CN221161758U - High-density ultrathin flame-retardant antistatic polyester fabric - Google Patents
High-density ultrathin flame-retardant antistatic polyester fabric Download PDFInfo
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- CN221161758U CN221161758U CN202322792955.2U CN202322792955U CN221161758U CN 221161758 U CN221161758 U CN 221161758U CN 202322792955 U CN202322792955 U CN 202322792955U CN 221161758 U CN221161758 U CN 221161758U
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Abstract
The utility model discloses a high-density ultrathin flame-retardant antistatic polyester fabric, which comprises the following components: a fabric main body; the fabric main body comprises a fabric layer, a flame-retardant layer and an intermediate layer for connecting the fabric layer and the flame-retardant layer; warp yarns and weft yarns are interwoven in a five-piece satin structure; the warp yarn adopts glass fiber polyester yarn with fineness of 75D-95D specification, and the weft yarn adopts glass fiber polyester yarn with fineness of 150D-170D specification; the antistatic layer and the waterproof layer are sequentially arranged between the fabric layer and the flame-retardant layer; an antibacterial layer is arranged between the antistatic layer and the waterproof layer; the antistatic layer and the waterproof layer are thermally bonded with the antibacterial layer; the first flame-retardant layer is arranged between the fabric layer and the antistatic layer, and the second flame-retardant layer is arranged on the surface of the waterproof layer. The utility model has higher density, can effectively block flame and heat source, provides better flame retardant property and protects the safety of users; meanwhile, the fabric layer, the middle layer and the flame-retardant layer are connected into a whole through the connecting line quilting, so that the stability and durability of the fabric are improved, and the fabric is firmer and durable.
Description
Technical Field
The utility model relates to the field of ultrathin polyester fabrics, in particular to a high-density ultrathin flame-retardant antistatic polyester fabric.
Background
Polyester fiber, namely polyester commonly known as polyester, is a synthetic fiber prepared from organic dibasic acid and dihydric alcohol through chemical polycondensation. Polyester fibers have many advantages. First, the wrinkle resistance and the shape retention are excellent, and the manufactured clothing is not easy to wrinkle in the wearing process, and the original shape of the clothing can be maintained. Second, the polyester fiber has high strength and elastic recovery ability, so that the woven fabric is sturdy and durable, and can be quickly restored. Thirdly, the polyester fiber also has the characteristics of abrasion resistance, non-sticking hair and the like, so that the fabric can be more neat.
Polyester fabric is a very large number of chemical fiber clothing fabric used in daily life. The biggest advantage is that the crease resistance and the shape retention are good, so that the anti-wrinkle fabric is suitable for being used as outdoor articles such as outerwear, various cases and tents. Polyester has a wide variety of uses, and is used in a wide variety of articles of clothing and industry. The flame-retardant polyester has permanent flame retardance and wide application range, and plays an irreplaceable role in the fields of protective clothing besides industrial textiles, building interior decoration, vehicle interior decoration and the like.
CN218892319U in the prior art discloses an ultra-thin smooth-handfeel elastic ultra-soft cloth, wherein the main cloth body comprises an outer surface layer, a shape-preserving layer, an elastic layer and a moisture absorption layer, and the ultra-thin polyester fiber has good strength and toughness and can not deform after repeated rubbing; the polypropylene fiber has the characteristics of high strength and good elasticity, and is convenient for the cloth to have good elasticity and not easy to wrinkle; the polyacrylonitrile fiber has soft hand feeling, the silk fiber has good skin-friendly property, and the natural silk can absorb moisture in air, so that the cloth can feel soft and comfortable when being touched, and the sweat-absorbing effect has good skin-friendly effect.
However, the above prior art has the following problems:
(1) The superfine polyester fiber used in the prior art has poor hygroscopicity, is sultry in summer, and is easy to be charged with static electricity in winter, thereby affecting comfort.
(2) In the prior art, polyacrylonitrile fibers and polypropylene fibers are easy to melt and burn at high temperature, so that the flame retardant property of the fabric is poor, the application range of the fabric is shortened, and the flame retardant efficiency of the fabric cannot be ensured.
Accordingly, there is an urgent need for improvements in the art to solve the above-mentioned problems.
Disclosure of Invention
The utility model overcomes the defects of the prior art and provides the high-density ultrathin flame-retardant antistatic polyester fabric.
In order to achieve the above purpose, the utility model adopts the following technical scheme: a high-density ultrathin flame-retardant antistatic polyester fabric, comprising: a fabric main body;
the fabric main body comprises: a facestock layer, a flame retardant layer, and an intermediate layer for connecting the facestock layer and the flame retardant layer;
the fabric layer comprises: warp and weft yarns; the warp yarns and the weft yarns are interwoven in a five-piece satin structure; the warp yarn adopts glass fiber polyester yarns with fineness of 75D-95D specification, and the weft yarn adopts glass fiber polyester yarns with fineness of 150D-170D specification;
The intermediate layer includes: the antistatic layer and the waterproof layer are sequentially arranged between the fabric layer and the flame-retardant layer; an antibacterial layer is arranged between the antistatic layer and the waterproof layer; the antistatic layer and the waterproof layer are thermally bonded with the antibacterial layer;
The flame retardant layer includes: the first flame-retardant layer is arranged between the fabric layer and the antistatic layer, and the second flame-retardant layer is arranged on the surface of the waterproof layer;
the fabric layer, the middle layer and the flame-retardant layer are quilted into a whole through connecting wires.
In a preferred embodiment of the present utility model, each glass fiber polyester yarn includes a polyester roving and 2 to 4 glass fiber spun yarns spirally wound on the surface of the polyester roving.
In a preferred embodiment of the present utility model, the diameter of the polyester roving is not greater than 16 μm, and the diameter of the glass fiber spun yarn is not greater than 6 μm.
In a preferred embodiment of the present utility model, the first flame retardant layer is made of a flame retardant knitted fabric, and the second flame retardant layer is made of a flame retardant polyester fabric.
In a preferred embodiment of the present utility model, a plurality of ventilation holes are formed through the surface of the antibacterial layer, and the ventilation holes are arranged in a horizontal array.
In a preferred embodiment of the present utility model, the antibacterial layer is internally filled with an antibacterial filler, and the antibacterial filler is silver ion antibacterial gel.
In a preferred embodiment of the present utility model, the surfaces of the first flame retardant layer and the second flame retardant layer are coated with a composite aluminum magnesium silicate coating.
In a preferred embodiment of the present utility model, the antistatic layer is made of antistatic all-cotton fabric, and the waterproof layer is made of waterproof breathable fabric.
In a preferred embodiment of the present utility model, the connection wire is spandex filament.
In a preferred embodiment of the present utility model, a flame retardant is attached to the surface of the spandex filament.
The utility model solves the defects existing in the background technology, and has the following beneficial effects:
(1) The utility model provides a high-density ultrathin flame-retardant antistatic polyester fabric which has higher density, can effectively block flame and heat sources, provides better flame retardant performance and protects the safety of users; meanwhile, the fabric layer, the middle layer and the flame-retardant layer are connected into a whole through the connecting line quilting, so that the stability and durability of the fabric are improved, and the fabric is firmer and durable.
(2) The fabric layer is arranged, and the warp yarns and the weft yarns are interwoven in a five-piece satin structure, so that the density and the strength of the fabric are increased, and the wear resistance and the service life of the fabric are improved; warp yarns made of glass fiber polyester yarns with fineness of 75D-95D and weft yarns made of glass fiber polyester yarns with fineness of 150D-170D have higher strength and durability.
(3) The utility model is provided with the intermediate layer, the antistatic layer can effectively eliminate static electricity, prevent the harm of static electricity to human bodies and equipment, and improve the comfort and safety of users; the waterproof layer can prevent moisture from penetrating into the fabric, so that the drying performance of the fabric is maintained, and the service life of the fabric is prolonged; the antibacterial layer can effectively inhibit bacterial growth, keep the sanitary performance of the fabric and reduce the harm of bacteria to users.
(4) The utility model is also provided with the flame-retardant layer, the first flame-retardant layer is arranged between the fabric layer and the antistatic layer, so that additional flame-retardant protection can be provided, and the flame-retardant performance of the fabric is improved; the second flame retardant layer is arranged on the surface of the waterproof layer, so that the flame retardant property of the fabric can be further improved, and the safety of the fabric is improved.
Drawings
The utility model is further described below with reference to the drawings and examples;
Fig. 1 is an overall perspective view of a fabric body of the present utility model;
FIG. 2 is a detail view at A in FIG. 1;
FIG. 3 is a schematic perspective view of a glass fiber polyester yarn of the present utility model;
In the figure: 1. a fabric layer; 11. warp yarns; 12. weft yarns; 13. glass fiber polyester yarns; 131. polyester roving; 132. glass fiber spun yarn; 2. an intermediate layer; 21. an antistatic layer; 22. a waterproof layer; 23. an antimicrobial layer; 3. a flame retardant layer; 31. a first flame retardant layer; 32. a second flame retardant layer; 4. and a vent hole.
Detailed Description
The utility model will now be described in further detail with reference to the drawings and examples, which are simplified schematic illustrations of the basic structure of the utility model, which are presented only by way of illustration, and thus show only the structures that are relevant to the utility model.
Example 1
Fig. 1 shows an overall three-dimensional structure diagram of a high-density ultrathin flame-retardant antistatic polyester fabric in the utility model, which comprises: a fabric main body; the fabric main body comprises: a facestock layer 1, a flame retardant layer 3, and an intermediate layer 2 for connecting the facestock layer 1 and the flame retardant layer 3.
The fabric layer 1, the middle layer 2 and the flame-retardant layer 3 are quilted into a whole through connecting wires; the connecting wire is spandex yarn; the surface of the spandex yarn is attached with a flame retardant.
The embodiment provides the high-density ultrathin flame-retardant antistatic polyester fabric which has higher density, can effectively block flame and heat sources, provides better flame retardant performance and protects the safety of users; meanwhile, the fabric layer 1, the middle layer 2 and the flame-retardant layer 3 are connected into a whole through the connecting line quilting, so that the stability and the durability of the fabric are improved, and the fabric is firmer and durable.
FIG. 2 is a detail view at A in FIG. 1; the fabric layer 1 includes: warp yarn 11 and weft yarn 12; warp 11 and weft 12 are interwoven in a five-piece satin structure; the warp yarn 11 adopts glass fiber polyester yarns 13 with fineness of 75D-95D, and the weft yarn 12 adopts glass fiber polyester yarns 13 with fineness of 150D-170D.
The intermediate layer 2 includes: an antistatic layer 21 and a waterproof layer 22 sequentially disposed between the fabric layer 1 and the flame retardant layer 3; an antibacterial layer 23 is arranged between the antistatic layer 21 and the waterproof layer 22; the antistatic layer 21 and the waterproof layer 22 are thermally bonded to the antibacterial layer 23.
The surface of the antibacterial layer 23 is provided with a plurality of vent holes 4 in a penetrating way, and the vent holes 4 are distributed in a horizontal array; the antibacterial layer 23 is internally filled with antibacterial filler, and the antibacterial filler is silver ion antibacterial gel.
The antistatic layer 21 is made of antistatic all-cotton fabric, and the waterproof layer 22 is made of waterproof breathable fabric.
The antistatic layer 21 in the embodiment can effectively eliminate static electricity, prevent the harm of the static electricity to human bodies and equipment, and improve the comfort and safety of users; the waterproof layer 22 can prevent moisture from penetrating into the fabric, so that the drying performance of the fabric is maintained, and the service life of the fabric is prolonged; the antibacterial layer 23 can effectively inhibit bacteria from breeding, keep the sanitary performance of the fabric and reduce the harm of bacteria to users.
The flame retardant layer 3 includes: a first flame retardant layer 31 disposed between the fabric layer 1 and the antistatic layer 21, and a second flame retardant layer 32 disposed on the surface of the waterproof layer 22.
The first flame-retardant layer 31 is made of flame-retardant knitted fabric, and the second flame-retardant layer 32 is made of flame-retardant polyester fabric; the surfaces of the first flame retardant layer 31 and the second flame retardant layer 32 are coated by adopting composite aluminum magnesium silicate paint.
It should be noted that, the first flame retardant layer 31 is disposed between the fabric layer 1 and the antistatic layer 21, which can provide additional flame retardant protection, and increase the flame retardant performance of the fabric; the second flame retardant layer 32 is arranged on the surface of the waterproof layer 22, so that the flame retardant property of the fabric can be further improved, and the safety of the fabric is improved.
Example 2
Fig. 3 is a schematic perspective view of a glass fiber polyester yarn 13 according to the present utility model; each glass fiber polyester yarn 13 comprises a polyester roving 131 and 2-4 glass fiber spun yarns 132 spirally wound on the surface of the polyester roving 131; the diameter of the polyester roving 131 is not more than 16 μm, and the diameter of the glass fiber spun yarn 132 is not more than 6 μm.
The warp 11 and the weft 12 are interwoven in a five-piece satin structure, so that the density and the strength of the fabric are increased, and the wear resistance and the service life of the fabric are improved; warp yarn 11 made of glass fiber polyester yarn 13 with fineness of 75D-95D and weft yarn 12 made of glass fiber polyester yarn 13 with fineness of 150D-170D have higher strength and durability.
When the utility model is used, firstly, the warp yarn 11 and the weft yarn 12 are interweaved in a five-piece satin structure; the warp yarn 11 adopts glass fiber polyester yarns 13 with fineness of 75D-95D specification, and the weft yarn 12 adopts glass fiber polyester yarns 13 with fineness of 150D-170D specification; each glass fiber polyester yarn 13 comprises a polyester roving 131 and 2-4 glass fiber spun yarns 132 spirally wound on the surface of the polyester roving 131; the diameter of the polyester roving 131 is not more than 16 mu m, and the diameter of the glass fiber spun yarn 132 is not more than 6 mu m; then an antistatic layer 21 is made of antistatic all-cotton fabric, silver ion antibacterial gel is filled in the antibacterial layer 23, and a waterproof layer 22 is made of waterproof breathable fabric; then a first flame-retardant layer 31 made of flame-retardant knitted fabric is arranged between the fabric layer 1 and the antistatic layer 21, and a second flame-retardant layer 32 made of flame-retardant polyester fabric is arranged on the surface of the waterproof layer 22; finally, a flame retardant is attached to the surface of the connecting wire, namely the spandex yarn, and the fabric layer 1, the middle layer 2 and the flame retardant layer 3 are quilted into a whole through the connecting wire.
The above-described preferred embodiments according to the present utility model are intended to suggest that, from the above description, various changes and modifications can be made by the person skilled in the art without departing from the scope of the technical idea of the present utility model. The technical scope of the present utility model is not limited to the description, but must be determined according to the scope of claims.
Claims (10)
1. A high-density ultrathin flame-retardant antistatic polyester fabric, comprising: the fabric main body is characterized in that,
The fabric main body comprises: a fabric layer (1), a flame retardant layer (3), and an intermediate layer (2) for connecting the fabric layer (1) and the flame retardant layer (3);
The fabric layer (1) comprises: warp yarns (11) and weft yarns (12); the warp yarns (11) and the weft yarns (12) are interwoven in a five-piece satin structure; the warp yarn (11) adopts glass fiber polyester yarns (13) with fineness of 75D-95D specification, and the weft yarn (12) adopts glass fiber polyester yarns (13) with fineness of 150D-170D specification;
The intermediate layer (2) comprises: an antistatic layer (21) and a waterproof layer (22) which are sequentially arranged between the fabric layer (1) and the flame-retardant layer (3); an antibacterial layer (23) is arranged between the antistatic layer (21) and the waterproof layer (22); the antistatic layer (21) and the waterproof layer (22) are thermally bonded with the antibacterial layer (23);
The flame retardant layer (3) comprises: a first flame-retardant layer (31) arranged between the fabric layer (1) and the antistatic layer (21), and a second flame-retardant layer (32) arranged on the surface of the waterproof layer (22);
The fabric layer (1), the middle layer (2) and the flame-retardant layer (3) are quilted into a whole through connecting lines.
2. The high-density ultrathin flame-retardant antistatic polyester fabric as claimed in claim 1, wherein the high-density ultrathin flame-retardant antistatic polyester fabric is characterized in that: each glass fiber polyester yarn (13) comprises a polyester roving (131) and 2-4 glass fiber spun yarns (132) spirally wound on the surface of the polyester roving (131).
3. The high-density ultrathin flame-retardant antistatic polyester fabric as claimed in claim 2, wherein the high-density ultrathin flame-retardant antistatic polyester fabric is characterized in that: the diameter of the polyester roving (131) is not more than 16 mu m, and the diameter of the glass fiber spun yarn (132) is not more than 6 mu m.
4. The high-density ultrathin flame-retardant antistatic polyester fabric as claimed in claim 1, wherein the high-density ultrathin flame-retardant antistatic polyester fabric is characterized in that: the first flame-retardant layer (31) is made of flame-retardant knitted fabric, and the second flame-retardant layer (32) is made of flame-retardant polyester fabric.
5. The high-density ultrathin flame-retardant antistatic polyester fabric as claimed in claim 1, wherein the high-density ultrathin flame-retardant antistatic polyester fabric is characterized in that: the surface of the antibacterial layer (23) is provided with a plurality of vent holes (4) in a penetrating mode, and the vent holes (4) are distributed in a horizontal array mode.
6. The high-density ultrathin flame-retardant antistatic polyester fabric disclosed in claim 5, wherein the high-density ultrathin flame-retardant antistatic polyester fabric is characterized in that: the antibacterial layer (23) is internally filled with antibacterial filler, and the antibacterial filler is silver ion antibacterial gel.
7. The high-density ultrathin flame-retardant antistatic polyester fabric disclosed in claim 4, wherein the high-density ultrathin flame-retardant antistatic polyester fabric is characterized in that: the surfaces of the first flame-retardant layer (31) and the second flame-retardant layer (32) are coated by adopting composite aluminum magnesium silicate paint.
8. The high-density ultrathin flame-retardant antistatic polyester fabric as claimed in claim 1, wherein the high-density ultrathin flame-retardant antistatic polyester fabric is characterized in that: the antistatic layer (21) is made of antistatic all-cotton fabric, and the waterproof layer (22) is made of waterproof breathable fabric.
9. The high-density ultrathin flame-retardant antistatic polyester fabric as claimed in claim 1, wherein the high-density ultrathin flame-retardant antistatic polyester fabric is characterized in that: the connecting wire is spandex yarn.
10. The high-density ultrathin flame-retardant antistatic polyester fabric as claimed in claim 9, wherein: the surface of the spandex filament is attached with a flame retardant.
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CN202322792955.2U CN221161758U (en) | 2023-10-18 | 2023-10-18 | High-density ultrathin flame-retardant antistatic polyester fabric |
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CN202322792955.2U CN221161758U (en) | 2023-10-18 | 2023-10-18 | High-density ultrathin flame-retardant antistatic polyester fabric |
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CN202322792955.2U Active CN221161758U (en) | 2023-10-18 | 2023-10-18 | High-density ultrathin flame-retardant antistatic polyester fabric |
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