CN219007250U - Moisture permeable comfortable polyester fabric - Google Patents

Moisture permeable comfortable polyester fabric Download PDF

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Publication number
CN219007250U
CN219007250U CN202222478352.0U CN202222478352U CN219007250U CN 219007250 U CN219007250 U CN 219007250U CN 202222478352 U CN202222478352 U CN 202222478352U CN 219007250 U CN219007250 U CN 219007250U
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moisture
permeable
sinking
floating
moisture permeable
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CN202222478352.0U
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Chinese (zh)
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姚明良
陆碧瑶
凌婷
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Suzhou Dangsheng Textile Technology Co ltd
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Suzhou Dangsheng Textile Technology Co ltd
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Abstract

The utility model discloses a moisture-permeable comfortable polyester fabric, relates to the technical field of fabrics, and aims to solve the problem of poor moisture permeability of the traditional polyester fabric. The key points of the technical scheme are as follows: the moisture-permeable inner layer is integrally formed with a plurality of first moisture-permeable grooves penetrating the moisture-permeable inner layer along the thickness direction of the moisture-permeable inner layer, and a plurality of second moisture-permeable grooves are uniformly distributed on the moisture-permeable inner layer close to one side of the moisture-permeable outer layer. The polyester profiled fiber is arranged in the utility model, and the characteristics of more surface pores and good air permeability of the fiber are utilized to strengthen the moisture permeability and the comfort of the whole structure. The ramie fiber is arranged in the utility model, and the moisture permeability and the comfort of the whole structure are enhanced by utilizing the characteristics of moisture permeability and ventilation comfort of the material.

Description

Moisture permeable comfortable polyester fabric
Technical Field
The utility model relates to the technical field of fabrics, in particular to a moisture-permeable comfortable polyester fabric.
Background
Fabrics are typically an elongated flexible article formed by using different knitting patterns with elongated flexible yarns.
The fabric is very common in daily life, as large as various home textiles, as small as various clothing and apparel are articles for daily use made of the fabric, the fabric is mainly made of natural fabric initially, the fabric is more and more abundant in variety along with the continuous improvement of productivity level, the specific gravity of chemical fiber fabric in the total fabric is more and more large, and although the chemical fiber fabric has a lot of advantages compared with the natural fabric, the fabric still has a plurality of defects, in fabric products, the clothing is closest to the life of people and the comfort of the people is most concerned, the factors influencing the comfort of the clothing are various, wherein the moisture permeability is one of the factors, and the moisture permeability of the fabric refers to the performance of the fabric which is penetrated by water in a form of steam and the permeability of the fabric to gaseous water. The stronger the moisture permeability of the garment, the more capable sweat emitted by the human body when moving can be conducted to the outside through the fabric in the form of water vapor, the more comfortable the garment is to wear, and the properties of the garment are generally determined by the fabric from which it is made, so that it is necessary to provide a fabric structure having good moisture permeability.
There is therefore a need to propose a new solution to this problem.
Disclosure of Invention
Aiming at the defects existing in the prior art, the utility model aims to provide the moisture-permeable comfortable polyester fabric, and the aim of improving the overall moisture permeability of the fabric is fulfilled through the arrangement of the structure.
The technical aim of the utility model is realized by the following technical scheme: the moisture-permeable comfortable polyester fabric comprises a moisture-permeable inner layer and a moisture-permeable outer layer which are mutually fixed, wherein a plurality of first moisture-permeable grooves penetrating through the moisture-permeable inner layer along the thickness direction of the moisture-permeable inner layer are integrally formed on the moisture-permeable inner layer, and a plurality of second moisture-permeable grooves are uniformly distributed on the moisture-permeable inner layer, which is close to one side of the moisture-permeable outer layer.
The utility model is further provided with: the moisture-permeable inner layer is a through hole tissue and is woven by first moisture-permeable yarns.
The utility model is further provided with: the moisture-permeable outer layer is in plain weave and is woven by second moisture-permeable yarns, and a plurality of third moisture-permeable grooves with openings communicated with the second moisture-permeable grooves are arranged on the moisture-permeable outer layer.
The utility model is further provided with: warp yarn tissue points of the moisture-permeable inner layer are floating, weft yarn tissue points of the moisture-permeable inner layer are sinking, and the tissue cycle of the moisture-permeable inner layer is as follows: the sinking, floating, sinking, floating, sinking and sinking floating, sinking, floating, sinking and floating sinking, floating and sinking sinking and floating floating, sinking, floating, and the like sinking, floating, sinking, floating and sinking sinking, floating, sinking, floating and sinking.
The utility model is further provided with: the first moisture-permeable yarn comprises a moisture-permeable yarn core and a moisture-permeable cladding yarn, wherein the moisture-permeable yarn core is formed by twisting ramie fibers and polyester fibers, and the moisture-permeable cladding yarn is formed by twisting polyester profiled fibers with plum blossom-shaped cross sections.
The utility model is further provided with: the second moisture permeable yarn is formed by twisting polyester special-shaped fibers.
The utility model is further provided with: the moisture permeable outer layer is provided with a plurality of moisture permeable holes communicated with the second moisture permeable groove.
In summary, the utility model has the following beneficial effects:
the moisture-permeable inner layer is of a through hole structure and is formed by weaving first moisture-permeable yarns through a shuttle loom, the moisture-permeable outer layer is of a plain weave and is formed by weaving second moisture-permeable yarns through the shuttle loom, the characteristics of good moisture permeability of the first moisture-permeable yarns and the second moisture-permeable yarns are utilized to further strengthen the overall moisture permeability and comfort of the structure, a plurality of third moisture-permeable grooves with openings communicated with the second moisture-permeable grooves are formed in the moisture-permeable outer layer in a hot pressing mode, and meanwhile, the formed third moisture-permeable grooves are formed in a hot pressing mode, so that more gaps for flowing water and flowing air flow through are formed in the fabric, the overall moisture permeability and comfort are further enhanced, and meanwhile, the flowing air and the flowing water in the second moisture-permeable grooves can enter the third moisture-permeable grooves, so that more gaps for flowing air and flowing water flow through are formed in the fabric.
Drawings
FIG. 1 is an exploded view of the present utility model;
FIG. 2 is an enlarged view of FIG. 1 at A;
FIG. 3 is a cut sheet of a first moisture permeable yarn of the present utility model;
FIG. 4 is a cut sheet of a second moisture permeable yarn of the present utility model;
FIG. 5 is a schematic diagram of the moisture permeable inner layer of the present utility model.
In the figure: 1. a moisture permeable inner layer; 2. a moisture permeable outer layer; 3. a first moisture permeable tank; 4. a second moisture-permeable tank; 5. a first moisture permeable yarn; 6. a second moisture permeable yarn; 7. a third moisture permeation groove; 8. a moisture permeable yarn core; 9. moisture permeable coated yarn; 10. ramie fibers; 11. polyester fiber; 12. polyester special-shaped fibers; 13. moisture permeable holes.
Detailed Description
The present utility model will be described in detail below with reference to the accompanying drawings and examples.
The moisture-permeable comfortable polyester fabric is shown in fig. 1 and 2, and comprises a moisture-permeable inner layer 1 and a moisture-permeable outer layer 2 which are fixedly connected in a mutually-connected yarn sewing mode, the integral moisture permeability and the comfort of a structure are enhanced by utilizing the characteristic of good moisture permeability effect of the moisture-permeable inner layer 1 and the moisture-permeable outer layer 2, a plurality of first moisture-permeable grooves 3 penetrating the moisture-permeable inner layer 1 along the thickness direction of the moisture-permeable inner layer 1 are integrally formed on the moisture-permeable inner layer 1, the formed first moisture-permeable grooves 3 increase the communication degree of the inner side and the outer side of the moisture-permeable inner layer 1, so that flowing air and gaseous water can flow and exchange better, a plurality of second moisture-permeable grooves 4 are uniformly distributed on the moisture-permeable inner layer 1 close to one side of the moisture-permeable outer layer 2, the second moisture-permeable grooves 4 are formed in a hot-pressing mode, cavities through which flowing air and gaseous water can flow can be formed on the inner side of the fabric, and the comfort of the whole structure is further enhanced, and meanwhile, the formed second moisture-permeable grooves 4 can be communicated with part of the first moisture-permeable grooves 3 so that flowing air from the first moisture-permeable grooves 3 can flow better towards the periphery of the moisture-permeable inner layer 1.
As shown in fig. 2-4, the moisture permeable inner layer 1 is in a through hole structure and is woven by a first moisture permeable yarn 5 through a shuttle loom, the moisture permeable outer layer 2 is in a plain weave and is woven by a second moisture permeable yarn 6 through the shuttle loom, the moisture permeability and the comfort of the whole structure are further enhanced by utilizing the characteristic of good moisture permeability of the first moisture permeable yarn 5 and the second moisture permeable yarn 6, a plurality of third moisture permeable grooves 7 with openings communicated with the second moisture permeable grooves 4 are arranged on the moisture permeable outer layer 2, the third moisture permeable grooves 7 are formed in a hot pressing mode, and meanwhile, the formed third moisture permeable grooves 7 enable more gaps for flowing water and flowing air to flow through inside the fabric, and further the whole moisture permeability and the comfort are further enhanced, and meanwhile, the flowing air and the flowing water in the second moisture permeable grooves 4 can enter the third moisture permeable grooves 7, so that the inside the fabric has more gaps for flowing air and the flowing water to flow through.
As shown in fig. 2 to 5, the warp yarn structure points of the moisture permeable inner layer 1 are floating, the weft yarn structure points of the moisture permeable inner layer 1 are sinking, and the structure cycle of the moisture permeable inner layer 1 is: floating, sinking, floating, and the like sinking, floating, sinking, floating and sinking the floating, sinking, floating, sinking, and sinking sinking, floating, sinking, floating, the stable moisture-permeable inner layer 1 structure is formed by the above-mentioned braiding method, so that the structure of a plurality of first moisture-permeable grooves 3 can be stably formed on the moisture-permeable inner layer 1, and the stability of the moisture permeability of the moisture-permeable inner layer 1 is ensured.
As shown in fig. 2-4, the first moisture-permeable yarn 5 includes a moisture-permeable yarn core 8 and a moisture-permeable covering yarn 9, the moisture-permeable yarn core 8 is formed by twisting a ramie fiber 10 and a polyester fiber 11 by a twisting machine, the integral strength of the structure is enhanced by utilizing the characteristics of high structural strength and good elasticity of the polyester fiber 11, and meanwhile, the performance of the first moisture-permeable yarn 5 and the integral structure is further enhanced by utilizing the characteristics of good ventilation, moisture permeability and bacteriostasis of the ramie fiber 10, the moisture-permeable covering yarn 9 is formed by twisting a polyester profiled fiber 12 with a plum blossom-shaped cross section by the twisting machine, and the strip grooves on the surface of the polyester profiled fiber 12 are utilized to ensure that the formed first moisture-permeable yarn 5 has pores for flowing air and gaseous water to flow through, so that the integral moisture permeability and the comfort of the structure are further enhanced.
As shown in fig. 2-4, the second moisture-permeable yarn 6 is formed by twisting polyester special-shaped fibers 12 by a twisting machine, the moisture permeability of the second moisture-permeable yarn 6, the moisture-permeable outer layer 2 and the whole structure is enhanced by utilizing the characteristic of good moisture permeability of the polyester special-shaped fibers 12, the moisture-permeable outer layer 2 is provided with a plurality of moisture-permeable holes 13 communicated with the second moisture-permeable groove 4, the communication degree of the inner side and the outer side of the moisture-permeable outer layer 2 is increased by the arrangement of the moisture-permeable holes 13, so that flowing air and gaseous water can be better exchanged on the inner side and the outer side of the moisture-permeable outer layer 2 through the moisture-permeable holes 13, and the moisture permeability and the comfort of the whole structure are further enhanced.
The above description is only a preferred embodiment of the present utility model, and the protection scope of the present utility model is not limited to the above examples, and all technical solutions belonging to the concept of the present utility model belong to the protection scope of the present utility model. It should be noted that modifications and adaptations to the present utility model may occur to one skilled in the art without departing from the principles of the present utility model and are intended to be within the scope of the present utility model.

Claims (7)

1. A moisture permeable comfortable polyester fabric, comprising a moisture permeable inner layer (1) and a moisture permeable outer layer (2) which are mutually fixed, characterized in that: a plurality of first moisture permeable grooves (3) penetrating through the moisture permeable inner layer (1) along the thickness direction are integrally formed on the moisture permeable inner layer (1), and a plurality of second moisture permeable grooves (4) are uniformly distributed on the moisture permeable inner layer (1) close to one side of the moisture permeable outer layer (2).
2. The moisture permeable, comfortable polyester fabric of claim 1, wherein: the moisture permeable inner layer (1) is of a through hole structure and is woven by first moisture permeable yarns (5).
3. The moisture permeable, comfortable polyester fabric of claim 2, wherein: the moisture permeable outer layer (2) is in plain weave and is woven by second moisture permeable yarns (6), and a plurality of third moisture permeable grooves (7) with openings communicated with the second moisture permeable grooves (4) are arranged on the moisture permeable outer layer (2).
4. The moisture permeable, comfortable polyester fabric of claim 3, wherein: warp yarn tissue points of the moisture-permeable inner layer (1) are floating, weft yarn tissue points of the moisture-permeable inner layer (1) are sinking, and the tissue cycle of the moisture-permeable inner layer (1) is as follows: the sinking, floating, sinking, floating, sinking and sinking floating, sinking, floating, sinking and floating sinking, floating and sinking sinking and floating floating, sinking, floating, and the like sinking, floating, sinking, floating and sinking sinking, floating, sinking, floating and sinking.
5. The moisture permeable, comfortable polyester fabric of claim 3, wherein: the first moisture-permeable yarn (5) comprises a moisture-permeable yarn core (8) and a moisture-permeable cladding yarn (9), the moisture-permeable yarn core (8) is formed by twisting ramie fibers (10) and polyester fibers (11), and the moisture-permeable cladding yarn (9) is formed by twisting polyester profiled fibers (12) with plum blossom-shaped cross sections.
6. The moisture permeable, comfortable polyester fabric of claim 5, wherein: the second moisture permeable yarn (6) is formed by twisting polyester special-shaped fibers (12).
7. The moisture permeable, comfortable polyester fabric of claim 1, wherein: the moisture permeable outer layer (2) is provided with a plurality of moisture permeable holes (13) communicated with the second moisture permeable groove (4).
CN202222478352.0U 2022-09-19 2022-09-19 Moisture permeable comfortable polyester fabric Active CN219007250U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222478352.0U CN219007250U (en) 2022-09-19 2022-09-19 Moisture permeable comfortable polyester fabric

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222478352.0U CN219007250U (en) 2022-09-19 2022-09-19 Moisture permeable comfortable polyester fabric

Publications (1)

Publication Number Publication Date
CN219007250U true CN219007250U (en) 2023-05-12

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ID=86249929

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222478352.0U Active CN219007250U (en) 2022-09-19 2022-09-19 Moisture permeable comfortable polyester fabric

Country Status (1)

Country Link
CN (1) CN219007250U (en)

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