Fancy reflective fabric and production method thereof

A reflective cloth and fancy technology, applied in chemical instruments and methods, optics, optical components, etc., can solve the problems of lack of breathability, sweat absorption, single color, etc., achieve clear patterns and save production costs

Active Publication Date: 2016-02-03
HANGZHOU CHINASTARS REFLECTIVE MATERIAL
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] However, the traditional civilian reflective material is single gray in color, fully reflective, does not have the properties of breathability and sweat absorption, and can only be used as an accessory for clothing design. Therefore, the emergence of a new type of fancy reflective fabric product has become very valuable. It not only has reflective warning function, but also has novel styles, various styles and colors, and can also be directly used as clothing fabrics, and can be processed into garments.

Method used

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  • Fancy reflective fabric and production method thereof
  • Fancy reflective fabric and production method thereof
  • Fancy reflective fabric and production method thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0039] 1) Implantation of glass beads: put glass beads (5) with a refractive index of 1.91 and a particle size of 20 μm on a PE / PET composite film (11), and then place them in a hot roller at a temperature of 140°C. With the melting of the PE film, the glass beads settle on the PE film, and when the PE film is cooled, the glass beads are fixed on the PE / PET composite film to realize the implantation of the glass beads;

[0040] 2) Coating the focusing coating concentric with the glass beads on the surface of the glass beads (5) in step 1), then drying the solvent through an oven to form a focusing layer (4), the thickness of the focusing layer (4) being 0.1um ;

[0041] The focusing paint is prepared by mixing 60 parts of solvent-based acrylic resin, 2 parts of commercially available Bayer N-75, 2 parts of silane coupling agent KH-550, and 150 parts of butanone.

[0042] 3) Coating layer: the aluminum medium changes from solid to gaseous state through resistance heating, and ...

Embodiment 2

[0048] 1) Implantation of glass microbeads: put glass microbeads (5) with a refractive index of 2.2 and a particle size of 80 μm on the PE / paper composite film (11), and then place them in a hot roller at a temperature of 220°C. With the melting of the PE film, the glass beads settle on the PE / paper composite film, and when the PE / paper composite film is cooled, the glass beads are fixed on the PE / paper composite film to realize the implantation of the glass beads;

[0049] 2) Coating the focusing paint concentric with the glass beads on the surface of the glass beads in step 1), and then drying the solvent through an oven to form a focusing layer (4), the thickness of the focusing layer (4) being 5um.

[0050] Focusing paint is made by mixing 60 parts of solvent-based polyurethane resin, 9 parts of aziridine curing agent, 4 parts of silane coupling agent KH-560, 1 part of commercially available wetting agent, 200 parts of ethyl acetate, and 5 parts of kaolin.

[0051] 3) Coat...

Embodiment 3

[0057] 1) Implanting glass beads: place glass beads (5) with a refractive index range of 1.94 and a particle size of 50 μm on the PE / PET composite film (11), and then place them in a hot roller at a temperature of 180°C. As the PE / PET composite film melts, the glass beads settle on the PE film, and when the PE film cools down, the glass beads are fixed on the PE / PET composite film to realize the implantation of the glass beads;

[0058] 2) Coating the focusing paint concentric with the glass beads on the surface of the glass beads in step 1), and then drying the solvent through an oven to form a focusing layer (4), the thickness of which is 3um.

[0059] Focusing paint is made by mixing 60 parts of water-based acrylic resin, 5 parts of methyl etherified amino resin and 10 parts of water. 3) Coating layer: Dielectric titanium nitride transforms from solid state to gaseous state through resistance heating, meets the focusing layer (4) and desublimes outside the focusing layer to...

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Abstract

The invention belongs to the fields of reflective fabrics and preparation thereof and provides a fancy reflective fabric and a preparation method thereof, aiming to overcome the shortcomings in the prior art. The fancy reflective fabric can be a breathable fancy reflective fabric or a non-breathable fancy reflective fabric and comprises a base fabric, a compound glue layer, a cladding layer, a focusing layer and glass microbeads. The obtained fancy reflective fabric has the advantages that the fancy reflective fabric is novel in style and diversified in pattern and color and can be used as a garment material directly and processed into a ready-made garment; when being recycled during production, the fancy reflective fabric can be made into the non-breathable fancy reflective fabric with the windproof and waterproof characteristics.

Description

technical field [0001] The invention belongs to the field of reflective cloth and its preparation, and in particular relates to a breathable fancy reflective cloth and a non-breathable fancy reflective cloth and a preparation method thereof. Background technique [0002] Reflective cloth is also called reflective cloth and retro-reflective fabric. It applies glass beads to the fabric, and uses the optical principle of light refraction and reflection in the glass beads to return most of the reflected light to the light source according to the direction of the human light. Direction, widely used in traffic safety equipment, uniforms, work clothes, film, protective clothing and other fields that are closely related to the safety of human life and property. This kind of reflective material is made by using the principle of retro-reflective glass beads with high refractive index and advanced technology of post-focusing treatment. It can reflect the distant direct light back to t...

Claims

the structure of the environmentally friendly knitted fabric provided by the present invention; figure 2 Flow chart of the yarn wrapping machine for environmentally friendly knitted fabrics and storage devices; image 3 Is the parameter map of the yarn covering machine
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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A41D31/02D06Q1/00B32B17/00B32B7/12B32B17/10B32B15/14B32B37/12B32B7/06B32B37/15C09D133/00C09D175/04C09J133/00C09J175/04G02B5/128
CPCB32B7/12B32B27/06B32B27/36B32B37/12B32B37/15B32B38/10B32B2255/20B32B2255/205B32B2305/30B32B2307/416B32B2307/50B32B2307/724G02B5/128
Inventor 王世杰查伟强贾伟灿刘晓林谢炳乃邱尚煌章学文张先文
Owner HANGZHOU CHINASTARS REFLECTIVE MATERIAL
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