One-way moisture guiding sportswear
By designing a one-way guide wet sportswear, using three-layer structural fabric and breathable mesh, the existing sportswear has solved the problems of poor moisture conduction performance and insufficient breathability underarms, achieving higher dressing comfort and preventing odors.
Patent Information
- Application Number
- CN202421830955.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-31
- Publication Date
- 2025-06-03
- Estimated Expiration
- 2034-07-31
AI Technical Summary
The current sportswear has poor moisture conductivity, which makes it difficult to dissipate sweat, affects the comfort of clothing, and lacks breathability under the armpits, which makes it easy to produce odors.
A one-way guide wet sportswear is designed with a three-layer fabric design, in which the connecting layer allows sweat to be transmitted unidirectionally to the outer layer, a breathable mesh is provided at the underarm between the sleeves and the body, and a tight lining is sewn between the outer layer and the connecting layer to improve the moisture-guiding effect.
Improves the one-way guide wet performance of sportswear, keeps the skin dry, improves dressing comfort, and avoids odor generation by increasing underarm breathability.
Smart Images

Figure CN222929282U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of clothing, and particularly relates to a unidirectional moisture-conducting sportswear. Background Art
[0002] With the increase in outdoor sports, sportswear is widely loved by consumers due to its light weight, quick-drying, waterproof and other properties. Since it is necessary to prevent outdoor mosquitoes from biting and avoid being scratched easily during outdoor sports, sportswear is usually designed with long sleeves; at the same time, sportswear is usually designed with a double-layer fabric, that is, it includes an inner fabric and an outer fabric sewn together. However, this structural design has poor moisture-conducting performance, resulting in sweat being easily trapped on the skin during exercise, seriously affecting the comfort of wearing. At the same time, in areas prone to sweating, such as the armpits, its air permeability is poor, and it is easy to generate odors due to the growth of bacteria caused by sweat. Content of the Utility Model
[0003] Based on the above background, the purpose of the utility model is to provide a unidirectional moisture-conducting sportswear, which improves the unidirectional moisture-conducting performance, is convenient for keeping the skin dry, and improves the comfort of wearing; at the same time, it improves the air permeability at the armpits and avoids generating odors due to the growth of bacteria caused by sweat.
[0004] To achieve the above purpose, the utility model adopts the following technical solutions:
[0005] A unidirectional moisture-conducting sportswear, comprising: a clothes body, which is formed by superimposing and sewing an inner layer, a connecting layer and an outer layer, the connecting layer is configured to allow sweat to be unidirectionally transferred from the inner layer to the outer layer, the clothes body includes a body and two sleeves, the two sleeves are respectively connected to two shoulders of the body, and an opening is respectively formed between each sleeve and the body at the armpit; two breathable mesh fabrics, respectively covering the corresponding openings, and the breathable mesh fabrics are hermetically connected between the sleeves and the body.
[0006] Further, the connecting layer is a unidirectional moisture-conducting polyester layer, the inner layer is a cotton or bamboo fiber blended yarn layer, and the outer layer is a water-repellent polyester fiber layer.
[0007] Further, the connecting layer protrudes towards the inner layer and the outer layer respectively to correspondingly form a first convex part and a second convex part, a first concave part is formed on one side of the first convex part facing away from the outer layer, and a second concave part is formed on one side of the second convex part facing away from the inner layer.
[0008] Further, the body includes a front piece and a back piece sewn together, each sleeve is connected between the front piece and the back piece, and the opening is formed among the three, and the breathable mesh fabric is connected between the front piece, the back piece and the sleeve and covers the opening.
[0009] Further, it further includes a tightening inner lining sewn between the outer layer and the connection layer; the tightening inner lining includes a binding layer, a first sweat-absorbing layer, a second sweat-absorbing layer, a first elastic band connecting the first sweat-absorbing layer and the binding layer, and a second elastic band connecting the second sweat-absorbing layer and the binding layer. Both the first sweat-absorbing layer and the second sweat-absorbing layer are sewn between the connection layer and the outer layer of the front piece, the binding layer is sewn between the connection layer and the outer layer of the rear piece, and the first sweat-absorbing layer and the second sweat-absorbing layer are detachably connected.
[0010] Further, the tightening inner lining further includes a first snap band and a second snap band that are snap-connected to each other. Two through-holes are spacedly provided on the outer layer of the front piece. The first snap band is connected to the first sweat-absorbing layer, the second snap band is connected to the second sweat-absorbing layer, and the first snap band and the second snap band respectively pass through the corresponding through-holes.
[0011] Further, a plurality of ventilation holes are provided through the binding layer along its thickness direction.
[0012] Further, a plurality of moisture-conducting ridges are provided on one side surface of the binding layer facing the connection layer. All the moisture-conducting ridges are spacedly distributed along the width direction of the binding layer, and each moisture-conducting ridge extends along the length direction of the binding layer. The ventilation holes are provided between every two adjacent moisture-conducting ridges.
[0013] Further, it further includes a first elastic adjustment band and a second elastic adjustment band. The clothing body further includes a cap and a collar connected to the body of the clothing. The first elastic adjustment band is provided at the cap opening of the cap and collar, and the second elastic adjustment band is provided at the cuff of the sleeve.
[0014] The utility model has the following beneficial effects:
[0015] (1) When designing the structure of the sportswear, the clothing body is formed by superimposing and sewing three layers of structures. At the same time, the connection layer is designed into a structure that allows sweat to be unidirectionally transferred from the inner layer to the outer layer. In this way, the sweat generated by the user during exercise can easily be unidirectionally transferred from the inner layer to the outer layer, improving the unidirectional moisture-conducting performance, facilitating the maintenance of the skin dry, and improving the comfort of wearing. At the same time, a breathable mesh fabric is hermetically connected at the armpit between the sleeve and the body of the clothing. In this way, for the armpit that is prone to sweating, the breathable mesh fabric is provided to increase the ventilation and breathability at the armpit, and can effectively avoid generating peculiar smell due to the growth of bacteria caused by sweat.
[0016] (2) The connecting layer bulges on one side facing the inner layer and the outer layer respectively to correspondingly form a first convex part and a second convex part. In this way, during one-way moisture conduction, the sweat on the inner layer will be transferred to the connecting layer through the first convex part, and then transferred to the outer layer through the second convex part, achieving effective moisture conduction. At the same time, since a first concave part and a second concave part are respectively provided on the back surfaces of the first convex part and the second convex part, the connecting layer presents a wavy structure, increasing the fluffiness between the inner layer and the outer layer, and facilitating the improvement of the touch and wearing comfort of the sportswear.
[0017] (3) A tightening lining is sewn between the outer layer and the connecting layer. In this way, during exercise, the first sweat-absorbing layer and the second sweat-absorbing layer can be connected, so that the first sweat-absorbing layer, the second sweat-absorbing layer and the binding layer respectively press the connecting layer and the inner layer tightly against the user's skin under the action of the first elastic band and the second elastic band. This is not only conducive to the moisture conduction from the skin to the connecting layer, but also the user's muscles are in a tightened state under the action of the tightening lining, which is beneficial to improving the exercise effect. In addition, both the first sweat-absorbing layer and the second sweat-absorbing layer are arranged at the front piece, so that the sweat transferred to the connecting layer can be easily absorbed by the first sweat-absorbing layer and the second sweat-absorbing layer, improving the one-way moisture conduction effect and further enhancing the wearing comfort.
[0018] (4) A number of moisture-conducting convex strips are arranged on one side of the binding layer facing the connecting layer. In this way, on the premise of moisture conduction and tightening, the contact area between the binding layer and the connecting layer can be reduced, avoiding covering the user's skin through the connecting layer in a large area. At the same time, ventilation holes are arranged between adjacent moisture-conducting convex strips, increasing the ventilation performance while tightening. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the following drawings are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on the structures shown in these drawings.
[0020] Figure 1 It is a schematic front view structure diagram of the sportswear shown in an embodiment;
[0021] Figure 2 It is a schematic back view structure diagram of the sportswear shown in an embodiment;
[0022] Figure 3 It is a schematic structure diagram of the fabric of the clothing body shown in an embodiment;
[0023] Figure 4 It is a schematic front view structure diagram of the sportswear shown in another embodiment;
[0024] Figure 5 Schematic diagram of the back structure of the sportswear shown in another embodiment;
[0025] Figure 6 Structural sectional view of the binding layer shown in one embodiment;
[0026] Figure 7 Flow chart of the manufacture of the sportswear shown in one embodiment.
[0027] Explanation of the reference numerals in the drawings:
[0028] 100, sportswear; 10, clothing body; 1a, inner layer; 1b, connecting layer; 1b1, first convex part; 1b2, second convex part; 1b3, first concave part; 1b4, second concave part; 1c, outer layer; 11, body; 111, front piece; 112, back piece; 12, sleeves; 13, cap; 14, wearing opening; 141, covering piece; 20, breathable mesh; 30, tightening lining; 31, first sweat-absorbing layer; 32, second sweat-absorbing layer; 33, binding layer; 331, ventilation holes; 332, moisture-conducting convex strips; 34, first elastic band; 35, second elastic band; 36, first snap band; 37, second snap band; 40, first waterproof zipper; 50, second waterproof zipper; 60, first tightening adjustment band; 70, second tightening adjustment band.
[0029] The realization, functional features and advantages of the purpose of the present utility model will be further described in conjunction with the embodiments and with reference to the accompanying drawings. Specific embodiments
[0030] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without making creative efforts belong to the scope of protection of the present utility model.
[0031] It should be noted that all directional indications (such as up, down, left, right, front, back...) in the embodiments of the present utility model are only used to explain the relative positional relationship and movement conditions between components in a specific posture (as shown in the accompanying drawings). If the specific posture changes, the directional indications will also change accordingly.
[0032] In addition, in the present utility model, descriptions such as "first", "second", etc. are only for descriptive purposes and should not be construed as indicating or implying their relative importance or implicitly specifying the quantity of the indicated technical features. Thus, features defined with "first" and "second" may explicitly or implicitly include at least one such feature. In addition, the technical solutions between various embodiments may be combined with each other, but it must be based on the ability of those of ordinary skill in the art to implement. When the combination of technical solutions results in contradictions or cannot be implemented, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection required by the present utility model.
[0033] In one embodiment, please refer to Figures 1 to 6 , the present application provides a unidirectional moisture-permeable sportswear 100, including: a clothing body 10, which is formed by superimposing and sewing an inner layer 1a, a connecting layer 1b, and an outer layer 1c. The connecting layer 1b is configured to allow sweat to be unidirectionally transferred from the inner layer 1a to the outer layer 1c. The clothing body 10 includes a body 11 and two sleeves 12. The two sleeves 12 are respectively connected to two shoulders of the body 11, and openings are respectively formed at the armpits between each sleeve 12 and the body 11; two breathable mesh fabrics 20 respectively cover the corresponding openings, and the breathable mesh fabrics 20 are hermetically connected between the sleeves 12 and the body 11.
[0034] For the above-mentioned unidirectional moisture-permeable sportswear 100, when designing the structure of the sportswear 100, the clothing body 10 is formed by superimposing and sewing three layers, and at the same time, the connecting layer 1b is designed to have a structure that allows sweat to be unidirectionally transferred from the inner layer 1a to the outer layer 1c. In this way, the sweat generated by the user during exercise can easily be unidirectionally transferred from the inner layer 1a to the outer layer 1c, improving the unidirectional moisture-permeable performance, facilitating the maintenance of skin dryness, and enhancing the comfort of wearing. At the same time, breathable mesh fabrics 20 are hermetically connected at the armpits between the sleeves 12 and the body 11. Thus, for the armpits that are prone to sweating, the breathable mesh fabrics 20 are provided to increase the ventilation and breathability at the armpits, and can effectively avoid the generation of odors due to the growth of bacteria caused by sweat.
[0035] Further, the connecting layer 1b is a unidirectional moisture-permeable polyester layer, the inner layer 1a is a cotton or bamboo fiber blended yarn layer, and the outer layer 1c is a water-repellent polyester fiber layer.
[0036] It should be explained that the unidirectional moisture-permeable polyester layer refers to a structure that uses two fibers with different moisture absorption properties and adopts a unidirectional moisture-permeable method during the dyeing process to introduce moisture from one side, so that the fibers on that side absorb moisture while the other side remains dry. Since the specific material composition of the unidirectional moisture-permeable polyester layer is not the object of improvement in this embodiment, the specific material composition is not described in detail here and can be directly referred to the existing literature.
[0037] In one embodiment, please refer to Figure 3The connecting layer 1b protrudes towards the inner layer 1a and the outer layer 1c respectively, so as to correspondingly form a first convex part 1b1 and a second convex part 1b2. A first concave part 1b3 is formed on the side of the first convex part 1b1 facing away from the outer layer 1c, and a second concave part 1b4 is formed on the side of the second convex part 1b2 facing away from the inner layer 1a.
[0038] It can be seen that by making the connecting layer 1b protrude on the sides facing the inner layer 1a and the outer layer 1c respectively, so as to correspondingly form a first convex part 1b1 and a second convex part 1b2, in the one-way moisture conduction, the sweat on the inner layer 1a will be transferred to the connecting layer 1b through the first convex part 1b1; and then transferred to the outer layer 1c through the second convex part 1b2 to achieve effective moisture conduction. At the same time, since a first concave part 1b3 and a second concave part 1b4 are respectively provided on the back surfaces of the first convex part 1b1 and the second convex part 1b2, the connecting layer 1b presents a wavy structure, increasing the fluffiness between the inner layer 1a and the outer layer 1c, which is convenient for improving the touch feeling and wearing comfort of the sportswear 100.
[0039] In one embodiment, please refer to Figure 1 and Figure 2 , the body 11 includes a front piece 111 and a back piece 112 that are sewn to each other. Each sleeve 12 is connected between the front piece 111 and the back piece 112, and an opening is formed among the three. The breathable mesh 20 is connected between the front piece 111, the back piece 112 and the sleeves 12 and covers the opening. In this way, it is convenient to sew the breathable mesh 20 at the armpit of the body 11.
[0040] Furthermore, please refer to Figure 4 and Figure 5 , it further includes a tightening lining 30 sewn between the outer layer 1c and the connecting layer 1b; the tightening lining 30 includes a binding layer 33, a first sweat-absorbing layer 31, a second sweat-absorbing layer 32, a first elastic band 34 connecting the first sweat-absorbing layer 31 and the binding layer 33, and a second elastic band 35 connecting the second sweat-absorbing layer 32 and the binding layer 33. Both the first sweat-absorbing layer 31 and the second sweat-absorbing layer 32 are sewn between the connecting layer 1b and the outer layer 1c of the front piece 111, the binding layer 33 is sewn between the connecting layer 1b and the outer layer 1c of the back piece 112, and the first sweat-absorbing layer 31 and the second sweat-absorbing layer 32 are detachably connected.
[0041] It can be seen that a tightening lining 30 is sewn between the outer layer 1c and the connecting layer 1b. In this way, during exercise, the first sweat-absorbing layer 31 and the second sweat-absorbing layer 32 can be connected, so that the first sweat-absorbing layer 31, the second sweat-absorbing layer 32 and the binding layer 33, under the action of the first elastic band 34 and the second elastic band 35 respectively, tightly attach the connecting layer 1b and the inner layer 1a to the user's skin. This is not only conducive to the skin's moisture conduction to the connecting layer 1b; but also the user's muscles are in a tightened state under the action of the tightening lining 30, which is beneficial to improving the exercise effect. In addition, both the first sweat-absorbing layer 31 and the second sweat-absorbing layer 32 are arranged at the front piece 111, so that the sweat transferred to the connecting layer 1b can be easily absorbed by the first sweat-absorbing layer 31 and the second sweat-absorbing layer 32, improving the one-way moisture conduction effect and further enhancing the wearing comfort.
[0042] It should be noted that since the tightening lining 30 is sewn between the outer layer 1c and the connecting layer 1b, therefore Figure 4 and Figure 5 the tightening lining 30 shown in is represented by a dotted line.
[0043] Optionally, both the first sweat-absorbing layer 31 and the second sweat-absorbing layer 32 can be made of polyester or cotton.
[0044] Furthermore, the tightening lining 30 further includes a first snap band 36 and a second snap band 37 that are snap-connected to each other. Two through holes 14 are spaced apart on the outer layer 1c of the front piece 111. The first snap band 36 is connected to the first sweat-absorbing layer 31, the second snap band 37 is connected to the second sweat-absorbing layer 32, and the first snap band 36 and the second snap band 37 respectively pass through the corresponding through holes 14. In this way, through the first snap band 36 and the second snap band 37, it is convenient to separate or connect the first sweat-absorbing layer 31 and the second sweat-absorbing layer 32.
[0045] To prevent the through holes 14 from being directly exposed and ensure the integrity of the overall sportswear 100, a covering piece 141 can be provided on the through holes 14 to cover the through holes 14.
[0046] In one embodiment, a plurality of ventilation holes 331 are provided through the binding layer 33 along its thickness direction.
[0047] Further, please refer to Figure 5 and Figure 6, on the side of the binding layer 33 facing the connection layer 1b, there are several moisture-conducting convex strips 332. All the moisture-conducting convex strips 332 are spaced apart along the width direction of the binding layer 33, and each moisture-conducting convex strip 332 extends along the length direction of the binding layer 33. The ventilation holes 331 are arranged between every two adjacent moisture-conducting convex strips 332. It can be seen that by arranging several moisture-conducting convex strips 332 on the side of the binding layer 33 facing the connection layer 1b, on the premise of moisture conduction and tightening, the contact area between the binding layer 33 and the connection layer 1b can be reduced, avoiding covering the user's skin over a large area through the connection layer 1b. At the same time, by arranging the ventilation holes 331 between every two adjacent moisture-conducting convex strips 332, the air permeability can be increased while tightening.
[0048] In one embodiment, please refer to Figure 1 , it further includes a first tightening adjustment band 60 and a second tightening adjustment band 70. The clothing body 10 further includes a cap 13 connected to the body 11. The first tightening adjustment band 60 is arranged at the brim of the cap 13, and the second tightening adjustment band 70 is arranged at the cuffs of the sleeves 12.
[0049] In one embodiment, please refer to Figure 7 , the present application provides a method for manufacturing a unidirectional moisture-conducting sportswear, which is used to manufacture the above-mentioned unidirectional moisture-conducting sportswear 100. The method includes the following steps:
[0050] S10. Use a four-thread overlock sewing machine to splice the underarm parts of the front piece 111 and the back piece 112 to the breathable mesh cloth 20 respectively;
[0051] S20. Use a fully automatic open pocket machine to sew a pocket at the corresponding position of the front piece 111, and add a first waterproof zipper 40 to the pocket;
[0052] S30. Use a five-thread overlock sewing machine to sew the shoulder positions of the front piece 111 and the back piece 112;
[0053] S40. Use a four-thread overlock sewing machine to sew the sleeve cap positions of the sleeves 12 to the front piece 111, the back piece 112, and the breathable mesh cloth 20 respectively;
[0054] S50. Sew the second waterproof zipper 50 on the front door of the flatbed sewing machine.
[0055] The manufacturing method of the above-mentioned one-way moisture-conducting sportswear is used to manufacture the above-mentioned one-way moisture-conducting sportswear 100. Therefore, when designing the structure of the sportswear 100, the clothing body 10 is made by superimposing and sewing three layers of structures. At the same time, the connecting layer 1b is designed into a structure that allows sweat to be unidirectionally transferred from the inner layer 1a to the outer layer 1c. In this way, the sweat generated by the user during exercise can easily be unidirectionally transferred from the inner layer 1a to the outer layer 1c, improving the one-way moisture-conducting performance, facilitating the maintenance of dry skin, and enhancing the comfort of wearing. At the same time, a breathable mesh 20 is hermetically connected at the armpit between the sleeve 12 and the body 11. In this way, for the armpit that is prone to sweating, the breathable mesh 20 is provided to increase the ventilation and breathability at the armpit, and can effectively avoid the generation of odor due to the growth of bacteria caused by sweat.
[0056] It should be noted that between step S40 and step S50, it may further include: splicing the cap and collar 13 using a double-needle sewing machine; at the same time, using a button machine to nail adjustment cord eyelets at the corresponding positions of the cap and collar 13 and the sleeve 12; in addition, using a five-thread overlock machine to sew the cap and collar 13 to the body 11, and adding an elastic collar strip at the back neck seam. Additionally, after performing step S50, the first elastic adjustment band 60 and the second elastic adjustment band 70 can be respectively inserted into the cap and collar 13 and the sleeve 12, and finally, iron and package.
[0057] Of course, the above description is not a limitation of the present invention, and the present invention is not limited to the above examples. Changes, modifications, additions, or substitutions made by those skilled in the art within the substantial scope of the present invention should also fall within the protection scope of the present invention.
Claims
1. A one-way moisture-conducting sportswear, characterized in that: include: A garment body (10) is formed by overlapping and sewing an inner layer (1a), a connecting layer (1b) and an outer layer (1c); the connecting layer (1b) is configured to allow sweat to be transferred from the inner layer (1a) to the outer layer (1c) in one direction; the garment body (10) comprises a body (11) and two sleeves (12); the two sleeves (12) are respectively connected to two shoulders of the body (11), and openings are formed between each sleeve (12) and the body (11) at the armpit. Two breathable meshes (20) respectively cover the corresponding openings, and the breathable meshes (20) are sealed and connected between the sleeves (12) and the body (11).
2. A one-way moisture-conducting sportswear according to claim 1, characterized in that: The connecting layer (1b) is a unidirectional moisture-conducting polyester layer, the inner layer (1a) is a cotton or bamboo fiber blended yarn layer, and the outer layer (1c) is a water-repellent polyester fiber layer.
3. The one-way moisture-conducting sportswear according to claim 1, characterized in that: The connecting layer (1b) protrudes toward the inner layer (1a) and the outer layer (1c) respectively to form a first protrusion (1b1) and a second protrusion (1b2) respectively. The first protrusion (1b1) forms a first concave portion (1b3) on the side facing away from the outer layer (1c), and the second protrusion (1b2) forms a second concave portion (1b4) on the side facing away from the inner layer (1a).
4. The one-way moisture-conducting sportswear according to claim 1, characterized in that: The body (11) comprises a front piece (111) and a back piece (112) sewn together, each sleeve (12) is connected between the front piece (111) and the back piece (112), and the opening is formed between the three, and the breathable mesh (20) is connected between the front piece (111), the back piece (112) and the sleeve (12), and covers the opening.
5. The one-way moisture-conducting sportswear according to claim 4, characterized in that: It also includes a tightening lining (30) sewn between the outer layer (1c) and the connecting layer (1b); The tightening lining (30) comprises a binding layer (33), a first sweat-absorbing layer (31), a second sweat-absorbing layer (32), a first elastic band (34) connected to the first sweat-absorbing layer (31) and the binding layer (33), and a second elastic band (35) connected to the second sweat-absorbing layer (32) and the binding layer (33); the first sweat-absorbing layer (31) and the second sweat-absorbing layer (32) are both sewn between the connecting layer (1b) and the outer layer (1c) of the front piece (111); the binding layer (33) is sewn between the connecting layer (1b) and the outer layer (1c) of the back piece (112); and the first sweat-absorbing layer (31) and the second sweat-absorbing layer (32) are detachably connected.
6. The one-way moisture-conducting sportswear according to claim 5, characterized in that: The tightening lining (30) further comprises a first buckle belt (36) and a second buckle belt (37) which are buckled to each other, and two through-holes (14) are arranged at intervals on the outer layer (1c) of the front piece (111), the first buckle belt (36) is connected to the first sweat-absorbing layer (31), and the second buckle belt (37) is connected to the second sweat-absorbing layer (32), and the first buckle belt (36) and the second buckle belt (37) are respectively passed through the corresponding through-holes (14).
7. The one-way moisture-conducting sportswear according to claim 5, characterized in that: The restraining layer (33) is provided with a plurality of air holes (331) penetrating along the thickness direction thereof.
8. The one-way moisture-conducting sportswear according to claim 7, characterized in that: A plurality of moisture-conducting convex strips (332) are provided on one side of the binding layer (33) facing the connecting layer (1b); all of the moisture-conducting convex strips (332) are spaced apart along the width direction of the binding layer (33); and each of the moisture-conducting convex strips (332) extends along the length direction of the binding layer (33); and the air permeable holes (331) are provided between each two adjacent moisture-conducting convex strips (332).
9. The one-way moisture conduction sportswear according to any one of claims 1 to 8, characterized in that: The garment body (10) further comprises a first elastic adjustment belt (60) and a second elastic adjustment belt (70), and the garment body (10) further comprises a hood (13) connected to the garment body (11), the first elastic adjustment belt (60) being arranged at the hood opening of the hood (13), and the second elastic adjustment belt (70) being arranged at the cuff of the sleeve (12).
Citation Information
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