Moisture absorption and sweat releasing fabric
By using different block structures formed by the interlacing of warp and weft yarns, the problem of insufficient breathability in sportswear fabrics is solved, achieving a balance between rapid moisture absorption and breathability, keeping the fabric dry.
Patent Information
- Application Number
- CN202520242501.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-17
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2035-02-17
AI Technical Summary
Existing sportswear fabrics have poor breathability and are difficult to maintain a good balance in the process of moisture absorption and perspiration.
Different sections are formed by interlacing warp and weft yarns, including plain weave raised structure, twill weave floating long yarn structure and diamond groove structure, which increases the moisture absorption surface area and breathability of the fabric. The combination of different sections improves moisture absorption and perspiration wicking.
It enables the fabric to quickly absorb and evaporate moisture during the moisture-wicking process, keeping the fabric dry and comfortable, and improving the balance between moisture absorption and breathability.
Smart Images

Figure CN223674844U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of fabric, more particularly to a moisture absorption and sweat releasing fabric. BACKGROUND
[0002] Most of the existing sports clothing fabric adopts plain weave interweaving, because the warp and weft yarns of plain weave interweave many times, the contact points between fibers are also many, so plain weave has a large moisture absorption surface area, but because the interweaving points of plain weave are many, the structure of plain weave fabric is relatively compact, so the air permeability of the fabric is relatively weak. SUMMARY
[0003] The utility model discloses a moisture absorption and sweat releasing fabric, which forms different blocks by interweaving warp and weft yarns, and makes the plain weave blocks form a convex structure under the condition that the structures of different blocks are different but the densities are the same, so that the plain weave, which originally has a large moisture absorption surface area, further increases the moisture absorption surface area of the fabric, so that the fabric can absorb sweat on the surface of the skin more quickly, and the plain weave convex structure promotes the free circulation of air inside and outside the fabric, thereby accelerating the evaporation of moisture, and the diagonal connection is adopted around the plain weave convex structure, because the diagonal weave is a float thread structure, and the float thread structure has a wicking effect, so that the fabric can quickly spread moisture along the fibers to the surface of the fabric after moisture absorption by the plain weave, so that the fabric realizes the balance of moisture absorption and sweat release, increases the diamond blocks, and the diamond blocks form a groove structure, so that the surface area is increased to quickly absorb and transport moisture, so that the fabric can maintain dryness.
[0004] In order to achieve the above-mentioned purpose, the utility model adopts the following technical scheme: a moisture absorption and sweat releasing fabric, comprising a first area, a second area and a third area, along the length direction of the fabric, the first area is connected with the third area, and the first area and the third area are alternately arranged, the first area and the third area form a group, along the width direction of the fabric, the first area, the third area and the second area in each group are connected, and the first area, the third area and the second area in each group are alternately arranged, the first area comprises a convex area and a first base cloth area, the convex area is a plain weave, the first base cloth area is a diagonal weave, the second area is a combination of plain weave and diagonal weave, and the third area is a diagonal weave.
[0005] The utility model further sets that the first area is a group with two first base cloth areas and one convex area, and the first base cloth areas are located on both sides of the convex area.
[0006] The utility model further sets up, the first base cloth area is higher than the convex area, the width of the convex area is 1-3 times of the width of the first base cloth area.
[0007] The utility model further sets up, the second area is rectangle, and the second area includes diamond area and second base cloth area, the diamond area is sequentially arranged along the length direction of the second area, two end points of the diamond area along the length direction are connected with adjacent diamond area, two end points of the diamond area along the width direction are connected with the long side of the rectangle of the second area, the rest area in the second area is all the second base cloth area.
[0008] The utility model further sets up, the diamond area includes diamond convex area and diamond interior, the diamond interior is surrounded by the diamond convex area, and the diamond convex area is higher than the diamond interior.
[0009] The utility model further sets up, the height of the diamond convex area is higher than the convex area.
[0010] The utility model further sets up, the fabric is with 42 warp yarns and 72 weft yarns for a cycle, the first area is 30 warp yarns and 60 weft yarns interweave and form, the second area is 12 warp yarns and 72 weft yarns interweave and form, the third area is 30 warp yarns and 12 weft yarns interweave and form.
[0011] The utility model further sets up, the first 1-30 warp yarns and the first 1-12 weft yarns interweave and form the third area, the first 1-30 warp yarns and the thirteenth 72 weft yarns interweave and form the first area, and the first 1-8, 23-30 warp yarns and the thirteenth 72 weft yarns interweave and form the first base cloth area, the ninth 22 warp yarns and the thirteenth 72 weft yarns interweave and form the convex area, the thirty-first 42 warp yarns and the first 72 weft yarns interweave and form the second area.
[0012] Summarized above, the utility model has following beneficial effects:
[0013] Through warp and weft yarn interweave and form different blocks, plain weave convex structure increases the moisture absorption surface area of fabric, thereby increasing the moisture absorption of fabric, and the diagonal block forms different wicking effect through different float length structure, thereby forming different rate of moisture evaporation, the diamond block forms the groove structure, increases the surface area of fabric, three blocks not only increase the moisture absorption of fabric through plain weave convex structure, simultaneously increase the air permeability of fabric through diagonal float length structure, and improve the moisture absorption and air permeability of fabric through the groove structure of diamond block, thereby make moisture distribution more uniform on the surface of fabric, and the evaporation of fabric is significantly increased, thereby accelerate the absorption and evaporation of moisture, make fabric reach good balance between moisture absorption and perspiration, thereby make human body keep dry and comfortable. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 is a structural schematic view of one kind of moisture absorption and perspiration fabric in the embodiment;
[0015] Figure 2 is Figure 1 is an enlarged view of C in the middle;
[0016] Figure 3 is Figure 1 is a sectional view in A-A direction;
[0017] Figure 4 is Figure 1 is a sectional view in B-B direction;
[0018] Figure 5 is a weave diagram of one kind of moisture absorption and perspiration fabric in the embodiment.
[0019] Reference signs: first area 100, first base cloth area 101, convex area 102, second area 200, diamond area 201, second base cloth area 202, diamond convex area 2011, diamond inner part 2012, third area 300. DETAILED DESCRIPTION
[0020] The technical scheme in the embodiments of the utility model will be described clearly and completely below in combination with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the ordinary skilled in the art without creative labor fall within the protection scope of the utility model.
[0021] As Figure 1 shown in Fig. 5, the embodiment discloses a moisture absorption and perspiration fabric, which comprises a first area 100, a second area 200 and a third area 300, the fabric is 42 warp yarns and 72 weft yarns for one cycle, the first area 100 is formed by 30 warp yarns and 60 weft yarns interweaving, in one weave cycle, the 1-30 warp yarns and the 13-72 weft yarns are interwoven to form the first area 100, and the first area 100 comprises a convex area 102 and a first base cloth area 101, referring to Figure 5, the first base cloth area 101 is formed by the first 1-8 and 23-30 warp yarns interlacing with the 13-72 weft yarns, and the raised area 200 is formed by the 9-22 warp yarns interlacing with the 13-72 weft yarns, so the first base cloth area 101 is formed by twill weave, and the raised area 102 is formed by plain weave, because the raised area 102 and the first base cloth area 101 have the same density, but because the float length of the first base cloth area 101 is three times of the interlacing points of the raised area 102, and because the warp and weft yarns of the raised area 102 interlace more times, the warp and weft yarns of the raised area 102 are extruded by the twill weave of the first base cloth area 101 and thus protrude, so the raised area 102 is higher than the first base cloth area 101, because the plain weave has the most interlacing points and the most contact points between fibers, but in this embodiment, the raised area 102 is formed by plain weave, and the raised area 102 is protruding, so the raised area 102 not only forms a certain space with the human body, but also increases the moisture absorption surface area of the raised area 102, so in the space, the moisture generated by the human body is automatically diffused and absorbed by the raised area 102, part of the moisture is evaporated due to the free flow of air inside and outside the space, and part of the moisture is absorbed by the plain weave, and because the raised area 102 is protruding and absorbs part of the total moisture, the moisture absorption limitation of the plain weave fabric due to the tightness of the structure is reduced, so that the moisture on the surface of the skin is absorbed more quickly.
[0022] Because the first area 100 has two first base cloth areas 101 and one raised area 102 as a group, and the first base cloth areas 101 are located on both sides of the raised area 102, and the first base cloth areas 101 are formed by twill weave, because the first base cloth areas 101 are formed by float length structure, and the raised area 102 is formed by interlacing points structure, and the two sides of the raised area 102 are the first base cloth areas 101, so when the raised area 102 absorbs moisture, the float length structure of the first base cloth areas 101 allows the moisture to diffuse along the fibers, because the float length structure of the first base cloth areas 101 is three times of the interlacing point structure of the raised area 102, so the fiber gap is relatively large due to the arrangement of the float length structure of the first base cloth areas 101, thus forming a certain channel, so when the raised area 102 is connected with the first base cloth areas 101, the moisture in the space formed between the raised area 102 and the human body is automatically diffused and absorbed by the fibers through the fiber gap, and quickly diffused to the surface of the fabric through the channel formed by the float length structure, thus improving the perspiration and ventilation of the fabric.
[0023] Because the raised area 102 is plain weave, and the count of the raised area 102 is 14 warp yarns and 60 weft yarns, and the count of the first base fabric area 101 is 8 warp yarns and 60 weft yarns, therefore the width of the raised area 102 is 1-3 times of the width of the first base fabric area 101, preferably, the width of the raised area 102 is 1.75 times of the width of the first base fabric area 101, because the raised area 102 has more yarn interlacing times, and the raised area 102 is higher than the first base fabric area 101, and the first base fabric area 101 has diagonal weave, and the float structure of the first base fabric area 101 is 3 times of the yarn interlacing points of the raised area 102, therefore the first base fabric area 101 reduces the contact area of the fiber with air or moisture, therefore the moisture absorption of the raised area 102 is higher than the first base fabric area 101, and the first base fabric area 101 has the channel formed by the arrangement of the fibers due to the influence of the float structure, therefore when the moisture is in the process of automatic diffusion, the space is formed between the raised area 102 and the human body, and part of the moisture is evaporated through the space, at the same time, the raised area 102 increases the height, thereby increasing the surface area of the raised area 102, thereby absorbing moisture through the raised area 102, because the raised area 102 and the first base fabric area 101 are interwoven by the same weft yarns from the 13th to the 72nd weft yarns, therefore the raised area 102 is on both sides of the same weft yarns, and the moisture of the raised area 102 is diffused to the first base fabric area 101 along the fibers by combining the float structure of the first base fabric area 101, and the float structure of the first base fabric area 101 makes the air inside and outside the fabric more free to flow, thereby accelerating the evaporation of moisture, therefore the balance of moisture absorption and breathable sweat releasing performance can be achieved, so that the fabric keeps the skin dry while quickly absorbing and transporting moisture.
[0024] The second area 200 is interwoven by 12 warp yarns and 72 weft yarns, and the 31st-42nd warp yarns and the 1st-72nd weft yarns are interwoven to form the second area 200, because the second area 200 is interwoven by the 1st-72nd weft yarns in one weave cycle, therefore the second area 200 is interwoven to form a rectangle, and referring to Figure 5In the second region 200, each warp yarn from the 32nd to the 42nd warp yarns interweaves with a weft yarn, including both plain and twill weave structures. Therefore, the second region 200 is a combination of plain and twill weave structures. The plain weave structures in the second region 200 interweave to form the second base fabric region 202, and the twill weave structures in the second region 200 interweave to form rhomboid regions 201. Therefore, the second region 200 includes rhomboid regions 201 and the second base fabric region 202. Because the rhomboid regions 201 are arranged sequentially along the length of the second region 200, and the two endpoints of the rhomboid regions 201 along the length direction are connected to adjacent rhomboid regions 201, and the two endpoints of the rhomboid regions 201 along the width direction are connected to the second region 200... The long sides of the rectangle are connected, and the remaining areas in the second region 200 are the second base fabric area 202. Therefore, the two sides of the second region 200 are the first base fabric area 101. Thus, the first base fabric area 101 is a twill weave. In the second region 200, the second base fabric area 202 is a plain weave, and the second base fabric area 202 is connected to the first base fabric area 101. Because the yarn interlacing point of the second base fabric area 202 is lower than the float yarn structure of the first base fabric area 101, the second base fabric area 202 does not need to form a protrusion to increase moisture absorption. As a result, the perspiration breathability of the first base fabric area 101 is greater than that of the second base fabric area 202, thereby improving the breathability of part of the second region 200.
[0025] Because the yarn interlacing of the second base fabric region 202 affects the floating long yarn structure of the rhomboid raised region 2011, at the same density, the second base fabric region 202, due to its tighter density, will compress and raise the floating long yarn structure of the rhomboid region 201. The remaining rhomboid regions 201 are flush with the second base fabric region 202. Therefore, the rhomboid region 201 includes the rhomboid raised region 2011 and the rhomboid interior 2012. The rhomboid interior 2012 is surrounded by the rhomboid raised region 2011, and the rhomboid raised region 2011 is higher than the rhomboid interior 2012 because of the circulation of the rhomboid raised region 2011. The ring area is smaller than the raised area 102, and the diamond-shaped raised area 2011 occupies less yarn. Therefore, when the float yarn structure of the diamond-shaped area 201 is squeezed, the height of the raised area formed by the squeezed diamond-shaped raised area 2011 is higher than that of the raised area 102. Thus, the diamond-shaped area 201 forms a groove structure. Therefore, the diamond-shaped area 201 increases the contact between moisture and the fabric, so that moisture can be absorbed by the yarn more effectively. At the same time, because of the float yarn structure inside the diamond-shaped area 201, moisture can be quickly evaporated and output, thereby keeping the human body dry and comfortable.
[0026] The third area 300 is formed by interweaving 30 warp yarns and 12 weft yarns, the first to 30th warp yarns and the first to 12th weft yarns are interwoven to form the third area 300, and the third area 300 is a twill weave because the warp-weft yarn ratio of the float yarns of the third area 300 is 2:2, while the float yarn structure in the first base cloth area 101 is 3:1, and the warp-weft interlacing points in the convex area 102 are 1:1, so that the float yarn structure of the third area 300 is shorter than that of the first base cloth area 101, and the float yarn structure of the third area 300 is twice the warp-weft interlacing point ratio in the convex area 102, and along the length direction of the fabric, the first area 100 and the third area 300 are connected, and the first area 100 and the third area 300 are arranged alternately, so that the third area 300 can provide assistance to the first area 100, and when the human body produces a large amount of water, the third area 300 can assist the convex area 102 to absorb moisture, and also can assist the sweat permeability of the first base cloth area 101, and reduce the limitations of fabric moisture absorption and perspiration.
[0027] The first area 100 and the third area 300 form a group, along the width direction of the fabric, the first area 100, the third area 300 and the second area 200 in each group are connected, and the first area 100, the third area 300 and the second area 200 in each group are arranged alternately, so that the three areas are connected with each other, and there are common warp yarns or weft yarns interwoven in the three areas, so that during high-intensity exercise, the common warp yarns or weft yarns in the three areas absorb and transport moisture along the fibers, so that the moisture in each of the three areas is not too saturated, and the sweat-permeable area can work continuously, so as to keep the human body dry and comfortable.
[0028] The above only describes the preferred embodiments of the present application, and the protection scope of the present application is not limited to the above-mentioned embodiments. Any technical solutions falling within the concept of the present application shall be within the protection scope of the present application. It should be noted that for ordinary technical personnel in the technical field, some improvements and decorations without departing from the principles of the present application shall be considered as the protection scope of the present application.
Claims
1. A moisture-wicking fabric, characterized in that, The fabric includes a first region (100), a second region (200), and a third region (300). Along the length of the fabric, the first region (100) and the third region (300) are connected, and the first region (100) and the third region (300) are arranged alternately. The first region (100) and the third region (300) form a group. Along the width of the fabric, the first region (100) and the third region (300) in each group are connected to the second region (200), and the first region (100) and the third region (300) in each group are arranged alternately. The first region (100) includes a raised area (102) and a first base fabric area (101). The raised area (102) is a plain weave, the first base fabric area (101) is a twill weave, the second region (200) is a combination of plain weave and twill weave, and the third region (300) is a twill weave.
2. The moisture-wicking fabric according to claim 1, characterized in that, The first region (100) consists of two first base fabric regions (101) and one raised region (102), with the first base fabric regions (101) located on both sides of the raised region (102).
3. The moisture-wicking fabric according to claim 1, characterized in that, The raised area (102) is higher than the first base fabric area (101), and the width of the raised area (102) is 1 to 3 times the width of the first base fabric area (101).
4. The moisture-wicking fabric according to claim 1, characterized in that, The second region (200) is rectangular, and the second region (200) includes a rhombus region (201) and a second base fabric region (202). The rhombus regions (201) are arranged sequentially along the length direction of the second region (200). The two endpoints of the rhombus regions (201) along the length direction are connected to the adjacent rhombus regions (201). The two endpoints of the rhombus regions (201) along the width direction are connected to the long side of the rectangle of the second region (200). The remaining regions in the second region (200) are all the second base fabric regions (202).
5. The moisture-wicking fabric according to claim 4, characterized in that, The rhomboid region (201) includes a rhomboid protrusion region (2011) and a rhomboid interior (2012), the rhomboid interior (2012) being surrounded by the rhomboid protrusion region (2011), and the rhomboid protrusion region (2011) being higher than the rhomboid interior (2012).
6. The moisture-wicking fabric according to claim 5, characterized in that, The height of the rhomboid protrusion area (2011) is higher than that of the protrusion area (102).
7. The moisture-wicking fabric according to claim 1, characterized in that, The fabric is formed by 42 warp yarns and 72 weft yarns in one cycle. The first region (100) is formed by 30 warp yarns and 60 weft yarns interwoven together. The second region (200) is formed by 12 warp yarns and 72 weft yarns interwoven together. The third region (300) is formed by 30 warp yarns and 12 weft yarns interwoven together.
8. The moisture-wicking fabric according to claim 7, characterized in that, The 1st to 30th warp yarns interweave with the 1st to 12th weft yarns to form the third region (300), the 1st to 30th warp yarns interweave with the 13th to 72nd weft yarns to form the first region (100), and the 1st to 8th and 23rd to 30th warp yarns interweave with the 13th to 72nd weft yarns to form the first base fabric region (101), the 9th to 22nd warp yarns interweave with the 13th to 72nd weft yarns to form the raised region (102), and the 31st to 42nd warp yarns interweave with the 1st to 72nd weft yarns to form the second region (200).