CN219117688U - Tatting cool-sense antibacterial sun-proof multifunctional fabric - Google Patents
Tatting cool-sense antibacterial sun-proof multifunctional fabric Download PDFInfo
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- CN219117688U CN219117688U CN202223463566.7U CN202223463566U CN219117688U CN 219117688 U CN219117688 U CN 219117688U CN 202223463566 U CN202223463566 U CN 202223463566U CN 219117688 U CN219117688 U CN 219117688U
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02P—CLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
- Y02P70/00—Climate change mitigation technologies in the production process for final industrial or consumer products
- Y02P70/50—Manufacturing or production processes characterised by the final manufactured product
- Y02P70/62—Manufacturing or production processes characterised by the final manufactured product related technologies for production or treatment of textile or flexible materials or products thereof, including footwear
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Abstract
The utility model provides a woven cool-sense antibacterial sun-proof multifunctional fabric which is composed of a moisture conducting layer and an antibacterial cool-sense layer which are integrated into a whole, wherein the surface layer tissue is a square flat tissue with two layers being two from top to bottom, the warp adopts a special-shaped cross section nano silver fiber and spandex core-spun yarn to be arranged one by one, the inner layer tissue is a variable floating loose tissue, the surface of the fabric is composed of plain weave, warp floating long yarns and weft floating long yarns, the warp is hydrophobic polypropylene, and the weft is jade cool-sense fiber. The utility model is formed by interweaving the yarn structure and the fabric structure into an integral double-layer structure, and is not easy to crack; the special-shaped cross section nano silver antibacterial yarn and the titanium dioxide ultraviolet-resistant yarn selected by the surface layer tissue provide functional guarantee, sweat is rapidly removed, sunlight is shielded, and skin is cared and is not damaged by sunlight and bacteria; the cool feeling fiber of the jade of the inner layer tissue provides cool feeling for the skin and improves the comfort.
Description
Technical Field
The utility model relates to the technical field of woven fabrics, in particular to a woven cool-sense antibacterial sun-proof multifunctional fabric.
Background
In a high-temperature and humid environment, the garment fabric has the attractive appearance required by the garment fabric, the functional requirements on ultraviolet resistance, bacteria resistance and the like of the fabric are increased, and the comfort requirements on moisture absorption, quick drying, cool feeling, elasticity and the like are also increased. The traditional unidirectional moisture-conducting fabric has the functions of moisture absorption, sweat release and quick drying, and the moisture-conducting mode comprises water delivery of the inner layer fabric and hydrophilization of the outer layer fabric, so that the moisture rapidly migrates to the outer surface layer of the fabric and rapidly volatilizes; or the migration of moisture from low linear density to high linear density is realized by setting the linear density difference of the fibers used by the inner layer and the outer layer of the fabric, but the fabric does not have the function of ultraviolet resistance, the common sun-proof clothing fabric is realized based on an ultraviolet-proof coating, is not easy to breathe and sweat, has weak sun-proof durability,
disclosure of Invention
The utility model aims to solve the technical problem of providing a woven cool-sense antibacterial sun-proof multifunctional fabric which has the functions of moisture conduction, sun protection, cool sense and the like.
Based on the problems, the technical scheme provided by the utility model is that the woven cool-sensing antibacterial sun-proof multifunctional fabric is formed by combining a moisture-conducting layer and an antibacterial cool-sensing layer which are of an integrated double-layer structure, wherein the surface layer structure is a square flat structure with two layers being arranged at the top and two layers being arranged at the bottom, the warp adopts a special-shaped section nano silver fiber and spandex core-spun yarn in one-to-one arrangement, the weft is a titanium dioxide ultraviolet-resistant yarn, the inner layer structure is a variable floating loose structure, the surface of the fabric is formed by combining plain weave, warp floating long yarns and weft floating long yarns, the warp is hydrophobic polypropylene, and the weft adopts jade cool-sensing fibers.
The first two warp yarns of the surface layer structure run in a floating, sinking and sinking mode, and the third four warp yarns run in a sinking, sinking and floating mode.
The spandex core-spun yarn takes spandex as a core layer, and the microcapsule fragrance yarn is wound on the outer side as a coating layer.
The special-shaped cross-section nano silver fiber comprises terylene, and is provided with multi-groove fibers.
The first warp yarn and the third warp yarn of the variable floating and loose structure are arranged to be a floating, sinking and sinking, the fourth, sixth and eighth warp yarns are arranged to sink, float, sink and float, and the fifth and seventh warp yarns are arranged to float, float and sink.
The local area of the inner layer tissue is provided with warp floating long threads and weft floating long threads, and the positions of the warp floating long threads and the weft floating long threads are provided with ventilation holes.
The utility model has the advantages and beneficial effects that:
the utility model processes from yarn structure and fabric structure, has two independent warp and weft yarn systems, is interweaved by adopting an integrated double-layer structure, is non-adhesive, and is not easy to crack and break; the obtained fabric has good elasticity, the wearing comfort is increased, the function of the special-shaped cross section nano silver antibacterial yarn and the titanium dioxide ultraviolet-resistant yarn is guaranteed, sweat is rapidly removed, sunlight is shielded, and the skin is cared not to be damaged by the sunlight and bacteria; the cool feeling fiber of the jade provides cool feeling for the skin, and is cool and refreshing in summer, so that the cool feeling fiber is a cool and refreshing fabric suitable for summer.
Drawings
FIG. 1 is a schematic view of the superficial tissue.
FIG. 2 is a schematic diagram of the inner tissue.
Fig. 3 is a schematic structural diagram of a binding double layer structure.
Fig. 4 is a schematic cross-sectional view of a profiled-section nano-silver fiber.
Fig. 5 is a schematic cross-sectional view of a spandex core-spun yarn structure.
In the figure: 1. spandex; 2. microcapsule fragrance yarns; 3. nano silver fiber with special-shaped section; 4. the inner layer tissue is organized by tissue points; 5. superficial tissue transit tissue points; 6. inner weft weave points which are not interwoven with the surface warp yarns; 7. is a binding tissue point; 8. weft tissue points.
Detailed Description
The following detailed description of specific embodiments of the utility model refers to the accompanying drawings.
1-5, the woven cool-sensing antibacterial sun-proof multifunctional fabric consists of a moisture-conducting layer and an antibacterial cool-sensing layer, wherein the surface layer tissue is a square flat tissue with two upper parts and two lower parts, as shown in FIG. 1, black square grids represent tissue points of warp lines of the surface layer tissue above weft lines, and white square grids represent tissue points of warp lines of the surface layer tissue below weft lines, so that the fabric is compact in structure, interlinked and not easy to break off; the inner layer tissue is a variable floating loose tissue. The two independent warp and weft yarn systems of the fabric can respectively form an upper layer and a lower layer of fabric on the same loom to form a binding double-layer structure, as shown in fig. 3, white square grids represent weft tissue points 8 of the binding double-layer structure, namely weft yarns are positioned above warp yarns, black square grids represent inner layer tissue warp tissue points 4, namely warp yarns of the inner layer tissue are positioned above weft yarns, gray square grids represent surface layer tissue warp tissue points 5, white square grids containing circles represent inner layer tissue weft tissue points 6 which are not interwoven with the surface layer warp yarns, white square grids containing square grids represent binding tissue points 7 which are intersected with the upper layer and the lower layer, when the upper layer is woven, the surface layer tissue warp yarns are divided into the upper layer and the lower layer to be interwoven with the surface layer tissue weft yarns according to the requirement of the tissue structure, and the inner layer tissue warp yarns at the moment are all sunk below and are not interwoven with the surface layer tissue weft yarns. When the lower layer is woven, the inner layer weave warp yarns are divided into an upper layer and a lower layer according to the requirement of a weave structure and interweaved with the inner layer weave weft yarns, at the moment, the surface layer weave warp yarns are lifted completely and do not interweave with the inner layer weave weft yarns, the inner layer weave warp yarns are lifted and interweaved with the surface layer weave weft yarns to form a binding weave point 7, and the upper layer and the lower layer are connected together. The integrated double-layer structure is not bonded, and is not easy to crack and deglue.
The warp yarn of the surface layer tissue adopts one-to-one arrangement of the special-shaped section nano silver fiber 3 and the spandex 1 core-spun yarn, the special-shaped section nano silver fiber 3 comprises terylene, has multi-groove fiber, introduces the natural capillary vessel principle into the development of textiles, and can quickly absorb sweat and moisture on the skin surface, transmit the sweat and moisture to the surface of the textiles and emit the sweat. The weft yarn is titanium dioxide uvioresistant yarn, effectively isolates ultraviolet rays, avoids skin injury, and adds ultraviolet isolation factors-nano titanium dioxide TiO in the slicing polymerization process of the titanium dioxide uvioresistant fiber 2 Is spun by adopting a special spinning technology. The nano titanium dioxide has different sun protection mechanisms on ultraviolet rays with different wavelengths, mainly blocks ultraviolet rays in a long-wave region, and mainly blocks ultraviolet rays in a medium-wave region.
The surface of the fabric of the inner layer structure is formed by combining plain weave, warp floating long lines and weft floating long lines, the warp is hydrophobic polypropylene, the weft is made of cool jade fiber, and the two layers of the weft are connected together.
Wherein, the first warp yarn and the second warp yarn of the surface layer structure run to float and sink, and the third warp yarn and the fourth warp yarn run to float and sink.
Further, the spandex 1 core-spun yarn takes spandex 1 as a core layer, and microcapsule fragrance yarns 2 as a coating layer are wound on the outer side.
As shown in fig. 2, black square represents the weave point of the warp yarn of the inner layer weave over the weft yarn, white square represents the weave point of the warp yarn of the inner layer weave under the weft yarn, the first warp yarn and the third warp yarn of the variable loose weave are arranged to be floated and sunk, the second warp yarn is arranged to be floated and sunk, the fourth warp yarn, the sixth warp yarn and the eighth warp yarn are arranged to be floated and sunk, and the fifth warp yarn and the seventh warp yarn are arranged to be floated and sunk.
The local area of the inner layer tissue is provided with warp floating long threads and weft floating long threads, the positions of the warp floating long threads and the weft floating long threads are provided with ventilation holes, skin ventilation is facilitated after the garment is manufactured, sweat is conveyed to the outer side of the fabric more quickly through the long floating long threads, bacteria generated by accumulated sweat are avoided, and harm to a human body and generation of peculiar smell are reduced.
The foregoing describes several embodiments of the present utility model in detail, but the description is merely a preferred embodiment of the utility model and should not be construed as limiting the scope of the utility model. All equivalent changes and modifications within the scope of the present utility model are intended to be covered by the present utility model.
Claims (6)
1. The utility model provides a cool sense antibacterial sun-proof multifunctional fabric of tatting which characterized in that: the fabric is composed of a moisture-conducting layer and an antibacterial cool sense layer, wherein the surface layer structure is a square and flat structure with two layers being two from top to bottom, the warp adopts one-to-one arrangement of special-shaped section nano silver fibers and spandex core-spun yarns, the weft is titanium dioxide ultraviolet-resistant yarns, the inner layer structure is a variable floating loose structure, the surface of the fabric is composed of plain weave, warp floating long yarns and weft floating long yarns, the warp is hydrophobic polypropylene, and the weft is jade cool sense fibers.
2. The woven cool and antibacterial sun-proof multifunctional fabric as claimed in claim 1, wherein: the first two warp yarns of the surface layer structure run in a floating, sinking and sinking mode, and the third four warp yarns run in a sinking, sinking and floating mode.
3. The woven cool and antibacterial sun-proof multifunctional fabric as claimed in claim 2, wherein: the spandex core-spun yarn takes spandex as a core layer, and the microcapsule fragrance yarn is wound on the outer side as a coating layer.
4. The woven cool and antibacterial sun-proof multifunctional fabric as claimed in claim 2, wherein: the special-shaped cross-section nano silver fiber comprises terylene, and is provided with multi-groove fibers.
5. The woven cool and antibacterial sun-proof multifunctional fabric as claimed in claim 1, wherein: the first warp yarn and the third warp yarn of the variable floating and loose structure are arranged to be a floating, sinking and sinking, the fourth, sixth and eighth warp yarns are arranged to sink, float, sink and float, and the fifth and seventh warp yarns are arranged to float, float and sink.
6. The woven cool and antibacterial sun-proof multifunctional fabric as claimed in claim 1, wherein: the local area of the inner layer tissue is provided with warp floating long threads and weft floating long threads, and the positions of the warp floating long threads and the weft floating long threads are provided with ventilation holes.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202223463566.7U CN219117688U (en) | 2022-12-25 | 2022-12-25 | Tatting cool-sense antibacterial sun-proof multifunctional fabric |
Applications Claiming Priority (1)
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CN202223463566.7U CN219117688U (en) | 2022-12-25 | 2022-12-25 | Tatting cool-sense antibacterial sun-proof multifunctional fabric |
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CN219117688U true CN219117688U (en) | 2023-06-02 |
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CN202223463566.7U Active CN219117688U (en) | 2022-12-25 | 2022-12-25 | Tatting cool-sense antibacterial sun-proof multifunctional fabric |
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- 2022-12-25 CN CN202223463566.7U patent/CN219117688U/en active Active
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