Down-proof double-layer fabric
09982370 ยท 2018-05-29
Assignee
Inventors
Cpc classification
D03D11/02
TEXTILES; PAPER
D10B2331/04
TEXTILES; PAPER
International classification
D03D11/02
TEXTILES; PAPER
D03D13/00
TEXTILES; PAPER
Abstract
A first fabric layer of a down-proof double-layer fabric has a plurality of first warps and a plurality of first wefts. A second fabric layer has a plurality of second warps and a plurality of second wefts. The first fabric layer and the second fabric layer have a plurality of coupling portions. In the coupling portions, the first fabric layer and the second fabric layer pass through each other repeatedly, and the first warps and the second warps are interlaced. The first warps, the first wefts, the second warps, and the second wefts are between 20 denier and 75 denier. The warp densities of the first fabric layer and the second fabric layer are between 336 pieces/inch and 456 pieces/inch, and the weft densities of the first fabric layer and the second fabric layer are between 220 pieces/inch and 380 pieces/inch.
Claims
1. A down-proof double-layer fabric, comprising: a first fabric layer, having a plurality of first warps and a plurality of first wefts; and a second fabric layer, having a plurality of second warps and a plurality of second wefts; wherein the first fabric layer and the second fabric layer have a plurality of coupling portions, in the coupling portions, the first fabric layer and the second fabric layer pass through each other repeatedly and the first warps and the second warps are interlaced, the first warps, the first wefts, the second warps, and the second wefts are between 20 denier and 75 denier, the warp densities of the first fabric layer and the second fabric layer are between 336 pieces/inch and 456 pieces/inch, and the weft densities of the first fabric layer and the second fabric layer are between 220 pieces/inch and 380 pieces/inch.
2. The down-proof double-layer fabric of claim 1, wherein the first warps, the first wefts, the second warps, and the second wefts are between 30 denier and 50 denier.
3. The down-proof double-layer fabric of claim 1, wherein the materials of the first warps, the first wefts, the second warps, and the second wefts are polyester fibers, nylon fibers, cationic dyeable fibers, or cotton fibers.
4. The down-proof double-layer fabric of claim 1, wherein the material of the first warps differs from that of the second warps.
5. The down-proof double-layer fabric of claim 1, wherein the first warps, the first wefts, the second warps, and the second wefts are elastic yarn.
6. The down-proof double-layer fabric of claim 1, wherein the first warps and the second warps have different colors.
7. The down-proof double-layer fabric of claim 1, wherein the first fabric layer and the second fabric layer form a receiving space between two adjacent coupling portions.
8. The down-proof double-layer fabric of claim 1, further treated by surface calendaring at a temperature, wherein the temperature is between 50 C. and 70 C.
9. The down-proof double-layer fabric of claim 1, wherein the weft densities of the first fabric layer and the second fabric layer are between 220 pieces/inch and 360 pieces/inch.
10. The down-proof double-layer fabric of claim 1, wherein the weft densities of the first fabric layer and the second fabric layer are between 220 pieces/inch and 370 pieces/inch.
11. A down-proof double-layer fabric, comprising: a first fabric layer, having a plurality of first warps and a plurality of first wefts; and a second fabric layer, having a plurality of second warps and a plurality of second wefts; wherein the first fabric layer and the second fabric layer have a plurality of coupling portions, in the coupling portions, the first fabric layer and the second fabric layer pass through each other repeatedly and the first wefts and the second wefts are interlaced, the first warps, the first wefts, the second warps, and the second wefts are between 20 denier and 75 denier, the warp densities of the first fabric layer and the second fabric layer are between 336 pieces/inch and 456 pieces/inch, and the weft densities of the first fabric layer and the second fabric layer are between 220 pieces/inch and 380 pieces/inch.
12. The down-proof double-layer fabric of claim 10, wherein the weft densities of the first fabric layer and the second fabric layer are between 220 pieces/inch and 360 pieces/inch.
13. The down-proof double-layer fabric of claim 1, wherein the weft densities of the first fabric layer and the second fabric layer are between 220 pieces/inch and 370 pieces/inch.
14. A down-proof double-layer fabric, comprising: a first fabric layer, having a plurality of first warps and a plurality of first wefts; and a second fabric layer, having a plurality of second warps and a plurality of second wefts; wherein the first fabric layer and the second fabric layer have a plurality of coupling portions, in the coupling portions, the first fabric layer and the second fabric layer pass through each other repeatedly, the first warps, the first wefts, the second warps, and the second wefts are between 20 denier and 75 denier, the warp densities of the first fabric layer and the second fabric layer are at least 336 pieces/inch, and the weft densities of the first fabric layer and the second fabric layer are at least 220 pieces/inch, and wherein, in the coupling portions, the first warps and the second warps are interlaced, or the first wefts and the second wefts are interlaced.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The invention will become more fully understood from the detailed description and accompanying drawings, which are given for illustration only, and thus are not limitative of the present invention, and wherein:
(2)
(3)
DETAILED DESCRIPTION OF THE INVENTION
(4) The present invention will be apparent from the following detailed description, which proceeds with reference to the accompanying drawings, wherein the same references relate to the same elements.
(5) Referring to
(6) As shown in
(7) The first fabric layer 11 has a plurality of first warps 111 and a plurality of first wefts 112, and the second fabric layer 12 has a plurality of second warps 121 and a plurality of second wefts 122. In other words, as shown in
(8) Furthermore, in the coupling portions, for example the coupling portion C1, the first warps 111 and the second warps 121 are interlaced, and the first warps 111, the first wefts 112, the second warps 121, and the second wefts 122 may be between 20 denier (D) and 75 denier (D) (20 D to 75 D). Here, interlaced as shown in
(9) The materials of the first warps 111, the first wefts 112, the second warps 121, and the second wefts 122 may be, for example but not limited to, polyester fibers, nylon fibers, cationic dyeable fibers (commonly known as CD yarn), or cotton fibers, and they are not limited thereto. In addition, the first warps 111, the first wefts 112, the second warps 121, and the second wefts 122 may be elastic yarn, so the down-proof double-layer fabric 1 is elastic. Here, the first fabric layer 11 and the second fabric layer 12 may be the same material or different materials, the first warps 111 and the second warps 121 may be the same material or different materials, the first wefts 112 and the second wefts 122 may also be the same material or different materials, and they are not limited thereto.
(10) Moreover, the first warp 111 and the second warp 121 may have different colors, the first weft 112 and the second weft 122 may also have different colors, so that the down-proof double-layer fabric 1 may have various color blocks or areas of various colors and thus double colors or multiple colors appear. It should be also noted that the warps (or wefts) of different materials may be dyed different colors by different dyeing methods. Further, general dyeing methods are classified into yarn-dyed and piece-dyed. Yarn-dyed is that yarn is dyed first and then woven into cloth (commonly known as pre-dyed). Piece-dyed is that cloth is dyed after woven (commonly known as post-dyed). Dyeing methods are not limited thereto.
(11) As described above, as to the down-proof double-layer fabric 1 of the embodiment, in the coupling portions, the first fabric layer 11 and the second fabric layer 12 pass through each other repeatedly, the first warps 111 and the second warps 121 are interlaced, so the down-proof double-layer fabric 1 may utilize the structure of the fabric itself for down-proof by construction. Moreover, in the down-proof double-layer fabric 1 of the embodiment, the linear densities (the unit thereof is denier) of the first warps 111, the first wefts 112, the second warps 121, and the second wefts 122 are within the range described above, the warp density and the weft density are within the range described above, and the warp density and the weft density are added up in the coupling portions. Accordingly, compared with conventional compartments formed by machine sewing, the down-proof double-layer fabric 1 of the embodiment is woven to directly form a double-layer fabric which has a configuration of compartments as a result of that the first fabric layer 11 and the second fabric layer 12 pass through each other repeatedly and the first warps 111 and the second warps 121 are interlaced. Therefore, the down-proof double-layer fabric 1 of the embodiment may reduce the leakage of down caused by machine sewing in comparison with conventional technology. Moreover, compared with conventional down-proof technology (coating, lamination, and calendaring for example), the down-proof double-layer fabric 1 may reduce lots of manufacturing processes and have the advantages of working-hours saving, energy saving (electricity saving, heat saving, and water saving), environmental protection (reduction in water discharge and heat discharge), and reduction in carbon emissions. In addition, when the weft densities of the first fabric layer 11 and the second fabric layer 12 are 300 pieces/inch or more, even without being treated by surface calendaring, the effect of down-proof (down-proof by construction) of the down-proof double-layer fabric 1 is better than other conventional down-proof fabrics with down-proof by machine sewing.
(12) Under the condition of enough warp density and weft density, the down-proof double-layer fabric 1 itself is down-proof (down-proof by construction). To further improve the down-proof capability of the down-proof double-layer fabric 1, in some embodiments, the down-proof double-layer fabric 1 may be further treated by surface calendaring at a temperature (especially when the numbers of or the densities of the warps and the wefts are relatively low), the temperature may be between 50 C. and 70 C., preferably between 63 C. and 69 C., or around 68 C. (around the turn-on temperature of the calendaring machine) for example. It is not necessary to heat to 180 C. to 200 C. like conventional calendaring. Therefore, working-hours saving, energy saving, environmental protection, and reduction in carbon emissions is achieved.
(13) The down-proof double-layer fabric 1 was actually sent to a notarization institution to proceed with two inspections, and the inspection processes and results are as follows. First inspection: the down-proof double-layer fabric 1 is observed after shaken for 45 minutes. No down pierces out the surface of the down-proof double-layer fabric 1, and the surface of the fabric remains ordinary. Second inspection: the down-proof double-layer fabric 1 is observed after shaken for 45 minutes first, washed for 12 minutes with water of 105 F. (40.56 C.) by a washing machine, and then shaken for 45 minutes in a low temperature and dry condition. No down pierces out the surface of the down-proof double-layer fabric 1, and the surface of the fabric still remains ordinary. Thereby, it is proved that the down-proof double-layer fabric 1 of the embodiment can utilize the structure of the fabric itself for down-proof.
(14) Moreover, a down-proof double-layer fabric is also provided. It includes a first fabric layer and a second fabric layer. The first fabric layer has a plurality of first warps and a plurality of first wefts, and the second fabric layer has a plurality of second warps and a plurality of second wefts. The first fabric layer and the second fabric layer have a plurality of coupling portions. In the coupling portions, the first fabric layer and the second fabric layer pass through each other repeatedly, and the first wefts and the second wefts are interlaced. The first warps, the first wefts, the second warps, and the second wefts are between 20 denier (D) and 75 denier (D). The warp densities of the first fabric layer and the second fabric layer are at least 336 pieces/inch, and may be between 366 pieces/inch and 456 pieces/inch (366 pieces/inchwarp density456 pieces/inch), or between 336 pieces/inch and 456 pieces/inch, and the weft densities of the first fabric layer and the second fabric layer are at least 220 pieces/inch, and may be between 220 pieces/inch and 380 pieces/inch. Alternatively, the weft densities of the first fabric layer 11 and the second fabric layer 12 can also be between 220 pieces/inch and 300 pieces/inch, between 220 pieces/inch and 360 pieces/inch, or between 220 pieces/inch and 370 pieces/inch. The technical contents of the first warp and the first weft of this embodiment may respectively correspond to or refer to the first weft 112 and the first warp 111 of the down-proof double-layer fabric 1 described above, the technical contents of the second warp and the second weft of this embodiment may respectively correspond to or refer to the second weft 122 and the second warp 121 of the down-proof double-layer fabric 1 described above, and the technical contents of the first fabric layer and the second fabric layer of this embodiment may respectively correspond to or refer to the first fabric layer 11 and the second fabric layer 12 of the down-proof double-layer fabric 1 described above, so the technical features thereof are not repeated here.
(15) Further, a down-proof double-layer fabric is also provided. It includes a first fabric layer and a second fabric layer. The first fabric layer has a plurality of first warps and a plurality of first wefts, and the second fabric layer has a plurality of second warps and a plurality of second wefts. The first warps, the first wefts, the second warps, and the second wefts are between 20 denier (D) and 75 denier (D). The warp density of the down-proof double-layer fabric is between 336 pieces/inch and 456 pieces/inch, and the weft densities of the first fabric layer and the second fabric layer are between 220 pieces/inch and 300 pieces/inch. The technical contents of the first fabric layer, the second fabric layer, the first warp, the first weft, the second warp, and the second weft may respectively correspond to or refer to the first fabric layer 11, the second fabric layer 12, the first warp 111, the first weft 112, the second warp 121, and the second weft 122 of the down-proof double-layer fabric 1 described above, so the technical features thereof are not repeated here.
(16) In summary, as to the down-proof double-layer fabric of the invention, in the coupling portions, the first fabric layer and the second fabric layer pass through each other repeatedly, the first warps and the second warps or the first wefts and the second wefts are interlaced, so the down-proof double-layer fabric can utilize the structure of the coupling portion of the fabric itself for down-proof by construction. Moreover, as to the down-proof double-layer fabric according to the invention, the first warps, the first wefts, the second warps, and the second wefts are between 20 denier and 75 denier, the warp densities of the first fabric layer and the second fabric layer are between 336 pieces/inch and 456 pieces/inch, and the weft densities of the first fabric layer and the second fabric layer are between 220 pieces/inch and 300 pieces/inch. Accordingly, compared with conventional down-proof by machine sewing, the invention may also reduce the leakage of down caused by machine sewing. Further, in addition to the down-proof, the down-proof double-layer fabric according to the invention may further reduce lots of manufacturing processes and have the advantages of energy saving, environmental protection, and reduction in carbon emissions in comparison with conventional down-proof technology.
(17) Although the present invention has been described with reference to specific embodiments, this description is not meant to be construed in a limiting sense. Various modifications of the disclosed embodiments, as well as alternative embodiments, will be apparent to persons skilled in the art. It is, therefore, contemplated that the appended claims will cover all modifications that fall within the true scope of the present invention.