CN104772936A - Air-permeable velvet shell fabric capable of emitting fluorescent light - Google Patents

Air-permeable velvet shell fabric capable of emitting fluorescent light Download PDF

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Publication number
CN104772936A
CN104772936A CN201510196372.0A CN201510196372A CN104772936A CN 104772936 A CN104772936 A CN 104772936A CN 201510196372 A CN201510196372 A CN 201510196372A CN 104772936 A CN104772936 A CN 104772936A
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CN
China
Prior art keywords
layer
air
velvet
permeable
fabric
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Pending
Application number
CN201510196372.0A
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Chinese (zh)
Inventor
陈国银
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JIANGYIN GUORUN TEXTILE RAW MATERIALS SALES Co Ltd
Original Assignee
JIANGYIN GUORUN TEXTILE RAW MATERIALS SALES Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by JIANGYIN GUORUN TEXTILE RAW MATERIALS SALES Co Ltd filed Critical JIANGYIN GUORUN TEXTILE RAW MATERIALS SALES Co Ltd
Priority to CN201510196372.0A priority Critical patent/CN104772936A/en
Publication of CN104772936A publication Critical patent/CN104772936A/en
Pending legal-status Critical Current

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Abstract

The invention relates to an air-permeable velvet shell fabric capable of emitting fluorescent light. The air-permeable velvet shell fabric comprises velvet cloth (1), wherein a spongy layer (2) is arranged below the velvet cloth, an air-permeable layer (3) is arranged below the spongy layer and is formed through co-spinning and weaving polyester fibers (3.1) and polyamide fibers (3.2), and a base layer (5) is arranged below the air-permeable layer (3) through laminating. The base layer is made from a fabric, the fabric comprises a fabric body as well as a middle layer and a light emitting body which are sequentially arranged on the fabric body, a sticking layer is arranged on the back face of the light emitting body, and a fluorescent surface layer is arranged on the front face of the light emitting body. The air-permeable velvet shell fabric is elegant, gorgeous and luxury in color and light and is firm, wear-resistant, air-permeable and sweat-releasing. The air-permeable velvet shell fabric can emit light, is simple and lightweight in structure, convenient and flexible in use, simple in manufacturing and long in service life and is randomly arranged as required.

Description

Fluorescence radiation gas permeability imitation velvet fabric
Technical field
The present invention relates to a kind of fluorescence radiation gas permeability imitation velvet fabric.
Background technology
Velvet is through being formed the silk weaving name of pile loop or fine hair at fabric face with suede.Velvet has flower, plain two classes, and plain velvet surface is all pile loop, and part pile loop is then cut off into fine hair by decorative pattern by flower velvet, make it formation decorative pattern alternate with the pile loop do not cut, available mulberry silk makes warp, and the ground tissue that latitude interweaves made by cotton yarn, plays pile loop with mulberry silk or artificial silk.Velvet fine hair or pile loop closely tower, and coloured light is elegant, gorgeous luxurious, strong wear-resisting, can be used for manufacturing clothes, cap, slip cover, curtain, ornament etc.But along with the increase of people's activity time out of doors, people are easy to occur situation soaked with sweat.When the volume of perspiration of people is slightly large, fabric to be pasted onto on skin thus to produce sense of discomfort, and meanwhile, moisture divergence speed is also comparatively slow, thus causes a kind of cold wet sense to human body.
In addition, the fabric that traditional dress adopts can not be luminous.
Summary of the invention
The object of the invention is to overcome above-mentioned deficiency, provide one both to have elegant, gorgeous luxurious, the strong characteristic such as wear-resisting of velvet coloured light, there is again the fluorescence radiation gas permeability imitation velvet fabric of ventilation and perspiration function function.
The object of the present invention is achieved like this:
Fluorescence radiation gas permeability imitation velvet fabric of the present invention, comprise velvet, spongy layer is provided with below this velvet, air-permeable layer is provided with below spongy layer, this air-permeable layer is that polyster fibre and Fypro form through blending woven, wherein polyster fibre is cortex, Fypro is sandwich layer, the Fypro cross section of described Fypro is pentalpha, this five-pointed star forms groove between adjacent two angles, a basic unit is compounded with below described air-permeable layer, between described velvet and spongy layer, and all bonded by glue layer between spongy layer and air-permeable layer, described basic unit is made up of fabric, and described fabric comprises fabric body, and the intermediate layer be successively set in fabric body and illuminator, and the back side of described illuminator is provided with adhesion coating, and the front of illuminator is a fluorescence surface layer.
Compared with prior art, the invention has the beneficial effects as follows:
This fluorescence radiation gas permeability imitation velvet fabric due to the superiors be velvet, its surperficial coloured light is elegant, gorgeous luxurious, strong wear-resisting, the air-permeable layer of innermost layer is that polyster fibre and Fypro form through blending woven simultaneously, wherein polyster fibre is cortex, Fypro is sandwich layer, the Fypro cross section of described Fypro is pentalpha, forms groove and can breathe freely and perspire between adjacent two angles of this five-pointed star.
The present invention can be luminous, and not only structure is simply light and handy, and easy to use and flexible, is arbitrarily arranged as required, and manufacture simple, long perfomance life.
Accompanying drawing explanation
Fig. 1 is the structural representation of fluorescence radiation gas permeability imitation velvet fabric of the present invention.
Fig. 2 is the profile of air-permeable layer in Fig. 1.
Fig. 3 is the schematic cross-section of Fypro in Fig. 2.
Wherein: velvet 1, spongy layer 2, air-permeable layer 3, glue layer 4, basic unit 5.
Detailed description of the invention
See Fig. 1 to Fig. 3, the present invention relates to a kind of fluorescence radiation gas permeability imitation velvet fabric, it comprises velvet 1, spongy layer 2 is provided with below this velvet 1, air-permeable layer 3 is provided with below spongy layer 2, this air-permeable layer 3 forms through blending woven for polyster fibre 3.1 and Fypro 3.2, wherein polyster fibre 3.1 is cortex, Fypro 3.2 is sandwich layer, this Fypro 3.2 has hydrophily, the Fypro cross section 3.2.1 of described Fypro 3.2 is pentalpha, this five-pointed star forms groove 3.2.2 between adjacent two angles, sweat is discharged to web surface from groove 3.2.2, thus volatilized, and then reach the object of ventilation and perspiration function, described air-permeable layer 3 is compounded with a basic unit 5 below, between described velvet 1 and spongy layer 2, and all bonded by glue layer 4 between spongy layer 2 and air-permeable layer 3.
This fluorescence radiation gas permeability imitation velvet fabric due to the superiors be velvet, its surperficial coloured light is elegant, gorgeous luxurious, strong wear-resisting, the air-permeable layer of innermost layer is that polyster fibre and Fypro form through blending woven simultaneously, wherein polyster fibre is cortex, Fypro is sandwich layer, the Fypro cross section of described Fypro is pentalpha, forms groove and can breathe freely and perspire between adjacent two angles of this five-pointed star.
Described basic unit is made up of fabric, and described fabric comprises fabric body, and the intermediate layer be successively set in fabric body and illuminator, and the back side of described illuminator is provided with adhesion coating, and the front of illuminator is a fluorescence surface layer.

Claims (1)

1. a fluorescence radiation gas permeability imitation velvet fabric, it is characterized in that: it comprises velvet (1), spongy layer (2) is provided with below this velvet (1), air-permeable layer (3) is provided with below spongy layer (2), this air-permeable layer (3) forms through blending woven for polyster fibre (3.1) and Fypro (3.2), wherein polyster fibre (3.1) is cortex, Fypro (3.2) is sandwich layer, the Fypro cross section (3.2.1) of described Fypro (3.2) is in pentalpha, this five-pointed star forms groove (3.2.2) between adjacent two angles, described air-permeable layer (3) is compounded with a basic unit (5) below, between described velvet (1) and spongy layer (2), and all bonded by glue layer (4) between spongy layer (2) and air-permeable layer (3), described basic unit is made up of fabric, and described fabric comprises fabric body, and the intermediate layer be successively set in fabric body and illuminator, and the back side of described illuminator is provided with adhesion coating, and the front of illuminator is a fluorescence surface layer.
CN201510196372.0A 2015-04-24 2015-04-24 Air-permeable velvet shell fabric capable of emitting fluorescent light Pending CN104772936A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201510196372.0A CN104772936A (en) 2015-04-24 2015-04-24 Air-permeable velvet shell fabric capable of emitting fluorescent light

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201510196372.0A CN104772936A (en) 2015-04-24 2015-04-24 Air-permeable velvet shell fabric capable of emitting fluorescent light

Publications (1)

Publication Number Publication Date
CN104772936A true CN104772936A (en) 2015-07-15

Family

ID=53614849

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201510196372.0A Pending CN104772936A (en) 2015-04-24 2015-04-24 Air-permeable velvet shell fabric capable of emitting fluorescent light

Country Status (1)

Country Link
CN (1) CN104772936A (en)

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WD01 Invention patent application deemed withdrawn after publication

Application publication date: 20150715