One-way moisture conducting fabric

CN224605174UActive Publication Date: 2026-08-07SHAOXING PENGYUE TEXTILE CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHAOXING PENGYUE TEXTILE CO LTD
Filing Date
2025-08-18
Publication Date
2026-08-07

AI Technical Summary

Technical Problem

[0002]现有单向导湿面料多依赖后整理涂层,但涂层的覆盖使面料整体的透气性降低

Benefits of technology

[0014] By using a trapezoidal area higher than the recessed area, the recessed area being at the same height as the first unit, the fourth unit higher than the third unit, and the base fabric area at the same height as the trapezoidal area, a three-dimensional structure with varying heights is created on the fabric surface. Furthermore, the trapezoidal area, base fabric area, and fourth unit are interwoven with hydrophobic yarns to form floats, preventing external moisture from seeping back while allowing moisture generated by the body to be expelled through the gaps between the floats. The raised trapezoidal area, fourth unit, and base fabric area reduce the direct contact area with the skin, increasing airflow and reducing stickiness. Meanwhile, the first unit, third unit, and recessed area are tightly interwoven with hydrophilic yarns. At the same density, the gaps between the yarns in the first unit, third unit, and recessed area are small, making it difficult for liquid water to penetrate directly. The height difference between these elements and the adjacent trapezoidal area, fourth unit, and base fabric area forms capillary channels, allowing moisture generated by the body to be quickly directed to the trapezoidal area, base fabric area, and fourth unit, and then expelled through these areas.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224605174U_ABST
    Figure CN224605174U_ABST
Patent Text Reader

Abstract

The utility model discloses a one -way moisture -conducting fabric, including base cloth area and first area, base cloth area and first area are along the alternate arrangement of fabric length direction, first area includes hexagonal area and rectangle area, and hexagonal area and rectangle area are along the alternate arrangement of fabric width direction, and hexagonal area includes first unit and second unit, and first unit is located at the periphery of second unit, and rectangle area includes third unit and fourth unit, and third unit is located at the periphery of fourth unit. The utility model discloses through the high and low three -dimensional structure of fabric surface formation, on the basis of fabric density layer, adopts the interweaving of hydrophobic yarn to form trapezoidal area, base cloth area and fourth unit organization outside moisture reverse osmosis through high simultaneously reduce and the direct contact area between skin, increase air circulation, and first unit, third unit and the plain weave interweave closely of recessed area and adopt hydrophilic yarn, and liquid water is not easy to penetrate directly, and the steam of human body is oriented trapezoidal area, base cloth area and fourth unit, and then discharge.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of textiles, and more specifically, to a unidirectional moisture-wicking fabric. Background Technology

[0002] Existing one-way moisture-wicking fabrics mostly rely on finishing coatings, but the coating reduces the overall breathability of the fabric. Utility Model Content

[0003] The purpose of this invention is to overcome the shortcomings of the prior art and provide a one-way moisture-wicking fabric. This fabric features a trapezoidal area higher than the recessed area, the recessed area at the same height as the first unit, the fourth unit higher than the third unit, and the base fabric area at the same height as the trapezoidal area. This creates a three-dimensional structure on the fabric surface. On top of the fabric density layer, hydrophobic yarns are interwoven to form the trapezoidal area, base fabric area, and fourth unit, preventing reverse penetration of external moisture. Simultaneously, the raised areas reduce the direct contact area between the trapezoidal area, base fabric area, fourth unit, and the skin, thereby increasing air circulation and reducing stickiness. Furthermore, the trapezoidal area, base fabric area, and fourth unit have longer yarn floats due to the twill weave, allowing water vapor generated by the human body to be discharged to the outside through the gaps between the floats. The first unit, third unit, and recessed area have a tight plain weave and use hydrophilic yarn, so the gaps between the yarns are small, making it difficult for liquid water to penetrate directly. However, because the hydrophilic yarns in the first area, third unit, and recessed area are tightly interwoven, capillary channels are formed, which can quickly guide water vapor generated by the human body to the trapezoidal area, base fabric area, and fourth unit, and then discharge the water vapor through the trapezoidal area, base fabric area, and fourth unit.

[0004] To achieve the above objectives, the present invention adopts the following technical solution: a unidirectional moisture-wicking fabric, comprising a base fabric area and a first area, wherein the base fabric area and the first area are arranged alternately along the length direction of the fabric, the first area comprises a hexagonal area and a rectangular area, wherein the hexagonal area and the rectangular area are arranged alternately along the width direction of the fabric, the hexagonal area comprises a first unit and a second unit, wherein the first unit is located outside the second unit, and the rectangular area comprises a third unit and a fourth unit, wherein the third unit is located outside the fourth unit.

[0005] The present invention is further configured such that, along the length of the fabric, in two adjacent groups of the first regions, the center of the hexagonal region in one group of the first regions is opposite to the center of the rectangular region in the other group of the first regions.

[0006] The present invention is further configured such that the second unit includes two symmetrically arranged trapezoidal regions and a recessed region located between the two trapezoidal regions.

[0007] The present invention is further configured such that the trapezoidal region is higher than the recessed region, the trapezoidal region is higher than the first unit, and the recessed region is at the same height as the first unit.

[0008] The present invention is further configured such that the fourth unit is higher than the third unit, the trapezoidal area is at the same height as the fourth unit, and the recessed area is at the same height as the third unit.

[0009] The present invention is further configured such that the two short sides of the rectangular region are connected to the straight sides of the hexagonal region.

[0010] The present invention is further configured such that the fabric is woven with 72 warp yarns and 98 weft yarns in one weave cycle, and 29 warp yarns and 49 weft yarns are woven to form the hexagonal area, wherein 27 warp yarns and 45 weft yarns are woven to form the second unit.

[0011] The present invention is further configured such that 43 warp yarns and 21 weft yarns interweave to form the rectangular area, wherein 41 warp yarns and 19 weft yarns interweave to form the fourth unit.

[0012] The present invention is further configured such that the trapezoidal area, the fourth unit and the base fabric area are formed by twill weave, and the recessed area, the first unit and the third unit are formed by plain weave.

[0013] In summary, this utility model has the following beneficial effects:

[0014] By using a trapezoidal area higher than the recessed area, the recessed area being at the same height as the first unit, the fourth unit higher than the third unit, and the base fabric area at the same height as the trapezoidal area, a three-dimensional structure with varying heights is created on the fabric surface. Furthermore, the trapezoidal area, base fabric area, and fourth unit are interwoven with hydrophobic yarns to form floats, preventing external moisture from seeping back while allowing moisture generated by the body to be expelled through the gaps between the floats. The raised trapezoidal area, fourth unit, and base fabric area reduce the direct contact area with the skin, increasing airflow and reducing stickiness. Meanwhile, the first unit, third unit, and recessed area are tightly interwoven with hydrophilic yarns. At the same density, the gaps between the yarns in the first unit, third unit, and recessed area are small, making it difficult for liquid water to penetrate directly. The height difference between these elements and the adjacent trapezoidal area, fourth unit, and base fabric area forms capillary channels, allowing moisture generated by the body to be quickly directed to the trapezoidal area, base fabric area, and fourth unit, and then expelled through these areas. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the structure of a one-way moisture-wicking fabric in this embodiment;

[0016] Figure 2 for Figure 1A sectional view along the A-A direction;

[0017] Figure 3 for Figure 1 Enlarged view of point B in the middle;

[0018] Figure 4 This is a weave diagram of a unidirectional moisture-wicking fabric in this embodiment.

[0019] Reference numerals: base area 1, first region 2, hexagonal region 21, rectangular region 22, first unit 211, second unit 212, third unit 221, fourth unit 222, trapezoidal region 2121, recessed region 2122. Detailed Implementation

[0020] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0021] like Figure 1 — Figure 4As shown, this embodiment discloses a unidirectional moisture-wicking fabric. The warp yarns of the fabric are made of hydrophobic yarn, and the weft yarns are made of hydrophilic yarn. The fabric is woven with 72 warp yarns and 98 weft yarns in one weave cycle. In one weave cycle, within the interlacing range of the 1st to 72nd warp yarns and the 1st to 49th weft yarns, the 1st and 49th weft yarns interlace with the 15th warp yarn, the 2nd and 48th weft yarns interlace with the 14th to 16th warp yarns, the 3rd and 47th weft yarns interlace with the 13th to 17th warp yarns, the 4th and 46th weft yarns interlace with the 12th to 18th warp yarns, the 5th and 45th weft yarns interlace with the 11th to 19th warp yarns, the 6th and 44th weft yarns interlace with the 10th to 20th warp yarns, and the 7th weft yarn interlaces with the 15th warp yarn. The 43rd weft yarn interweaves with the 9th-21st warp yarns; the 8th and 42nd weft yarns interweave with the 8th-22nd warp yarns; the 9th and 41st weft yarns interweave with the 7th-23rd warp yarns; the 10th and 40th weft yarns interweave with the 6th-24th warp yarns; the 11th and 39th weft yarns interweave with the 5th-25th warp yarns; the 12th and 38th weft yarns interweave with the 4th-26th warp yarns; the 13th and 37th weft yarns interweave with the 3rd-27th warp yarns; the 14th and 36th weft yarns interweave with the 2nd-28th warp yarns; and the 15th-35th weft yarns interweave with the 1st-72nd warp yarns to form the first region 2. The remaining warp yarns interweave with the remaining weft yarns to form the base fabric region 1. The 1st-72nd warp yarns interweave with the 50th warp yarn... Within the interlacing range of weft yarns —98, weft yarns 50 and 98 interlace with warp yarn 52; weft yarns 51 and 97 interlace with warp yarns 51-53; weft yarns 52 and 96 interlace with warp yarns 50-54; weft yarns 53 and 95 interlace with warp yarns 49-55; weft yarns 54 and 94 interlace with warp yarns 48-56; weft yarns 55 and 93 interlace with warp yarns 47-57; weft yarns 56 and 92 interlace with warp yarns 46-58; weft yarns 57 and 91 interlace with warp yarns 45-59; weft yarns 58 and 90 interlace with warp yarns 44-60; weft yarns 59 and 89 interlace... The yarns interweave with warp yarns 43-61, weft yarns 60 and 88 interweave with warp yarns 42-62, weft yarns 61 and 87 interweave with warp yarns 41-63, weft yarns 62 and 86 interweave with warp yarns 40-64, weft yarns 63 and 85 interweave with warp yarns 39-65, and weft yarns 64-84 interweave with weft yarns 1-72 to form the first region 2. The remaining warp yarns interweave with the remaining weft yarns to form the base fabric region 1. Therefore, the fabric includes the base fabric region 1 and the first region 2. Since the base fabric region 1 and the first region 2 are interwoven with the same warp yarns, the base fabric region 1 and the first region 2 are arranged alternately along the length of the fabric, and the base fabric region 1 is formed by twill weave.

[0022] Within the area 2 formed by the interlacing of warp yarns 1-72 and weft yarns 1-49, the following interlacing patterns occur: weft yarn 1 and weft yarn 49 interlac with warp yarn 15; weft yarn 2 and weft yarn 48 interlac with warp yarns 14-16; weft yarn 3 and weft yarn 47 interlac with warp yarns 13-17; weft yarn 4 and weft yarn 46 interlac with warp yarns 12-18; weft yarn 5 and weft yarn 45 interlac with warp yarns 11-19; weft yarn 6 and weft yarn 44 interlac with warp yarns 10-20; weft yarn 7 and weft yarn 43 interlac with warp yarns 9-21; weft yarn 8 and weft yarn 42 interlac with warp yarns 8-22; weft yarn 9 and weft yarn 41 interlac with warp yarns 7-23; weft yarn 10 and weft yarn 40 interlac with warp yarns 6-24; and weft yarn 11 interlac with warp yarn 49. The 39th weft yarn interweaves with the 5th-25th warp yarns; the 12th and 38th weft yarns interweave with the 4th-26th warp yarns; the 13th and 37th weft yarns interweave with the 3rd-27th warp yarns; the 14th and 36th weft yarns interweave with the 2nd-28th warp yarns; the 15th-35th weft yarns interweave with the 1st-29th warp yarns to form a hexagonal area 21; the 15th-35th weft yarns interweave with the 30th-72nd warp yarns to form a rectangular area 22; within the first area 2 formed by the interweaving of the 1st-72nd warp yarns and the 50th-98th weft yarns, the 50th and 98th weft yarns interweave with the 52nd warp yarn; the 51st and 97th weft yarns interweave with the 51st-53rd warp yarns; the 52nd and 96th weft yarns interweave with the 50th-54th warp yarns; and the 53rd and 95th weft yarns interweave with... Warp yarns 49-55 interweave; weft yarns 54 and 94 interweave with warp yarns 48-56; weft yarns 55 and 93 interweave with warp yarns 47-57; weft yarns 56 and 92 interweave with warp yarns 46-58; weft yarns 57 and 91 interweave with warp yarns 45-59; weft yarns 58 and 90 interweave with warp yarns 44-60; weft yarns 59 and 89 interweave with warp yarns 43-61; weft yarns 60 and 88 interweave with warp yarns 42-62; weft yarns 61 and 87 interweave with warp yarns 41-63; weft yarns 62 and 86 interweave with warp yarns 40-64; weft yarns 63 and 85 interweave with warp yarns 39-65; weft yarns 64-84 interweave with... Warp yarns 38-66 interweave to form a hexagonal area 21, and weft yarns 64-84 interweave with warp yarns 1-37 and 67-72 to form a rectangular area 22. Therefore, the first region 2 includes hexagonal area 21 and rectangular area 22. Because hexagonal area 21 and rectangular area use the same weft yarns and different warp yarns for interweaving, hexagonal area 21 and rectangular area 22 are arranged alternately along the fabric width. Hexagonal area 21 is formed by 29 warp yarns and 49 weft yarns, and rectangular area 22 is formed by 43 warp yarns and 21 weft yarns. The two short sides of rectangular area 22 are located on one side of the straight side of hexagonal area 21. Therefore, the two short sides of rectangular area 22 are connected to the straight side of hexagonal area 21, because within the interweaving range of warp yarns 1-72 and weft yarns 1-49...The center of hexagonal region 21 is located at the 15th warp yarn, and the center of rectangular region 22 is located at the 52nd warp yarn. Within the interlacing range of warp yarns 1-72 and weft yarns 50-98, the center of rectangular region 22 is located at the 15th warp yarn, and the center of hexagonal region 21 is located at the 52nd warp yarn. Therefore, along the fabric length, in two adjacent sets of first regions 2, the center of hexagonal region 21 in one set of first regions 2 is opposite to the center of rectangular region 22 in the other set of first regions 2, thereby increasing the structural stability of the fabric and giving it better continuity and consistent physical properties along its length.

[0023] Taking the hexagonal region 21 within the interlacing range of warp yarns 1-72 and weft yarns 1-49 as an example, the 1st and 49th weft yarns interlace with the 15th warp yarn; the 2nd and 48th weft yarns interlace with the 14th-16th warp yarns; the 3rd and 47th weft yarns interlace with the 13th, 14th, 16th, and 17th warp yarns; the 4th and 46th weft yarns interlace with the 12th, 13th, 17th, and 18th warp yarns; the 5th and 45th weft yarns interlace with the 11th, 12th, 18th, and 19th warp yarns; the 6th and 44th weft yarns interlace with the 10th, 11th, 19th, and 20th warp yarns; the 7th and 43rd weft yarns interlace with the 9th, 10th, 20th, and 21st warp yarns; the 8th and 42nd weft yarns interlace with the 8th, 9th, 21st, and 22nd warp yarns; and the 9th weft yarn... The 41st weft yarn interweaves with the 7th, 8th, 22nd, and 23rd warp yarns; the 10th and 40th weft yarns interweave with the 6th, 7th, 23rd, and 24th warp yarns; the 11th and 39th weft yarns interweave with the 5th, 6th, 24th, and 25th warp yarns; the 12th and 38th weft yarns interweave with the 4th, 5th, 25th, and 26th warp yarns; the 13th and 37th weft yarns interweave with the 3rd, 4th, 26th, and 27th warp yarns; the 14th and 36th weft yarns interweave with the 2nd, 3rd, 27th, and 28th warp yarns; the 15th-35th weft yarns interweave with the 1st and 29th warp yarns to form the first unit 211; the 3rd and 47th weft yarns interweave with the 15th warp yarn; the 4th and 46th weft yarns interweave with the 14th-16th warp yarns; and the 5th and 45th weft yarns interweave with the 13th-17th warp yarns. The yarns interweave as follows: the 6th and 44th weft yarns interweave with the 12th-18th warp yarns; the 7th and 43rd weft yarns interweave with the 11th-19th warp yarns; the 8th and 42nd weft yarns interweave with the 10th-20th warp yarns; the 9th and 41st weft yarns interweave with the 9th-21st warp yarns; the 10th and 40th weft yarns interweave with the 8th-22nd warp yarns; the 11th and 39th weft yarns interweave with the 7th-23rd warp yarns; the 12th and 38th weft yarns interweave with the 6th-24th warp yarns; the 13th and 37th weft yarns interweave with the 5th-25th warp yarns; the 14th and 36th weft yarns interweave with the 4th-26th warp yarns; and the 15th-35th weft yarns interweave with the 2nd-28th warp yarns to form the second unit 212. Therefore, the hexagonal region 21 includes the first unit 2. Unit 11 and the second unit 212 are interwoven with 27 warp yarns and 45 weft yarns to form the second unit 212. The first unit 211 is located on the periphery of the second unit 212. The first unit 211 is plain weave, while the second unit 212 is a combination of twill weave and plain weave. The number of warp and weft yarns interwoven in the second unit 212 is greater than that in the first unit 211. Therefore, the twill area of ​​the second unit 212 is higher than that of the first unit 211, and the plain weave area of ​​the second unit 212 is at the same height as the first unit 211. This creates a high-low three-dimensional structure on the surface of the hexagonal area 21, thereby reducing the direct contact area between the second unit 212 and the human body, increasing the air circulation of the second unit 212, and increasing the breathability of the fabric.

[0024] The interlacing of the 3rd and 47th weft yarns with the 15th warp yarn; the interlacing of the 4th and 46th weft yarns with the 14th-16th warp yarns; the interlacing of the 5th and 45th weft yarns with the 13th-17th warp yarns; the interlacing of the 6th and 44th weft yarns with the 12th-18th warp yarns; the interlacing of the 7th and 43rd weft yarns with the 11th-19th warp yarns; the interlacing of the 8th and 42nd weft yarns with the 10th-20th warp yarns; the interlacing of the 9th and 41st weft yarns with the 9th-21st warp yarns; the interlacing of the 10th and 40th weft yarns with the 8th-22nd warp yarns; the interlacing of the 11th and 39th weft yarns with the 7th-23rd warp yarns; the interlacing of the 12th and 38th weft yarns with the 6th-24th warp yarns; and the interlacing of the 13th and 37th weft yarns with the 15th warp yarn; In the second unit 212, formed by the interlacing of warp yarns 5-25, weft yarns 14 and 36 interlacing with warp yarns 4-26, and weft yarns 15-35 interlacing with warp yarns 2-28, the interlacing of warp yarns 3-14 and 16-28 with weft yarns is twill weave. The number of interlacing ends of warp yarns 3-14 increases with the warp yarn position, while the number of interlacing ends of warp yarns 16-28 decreases with the warp yarn position. Therefore, the interlacing of warp yarns 3-14 and 16-28 is symmetrical. The interlacing of warp yarn 15 is plain weave, and with warp yarn 15 as the center, the interlacing of warp yarns 3-14 forms a trapezoidal area 2121. The interlacing of warp yarns 16-28... The warp and weft interweave to form a trapezoidal area 2121, and the two trapezoidal areas 2121 are symmetrically arranged. The 15th warp and weft interweave to form a recessed area 2122. Therefore, the second unit 212 includes two symmetrically arranged trapezoidal areas 2121 and a recessed area 2122 located between the two trapezoidal areas 2121. The number of warp and weft interweaves in the recessed area 2122 is less than that in the trapezoidal area 2121. Therefore, the trapezoidal area 2121 is higher than the recessed area 2122, so that the second unit 212 forms a high-low three-dimensional structure inside. Combined with the overall structure of the hexagonal area 21, the hexagonal area 21 forms a high-low three-dimensional structure both inside and outside. The trapezoidal area 2121 uses a twill weave, and the recessed area 2122 uses a plain weave. Unit 211 is also plain weave, so the float length of trapezoidal area 2121 is longer than that of recessed area 2122 and first unit 211. Furthermore, the number of warp and weft yarns interlacing in trapezoidal area 2121 is greater than that in recessed area 2122 and first unit 211. Therefore, the gaps between the yarns in trapezoidal area 2121 allow moisture generated by the human body to easily penetrate, thereby increasing the breathability of the fabric. Also, because trapezoidal area 2121 is higher than recessed area 2122, the direct contact area between trapezoidal area 2121 and the human body is reduced, increasing the air circulation of trapezoidal area 2121 and further enhancing the breathability of the fabric. Meanwhile, the plain weave in recessed area 2122 makes the yarns interlaced tightly, making it difficult for liquid water to penetrate.

[0025] Taking the rectangular area 22 within the interlacing range of warp yarns 1-72 and weft yarns 1-49 as an example, warp yarns 30 and 72 interlac with weft yarns 15-35, warp yarns 31-71 interlac with weft yarns 15 and 35 to form the third unit 221, and warp yarns 31-71 interlac with weft yarns 16-34 to form the fourth unit 222. Therefore, the rectangular area 22 includes the third unit 221 and the fourth unit 222. The fourth unit 222 is formed by the interlacing of 41 warp yarns and 19 weft yarns, and the third unit 221 is located outside the fourth unit 222 because the 30 and 72 warp yarns and the 15-35 weft yarns of the third unit 221 interlac with a plain weave, and the 31-71 warp yarns and the 15-35 weft yarns interlac with a plain weave. The yarns are interwoven in a plain weave. The 31st to 71st warp yarns and the 16th to 34th weft yarns of the fourth unit 222 are interwoven in a twill weave. The number of warp and weft interlacing threads in the third unit 221 is less than that in the fourth unit 222. Therefore, the fourth unit 222 is higher than the third unit 221, which reduces the contact area between the fourth unit 222 and the human body, increases the air circulation of the fourth unit 222, and increases the breathability of the fabric. At the same time, the float length of the fourth unit 222 further conducts the water vapor generated by the human body to the outside through the gaps between the floats, thereby enhancing the breathability of the fabric. The third unit 221 adopts a plain weave, so the warp and weft yarns of the third unit 221 are tightly interwoven, making it difficult for liquid water to penetrate directly.

[0026] Because trapezoidal area 2121, fourth unit 222, and base fabric area 1 are formed using the same twill weave, but the twill is always a 3-up-1-down twill, the gap between the floats of trapezoidal area 2121, fourth unit 222, and base fabric area 1 will not be too large. Furthermore, the fabric warp yarns are hydrophobic, and the fabric weft yarns are hydrophilic. Since the floats of trapezoidal area 2121, fourth unit 222, and base fabric area 1 are warp floats, when water falls on the fabric surface, the water droplets will be prevented from reverse penetration by the hydrophobic yarns, while the trapezoidal area... The reverse floats of the shaped area 2121, the fourth unit 222, and the base fabric area 1 are weft floats. Therefore, moisture generated by the hydrophilic reverse side is wicked away from the outside through the reverse side, thus creating a one-way moisture-wicking fabric. The recessed area 2122, the first unit 211, and the third unit 221 are all formed by plain weave, and the fabric warp yarns are hydrophobic yarns while the weft yarns are hydrophilic yarns. Therefore, under tight weaving, the recessed area 2122, the first unit 211, and the third unit 221 prevent external moisture from penetrating back into the fabric. The number of warp and weft yarns interlacing in the recessed area 2122, the first unit 211, and the third unit 221 is small. Therefore, the hydrophilic yarns in the recessed area 2122, the first unit 211, and the third unit 221 form capillary channels on the reverse side of the fabric due to their tight interlacing. This allows moisture generated by the human body to be quickly guided to the trapezoidal area 2121, the base fabric area 1, and the fourth unit 222, and then expelled through the trapezoidal area 2121, the fourth unit 222, and the base fabric area 1. The fabric area 1 is at the same height as the base fabric area 1, the recessed area 2122 is at the same height as the third unit 221, the trapezoidal area 2121 is higher than the first unit 211, and the recessed area 2122 is at the same height as the first unit 211, thus forming a three-dimensional structure with varying heights. The trapezoidal area 2121, the fourth unit 222 and the base fabric area 1 are raised, reducing the direct contact area with the skin. In addition, the trapezoidal area 2121, the fourth unit 222 and the base fabric area 1 have a large number of interlaced warp and weft yarns, thereby increasing the air circulation over a large area and reducing the stickiness.

[0027] 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 by this utility model. 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 unidirectional moisture-wicking fabric, characterized in that, It includes a base fabric area (1) and a first region (2), the base fabric area (1) and the first region (2) are arranged alternately along the length of the fabric. The first region (2) includes a hexagonal region (21) and a rectangular region (22), the hexagonal region (21) and the rectangular region (22) are arranged alternately along the width of the fabric. The hexagonal region (21) includes a first unit (211) and a second unit (212), the first unit (211) is located outside the second unit (212). The rectangular region (22) includes a third unit (221) and a fourth unit (222), the third unit (221) is located outside the fourth unit (222).

2. The unidirectional moisture-wicking fabric according to claim 1, characterized in that, Along the length of the fabric, in two adjacent sets of the first region (2), the hexagonal area (21) in one set of the first region (2) is centered opposite to the rectangular area (22) in the other set of the first region (2).

3. The unidirectional moisture-wicking fabric according to claim 1, characterized in that, The second unit (212) includes two symmetrically arranged trapezoidal regions (2121) and a recessed region (2122) located between the two trapezoidal regions (2121).

4. The unidirectional moisture-wicking fabric according to claim 3, characterized in that, The trapezoidal region (2121) is higher than the recessed region (2122), the trapezoidal region (2121) is higher than the first unit (211), and the recessed region (2122) is at the same height as the first unit (211).

5. The unidirectional moisture-wicking fabric according to claim 3, characterized in that, The fourth unit (222) is higher than the third unit (221), the trapezoidal area (2121) is at the same height as the fourth unit (222), and the recessed area (2122) is at the same height as the third unit (221).

6. The unidirectional moisture-wicking fabric according to claim 1, characterized in that, The two short sides of the rectangular area (22) are connected to the straight sides of the hexagonal area (21).

7. The unidirectional moisture-wicking fabric according to claim 1, characterized in that, The fabric is woven with 72 warp yarns and 98 weft yarns in one weave cycle, and 29 warp yarns and 49 weft yarns are woven to form the hexagonal area (21), of which 27 warp yarns and 45 weft yarns are woven to form the second unit (212).

8. The unidirectional moisture-wicking fabric according to claim 1, characterized in that, The rectangular area (22) is formed by 43 warp yarns and 21 weft yarns interlacing, and the fourth unit (222) is formed by 41 warp yarns and 19 weft yarns interlacing.

9. A unidirectional moisture-wicking fabric according to claim 3, characterized in that, The trapezoidal area (2121), the fourth unit (222), and the base fabric area (1) are formed by twill weave, and the recessed area (2122), the first unit (211), and the third unit (221) are formed by plain weave.