Double-sided flannelette
By interweaving antibacterial and polyester yarns into double-sided fleece, antibacterial reverse fleece and short front fleece are formed, solving the antibacterial and wear problems of double-sided fleece and improving the antibacterial properties and service life of the fleece.
Patent Information
- Application Number
- CN202423036264.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-10
- Publication Date
- 2025-11-14
- Estimated Expiration
- 2034-12-10
AI Technical Summary
Existing double-sided fleece fabric is prone to bacterial growth on the skin surface, and polyester fibers do not have antibacterial properties, which increases the likelihood of bacterial growth. In addition, the fibers of polyester materials are easily worn.
The base layer is made of antibacterial yarn and polyester yarn interwoven together. The antibacterial yarn consists of a core layer and an outer layer. The core layer is made of twisted multi-strand polyester yarn, and the outer layer is made of polyester yarn and bamboo fiber yarn. The loops on the reverse side of the antibacterial yarn form antibacterial fluff, while the loops on the front side of the polyester yarn are short and few. The surface of the polyester fiber is smooth to reduce friction. The base yarn is made of twisted polyester fiber to enhance strength.
The antibacterial fleece inhibits the growth of bacteria on the skin, enhances the warmth and antibacterial properties of the fleece, reduces fleece wear, and improves the lifespan and safety of the fleece.
Smart Images

Figure CN223548201U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the textile field, and more specifically, to a double-sided fleece fabric. Background Technology
[0002] Double-sided fleece, as the name suggests, refers to fabric with pile on both sides. There are many ways to create pile on fabric, among which cut pile is one of the most common pile-raising processes. It involves cutting the pile to make the fabric surface covered with a smooth pile.
[0003] Double-sided fleece is widely used in our lives, including in our underwear. The fleece on the inside slows down the airflow between the skin and the fabric, allowing heat to be stored between the fleece fibers, ensuring the warmth of the garment. The fleece on the outside enhances the texture and feel of the garment. Currently, to ensure the overall strength of double-sided fleece, it is generally made of polyester. However, the skin surface is prone to sweat, and under the influence of moisture, bacteria can easily grow on the inner layer of the fabric. Since polyester fibers themselves do not have antibacterial properties, there is a high possibility of bacteria growing on the inner side of the fabric.
[0004] Therefore, a new solution is needed to address this problem. Utility Model Content
[0005] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide a double-sided fleece fabric.
[0006] The above-mentioned technical objective of this utility model is achieved through the following technical solution: a double-sided fleece fabric, comprising a base layer, the base layer being knitted from base yarn, with antibacterial and polyester yarns added to the base layer, the sinker arc position of the polyester yarn being pulled out and forming several front loops on the front side of the base layer, the sinker arc position of the antibacterial yarn being pulled out and forming several reverse loops on the reverse side of the base layer, the length of the front loops pulled out of the base layer being less than the length of the reverse loops pulled out of the base layer, the number of front loops on the base layer being less than the number of reverse loops on the base layer, and some of the front loops and some of the reverse loops being cut off and forming fleece on both sides of the base layer.
[0007] The present invention is further configured such that: the antibacterial yarn is added to each path of the base layer, and the amount of polyester yarn on the base layer is less than the amount of antibacterial yarn.
[0008] The present invention is further configured such that: the antibacterial yarn includes a core layer and an outer layer, the core layer is made of multiple strands of polyester filament twisted together, and the outer layer is composed of polyester filaments wound around the core layer and bamboo fiber yarn, wherein the diameter of the bamboo fiber yarn is larger than the diameter of the polyester filaments.
[0009] The present invention is further configured such that the winding direction of the polyester yarn in the core layer is opposite to the winding direction of the bamboo fiber yarn outside the core layer.
[0010] The present invention is further configured such that the diameter of the antibacterial yarn is greater than the diameter of the polyester yarn.
[0011] The present invention is further configured such that the base yarn is made of twisted polyester fiber.
[0012] In summary, this utility model has the following beneficial effects:
[0013] The reverse pile is for contact with the skin, while the front pile adds texture to the outer side of the fabric. The reverse pile is formed by cutting the pile with antibacterial yarn. Because the antibacterial yarn itself has antibacterial properties, the reverse pile formed by cutting the pile also has antibacterial properties, which can inhibit the growth of bacteria on the skin. The front pile loops are pulled out to a smaller length, making the front pile formed by cutting the pile shorter. In addition, the front pile is made of polyester material. The surface of polyester fibers is relatively smooth, and the exposed length is small, which reduces the coefficient of friction and friction area between the front pile and external objects, thereby reducing the probability of the front pile being worn away and ensuring the safety of the front pile. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the weaving structure of this utility model;
[0015] Figure 2 This is a schematic diagram of the antibacterial yarn in this utility model.
[0016] In the diagram: 1. Base yarn; 2. Antibacterial tufting yarn; 3. Polyester tufting yarn; 4. Front terry loop; 5. Back terry loop; 6. Polyester filament; 7. Bamboo fiber yarn. Detailed Implementation
[0017] The present invention will now be described in detail with reference to the accompanying drawings and embodiments.
[0018] Double-sided fleece, such as Figure 1As shown, the substrate includes a base layer knitted from a base yarn 1. Antibacterial yarn 2 and polyester yarn 3 are added to the base layer. The sinker arc of the polyester yarn 3 is pulled out to form several front loops 4 on the front side of the base layer. The sinker arc of the antibacterial yarn 2 is pulled out to form several back loops 5 on the back side of the base layer. The length of the front loops 4 pulled out of the base layer is less than the length of the back loops 5 pulled out. Some of the front loops 4 and some of the back loops 5 are cut, forming pile on both sides of the base layer. The back pile is used for contact with the skin. In terms of contact, the front pile enhances the texture of the outer side of the fabric, while the reverse pile is formed by cutting antibacterial yarn 2. Because antibacterial yarn 2 itself has antibacterial properties, the reverse pile formed by cutting also possesses antibacterial properties, inhibiting the growth of bacteria on the skin. Furthermore, through the combined action of the reverse loops 4 and the reverse pile, the warmth and moisture absorption of the base layer's reverse side are ensured. The front loops 4 are pulled out to a relatively small length, resulting in a shorter length of the front pile formed by cutting. The front pile is made of polyester material. The surface of polyester fiber is relatively smooth and the exposed length is small, which reduces the coefficient of friction and friction area between the front pile and external objects, thereby reducing the probability of the front pile being worn away and ensuring the safety of the front pile. The number of front pile loops 4 on the base layer is less than the number of reverse pile loops 5 on the base layer. The number of front pile loops 4 is less than the number of reverse pile loops 5, so after the pile on both sides of the base layer is cut, the number of front pile will be relatively less than the number of reverse pile. More reverse pile can ensure the warmth of the base layer. Less front pile can ensure that the front of the base layer is relatively smooth, further reducing the possibility of front pile falling off. The base yarn 1 is made of twisted polyester fiber. Polyester fiber has the characteristic of high strength, which ensures the overall strength of the base layer. The cross-section of polyester fiber is set in a polygonal shape. The surface structure of polygonal fiber has more friction than that of round fiber, so it can enhance the interlocking between fibers, reduce slippage, and at the same time make the friction coefficient of the base yarn 1 surface greater, ensuring the strength of the front pile root fixation.
[0019] like Figure 1 and Figure 2As shown, antibacterial yarn 2 is added to each row of the base layer. The amount of polyester yarn 3 on the base layer is less than the amount of antibacterial yarn 2. By reducing the amount of polyester yarn 3, the number of loops 4 on the front side of the base layer is reduced. Antibacterial yarn 2 includes a core layer and an outer layer. The core layer is made of multiple strands of polyester filament 6 twisted together. The outer layer consists of polyester filament 6 wrapped around the core layer and bamboo fiber yarn 7. The core layer is made of polyester filament 6 twisted together. Polyester filament 6 has high strength, which allows the reverse loops 5 to maintain high structural stability after being cut, making them less prone to breakage or deformation, thus helping the fabric maintain a longer service life. Bamboo fiber yarn 7 is made of bamboo fiber twisted together. Bamboo fiber has natural antibacterial properties, and the bamboo fiber is exposed on the surface of antibacterial yarn 2, making the reverse loops 5 more... The large antibacterial area ensures the antibacterial ability of the subsequent base layer reverse side. The diameter of bamboo fiber yarn 7 is larger than that of polyester yarn 6. This setting makes the exposed antibacterial area of antibacterial yarn 2 larger, further ensuring the antibacterial performance of the inner side of the base layer. The diameter of antibacterial yarn 2 is larger than that of polyester yarn 3. This setting makes the reverse loop 5 thicker than the front loop 4. After the reverse loop 5 is cut, the fluffiness of the pile will be better. The winding direction of polyester yarn 6 in the core layer is opposite to the direction of bamboo fiber yarn 7 winding outside the core layer. This setting can ensure the overall structural strength of antibacterial yarn 2, making the fibers more compact. After the pile is cut, the fibers and monofilaments will fluff up, further ensuring the fluffiness and softness of the pile.
[0020] 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 double-sided fleece fabric, characterized in that: The base layer is knitted from a base yarn (1). Antibacterial yarn (2) and polyester yarn (3) are added to the base layer. The sinker arc position of the polyester yarn (3) is pulled out and forms several front loops (4) on the front side of the base layer. The sinker arc position of the antibacterial yarn (2) is pulled out and forms several back loops (5) on the back side of the base layer. The length of the front loops (4) pulled out of the base layer is less than the length of the back loops (5) pulled out of the base layer. The number of front loops (4) on the base layer is less than the number of back loops (5) on the base layer. Some of the front loops (4) and some of the back loops (5) are cut off and form pile on both sides of the base layer.
2. The double-sided fleece fabric according to claim 1, characterized in that: The antibacterial yarn (2) is added to each path of the base layer, and the amount of polyester yarn (3) on the base layer is less than the amount of antibacterial yarn (2).
3. The double-sided fleece fabric according to claim 2, characterized in that: The antibacterial yarn (2) includes a core layer and an outer layer. The core layer is made of multiple strands of polyester filament (6) twisted together. The outer layer is composed of polyester filament (6) wrapped around the core layer and bamboo fiber yarn (7). The diameter of the bamboo fiber yarn (7) is larger than the diameter of the polyester filament (6).
4. The double-sided fleece fabric according to claim 3, characterized in that: The direction in which the polyester filament (6) is wound in the core layer is opposite to the direction in which the bamboo fiber yarn (7) is wound outside the core layer.
5. The double-sided fleece fabric according to claim 1, characterized in that: The diameter of the antibacterial yarn (2) is larger than the diameter of the polyester yarn (3).
6. The double-sided fleece fabric according to claim 5, characterized in that: The base yarn (1) is made of twisted polyester fibers.