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A kind of Angstrom anti-oxidation and anti-infrared light band pattern lens and preparation method thereof

An infrared light and anti-oxidation technology, applied in the direction of optics, optical components, optical components, etc., can solve the problems of interfering with the line of sight, easy oxidation of the pattern layer, singleness, etc., achieve good anti-oxidation, and solve the effect of interfering with the line of sight

Active Publication Date: 2021-08-24
厦门美澜光电科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] The purpose of the present invention is to overcome the problem that the combination of the existing lens pattern layer and the film layer will interfere with the line of sight, and the pattern layer is easy to oxidize, and the color of the pattern layer can only be selected from the same color as the base color of the substrate, which is relatively simple, and provides a Amy anti-oxidation and anti-infrared light band pattern lenses, which combine the pattern and the lens closely, do not block the wearer's sight, and have good anti-oxidation and anti-infrared light effects. At the same time, the pattern color can be changed in a variety of ways, on the same lens surface Two colors are formed, one coating color for the substrate, and one coating color for the pattern. The color of the pattern layer is changeable and will not block the line of sight, fully reflecting the fashion characteristics

Method used

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  • A kind of Angstrom anti-oxidation and anti-infrared light band pattern lens and preparation method thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0072] An angstrom anti-oxidation and anti-infrared light band pattern lens comprises a substrate and a film layer, and the film layer is located on the outer surface of the substrate. The film layer extends outward from the side close to the substrate, including a layer of primer layer, a patterned anti-oxidation layer and an anti-infrared layer layered in sequence, wherein: the layer of primer layer consists of a first low-refractive index film layer, a second high-refractive layer index film layer and a third low-refractive-index film layer, wherein the first low-refractive-index film layer is adjacent to the substrate, and the third low-refractive-index film layer is adjacent to the pattern anti-oxidation layer; the The pattern anti-oxidation layer is composed of a pattern and a fourth anti-oxidation film layer, wherein the fourth anti-oxidation film layer is next to the anti-infrared layer; the anti-infrared layer is composed of the fifth high-refractive index film layer s...

Embodiment 2

[0075] An angstrom anti-oxidation and anti-infrared light band pattern lens comprises a substrate and a film layer, and the film layer is located on the outer surface of the substrate. The film layer extends outwards from the side close to the substrate, including a sequentially stacked primer layer, a patterned anti-oxidation layer and an anti-infrared layer, wherein: the primer layer consists of a first low-refractive index film layer, a second high-refractive layer index film layer and a third low-refractive-index film layer, wherein the first low-refractive-index film layer is adjacent to the substrate, and the third low-refractive-index film layer is adjacent to the pattern anti-oxidation layer; the The pattern anti-oxidation layer is composed of a pattern and a fourth anti-oxidation film layer, wherein the fourth anti-oxidation film layer is next to the anti-infrared layer; the anti-infrared layer is composed of the fifth high-refractive index film layer stacked in sequen...

Embodiment 3

[0078] An angstrom anti-oxidation and anti-infrared light band pattern lens comprises a substrate and a film layer, and the film layer is located on the outer surface of the substrate. The film layer extends outwards from the side close to the substrate, including a sequentially stacked primer layer, a patterned anti-oxidation layer and an anti-infrared layer, wherein: the primer layer consists of a first low-refractive index film layer, a second high-refractive layer index film layer and a third low-refractive-index film layer, wherein the first low-refractive-index film layer is adjacent to the substrate, and the third low-refractive-index film layer is adjacent to the pattern anti-oxidation layer; the The pattern anti-oxidation layer is composed of a pattern and a fourth anti-oxidation film layer, wherein the fourth anti-oxidation film layer is next to the anti-infrared layer; the anti-infrared layer is composed of the fifth high-refractive index film layer stacked in sequen...

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Abstract

The invention relates to an angstrom anti-oxidation and anti-infrared band pattern lens, which includes a substrate and a film layer arranged on the outer surface of the substrate, and the film layer includes a primer layer and a patterned anti-oxidation layer sequentially stacked from inside to outside and the anti-infrared layer, wherein: the primer layer is composed of low refractive index film layers and high refractive index film layers alternately, the pattern anti-oxidation layer is composed of patterns and the fourth anti-oxidation film layer, and the anti-infrared layer It is composed of high refractive index thin film layers and low refractive index thin film layers alternately. The anti-oxidation and anti-infrared band pattern lens of the present invention has good anti-oxidation and anti-infrared light effects, and the pattern is closely combined with the lens, which does not affect the wearer's line of sight. market prospects.

Description

technical field [0001] The invention relates to a preparation technology of a functional lens, in particular to an Amy anti-oxidation and anti-infrared band pattern lens and a preparation method thereof. Background technique [0002] Infrared ray is one of the many invisible rays in the sun's rays. It was discovered by British scientist Herschel in 1800. It is also called infrared thermal radiation. The wavelength of infrared rays on the solar spectrum is greater than that of visible rays, and the wavelength is 0.75-1000 μm. Infrared rays can be divided into three parts, namely, near-infrared rays, with wavelengths between (0.75-1) and (2.5-3) μm; mid-infrared rays, with wavelengths between (2.5-3) and (25-40) μm; far-infrared rays. , the wavelength is between (25-40) ~ l000μm. Infrared rays have a stronger ability to pass through clouds than visible light. It has a wide range of uses in communication, detection, medical treatment, military and so on. Commonly known as in...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G02C7/10G02B5/28G02B1/14G02B1/18C23C14/20C23C14/08C23C14/06C23C14/10C23C14/04
CPCC23C14/042C23C14/06C23C14/0694C23C14/083C23C14/10C23C14/20G02B5/282G02C7/10G02B1/14G02B1/18
Inventor 杨敏男吴富章
Owner 厦门美澜光电科技有限公司