CN213861089U - Anti-static printing and dyeing fabric - Google Patents

Anti-static printing and dyeing fabric Download PDF

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Publication number
CN213861089U
CN213861089U CN202022766507.1U CN202022766507U CN213861089U CN 213861089 U CN213861089 U CN 213861089U CN 202022766507 U CN202022766507 U CN 202022766507U CN 213861089 U CN213861089 U CN 213861089U
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layer
antistatic
static
fabric
elastic layer
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CN202022766507.1U
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李红波
熊月芳
罗祥洪
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Wuhan Daoqi Knitwear Co ltd
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Wuhan Daoqi Knitwear Co ltd
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Abstract

The utility model belongs to the technical field of the fabrics and specifically relates to a prevent static printing and dyeing surface fabric is related to, and it includes skin-friendly layer and antistatic layer, antistatic layer and skin-friendly layer fixed connection, and one side that antistatic layer deviates from skin-friendly layer is provided with waterproof ventilative layer, is provided with between waterproof ventilative layer and the antistatic layer and prevents the static subassembly. This application has the effect that prevents static and produce, prevents that the surface fabric from adsorbing the dust or producing the fold because of static for the clothing that the surface fabric was made is more comfortable pleasing to the eye.

Description

Anti-static printing and dyeing fabric
Technical Field
The application relates to the field of textiles, in particular to an anti-static printing and dyeing fabric.
Background
With the continuous development of fabric printing and dyeing technology, various types of fabrics come out endlessly, and with the continuous improvement of the living standard of people, higher and higher requirements are put forward on printing and dyeing processes and fabrics.
The Chinese patent with the publication number of CN209718801U retrieved now discloses a three-dimensional printing and dyeing fabric, which comprises a printing and dyeing layer, wherein printing and dyeing blocks are arranged above the printing and dyeing layer, the lower surfaces of the printing and dyeing blocks are provided with connecting blocks, a waterproof layer is arranged below the printing and dyeing layer, a first heat-preservation layer is arranged below the waterproof layer, a functional cylinder is fixedly connected to the lower surface of the first heat-preservation layer, and a second heat-preservation layer is fixedly connected to the lower surfaces of the functional cylinders.
In view of the above-described related art, the inventors believe that when a printed fabric is made into a garment for wearing, static electricity is easily generated, reducing the comfort of the user.
SUMMERY OF THE UTILITY MODEL
In order to solve the problem that static electricity is easily generated in the printing and dyeing fabric, the application provides an anti-static printing and dyeing fabric.
The application provides an antistatic printing and dyeing fabric adopts following technical scheme:
antistatic printing and dyeing surface fabric, including close skin layer and antistatic layer, antistatic layer with close skin layer fixed connection, one side that antistatic layer deviates from close skin layer is provided with waterproof ventilative layer, waterproof ventilative layer with be provided with between the antistatic layer and prevent the static subassembly.
By adopting the technical scheme, the waterproof breathable layer is utilized to enhance the air tightness and water tightness of the fabric, and meanwhile, the vapor permeability of the waterproof breathable layer is utilized to quickly discharge the water vapor in the structure, so that the mildew breeding is avoided, and the fabric is kept dry and comfortable; the skin-friendly layer is soft and comfortable and is suitable for being directly contacted with the skin of a human body; utilize antistatic layer and antistatic component between waterproof ventilative layer and the close skin layer, be favorable to reducing the static that the surface fabric friction produced, be favorable to preventing that the surface fabric from adsorbing the dust or producing the fold because of static for the clothing that the surface fabric was made is more comfortable pleasing to the eye.
Preferably, prevent that static subassembly includes a plurality of static strips of preventing, the antistatic layer orientation deviates from the direction on close skin layer has set gradually first elastic layer and second elastic layer, and is a plurality of prevent static strip fixed connection in first elastic layer with between the second elastic layer.
Through adopting above-mentioned technical scheme, utilize first elastic layer and second elastic layer to be favorable to fixed antistatic strip, strengthen the antistatic properties of surface fabric, and first elastic layer and second elastic layer have certain elasticity, are favorable to strengthening anti-distortion, the tensile strength of antistatic strip, are favorable to making the surface fabric keep level, prevent that the surface fabric from warping.
Preferably, a plurality of the anti-static strips are parallel to each other and arranged at intervals, and a cavity is formed between every two adjacent anti-static strips and the first elastic layer and the second elastic layer.
Through adopting above-mentioned technical scheme, utilize two adjacent anti-static strips and the first elastic layer and the cavity that forms between the second elastic layer, be favorable to providing the distortion space for anti-static strip, improve the anti-distortion performance of anti-static strip, be favorable to strengthening the air current flow of surface fabric inner structure simultaneously, improve the vapor permeability of surface fabric.
Preferably, the skin-friendly layer antistatic layer and all run through between the first elastic layer and seted up a plurality of bleeder vents, it is a plurality of the bleeder vent all with the cavity intercommunication.
Through adopting above-mentioned technical scheme, through bleeder vent and cavity intercommunication, be favorable to making the air pass close skin layer, antistatic layer and first elastic layer, then form the intersection with the air in the cavity, be favorable to improving the vapor permeability of surface fabric.
Preferably, an anti-radiation layer is arranged between the second elastic layer and the waterproof breathable layer.
By adopting the technical scheme, the radiation-proof layer is high in conductivity and shielding efficiency, the electromagnetic protection performance of the fabric is favorably improved, and the generation of static electricity is favorably reduced.
Preferably, one side of the waterproof breathable layer, which is far away from the skin-friendly layer, is fixedly connected with a carbon fiber layer.
By adopting the technical scheme, the carbon fiber layer is formed by processing acrylic fibers and viscose fibers, has the characteristics of high temperature resistance, friction resistance, electric conduction, heat conduction, corrosion resistance and the like, is positioned on one side of the fabric far away from the skin-friendly layer, is favorable for protecting the overall structure of the fabric and prevents the fabric from being damaged.
Preferably, the first elastic layer and the second elastic layer are both made of spandex fabric.
By adopting the technical scheme, the spandex fabric is also named as polyurethane fiber fabric, is made of spandex, and has excellent elasticity.
Preferably, the skin-friendly layer is made of bamboo fiber fabric.
By adopting the technical scheme, the bamboo fiber fabric is made of bamboo serving as a raw material through a special process, and then is woven to form the novel fabric, so that the novel fabric has the characteristics of softness, warmness, bacteriostasis, antibacterium, moisture absorption, breathability, environmental protection, ultraviolet resistance, natural health care, comfort, attractiveness and the like, and is more comfortable when being worn by being attached to skin.
In summary, the present application includes at least one of the following beneficial technical effects:
1. the skin-friendly layer is soft and smooth, moisture-absorbing and breathable, and is more comfortable when being worn by a user by being attached to the skin, and the antistatic performance of the fabric is enhanced by the antistatic layer and the antistatic strips, so that the fabric is prevented from adsorbing dust or generating wrinkles due to static electricity, and clothes made of the fabric are more comfortable and attractive;
2. the air holes are communicated with the cavity, so that air passes through the air holes to be intersected with the cavity, the airflow flow of the internal structure of the fabric is enhanced, and the air permeability of the waterproof air-permeable layer is utilized to improve the air permeability of the fabric, so that the fabric is dry and comfortable;
3. the anti-radiation layer is utilized to improve the conductivity, shielding effectiveness and antibacterial performance of the fabric, mildew breeding is avoided while the generation of static electricity is reduced, the carbon fiber layer is high temperature resistant, anti-friction, corrosion resistant and the like, the fabric is prevented from being damaged, and the service life of the fabric is prolonged.
Drawings
Fig. 1 is a schematic overall structure diagram of an embodiment of the present application.
Description of reference numerals: 1. a skin-friendly layer; 2. an antistatic layer; 3. a first elastic layer; 4. an anti-static strip; 5. a second elastic layer; 6. a radiation protective layer; 7. a waterproof breathable layer; 8. a carbon fiber layer; 9. a cavity; 10. and (4) air holes.
Detailed Description
The present application is described in further detail below with reference to fig. 1.
The embodiment of the application discloses an anti-static printing and dyeing fabric.
Referring to fig. 1, antistatic printing and dyeing surface fabric, including close skin layer 1 and antistatic layer 2, close skin layer 1 adopts bamboo fiber fabric to make, and antistatic layer 2 adopts antistatic fabric to make, and antistatic layer 2 is fixed with close skin layer 1 bonding, and one side that antistatic layer 2 deviates from close skin layer 1 is provided with waterproof ventilative layer 7, and waterproof ventilative layer 7 adopts waterproof ventilative surface fabric to make.
Be provided with between waterproof ventilative layer 7 and the antistatic layer 2 and prevent the static subassembly, prevent that the static subassembly includes a plurality of antistatic strip 4, prevent that antistatic strip 4 adopts rectangular form antistatic fabric to make, antistatic layer 2 orientation deviates from the direction on close skin layer 1 and has set gradually first elastic layer 3 and second elastic layer 5, and first elastic layer 3 and second elastic layer 5 all adopt the spandex surface fabric to make.
First elastic layer 3 is fixed with the bonding of antistatic layer 2, and a plurality of antistatic strip 4 are fixed with the bonding of first elastic layer 3, and a plurality of antistatic strip 4 are parallel to each other and equidistant setting, and second elastic layer 5 is fixed with the one end bonding that a plurality of antistatic strip 4 deviate from first elastic layer 3 to be formed with cavity 9 between adjacent two antistatic strip 4 and first elastic layer 3 and second elastic layer 5. A plurality of air holes 10 are formed among the skin-friendly layer 1, the antistatic layer 2 and the first elastic layer 3 in a penetrating manner, and the air holes 10 are communicated with the cavity 9.
The waterproof breathable layer 7 is used for enhancing the air tightness and water tightness of the fabric, and meanwhile, the vapor permeability of the waterproof breathable layer is used for rapidly discharging the water vapor in the structure, so that the mildew is prevented from breeding, and the fabric is kept dry and comfortable; the bamboo fiber fabric adopted by the skin-friendly layer 1 is made of bamboo serving as a raw material through a special process, and then is woven to form a novel fabric, so that the novel fabric has the characteristics of softness, smoothness, softness, warmness, moisture absorption, breathability, greenness, environmental friendliness and the like, and is more comfortable when being worn by being attached to skin.
The antistatic fabric that antistatic layer 2 adopted is with conducting wire and cotton thread textile, utilizes conducting wire to be favorable to reducing the static that the surface fabric friction produced, utilizes first elastic layer 3 and second elastic layer 5 to be favorable to fixed antistatic strip 4, strengthens the antistatic performance of surface fabric through antistatic strip 4 to prevent that the surface fabric from adsorbing the dust or producing the fold because of static, make the clothing that the surface fabric was made more comfortable pleasing to the eye.
The first elastic layer 3 and the second elastic layer 5 are made of spandex fabric (also known as polyurethane fiber fabric), are made of spandex, have excellent elasticity, and are favorable for enhancing the anti-distortion and tensile properties of the anti-static strips 4, keeping the fabric smooth and preventing the fabric from deforming.
Utilize two adjacent antistatic stripes 4 and the cavity 9 that forms between first elastic layer 3 and the second elastic layer 5, be favorable to providing the distortion space for antistatic stripe 4, improve the anti distortion performance of antistatic stripe 4, simultaneously through bleeder vent 10 and cavity 9 intercommunication, be favorable to making the air pass close skin layer 1, antistatic layer 2 and first elastic layer 3, then form with the air in the cavity 9 and intersect, strengthen the air current of surface fabric inner structure and flow, improve the vapor permeability of surface fabric, make the surface fabric more comfortable ventilative.
The radiation-proof layer 6 is fixedly bonded between the second elastic layer 5 and the waterproof breathable layer 7, the radiation-proof layer 6 is made of radiation-proof fabric, the radiation-proof fabric is made of silver fiber embedded nylon filaments, and the radiation-proof fabric is processed by a special process, so that the fabric is high in conductivity and shielding efficiency, the electromagnetic protection performance of the fabric is favorably improved, and the generation of static electricity is favorably reduced.
One side bonding that waterproof ventilative layer 7 deviates from close skin layer 1 is fixed with carbon fiber layer 8, and carbon fiber layer 8 adopts acrylic fibres and viscose fiber processing to form, has high temperature resistant, antifriction, electrically conductive, heat conduction and corrosion resistant etc. characteristics, is located the surface fabric and keeps away from one side of close skin layer 1, is favorable to protecting surface fabric overall structure, prevents that the surface fabric is damaged, improves the life of surface fabric.
The implementation principle of the embodiment of the application is as follows:
close skin layer 1 is fixed with antistatic layer 2 in proper order, first elastic layer 3, a plurality of antistatic strip 4, second elastic layer 5, the layer 6 of protecting against radiation, waterproof ventilative layer 7, and carbon fiber layer 8, close skin layer 1 is smooth soft warm, the moisture absorption is ventilative, it makes the user more comfortable to wear to paste skin, utilize antistatic layer 2 to be favorable to reducing the static that the surface fabric friction produced, utilize first elastic layer 3 and second elastic layer 5 to be favorable to fixed antistatic strip 4, strengthen the antistatic performance of surface fabric through antistatic strip 4.
Through a plurality of bleeder vents 10 and cavity 9 intercommunication, strengthen the air current flow of surface fabric inner structure, utilize the layer 6 of protecting against radiation to improve the electric conductivity, shielding efficiency and the antibacterial performance of surface fabric to and the vapor permeability of waterproof ventilative layer 7, when reducing the production of static, make the inside steam of structure discharge rapidly, avoid breeding the mould. Utilize carbon fiber layer 8 to be favorable to protecting surface fabric overall structure, prevent that the surface fabric is damaged, improve the life of surface fabric.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.

Claims (8)

1. The utility model provides an anti-static printing and dyeing fabric which characterized in that: including close skin layer (1) and antistatic layer (2), antistatic layer (2) with close skin layer (1) fixed connection, antistatic layer (2) deviate from one side of close skin layer (1) is provided with waterproof ventilative layer (7), waterproof ventilative layer (7) with be provided with between antistatic layer (2) and prevent the static subassembly.
2. The antistatic printing and dyeing fabric according to claim 1, characterized in that: prevent static subassembly includes a plurality of static strips (4) of preventing, antistatic layer (2) orientation deviates from the direction on close skin layer (1) has set gradually first elastic layer (3) and second elastic layer (5), and is a plurality of prevent static strip (4) fixed connection in first elastic layer (3) with between second elastic layer (5).
3. The antistatic printing and dyeing fabric according to claim 2, characterized in that: a plurality of prevent that static strip (4) are parallel to each other and the interval sets up, adjacent two prevent static strip (4) with first elastic layer (3) with be formed with cavity (9) between second elastic layer (5).
4. The antistatic printing and dyeing fabric according to claim 3, characterized in that: the skin-friendly layer (1), antistatic layer (2) and all run through between first elastic layer (3) and seted up a plurality of bleeder vents (10), it is a plurality of bleeder vent (10) all with cavity (9) intercommunication.
5. The antistatic printing and dyeing fabric according to claim 2, characterized in that: and an anti-radiation layer (6) is arranged between the second elastic layer (5) and the waterproof breathable layer (7).
6. The antistatic printing and dyeing fabric according to claim 1, characterized in that: one side of the waterproof breathable layer (7) departing from the skin-friendly layer (1) is fixedly connected with a carbon fiber layer (8).
7. The antistatic printing and dyeing fabric according to claim 2, characterized in that: the first elastic layer (3) and the second elastic layer (5) are both made of spandex fabric.
8. The antistatic printing and dyeing fabric according to claim 1, characterized in that: the skin-friendly layer (1) is made of bamboo fiber fabric.
CN202022766507.1U 2020-11-25 2020-11-25 Anti-static printing and dyeing fabric Active CN213861089U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022766507.1U CN213861089U (en) 2020-11-25 2020-11-25 Anti-static printing and dyeing fabric

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022766507.1U CN213861089U (en) 2020-11-25 2020-11-25 Anti-static printing and dyeing fabric

Publications (1)

Publication Number Publication Date
CN213861089U true CN213861089U (en) 2021-08-03

Family

ID=77039478

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022766507.1U Active CN213861089U (en) 2020-11-25 2020-11-25 Anti-static printing and dyeing fabric

Country Status (1)

Country Link
CN (1) CN213861089U (en)

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