CN208903017U - A kind of optical mirror slip - Google Patents

A kind of optical mirror slip Download PDF

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Publication number
CN208903017U
CN208903017U CN201821378399.7U CN201821378399U CN208903017U CN 208903017 U CN208903017 U CN 208903017U CN 201821378399 U CN201821378399 U CN 201821378399U CN 208903017 U CN208903017 U CN 208903017U
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CN
China
Prior art keywords
layer
interconnecting piece
mirror slip
optical mirror
hole
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Active
Application number
CN201821378399.7U
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Chinese (zh)
Inventor
征平干
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JIANGSU GREEN STONE OPTICAL CO Ltd
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JIANGSU GREEN STONE OPTICAL CO Ltd
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Priority to CN201821378399.7U priority Critical patent/CN208903017U/en
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Abstract

The utility model discloses a kind of optical mirror slips, including optical mirror slip ontology, optical mirror slip ontology is equipped with optical section and interconnecting piece, optical section and interconnecting piece are integrally formed setting, interconnecting piece is set on the outside of optical section, and optical section is set as convex structure, connecting hole there are two being set in interconnecting piece, connecting hole includes inlet hole and fixation hole, fixation hole is set on the inside of interconnecting piece, inlet hole one end is connected to fixation hole, the inlet hole other end is set to the avris of interconnecting piece, optical section is successively arranged wearing layer from outside to inside, uvioresistant layer, radiation protective layer, photochromic layer, anti- blu-ray layer and base, anti- blu-ray layer includes silicon oxide layer and absorbed layer, absorbed layer is respectively provided with one layer of silicon oxide layer in two sides up and down, absorbed layer is equipped with multiple refraction blocks, it is closely connected between multiple refraction blocks, and refraction block is uniformly distributed in absorbed layer, the utility model has excellent resist Blue light performance, anti-blue light rate can reach 95% or more.

Description

A kind of optical mirror slip
Technical field
The utility model relates to a kind of eyeglass, in particular to a kind of optical mirror slip belongs to optical mirror slip technical field.
Background technique
Constantly researching and developing and coming into operation with electronic product, more and more people become dependent upon electronic product, however picture The electronic product of computer and mobile phone etc, can generate blue light, blue light is harmful, blue light to eyes, refers to that wavelength exists 400-500 nanometers of light, blue light are a kind of visible lights, and blue light wave is short, energy is high, can be directed through the through eyeground view of crystal On nethike embrane, people spent in and stared on mobile phone screen more times the smart phone epoch, however mobile phone screen, LED, computer screen Curtain lamp can all generate a large amount of blue light, can bring harm to the eyes of people in this way, can deepen hypometropia degree, generate vision Feeling of fatigue, while being also unfavorable for ortho, although there is many anti-blue light eyeglass currently on the market, effect is little.
Utility model content
The utility model provides a kind of optical mirror slip, and it is anti-that the utility model provides anti-blue light by the way that anti-blu-ray layer is arranged Shield effect, in anti-blu-ray layer, blue light can all pass through one layer of silicon oxide layer during passing in and out optical mirror slip ontology after entering, and Silicon oxide layer inherently has good anti-blue light, while absorbed layer is arranged, using refraction block refraction principle, so that absorbing The blue light of layer consumes blue light wave energy, keeps it gradually weak by continuous refraction, final to disappear, and provided by the utility model one The kind anti-blue light rate of optical mirror slip can reach 95% or more.
In order to solve the above-mentioned technical problem, the utility model provides the following technical solution:
A kind of optical mirror slip of the utility model, including optical mirror slip ontology, the optical mirror slip ontology be equipped with optical section and Interconnecting piece, the optical section and interconnecting piece are integrally formed setting, and the interconnecting piece is set on the outside of optical section, and the optical section is set For convex structure, set that there are two connecting holes in the interconnecting piece, the connecting hole includes inlet hole and fixation hole, the fixation hole On the inside of interconnecting piece, described inlet hole one end is connected to fixation hole, and the inlet hole other end is set to the avris of interconnecting piece, institute It states optical section and is successively arranged wearing layer, uvioresistant layer, radiation protective layer, photochromic layer, anti-blu-ray layer and base from outside to inside, it is described Anti- blu-ray layer includes silicon oxide layer and absorbed layer, and the absorbed layer is respectively provided with one layer of silicon oxide layer, the absorbed layer in two sides up and down Equipped with multiple refraction blocks, closely connected between multiple refraction blocks, and the refraction block is uniformly distributed in absorbed layer.
As a kind of optimal technical scheme of the utility model, the inlet hole is set as arcuate structure, and the inlet hole Curved bottom is connected with fixation hole bottom.
As a kind of optimal technical scheme of the utility model, the refraction block is set as arcuate structure.
As a kind of optimal technical scheme of the utility model, being sticked among the photochromic layer and anti-blu-ray layer, there have to be antistatic Film.
The utility model beneficial effect achieved is: the utility model is by being arranged anti-blu-ray layer to provide anti-blue light Protective action, in anti-blu-ray layer, blue light can all pass through one layer of silicon oxide layer during passing in and out optical mirror slip ontology after entering, And silicon oxide layer inherently has good anti-blue light, while absorbed layer is arranged, using refraction block refraction principle, so that inhaling The blue light of layer is received by continuous refraction, blue light wave energy is consumed, keeps it gradually weak, it is final to disappear, it is provided by the utility model A kind of anti-blue light rate of optical mirror slip can reach 95% or more.
Detailed description of the invention
Attached drawing is used to provide a further understanding of the present invention, and constitutes part of specification, practical with this Novel embodiment is used to explain the utility model together, does not constitute limitations of the present invention.In the accompanying drawings:
Fig. 1 is the structural schematic diagram of the utility model;
Fig. 2 is the schematic diagram of internal structure of the utility model;
Fig. 3 is the top view of the utility model.
In figure: 1, optical mirror slip ontology;2, optical section;3, interconnecting piece;4, connecting hole;5, inlet hole;6, fixation hole;7, resistance to Grind layer;8, uvioresistant layer;9, radiation protective layer;10, photochromic layer;11, anti-blu-ray layer;12, base;13, silicon oxide layer;14, it inhales Receive layer;15, refraction block;16, antistatic film.
Specific embodiment
The following will be combined with the drawings in the embodiments of the present invention, carries out the technical scheme in the embodiment of the utility model Clearly and completely describe, it is clear that the described embodiments are only a part of the embodiments of the utility model, rather than whole Embodiment.Based on the embodiments of the present invention, those of ordinary skill in the art are without making creative work Every other embodiment obtained, fall within the protection scope of the utility model.
Embodiment: as shown in Figure 1-3, a kind of optical mirror slip of the utility model, including optical mirror slip ontology 1, optical mirror slip Ontology 1 is equipped with optical section 2 and interconnecting piece 3, and optical section 2 and interconnecting piece 3 are integrally formed setting, and interconnecting piece 3 is set to outside optical section 2 Side, and optical section 2 is set as convex structure, is set in interconnecting piece 3 there are two connecting hole 4, connecting hole 4 includes inlet hole 5 and fixation hole 6, fixation hole 6 is set to 3 inside of interconnecting piece, and 5 one end of inlet hole is connected to fixation hole 6, and 5 other end of inlet hole is set to interconnecting piece 3 Avris, optical section 2 are successively arranged wearing layer 7, uvioresistant layer 8, radiation protective layer 9, photochromic layer 10, anti-blu-ray layer 11 from outside to inside With base 12, anti-blu-ray layer 11 includes silicon oxide layer 13 and absorbed layer 14, and about 14 two sides of absorbed layer are respectively provided with one layer of silica Layer 13, absorbed layer 14 are equipped with multiple refraction blocks 15, closely connect between multiple refraction blocks 15, and refraction block 15 is equal in absorbed layer 14 Even distribution.
Inlet hole 5 is set as arcuate structure, and 5 curved bottom of inlet hole is connected with 6 bottom of fixation hole, so that this is practical new The installation connection of type is more simple and convenient.Refraction block 15 is set as arcuate structure, bigger extension blu-ray reflection.Photochromic layer 10 and anti- Being sticked among blu-ray layer 11 has antistatic film 16, so that the utility model has anti-static function.
Specifically, a kind of optical mirror slip, the utility model is made by the way that anti-blu-ray layer 11 is arranged to provide anti-blue light protection With, in anti-blu-ray layer 11, blue light can all pass through one layer of silicon oxide layer 13 during passing in and out optical mirror slip ontology 1 after entering, And silicon oxide layer 13 inherently has good anti-blue light, while absorbed layer 14 is arranged, and using 15 refraction principle of refraction block, makes The blue light in absorbed layer 14 is obtained by continuous refraction, blue light wave energy is consumed, keeps it gradually weak, finally disappear, this is practical new The anti-blue light rate of a kind of optical mirror slip that type provides can reach 95% or more.
While there has been shown and described that the embodiments of the present invention, for the ordinary skill in the art, It is understood that these embodiments can be carried out with a variety of variations in the case where not departing from the principles of the present invention and spirit, repaired Change, replacement and variant, the scope of the utility model is defined by the appended claims and the equivalents thereof.

Claims (4)

1. a kind of optical mirror slip, including optical mirror slip ontology (1), which is characterized in that the optical mirror slip ontology (1) is equipped with optics Portion (2) and interconnecting piece (3), the optical section (2) and interconnecting piece (3) are integrally formed setting, and the interconnecting piece (3) is set to optical section (2) outside, and the optical section (2) is set as convex structure, sets that there are two connecting hole (4), the connections in the interconnecting piece (3) Hole (4) includes inlet hole (5) and fixation hole (6), and the fixation hole (6) is set on the inside of interconnecting piece (3), the inlet hole (5) one End be connected to fixation hole (6), inlet hole (5) other end set on interconnecting piece (3) avris, the optical section (2) by outside to Inside it is successively arranged wearing layer (7), uvioresistant layer (8), radiation protective layer (9), photochromic layer (10), anti-blu-ray layer (11) and base (12), the anti-blu-ray layer (11) includes silicon oxide layer (13) and absorbed layer (14), and the absorbed layer (14) respectively sets two sides up and down There is one layer of silicon oxide layer (13), the absorbed layer (14) is equipped with multiple refraction blocks (15), tight between multiple refraction blocks (15) Close connection, and the refraction block (15) is uniformly distributed in absorbed layer (14).
2. a kind of optical mirror slip according to claim 1, which is characterized in that the inlet hole (5) is set as arcuate structure, and Inlet hole (5) curved bottom is connected with fixation hole (6) bottom.
3. a kind of optical mirror slip according to claim 1, which is characterized in that the refraction block (15) is set as arcuate structure.
4. a kind of optical mirror slip according to claim 1, which is characterized in that the photochromic layer (10) and anti-blu-ray layer (11) Centre, which is sticked, antistatic film (16).
CN201821378399.7U 2018-08-27 2018-08-27 A kind of optical mirror slip Active CN208903017U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201821378399.7U CN208903017U (en) 2018-08-27 2018-08-27 A kind of optical mirror slip

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201821378399.7U CN208903017U (en) 2018-08-27 2018-08-27 A kind of optical mirror slip

Publications (1)

Publication Number Publication Date
CN208903017U true CN208903017U (en) 2019-05-24

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201821378399.7U Active CN208903017U (en) 2018-08-27 2018-08-27 A kind of optical mirror slip

Country Status (1)

Country Link
CN (1) CN208903017U (en)

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