 43, modal fabric layer 44, and mercerized cotton layer 45 are bonded together, then dried and baked; and 30 parts of Ula grass fiber strip 51 are bonded together with cotton fiber strip 52. 30 parts are blended to obtain blended yarn, which is then woven to obtain a hydrophilic inner layer. 5340 parts of irregularly shaped polyester fiber strips are blended and then woven to form an outer layer. The hydrophilic inner layer and outer layer are bonded together, and then dried and baked. Linen layer 61, cotton layer 62 and ramie fiber layer 63 are bonded together, and then dried and baked. The prepared first moisture-wicking component 3, second moisture-wicking component 4, antibacterial component 5 and quick-drying component 6 are pressed together in sequence. Graphene functional fiber layer 21, mulberry silk layer 22, acetate fiber layer 23 and Velcro layer 24 are bonded together, and then dried and baked. Insect-repellent component 2 is attached to the outside of the prepared fabric.

[0026] Example 2: In this invention, the Sorona fabric layer 31, cupro cotton layer 32, and ice ion fiber fabric layer 33 are bonded together, then dried and baked; the liquid ammonia cotton fabric layer 41, ice silk fabric layer 42, silk fabric layer 43, modal fabric layer 44, and mercerized cotton layer 45 are bonded together, then dried and baked; and 40 parts of Ula grass fiber strip 51 are bonded together with cotton fiber strip 52. 40 parts are blended to obtain blended yarn, which is then woven to obtain a hydrophilic inner layer. 5320 parts of irregularly shaped polyester fiber strips are blended and then woven to form an outer layer. The hydrophilic inner layer and outer layer are bonded together, and then dried and baked. Linen layer 61, cotton layer 62 and ramie fiber layer 63 are bonded together, and then dried and baked. The prepared first moisture-wicking component 3, second moisture-wicking component 4, antibacterial component 5 and quick-drying component 6 are pressed together in sequence. Graphene functional fiber layer 21, mulberry silk layer 22, acetate fiber layer 23 and Velcro layer 24 are bonded together, and then dried and baked. Insect-repellent component 2 is attached to the outside of the prepared fabric.

[0027] Example 3: In this invention, the Solona fabric layer 31, cupro cotton layer 32, and ice ion fiber fabric layer 33 are bonded together, then dried and baked; the liquid ammonia cotton fabric layer 41, ice silk fabric layer 42, silk fabric layer 43, modal fabric layer 44, and mercerized cotton layer 45 are bonded together, then dried and baked; and 35 parts of Ula grass fiber strips 51 and cotton fiber strips 52 are bonded together. 35 parts are blended to obtain blended yarn, which is then woven to obtain a hydrophilic inner layer. 5330 parts of irregularly shaped polyester fiber strips are blended and then woven to form an outer layer. The hydrophilic inner layer and outer layer are bonded together, and then dried and baked. Linen layer 61, cotton layer 62 and ramie fiber layer 63 are bonded together, and then dried and baked. The prepared first moisture-wicking component 3, second moisture-wicking component 4, antibacterial component 5 and quick-drying component 6 are pressed together in sequence. Graphene functional fiber layer 21, mulberry silk layer 22, acetate fiber layer 23 and Velcro layer 24 are bonded together, and then dried and baked. Insect-repellent component 2 is attached to the outside of the prepared fabric.

[0028] Example 4: In this invention, the Sorona fabric layer 31, the cupro cotton layer 32, and the ice ion fiber fabric layer 33 are bonded together, then dried and baked; the liquid ammonia cotton fabric layer 41, the ice silk fabric layer 42, the silk fabric layer 43, the modal fabric layer 44, and the mercerized cotton layer 45 are bonded together, then dried and baked; and 20 parts of Ula grass fiber strip 51 are bonded together with cotton fiber strip 52. 20 parts are blended to obtain blended yarn, which is then woven to obtain a hydrophilic inner layer. 5360 parts of irregularly shaped polyester fiber strips are blended and then woven to form an outer layer. The hydrophilic inner layer and outer layer are bonded together, and then dried and baked. Linen layer 61, cotton layer 62 and ramie fiber layer 63 are bonded together, and then dried and baked. The prepared first moisture-wicking component 3, second moisture-wicking component 4, antibacterial component 5 and quick-drying component 6 are pressed together in sequence. Graphene functional fiber layer 21, mulberry silk layer 22, acetate fiber layer 23 and Velcro layer 24 are bonded together, and then dried and baked. Insect-repellent component 2 is attached to the outside of the prepared fabric.

[0029] Example 5: In this invention, the Sorona fabric layer 31, cupro cotton layer 32, and ice ion fiber fabric layer 33 are bonded together, then dried and baked; the liquid ammonia cotton fabric layer 41, ice silk fabric layer 42, silk fabric layer 43, modal fabric layer 44, and mercerized cotton layer 45 are bonded together, then dried and baked; and 30 parts of Ula grass fiber strip 51 are bonded together with cotton fiber strip 52. 40 parts are blended to obtain blended yarn, which is then woven to obtain a hydrophilic inner layer. 5330 parts of irregularly shaped polyester fiber strips are blended and then woven to form an outer layer. The hydrophilic inner layer and outer layer are bonded together, and then dried and baked. Linen layer 61, cotton layer 62 and ramie fiber layer 63 are bonded together, and then dried and baked. The prepared first moisture-wicking component 3, second moisture-wicking component 4, antibacterial component 5 and quick-drying component 6 are pressed together in sequence. Graphene functional fiber layer 21, mulberry silk layer 22, acetate fiber layer 23 and Velcro layer 24 are bonded together, and then dried and baked. Insect-repellent component 2 is attached to the outside of the prepared fabric.

[0030] 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. A moisture-wicking, quick-drying, and breathable summer uniform fabric, comprising a uniform fabric body (1), characterized in that: The uniform fabric body (1) has several insect-proof components (2) attached to its surface. The uniform fabric body (1) includes a first moisture-wicking component (3), a second moisture-wicking component (4), an antibacterial component (5), and a quick-drying component (6). The bottom end of the first moisture-wicking component (3) is fixedly connected to the top end of the second moisture-wicking component (4), the bottom end of the second moisture-wicking component (4) is fixedly connected to the top end of the antibacterial component (5), and the bottom end of the antibacterial component (5) is fixedly connected to the top end of the quick-drying component (6). The antibacterial component (5) includes several Ula grass fiber strips (51), several cotton fiber strips (52), and several A number of irregularly shaped polyester fiber strips (53), several Ula grass fiber strips (51), several cotton fiber strips (52) and several irregularly shaped polyester fiber strips (53) are woven together. The insect-proof component (2) includes a graphene functional fiber layer (21), a mulberry silk layer (22), an acetate fiber layer (23) and a Velcro layer (24). The bottom end of the graphene functional fiber layer (21) is fixedly connected to the top end of the mulberry silk layer (22). The bottom end of the mulberry silk layer (22) is fixedly connected to the top end of the acetate fiber layer (23). The bottom end of the acetate fiber layer (23) is bonded to the top end of the Velcro layer (24).

2. The moisture-wicking, quick-drying, and breathable summer uniform fabric according to claim 1, characterized in that: The bottom end of the Velcro layer (24) is attached to the first sweat-wicking component (3).

3. The moisture-wicking, quick-drying, and breathable summer uniform fabric according to claim 1, characterized in that: The quick-drying component (6) includes a flax layer (61), a cotton layer (62), and a ramie fiber layer (63). The bottom end of the flax layer (61) is fixedly connected to the top end of the cotton layer (62), the bottom end of the cotton layer (62) is fixedly connected to the top end of the ramie fiber layer (63), and the top end of the flax layer (61) is fixedly connected to the antibacterial component (5).

4. The moisture-wicking, quick-drying, and breathable summer uniform fabric according to claim 1, characterized in that: The top ends of several Ula grass fiber strips (51), several cotton fiber strips (52), and several irregular polyester fiber strips (53) are all connected to the second wicking component (4), and the bottom ends of several Ula grass fiber strips (51), several cotton fiber strips (52), and several irregular polyester fiber strips (53) are all connected to the quick-drying component (6).

5. The moisture-wicking, quick-drying, and breathable summer uniform fabric according to claim 1, characterized in that: The first moisture-wicking component (3) includes a Solona fabric layer (31), a cupro cotton layer (32), and an ice ion fiber fabric layer (33). The bottom end of the Solona fabric layer (31) is fixedly connected to the top end of the cupro cotton layer (32), the bottom end of the cupro cotton layer (32) is fixedly connected to the top end of the ice ion fiber fabric layer (33), and the bottom end of the ice ion fiber fabric layer (33) is fixedly connected to the second moisture-wicking component (4).

6. The moisture-wicking, quick-drying, and breathable summer uniform fabric according to claim 1, characterized in that: The second wicking component (4) includes a liquid ammonia cotton fabric layer (41), an ice silk fabric layer (42), a silk fabric layer (43), a modal fabric layer (44), and a mercerized cotton layer (45). The bottom end of the liquid ammonia cotton fabric layer (41) is fixedly connected to the top end of the ice silk fabric layer (42), the bottom end of the ice silk fabric layer (42) is fixedly connected to the top end of the silk fabric layer (43), the bottom end of the silk fabric layer (43) is fixedly connected to the top end of the modal fabric layer (44), and the bottom end of the modal fabric layer (44) is fixedly connected to the top end of the mercerized cotton layer (45).

7. The moisture-wicking, quick-drying, and breathable summer uniform fabric according to claim 6, characterized in that: The bottom end of the mercerized cotton layer (45) is fixedly connected to the antibacterial component (5), and the top end of the liquid ammonia cotton fabric layer (41) is fixedly connected to the first perspiration wicking component (3).

8. A method for preparing a moisture-wicking, quick-drying, and breathable summer uniform fabric according to any one of claims 1-7, characterized in that, Includes the following steps: Step 1: Preparation of the first perspiration component (3): The Solona fabric layer (31), the cupro cotton layer (32) and the ice ion fiber fabric layer (33) are bonded together, and then dried and baked. Step 2, Preparation of the second perspiration component (4): The liquid ammonia cotton fabric layer (41), ice silk fabric layer (42), silk fabric layer (43), modal fabric layer (44) and mercerized cotton layer (45) are bonded together, and then dried and baked. Step 3, Preparation of antibacterial components (5): Blend Ula grass fiber strips (51) and cotton fiber strips (52) to obtain blended yarn, and then weave to obtain a hydrophilic inner layer. Blend irregular polyester fiber strips (53) and then weave to form an outer layer. Combine the hydrophilic inner layer and the outer layer by bonding, and then dry and bake. Step 4, Preparation of quick-drying components (6): The flax layer (61), cotton layer (62) and ramie fiber layer (63) are bonded together, and then dried and baked; Step 5, Fabric pressing: Press the prepared first moisture-wicking component (3), second moisture-wicking component (4), antibacterial component (5) and quick-drying component (6) together in sequence; Step 6, Preparation of insect-proof components (2): The graphene functional fiber layer (21), mulberry silk layer (22), acetate fiber layer (23) and Velcro layer (24) are bonded together, and then dried and baked. Step 7, attaching insect-repellent components (2): attach insect-repellent components (2) to the outside of the prepared fabric.