A striped fabric
Patent Information
- Application Number
- CN202522138653.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-10
- Publication Date
- 2026-09-22
- Estimated Expiration
- 2035-10-10
AI Technical Summary
[0003]但是涤纶纤维的透气性和吸湿性较差,使得由涤纶面料制成的服装在穿戴时容易产生闷热感,易出汗且持续产生的汗液无法及时被面料吸收和传递而滞留在皮肤表面,使得面料容易受汗液影响而贴附在皮肤上,影响了穿着舒适度
[0013]综上所述,本实用新型具有以下有益效果:通过将涤纶纤维异形化后增加了纤维内部的孔隙和表面积,利于空气的流通以及水分的渗透和扩散,通过添加亲水基团制成的改性异形纤维提高了亲水性,从而加强吸湿效果,使得制成的基布层具有良好的吸湿性,能及时吸收皮肤产生的汗液,通过若干透气孔进一步加强了基布层的透气性,通过若干抵触块减少了基布层与皮肤的接触面积,从而增加了基布层和皮肤之间的空气流通效果,亚麻纤维因其特殊的多孔结构具有优于改性涤纶异形纤维更强的吸湿性和透气性,能快速将其吸收的水分散除,使得基布层和若干抵触块吸收的汗液能及时传递至若干散湿块内与外界的气流充分接触来快速散湿,通过若干散湿块增加了基布层与外界气流的接触面积,从而加强散湿效果。
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Figure CN224784397U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of textile technology, and more specifically, to a striped fabric. Background Technology
[0002] Fabric is the main material used to make clothing. As one of the three elements of clothing, fabric can not only interpret the style and characteristics of clothing, but also directly affect the color and shape of clothing. Polyester fiber has high elasticity and abrasion resistance, making the fabric made from it strong, durable, wrinkle-resistant and iron-free, and it is widely used in clothing production.
[0003] However, polyester fibers have poor breathability and moisture absorption, making clothing made of polyester fabrics prone to feeling stuffy and hot when worn. The sweat produced cannot be absorbed and transferred by the fabric in time and remains on the skin surface, causing the fabric to stick to the skin due to the sweat, thus affecting the wearing comfort.
[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 striped fabric that improves the breathability and moisture absorption of polyester fabric through a new structural design.
[0006] The above-mentioned technical objective of this utility model is achieved through the following technical solution: a striped fabric, comprising a base fabric layer, the base fabric layer comprising a plurality of breathable portions and a plurality of moisture-wicking portions arranged in an array along its width direction, the array of breathable portions having a plurality of breathable holes, a plurality of abutting blocks and a plurality of moisture-wicking blocks respectively provided on both sides of the moisture-wicking portions, the plurality of abutting blocks and the plurality of moisture-wicking blocks being staggered along the length direction of the moisture-wicking portions, the moisture-wicking blocks and the abutting blocks having the same moisture absorption and greater than the moisture absorption of the moisture-wicking portions and the breathable portions.
[0007] The present invention is further configured such that the warp yarns used for weaving the breathable part and the moisture-wicking part are all configured as moisture-absorbing yarns, and the spacing between adjacent moisture-absorbing yarns is the same as the diameter of the moisture-absorbing yarns.
[0008] The present invention is further configured such that: the weft yarn used for weaving the breathable part is a second moisture-absorbing yarn, the distance between adjacent second moisture-absorbing yarns is the same as the diameter of the second moisture-absorbing yarn, and the diameters of the first moisture-absorbing yarn and the second moisture-absorbing yarn are the same.
[0009] The present invention is further configured such that: both the first and second moisture-absorbing yarns are formed by twisting multiple strands of the first strand, which are formed by twisting modified polyester profiled fibers.
[0010] The present invention is further configured such that: the weft yarn used for weaving the moisture-wicking part is a moisture-wicking yarn, the diameter of the moisture-wicking yarn is twice the diameter of the moisture-absorbing yarn, and the distance between adjacent moisture-wicking yarns is less than 0.8 mm.
[0011] The present invention is further configured such that: the moisture-dissipating block and the contact block are both formed by several moisture-dissipating yarns floating on several moisture-absorbing yarns, and the length of the moisture-dissipating yarns floating on the moisture-absorbing yarns is set to 5-7 weaving points.
[0012] The present invention is further configured such that: the moisture-wicking yarn is made by spirally winding a second strand around a first strand, and the second strand is made by twisting flax fibers.
[0013] In summary, this invention has the following beneficial effects: By shaping the polyester fibers, the internal pores and surface area of the fibers are increased, which facilitates air circulation and the penetration and diffusion of moisture. The modified shaped fibers made by adding hydrophilic groups improve hydrophilicity, thereby enhancing the moisture absorption effect. This results in a base fabric layer with good moisture absorption, which can absorb sweat produced by the skin in a timely manner. Several vents further enhance the breathability of the base fabric layer. Several contact blocks reduce the contact area between the base fabric layer and the skin, thereby increasing the air circulation effect between the base fabric layer and the skin. Flax fiber, due to its special porous structure, has stronger moisture absorption and breathability than the modified polyester shaped fibers, and can quickly disperse the absorbed moisture. This allows the sweat absorbed by the base fabric layer and several contact blocks to be transferred to several moisture-dissipating blocks in a timely manner to fully contact the airflow from the outside for rapid moisture dissipation. Several moisture-dissipating blocks increase the contact area between the base fabric layer and the outside airflow, thereby enhancing the moisture dissipation effect. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the structure of this utility model; Figure 2 This is a cross-sectional view of the present invention; Figure 3 for Figure 2 Enlarged view of point A in the middle; Figure 4 This is a cross-sectional view of the moisture-absorbing yarn. Figure 5 A cross-section of the loose-wet yarn; Figure 6 This is a diagram of the weaving structure of this utility model.
[0015] In the diagram: 1. Base fabric layer; 2. Breathable part; 3. Moisture-wicking part; 4. Breathable holes; 5. Contact block; 6. Moisture-wicking block; 7. Moisture-absorbing yarn one; 8. Moisture-absorbing yarn two; 9. First strand; 10. Moisture-wicking yarn; 11. Second strand. Detailed Implementation
[0016] The present invention will now be described in detail with reference to the accompanying drawings and embodiments.
[0017] Example: A striped fabric, such as Figure 1 and Figure 6 As shown, the fabric includes a base fabric layer 1, which comprises several breathable sections 2 and several moisture-wicking sections 3 arranged in an array along its width direction, thereby forming stripes on the surface of the fabric. The breathable sections 2 are arrayed with several breathable holes 4. The base fabric layer 1 is woven from moisture-absorbing yarn 7, moisture-absorbing yarn 8, and moisture-wicking yarn 10. Multiple moisture-absorbing yarns 7 are fed into the loom along the warp as the warp yarns for the breathable sections 2 and moisture-wicking sections 3. Multiple moisture-absorbing yarns 8 are fed into the loom along the weft direction as the weft yarns for the breathable sections 2 and moisture-wicking sections 3. Multiple moisture-absorbing yarns 8 are fed into the loom along the weft direction as the weft yarns for the breathable sections 2 and moisture-wicking yarns 10. The multiple moisture-absorbing yarns 8 are arranged in groups of 5-7. Multiple moisture-wicking yarns 10 are fed into the loom along the weft direction as the weft yarns for the moisture-wicking sections 3. The base fabric layer 1 is arranged in an array of 5-7 yarns. Multiple groups of moisture-absorbing yarns 8 and multiple groups of moisture-dissipating yarns 10 are arranged along the width direction of the base fabric layer 1. The distance between two adjacent moisture-absorbing yarns 7 is the same as the diameter of the moisture-absorbing yarn 7, and the distance between two adjacent moisture-absorbing yarns 8 is the same as the diameter of the moisture-absorbing yarn 8. The moisture-absorbing yarns 7 and 8 have the same diameter, so that the moisture-absorbing yarns 7 and 8 are interwoven to form the breathable part 2 and form several breathable holes 4. The air circulation effect and moisture permeability on both sides of the base fabric layer 1 are improved through the several breathable holes 4, so that the finished garment has good breathability when worn, and the good air circulation effect accelerates the moisture dissipation of the base fabric layer 1.
[0018] like Figures 1-6 As shown, both moisture-absorbing yarn 7 and moisture-absorbing yarn 8 are formed by twisting two strands of the first strand 9 using an "S" twisting method on a twisting machine. The first strand 9 is formed by twisting modified polyester profiled fibers using a twisting machine. By shaping the polyester fibers, the porosity and surface area within the fibers are increased, which facilitates air circulation and the penetration and diffusion of moisture. The moisture absorption is further enhanced by adding hydrophilic groups to the polyester raw material, resulting in modified polyester profiled fibers with good moisture absorption and a certain degree of breathability, making them less prone to moisture buildup when worn. To prevent stuffiness, several square contact blocks 5 and several square moisture-dissipating blocks 6 are provided on both sides of the moisture-dissipating part 3. The side length of the contact block 5 is the same as that of the moisture-dissipating block 6. The contact blocks 5 and the moisture-dissipating blocks 6 are staggered along the length of the moisture-dissipating part 3. The contact area between the base fabric layer 1 and the skin is reduced by the support of the contact blocks 5, thereby increasing the gap between the skin and the base fabric layer 1. The gap between the skin and the base fabric layer 1 can communicate with several vent holes 4, thereby improving the air circulation effect between the skin and the base fabric layer 1.
[0019] like Figures 1-5As shown, the spacing between adjacent moisture-dispersing yarns 10 is less than 0.8 mm, and the diameter of the moisture-dispersing yarn 10 is twice the diameter of the moisture-absorbing yarn 7. Both the moisture-dispersing block 6 and the contact block 5 are formed by several moisture-dispersing yarns 10 floating on several moisture-absorbing yarns 7. The length of the moisture-dispersing yarns 10 floating on the moisture-absorbing yarns 7 is set to 5-7 weaving points. The lateral length of the contact block 5 can be adjusted by adjusting the number of weaving points of the moisture-dispersing yarns 10 floating on the moisture-absorbing yarns 7, and the longitudinal length of the contact block 5 can be adjusted by increasing or decreasing the number of moisture-dispersing yarns 10 fed in. The moisture-dispersing yarns 10 are spirally wound by a second strand 11 onto a first strand 9 using a ring spinning machine. The second strand 11 is formed by twisting flax fibers through a twisting machine. Due to its special porous structure, flax fibers have stronger moisture absorption and breathability than modified polyester fibers, which can quickly disperse the absorbed moisture. This makes the moisture absorption of the moisture-wicking block 6 and the contact block 5 the same and greater than that of the moisture-wicking part 3 and the breathable part 2. The contact blocks 5 formed by the moisture-wicking yarn 10 can quickly absorb the sweat produced by the skin and transfer it to the moisture-wicking blocks 6 in time to make full contact with the airflow of the outside to quickly wick away moisture. The moisture-wicking blocks 6 increase the contact area between the base fabric layer 1 and the outside airflow, thereby enhancing the moisture wicking effect and making the finished garment breathable and quick-drying.
[0020] When producing this striped fabric, first feed the absorbent yarn 7 into the warp direction of the multi-arm loom, setting the spacing between adjacent absorbent yarns 7 to be the same as the diameter of the absorbent yarn 7. Then, feed multiple sets of absorbent yarns 8 and multiple sets of moisture-dissipating yarns 10 into the weft direction of the multi-arm loom, setting the spacing between adjacent absorbent yarns 8 to be the same as the diameter of the absorbent yarn 8, and setting the distance between adjacent moisture-dissipating yarns 10 to be less than 0.8 mm. The number of absorbent yarns 8 is set to 5, and the number of moisture-dissipating yarns 10 in the same group is set to 5. The absorbent yarns 7 and 8 are interwoven by a multi-arm loom to form a breathable part 2 and several breathable holes 4. While the absorbent yarns 7 and 10 are interwoven to form a moisture-dissipating part 3, the 5 moisture-dissipating yarns 10 are simultaneously arranged on both sides of the moisture-dissipating part 3 to form abutment blocks 5 and moisture-dissipating blocks 6, thereby completing the production of this striped fabric.
[0021] 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 striped fabric, comprising a base fabric layer (1), characterized in that: The base fabric layer (1) includes a plurality of breathable parts (2) and a plurality of moisture-wicking parts (3) arranged in an array along its width direction. The breathable parts (2) are arrayed with a plurality of breathable holes (4). The moisture-wicking parts (3) are provided with a plurality of contact blocks (5) and a plurality of moisture-wicking blocks (6) on both sides respectively. The plurality of contact blocks (5) and the plurality of moisture-wicking blocks (6) are staggered along the length direction of the moisture-wicking parts (3). The moisture-wicking blocks (6) and the contact blocks (5) have the same moisture absorption and are greater than the moisture absorption of the moisture-wicking parts (3) and the breathable parts (2).
2. The striped fabric according to claim 1, characterized in that: The warp yarns used for weaving the breathable part (2) and the moisture-wicking part (3) are all configured as moisture-absorbing yarns (7), and the distance between adjacent moisture-absorbing yarns (7) is the same as the diameter of the moisture-absorbing yarns (7).
3. The striped fabric according to claim 2, characterized in that: The weft yarn used for weaving the breathable part (2) is configured as a moisture-absorbing yarn two (8), the distance between adjacent moisture-absorbing yarns two (8) is the same as the diameter of the moisture-absorbing yarns two (8), and the diameters of the moisture-absorbing yarn one (7) and the moisture-absorbing yarn two (8) are the same.
4. The striped fabric according to claim 3, characterized in that: Both the first moisture-absorbing yarn (7) and the second moisture-absorbing yarn (8) are made by twisting multiple strands of first yarn (9), which are made by twisting modified polyester profiled fibers.
5. A striped fabric according to claim 4, characterized in that: The weft yarn used for weaving the moisture-wicking part (3) is configured as a moisture-wicking yarn (10), the diameter of the moisture-wicking yarn (10) is twice the diameter of the moisture-absorbing yarn (7), and the distance between adjacent moisture-wicking yarns (10) is less than 0.8 mm.
6. The striped fabric according to claim 5, characterized in that: Both the moisture-dissipating block (6) and the contact block (5) are formed by several moisture-dissipating yarns (10) floating on several moisture-absorbing yarns (7), and the length of the moisture-dissipating yarns (10) floating on the moisture-absorbing yarns (7) is set to 5-7 weaving points.
7. A striped fabric according to claim 6, characterized in that: The moisture-wicking yarn (10) is made by spirally winding a second strand (11) around a first strand (9), the second strand (11) being made of twisted flax fibers.