An environmentally friendly knitted fabric with ice-skin smoothness
Patent Information
- Application Number
- CN202520709815.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-15
- Publication Date
- 2026-09-25
- Estimated Expiration
- 2035-04-15
AI Technical Summary
[0003]目前市面上的环保针织面料,虽在环保方面取得一定成果,采用了再生纤维、天然纤维等环保材料,降低了对环境的影响,然而,在透气性方面仍存在不足,部分环保针织面料因纤维结构或编织方式问题,空气流通受阻,导致穿着时闷热,尤其在高温或运动等人体产热较多的情况下,无法及时排出热量和湿气,严重影响穿着体验,例如,一些以天然棉纤维为主的环保针织面料,虽然吸湿性不错,但水分蒸发速度慢,湿气容易积聚在面料与皮肤之间 ,阻碍了空气的正常流通,在舒适性上,现有环保针织面料也有待提升,有的面料手感粗糙,与皮肤接触时产生不适感;有的缺乏弹性,限制身体活动,穿着不够自在,而且当人体出汗时,面料不能迅速吸湿并传导到外层挥发,使得衣物黏附在皮肤上,让人感觉难受,像一些再生纤维制成的环保针织面料,尽管具备环保优势,但在亲肤性和吸湿排汗的综合舒适性表现上,难以满足消费者日益增长的需求
[0014]本实用新型的有益效果是:本环保针织面料通过设置的吸汗冰肤凸起,能够在不影响使用者穿戴感受的同时,提高使用者穿戴的透气性以及爽肤性,且通过设置的厚面与薄面能够极大程度上提高面体的透气效果,同时通过抗磨静电层、除菌层、排汗层、透气层以及亲肤层组成能够极大程度上提高了使用者在穿戴本面体时的穿戴体验,且使穿戴者感受冰肤滑爽的穿戴效果,实用性强。
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Figure CN224796545U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of environmentally friendly knitted fabric technology, and in particular to an environmentally friendly knitted fabric that feels cool and smooth against the skin. Background Technology
[0002] In today's era that emphasizes environmental protection and quality of life, environmentally friendly knitted fabrics have been widely used and developed. Consumers not only expect fabrics to have environmental protection characteristics, but also have higher requirements for their breathability and comfort.
[0003] While current environmentally friendly knitted fabrics have achieved some success in environmental protection by using recycled and natural fibers and other eco-friendly materials to reduce their impact on the environment, they still have shortcomings in breathability. Some environmentally friendly knitted fabrics, due to fiber structure or weaving methods, have obstructed air circulation, resulting in stuffiness when worn, especially in high temperatures or during exercise when the body generates a lot of heat. They cannot expel heat and moisture in time, seriously affecting the wearing experience. For example, some environmentally friendly knitted fabrics made mainly of natural cotton fibers, although they have good moisture absorption, have a slow rate of moisture evaporation, and moisture tends to accumulate between the fabric and the skin, hindering normal air circulation. In terms of comfort, existing environmentally friendly knitted fabrics also need improvement. Some fabrics have a rough feel, causing discomfort when in contact with the skin; others lack elasticity, restricting body movement and making them less comfortable to wear. Moreover, when the body sweats, the fabric cannot quickly absorb moisture and conduct it to the outer layer for evaporation, causing the clothing to stick to the skin and feel uncomfortable. Some environmentally friendly knitted fabrics made of recycled fibers, despite their environmental advantages, still fail to meet the growing demands of consumers in terms of skin-friendliness and overall comfort in terms of moisture absorption and wicking.
[0004] Given the shortcomings of existing eco-friendly knitted fabrics in terms of breathability and comfort, it is essential to develop an eco-friendly knitted fabric that feels cool and smooth against the skin. Utility Model Content
[0005] To overcome the technical defects of existing technologies, this utility model provides an environmentally friendly knitted fabric that is cool and smooth to the skin. While meeting environmental protection requirements, it provides excellent breathability and a comfortable wearing experience, effectively solving the shortcomings of current products on the market and has broad market prospects and application value.
[0006] The technical solution adopted by this utility model is: an environmentally friendly knitted fabric that is cool and smooth to the skin, including a surface body. Several sweat-absorbing and skin-cooling protrusions are arranged along the intersection of warp and weft threads on the surface body. The surface body has a thick side and a thin side along its length direction. The thick side and the thin side are alternately connected. The surface body is composed of an anti-abrasion and anti-static layer, an antibacterial layer, a sweat-wicking layer, a breathable layer and a skin-friendly layer from the outermost to the innermost.
[0007] Preferably, in order to provide a cooling sensation when worn, the sweat-absorbing and skin-cooling protrusions are made of pure cotton threads and silk weft knitting.
[0008] Preferably, in order to improve the air permeability of the surface, the thickness of the thick surface is 0.8 mm and the thickness of the thin surface is 0.5 mm.
[0009] Preferably, in order to improve the wear resistance and antistatic properties of the surface, the wear-resistant and antistatic layer is woven from aramid yarns and antistatic polyester yarns.
[0010] Preferably, in order to give the surface a high degree of antibacterial properties, the antibacterial layer is woven from inorganic antibacterial polyester fiber yarn.
[0011] Preferably, in order to improve the perspiration-wicking properties of the surface, the perspiration-wicking layer is made of pure cotton.
[0012] Preferably, in order to improve the breathability of the surface, the breathable layer is made of a mixture of synthetic fibers and natural fibers. The synthetic fibers can be polyester or nylon, and the natural fibers can be cotton or wool.
[0013] Preferably, to increase the user's comfort, the skin-friendly layer is made of modal material.
[0014] The beneficial effects of this utility model are as follows: This environmentally friendly knitted fabric, through the design of sweat-absorbing and skin-cooling protrusions, can improve the breathability and skin-cooling properties of the wearer without affecting the user's wearing experience. Furthermore, the combination of thick and thin surfaces can greatly improve the breathability of the fabric. At the same time, the combination of anti-abrasion and anti-static layers, antibacterial layers, sweat-wicking layers, breathable layers, and skin-friendly layers can greatly enhance the user's wearing experience when wearing this fabric, and make the wearer feel a cool and smooth wearing effect. It is highly practical. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the surface structure of this utility model.
[0016] Figure 2 This is a schematic diagram of the overall structure of this utility model.
[0017] Figure 3 This is a schematic diagram of the distribution structure of the sweat-absorbing and skin-cooling protrusions of this utility model.
[0018] Figure 4 This is the left view of the surface of this utility model.
[0019] Explanation of reference numerals in the attached diagram: 1. Surface; 101. Anti-abrasion and anti-static layer; 102. Antibacterial layer; 103. Sweat-wicking layer; 104. Breathable layer; 105. Skin-friendly layer; 2. Sweat-absorbing and skin-cooling protrusions; 3. Thick surface; 4. Thin surface. Detailed Implementation
[0020] The following is in conjunction with the appendix Figures 1-4 Further explanation of this utility model: A cool and smooth environmentally friendly knitted fabric includes a body 1. Several sweat-absorbing and skin-cooling protrusions 2 are arranged along the intersection of warp and weft threads on the body 1. The body 1 has a thick surface 3 and a thin surface 4 along its length, which are alternately connected. The body 1 is composed of an anti-abrasion and anti-static layer 101, an antibacterial layer 102, a sweat-wicking layer 103, a breathable layer 104, and a skin-friendly layer 105 from the outermost to the innermost. This device can improve the wearer's wearing experience through the sweat-absorbing and skin-cooling protrusions 2 arranged along the intersection of warp and weft threads. At the same time, the thick surface 3 and the thin surface 4 can improve the breathability of the body 1 through the thin surface 4, thereby providing the user with a cool and smooth wearing experience in summer.
[0021] like Figure 3 As shown, the sweat-absorbing and skin-cooling protrusion 2 is made of pure cotton yarn and silk weft knitting. The sweat-absorbing and skin-cooling protrusion 2 is a unique fabric, which is woven from pure cotton yarn and silk through weft knitting technology. It combines the advantages of two natural fibers and performs well in terms of skin-friendliness, moisture absorption and breathability. Pure cotton yarn has good moisture absorption. Cotton fiber is a porous material with irregular internal molecular arrangement and is rich in a large number of hydrophilic structures, which can quickly absorb sweat from the skin surface and keep the skin dry. Cotton fiber is a poor conductor of heat. The inner cavity is filled with stagnant air, so it has good warmth retention and can provide warmth to the body in cold weather. Meanwhile, it is soft and comfortable, non-irritating to the skin, suitable for direct skin contact, and environmentally friendly and healthy. It is made entirely of natural cotton fibers without any added synthetic fibers or chemicals. The silk gives the fabric a unique texture; the silk fibers are smooth and delicate, soft and silky to the touch, and have excellent drape, giving a light and airy feel when worn, enhancing the wearing experience. Silk also has excellent breathability, allowing air to circulate freely in the fabric, which helps sweat evaporate quickly. It also has a certain degree of moisturizing properties, keeping the skin hydrated. In addition, silk itself has certain antibacterial properties, which can inhibit bacterial growth and reduce odor. By combining the two through weft knitting technology, the resulting sweat-absorbing and skin-cooling raised fabric has a unique surface texture. These raised structures not only increase the air circulation space between the fabric and the skin, which is conducive to heat dissipation and sweat evaporation, bringing a cool touch, but also add a three-dimensional and unique visual appeal to the fabric.
[0022] like Figure 4 As shown, the thickness of the thick surface 3 is 0.8mm, and the thickness of the thin surface 4 is 0.5mm. This design, which alternates between the thick surface 3 and the thin surface 4, gives the surface 1 high breathability and high comfort, thereby improving the wearer's wearing experience.
[0023] like Figure 1As shown, the anti-abrasion and antistatic layer 101 is woven from aramid yarn and antistatic polyester yarn. The aramid yarn itself has high strength and good toughness, and has strong wear resistance, which can resist friction and scratches from external objects and effectively extend the service life. The polyester yarn also has a certain degree of wear resistance. The combination of the two further improves the overall wear resistance effect, so that the anti-abrasion and antistatic layer 101 can maintain good integrity in various complex environments and usage conditions. The antistatic polyester yarn has good antistatic ability through special treatment, which can quickly conduct away the generated static electricity and prevent static electricity accumulation. In addition, it is interwoven with aramid yarn to form a more stable and efficient antistatic system, which can effectively avoid safety hazards such as sparks and electric shocks caused by static electricity.
[0024] like Figure 1 As shown, the antibacterial layer 102 is woven from inorganic antibacterial polyester fiber yarn and weft. Inorganic antibacterial polyester fiber is an antibacterial fiber produced by a blending method. First, a nano-layered silver-based antibacterial agent or an antibacterial masterbatch with a high content of silver-containing inorganic zeolite is prepared. A certain proportion of the antibacterial masterbatch is added during polyester fiber spinning. Through blending spinning, inorganic antibacterial polyester fiber is produced. In this fiber, the antibacterial agent is evenly distributed inside and on the surface of the polyester fiber. With the help of inorganic antibacterial components such as silver ions, it has an inhibitory and killing effect on various bacteria, fungi, and other microorganisms. The inorganic antibacterial components have high stability inside the polyester fiber and are not easily decomposed or ineffective due to external environmental factors such as temperature, humidity, and light. At the same time, the polyester fiber itself has good... The chemical stability and weather resistance of the antibacterial layer 102 enable it to maintain its antibacterial and physical properties over a long period of time under different usage environments. Polyester fiber has advantages such as high strength, good elasticity, wrinkle resistance and good shape retention. Inorganic antibacterial polyester fiber inherits these characteristics, so that the woven antibacterial layer 102 can maintain good durability, wrinkle resistance and dimensional stability while having antibacterial function. It is not easily deformed and can withstand various external forces during daily use and washing. The weft knitting process can control the pore size and distribution of the antibacterial layer 102, making it breathable and allowing air and water vapor to pass freely, so that the skin can "breathe" and stay dry and comfortable, without causing discomfort such as stuffiness or dampness due to wearing or use.
[0025] like Figure 1 As shown, the wicking layer 103 is made of pure cotton. The natural properties of pure cotton give it a strong ability to absorb sweat, quickly absorbing sweat from the skin into the fibers, keeping the skin dry, reducing the accumulation of sweat on the body surface, and avoiding discomfort caused by prolonged sweat retention. The special treatment process increases the gaps between the fibers, further improving the breathability of the fabric. Air can circulate freely in the fabric, helping the body dissipate heat, allowing the wearer to feel the flow of air while sweating, without feeling stuffy.
[0026] As shown in the figure, the breathable layer 104 is woven from a mixture of synthetic and natural fibers. The synthetic fibers can be polyester or nylon, and the natural fibers can be cotton or wool. Cotton fibers have a certain porosity, and the scaly structure of wool fibers can also form air channels, allowing air to circulate freely. Synthetic fibers such as polyester and nylon can further increase the air circulation channels through special fiber cross-section designs or weaving structures. The combination of the two gives the breathable layer 104 excellent overall breathability, enabling it to quickly expel moisture and heat, keeping the air fresh.
[0027] like Figure 1 As shown, the skin-friendly layer 105 is made of modal material. Modal fibers are extremely fine, the fabric is soft and smooth, with a touch comparable to silk. It does not irritate the skin and provides a comfortable experience, like a second skin. Its moisture absorption is 50% higher than that of cotton fibers, which can quickly absorb and release sweat and moisture from the body, keeping the skin dry. It has unique hydrophilicity, which can produce a super cooling sensation. It has good breathability and is beneficial to the body's physiological circulation.
[0028] The foregoing has shown and described the basic principles, main features, and advantages of this invention. Those skilled in the art should understand that this invention is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this invention. Various changes and modifications may be made to this invention without departing from its spirit and scope. All such changes and modifications fall within the scope of this invention as defined by the appended claims and their equivalents.
Claims
1. A skin-smooth and environmentally friendly knitted fabric, comprising a surface (1), characterized in that: The surface (1) has several sweat-absorbing and skin-cooling protrusions (2) arranged along the intersection of the warp and weft lines. The surface (1) has a thick surface (3) and a thin surface (4) arranged along its length direction. The thick surface (3) and the thin surface (4) are connected alternately. The surface (1) consists of an anti-abrasion static layer (101), an antibacterial layer (102), a sweat-wicking layer (103), a breathable layer (104), and a skin-friendly layer (105) from the outermost to the innermost.
2. The skin-smooth and environmentally friendly knitted fabric according to claim 1, characterized in that: The sweat-absorbing and skin-cooling protrusions (2) are made of pure cotton thread and silk weft knitting.
3. The skin-smooth and environmentally friendly knitted fabric according to claim 1, characterized in that: The thickness of the thick surface (3) is 0.8 mm, and the thickness of the thin surface (4) is 0.5 mm.
4. The skin-smooth and environmentally friendly knitted fabric according to claim 1, characterized in that: The anti-abrasion and antistatic layer (101) is made of aramid yarn and antistatic polyester yarn.
5. The skin-smooth and environmentally friendly knitted fabric according to claim 4, characterized in that: The antibacterial layer (102) is woven from inorganic antibacterial polyester fiber yarn.
6. The skin-smooth and environmentally friendly knitted fabric according to claim 5, characterized in that: The wicking layer (103) is made of pure cotton.
7. The skin-smooth and environmentally friendly knitted fabric according to claim 6, characterized in that: The breathable layer (104) is woven from synthetic and natural fibers.
8. The skin-smooth and environmentally friendly knitted fabric according to claim 1, characterized in that: The skin-friendly layer (105) is made of modal material.