CN205588705U - Clothes material - Google Patents
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- CN205588705U CN205588705U CN201620287145.9U CN201620287145U CN205588705U CN 205588705 U CN205588705 U CN 205588705U CN 201620287145 U CN201620287145 U CN 201620287145U CN 205588705 U CN205588705 U CN 205588705U
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Abstract
The utility model relates to a textile fabric technical field discloses a clothes material, constitutes by bottom, stamp layer, the layer of protecting against radiation, the stamp level in the bottom with protect against radiation between the layer, the bottom interweave and form according to arranging the circulation on four once by warp and woof, the warp feels by cold that the fibre is alternate with the bamboo fibre to form, the woof is the xylitol fibre. The existing radiation protection functions of this clothes material, it is soft ventilative again, multiple functions such as antistatic, antibiotic, health care in addition.
Description
Technical field
This utility model relates to technical field of textile fabric, is specifically related to a kind of dress materials.
Background technology
Garment material, as the main material of clothing making, is possible not only to annotate the color of clothing, outward appearance, and directly affects the style of clothing, feel, style and moulding.Along with improving constantly of people's living standard, people are more and more higher to the requirement of clothing, and clothing are again to be formed by fabric cutting processing and manufacturing, and thus the characteristic of fabric itself determines the quality of clothing to a great extent.People more and more focus on the medicated clothing waterproof radiation protection to health, constantly research and develop the new material of clothes, utilize suitable technique to add in dress material by various effects of different materials, add the functional of clothes.
The fabric of existing production clothes is typically made up of a kind of material, feature is the most single, the features such as the flexibility and the moisture absorption that cause fabric can not get both, this will greatly reduce the comfort level worn clothes, the silk thread mechanism of fabric is fairly simple simultaneously, it is badly in need of a kind of existing waterproof radiation proof function, flexible, breathable again, the fabric of the most anlistatig effect in the market.
Current clothing are mainly made by containing cotton, hair, silk, fiber crops, the yarn of terylene chemical fibre, people are when wearing clothes activity, cloth textile phase mutual friction can produce electrostatic, thus make clothes tangle viscous body, absorb dust in a large number, wear, send discharge spark when undressing, even there is human body shock phenomenon, cause personal injury, produce when causing person to person or object contact and discharge, thus harmful to human, affect the healthy of people.
Increasingly favor multi-functional comfortableness clothing along with people, people are more and more higher to the demand with functional fabric.Xylitol is the intermediate product of xylose metabolism, is present in majority of plant.Xylitol in xylitol fiber is combined with moisture can cause the water suction endothermic reaction, can produce pleasant cooling feeling, have splendid skin-friendly, function protected to skin.Utilize this principle can go out to have with processing and manufacturing the summer clothes fabric of ice sense pro-skin.Having the fabric of cool feeling in the market mostly to use and pad or the mode of coating, shortcoming is that the endurance quality of ice sense functional effect is poor, the poor air permeability of fabric, and next to the skin easily pastes skin when wearing, and comfortableness is poor.
Utility model content
The purpose of this utility model is to solve the defect of prior art, one is provided to have excellent air permeability, dress materials comfortable and easy to wear, anlistatig, the existing radiation proof function of these dress materials, flexible, breathable again, the also several functions such as antistatic, antibacterial, health care.
To achieve these goals, a kind of dress materials that this utility model provides, described dress materials are made up of bottom, printed layer, radiation protective layer, described printed layer is between bottom and radiation protective layer, described bottom is interwoven by once arranging circulation on four by warp thread and weft yarn, described warp thread is formed by creeping chill fiber and bamboo fibre are alternate, and described weft yarn is xylitol fiber.Discomfort when creeping chill fiber is prevented from moistening, the cooling feeling of the moment generation excellence of contact skin;Bamboo fibre has the characteristics such as good breathability, moment water absorption, stronger wearability and good dyeability, there is natural antibacterial, antibacterial, acaricide, deodorant and anti-ultraviolet function, coordinating with creeping chill fiber to make fabric both have cooling feeling, bacteria breed can be prevented again, pleasant with contact skin;Xylitol in xylitol fiber is combined with moisture can cause the water suction endothermic reaction, can produce pleasant cooling feeling, have splendid skin-friendly, function protected to skin.The fabric that these three kinds of fibers combine both can allow wearer feel cool and comfortable, has again the health-care effects such as antibacterial, antibacterial.
Further, described printed layer comprises multiple printing cell spaced apart, and the spacing of adjacent described printing cell is 0.5cm ~ 1cm.Printing cell different spacing is set and can ensure that precoat will not exist the phenomenon that breathability is the best because of the covering of printed layer.
Further, described printed layer is interwoven by anti-static polyphenylacetylene fiber and tencel fiber.Tencel fiber has higher hygroscopicity, and gloss is graceful, and soft, drapability is good, and elegant property is good.
Further, described anti-static polyphenylacetylene fiber is composited by anti-static polyphenylacetylene and resin material.
Further, described anti-static polyphenylacetylene fiber and tencel fiber surface scribble antistatic additive.
Further, described radiation protective layer is formed by nano-far-infrared ceramic fibre and mercerized cotton fiber interweaving.The fabric that mercerized cotton fiber and nano-far-infrared ceramic fibre are interwoven not only has been fully retained the natural characteristic that raw cotton is excellent, and has soyeux gloss, fabrics feel soft, and moisture absorption is breathed freely, and sense of hanging down is rather good;Fabric is salubrious, comfortable, soft, moisture absorption, permeability are good, and glossiness is splendid, also acts as the effect of radioprotective simultaneously.
Further, described nano-far-infrared ceramic fibre and mercerized cotton fiber surface all scribble reflective heat-insulation paint.Coating reflective heat-insulation paint can suppress solar radiant heat, infrared radiant heat and the conduction of shielding heat, and isolation external heat is transferred to human body.
Further, described printed layer is arranged on described bottom by the way of ROTARY SCREAM PRINTING, PLATE SCREAM PRINTING or roller printing.
The beneficial effects of the utility model:
(1) dress materials bottom of the present utility model is set to creeping chill fiber, bamboo fibre and three kinds of fibers combination compositions of xylitol fiber, make, when bottom and human contact, both there is nice and cool, comfort, there is again good breathability, moment water absorption, the health-care effect such as antibacterial, antibacterial.
(2) printing cell different spacing is set and can ensure that precoat will not exist the phenomenon that breathability is the best because of the covering of printed layer.Meanwhile, printed layer is made up of anti-static polyphenylacetylene fiber and tencel fiber, and tencel fiber has higher hygroscopicity, and gloss is graceful, and soft, drapability is good, and elegant property is good;Anti-static polyphenylacetylene fiber has good mechanics and antistatic property;The printed layer that thus two kinds of fibers are bonded both had had the antistatic property of excellence, also had softness, comfort.
(3) radiation protective layer is made up of nano-far-infrared ceramic fibre and mercerized cotton fiber, natural characteristic that raw cotton excellent has not only been fully retained, and has had soyeux gloss, fabrics feel soft, and moisture absorption is breathed freely, and sense of hanging down is rather good;Fabric is salubrious, comfortable, soft, moisture absorption, permeability are good, and glossiness is splendid, also acts as the effect of radioprotective simultaneously.
(4) coating reflective heat-insulation paint can suppress solar radiant heat, infrared radiant heat and the conduction of shielding heat, and isolation external heat is transferred to human body.
(5) dress materials reasonable in design disclosed in this utility model, by combination orderly for each layer, it makes to have between each layer synergistic combinations effect, can preferably play the function between each layer simultaneously.
Accompanying drawing explanation
Fig. 1 is the structural representation of a kind of dress materials of this utility model;
Fig. 2 is the tangent plane structural representation of a kind of dress materials of this utility model;
Fig. 3 is the structural representation of this utility model a kind of dress materials bottom;
Description of reference numerals: 1, bottom;11, creeping chill fiber;12, bamboo fibre;13, xylitol fiber;2, printed layer;3, radiation protective layer.
Detailed description of the invention
Below in conjunction with the accompanying drawings this utility model is further described.Following example are only used for clearly illustrating the technical solution of the utility model, and can not limit protection domain of the present utility model with this.
As described in Fig. 1-3, a kind of dress materials, it is made up of bottom 1, printed layer 2, radiation protective layer 3, described printed layer 2 is between bottom 1 and radiation protective layer 3, printed layer 2 is arranged on described bottom 1 by the way of ROTARY SCREAM PRINTING, PLATE SCREAM PRINTING or roller printing, described bottom 1 is interwoven by once arranging circulation on four by warp thread and weft yarn, and described warp thread is by creeping chill fiber 11 and bamboo fibre 12 is alternate forms, and described weft yarn is xylitol fiber 13.Described printed layer 2 is interwoven by anti-static polyphenylacetylene fiber and tencel fiber, antistatic additive is scribbled at anti-static polyphenylacetylene fiber and tencel fiber surface, described anti-static polyphenylacetylene fiber is composited by anti-static polyphenylacetylene and resin material, described printed layer 2 comprises multiple printing cell spaced apart, and the spacing of adjacent described printing cell is 0.5cm ~ 1cm.Printing cell different spacing is set and can ensure that precoat will not exist the phenomenon that breathability is the best because of the covering of printed layer.Described radiation protective layer 3 is formed by nano-far-infrared ceramic fibre and mercerized cotton fiber interweaving, all scribbles reflective heat-insulation paint at nano-far-infrared ceramic fibre and mercerized cotton fiber surface.Coating reflective heat-insulation paint can suppress solar radiant heat, infrared radiant heat and the conduction of shielding heat, and isolation external heat is transferred to human body.
By using technique scheme, bottom is set to be combined formed by creeping chill fiber, bamboo fibre and three kinds of fibers of xylitol fiber, make, when bottom and human contact, both there is nice and cool, comfort, there is again good breathability, moment water absorption, the health-care effect such as antibacterial, antibacterial.Discomfort when creeping chill fiber is prevented from moistening, the cooling feeling of the moment generation excellence of contact skin;Bamboo fibre has the characteristics such as good breathability, moment water absorption, stronger wearability and good dyeability, there is natural antibacterial, antibacterial, acaricide, deodorant and anti-ultraviolet function, coordinating with creeping chill fiber to make fabric both have cooling feeling, bacteria breed can be prevented again, pleasant with contact skin;Xylitol in xylitol fiber is combined with moisture can cause the water suction endothermic reaction, can produce pleasant cooling feeling, have splendid skin-friendly, function protected to skin.Printed layer is set to multiple printing cell spaced apart, it can be ensured that precoat will not exist the phenomenon that breathability is the best because of the covering of printed layer.Radiation protective layer is made up of nano-far-infrared ceramic fibre and mercerized cotton fiber, natural characteristic that raw cotton excellent has not only been fully retained, and has had soyeux gloss, fabrics feel soft, and moisture absorption is breathed freely, and sense of hanging down is rather good;Fabric is salubrious, comfortable, soft, moisture absorption, permeability are good, and glossiness is splendid, also acts as the effect of radioprotective simultaneously.By the orderly combination between above layers, make to have between each layer synergistic combinations effect, can preferably play the function between each layer simultaneously, the existing radiation proof function of these dress materials can be made, flexible, breathable again, the also several functions such as antistatic, antibacterial, health care.
It is last that it is noted that obviously above-described embodiment is only for clearly demonstrating this utility model example, and not restriction to embodiment.For those of ordinary skill in the field, can also make other changes in different forms on the basis of the above description.Here without also cannot all of embodiment be given exhaustive.And the obvious change thus amplified out or variation still in protection domain of the present utility model among.
Claims (7)
1. dress materials, it is characterized in that, described dress materials are made up of bottom, printed layer, radiation protective layer, described printed layer is between bottom and radiation protective layer, described bottom is interwoven by once arranging circulation on four by warp thread and weft yarn, described warp thread is formed by creeping chill fiber and bamboo fibre are alternate, and described weft yarn is xylitol fiber.
A kind of dress materials the most according to claim 1, it is characterised in that described printed layer comprises multiple printing cell spaced apart, and the spacing of adjacent described printing cell is 0.5cm ~ 1cm.
A kind of dress materials the most according to claim 2, it is characterised in that described printed layer is interwoven by anti-static polyphenylacetylene fiber and tencel fiber.
A kind of dress materials the most according to claim 3, it is characterised in that described anti-static polyphenylacetylene fiber and tencel fiber surface scribble antistatic additive.
A kind of dress materials the most according to claim 1, it is characterised in that described radiation protective layer is formed by nano-far-infrared ceramic fibre and mercerized cotton fiber interweaving.
A kind of dress materials the most according to claim 5, it is characterised in that described nano-far-infrared ceramic fibre and mercerized cotton fiber surface all scribble reflective heat-insulation paint.
7. according to a kind of dress materials described in any one of claim 1-6, it is characterised in that described printed layer is arranged on described bottom by the way of ROTARY SCREAM PRINTING, PLATE SCREAM PRINTING or roller printing.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201620287145.9U CN205588705U (en) | 2016-04-08 | 2016-04-08 | Clothes material |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201620287145.9U CN205588705U (en) | 2016-04-08 | 2016-04-08 | Clothes material |
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CN205588705U true CN205588705U (en) | 2016-09-21 |
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CN201620287145.9U Active CN205588705U (en) | 2016-04-08 | 2016-04-08 | Clothes material |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2019119468A1 (en) * | 2017-12-20 | 2019-06-27 | 广东鹏运实业有限公司 | Nano-composite layer clothing material |
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2016
- 2016-04-08 CN CN201620287145.9U patent/CN205588705U/en active Active
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2019119468A1 (en) * | 2017-12-20 | 2019-06-27 | 广东鹏运实业有限公司 | Nano-composite layer clothing material |
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