CN102279471A - 3D (three dimensional) glasses and spectacle case for storing 3D glasses - Google Patents
3D (three dimensional) glasses and spectacle case for storing 3D glasses Download PDFInfo
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- CN102279471A CN102279471A CN2011102205430A CN201110220543A CN102279471A CN 102279471 A CN102279471 A CN 102279471A CN 2011102205430 A CN2011102205430 A CN 2011102205430A CN 201110220543 A CN201110220543 A CN 201110220543A CN 102279471 A CN102279471 A CN 102279471A
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Abstract
The invention discloses a pair of 3D (three dimensional) glasses, and belongs to the manufacture technical field of an auxiliary device used for viewing a 3D image. The invention also discloses a spectacle case used for storing the 3D glasses and the spectacle case can clean the 3D glasses. The invention provides a pair of 3D glasses which can preserve cleanness for a long time. The invention also provides a spectacle case which can store the 3D glasses and clean the 3D glasses stored in the spectacle case. The 3D glasses comprises a 3D glasses body which is composed of a frame and 3D eyeglasses, and an outer surface of the glasses body is covered with a sterilization layer with a visible light transmittance of more than 60%. The 3D spectacle case comprises a 3D spectacle case body which contains an accommodation cavity capable of accommodating the 3D glasses, a case wall of the 3D spectacle case body is installed with an ultraviolet ray emission loop which can emit ultraviolet light to the accommodation cavity, and the ultraviolet light emitted by the ultraviolet ray emission loop is illuminated into the accommodation cavity.
Description
Technical field
The present invention relates to a kind of 3D glasses, belong to and watch the 3D image to use auxiliary device manufacturing technology field.
The invention still further relates to a kind of 3D spectacle case described 3D glasses, that can clean the 3D glasses that is used to deposit.
Background technology
The 3D image documentation equipment is divided into spectacle and bore hole formula, generally promotes the 3D image documentation equipment of spectacle in the market.All must put on special-purpose 3D glasses when watching 3D film, TV or other 3D images with spectacle 3D image documentation equipment.The 3D televisor is promoted, and the 3D glasses on the market mainly contain fast gate-type and polarization type.Because 3D glasses cost height, particularly fast gate-type 3D glasses, every 3D glasses limited amount that televisor is equipped with, the 3D glasses are mutual to be used seriously, especially in the more family of population,, make and infect and grow a lot of germs on the glasses because many people wore and touched, this glasses that carry disease germs can become the infection sources of some diseases, become a big shortcoming of 3D glasses.
Number of patent application is 201020183198.9, name is called the patent of the 3D glasses of electronics degerming, disclose a kind of battery, switch and ultraviolet emissioning tube on the 3D eyeglasses frame, installed and constituted ultraviolet radiating circuit, the 3D glasses of the ultraviolet light killing pathogenic bacteria by the emission of ultraviolet launching circuit.This patent adopts ultraviolet radiating circuit is installed in technical scheme on the glasses, not only increased the weight of 3D glasses, reduced user's comfort, and the ultraviolet light that emits of ultraviolet emissioning tube can not shine all positions of 3D glasses, exist the ultraviolet ray irradiation less than and the dead angle of germ survival.
Summary of the invention
Technical matters to be solved by this invention is: a kind of 3D glasses that can guarantee the glasses cleaning degree for a long time are provided.The present invention also provides a kind of energy can deposit described 3D glasses, again the 3D spectacle case that can effectively clean the 3D glasses that leave in wherein.
The technical scheme that adopts for solving the problems of the technologies described above is: a kind of 3D glasses, comprise the 3D glasses body that constitutes by mirror holder and 3D eyeglass, and on the outside surface of 3D glasses body, be coated with one deck visible light transmissivity greater than 60% stenlizing layer.
Further be, stenlizing layer is the sprayed coating that contains sodium rice sterilization material that is sprayed on this external surface of 3D glasses, or be the evaporation layer that contain sodium rice sterilization material of vacuum evaporation to this external surface of 3D glasses, or be plated to the sputter coating that contains sodium rice sterilization material on this external surface of 3D glasses for magnetron sputtering.
Further be, the nano-disinfection material is a nano-Ag particles, perhaps is nano titanium oxide, perhaps is nano zine oxide, perhaps is two or three mixtures of material in aforementioned three kinds of materials.
Further be, the thickness that covers the nano-disinfection layer on this external surface of 3D glasses is not more than 550 μ m, and when the nano-disinfection layer is when containing the potpourri of nano-Ag particles, the thickness of nano-Ag particles is not more than 50 μ m.
Further be on all outer surfaces of 3D glasses body, all to be covered with stenlizing layer.
Be used to deposit the 3D spectacle case of described 3D glasses, comprise the 3D spectacle case body that contains the container cavity that can hold described 3D glasses, the ultraviolet launching circuit that can launch ultraviolet light in container cavity is installed on the box wall of 3D spectacle case body, and the UV-irradiation of ultraviolet launching circuit emission is in container cavity.
Further be, 3D spectacle case body by box body and lid by the hinged strip structure that forms of hinge, the ultraviolet ray launching circuit comprises ultraviolet emissioning tube, battery and switch, ultraviolet emissioning tube is installed on the sidewall at strip 3D spectacle case body two ends, battery is installed on the sidewall of hinge one side, and switch is installed on the sidewall relative with hinge.
The invention has the beneficial effects as follows: by one deck visible light transmissivity is set on the outside surface of the 3D glasses body that constitutes by 3D eyeglass and mirror holder greater than 60% stenlizing layer with sterilizing function, constitute a kind of novel 3D glasses, such 3D glasses had both guaranteed the transmittance that the user watches TV programme to need, again can be at any time the germ that infects on the 3D glasses and grow be killed, thereby be guaranteed the cleaning of 3D glasses for a long time.Described stenlizing layer, it can be the nano-Ag particles that self has sterilizing function separately, also can be by absorbing in the natural light, or the ultraviolet ray of ultraviolet lamp tube carries out nano titanium oxide, the nano zine oxide of sterilization, can also be described three kinds of mixtures of material.No matter adopt which kind of stenlizing layer, all the germ that can will be attached on the 3D glasses is fast whenever and wherever possible killed, and the 3D glasses are kept clean, and has avoided transmission of disease.When adopting nano-Ag particles to be made into stenlizing layer when covering on the surface of 3D glasses body, because Nano Silver self has the function of independent sterilization, so the killing effect of the germ that the 3D lens surface is adhered to is fabulous, but, when adopting independent nano titanium oxide, or independent nano zine oxide, perhaps both potpourris are made into stenlizing layer when covering on the surface of 3D glasses body, if a little less than the ultraviolet ray in the natural light, and when not having ultraviolet lamp tube to produce ultraviolet ray again, stenlizing layer is just relatively poor to the bactericidal effect of 3D lens surface.Adopt independent nano titanium oxide in order to improve; or independent nano zine oxide; perhaps the stenlizing layer of both potpourris making adheres to the killing effect of germ to the 3D lens surface; the present invention also provides a kind of 3D spectacle case that is used to deposit described 3D glasses; the box wall of described 3D spectacle case body container cavity is provided with and produces ultraviolet ultraviolet launching circuit; when described 3D storage of glasses in the 3D spectacle case; after closing upper box cover; the ultraviolet ray launching circuit just can produce ultraviolet; this ultraviolet both can directly have been killed the germ attached to the 3D lens surface; can provide ultraviolet light to stenlizing layer again; by killing attached to the germ on the 3D lens surface behind the stenlizing layer absorption ultraviolet light; thereby the 3D spectacle case is not only played to be deposited; the purpose of protection 3D glasses; simultaneously in the process of depositing, also can carry out effective cleaning to the 3D glasses; avoided the propagation of germ to greatest extent by the 3D glasses; and then also make the consumer buy less 3D glasses to become possibility, for the consumer has saved spending.
Description of drawings
Fig. 1 is the structural representation of a kind of 3D glasses of the present invention;
Fig. 2 is the another kind of structural representation of a kind of 3D glasses of the present invention;
Fig. 3 is the structural representation of 3D spectacle case of the present invention.
Be labeled as among the figure: 3D glasses body 1, stenlizing layer 2, container cavity 3,3D spectacle case body 4, hinge 41, ultraviolet emissioning tube 5, battery 6, switch 7.
Embodiment
Be a kind of 3D glasses that can guarantee the glasses cleaning degree for a long time provided by the invention as shown in Figure 1 and Figure 2.Described 3D glasses comprise the 3D glasses body 1 that is made of mirror holder and 3D eyeglass, are coated with one deck visible light transmissivity greater than 60% stenlizing layer 2 on the outside surface of 3D glasses body.Adopt the 3D glasses of described structure both to guarantee the transmittance that the user watches TV programme to need, can at any time the germ that infects on the 3D glasses and grow be killed again, thereby guarantee the cleaning of 3D glasses for a long time.
In the above-mentioned embodiment, be attached to 3D glasses body 1 in appearance for what make that stenlizing layer 2 can be firm, and in use can not come off easily yet, described stenlizing layer 2 can be the sprayed coating that contains sodium rice sterilization material that is sprayed on glasses body 1 outside surface, the evaporation layer that contains sodium rice sterilization material that also can be vacuum evaporation to glasses body 1 outside surface can also be that magnetron sputtering is plated to the sputter coating that contains sodium rice sterilization material on glasses body 1 outside surface.
In the above-mentioned embodiment, be attached on the 3D glasses body 1 in order both to be convenient to the nano-disinfection material, again can be as well as possible play bactericidal action, also want to reduce to greatest extent the cost of nano-disinfection material simultaneously, and then the cost of manufacture of reduction 3D glasses, the nano-disinfection material that constitutes stenlizing layer 2 can be the nano-Ag particles that self has sterilizing function separately, also can be by absorbing in the natural light, or the ultraviolet ray of ultraviolet lamp tube carries out nano titanium oxide, the nano zine oxide of sterilization, can also be described three kinds of mixtures of material.No matter adopt which kind of stenlizing layer, all the germ that can will be attached on the 3D glasses is fast whenever and wherever possible killed, the 3D glasses are kept clean, avoided transmission of disease, simultaneously, can also adopt firmly fixed being attached on the 3D glasses body 1 of method of described spraying, vacuum evaporation or magnetron sputtering easily, simplify manufacture craft, and then played the purpose that reduces production costs.
In the above-mentioned embodiment, no matter adopt which kind of method for making, with which kind of stenlizing layer 2 be attached to make 3D glasses of the present invention on 3D glasses body 1 surface after, all the germ that can will be attached on the 3D glasses is fast whenever and wherever possible killed, the 3D glasses are kept clean, avoided transmission of disease.When adopting nano-Ag particles to be made into stenlizing layer 2 when covering on the surface of 3D glasses body 1, because Nano Silver self has the function of independent sterilization, so the killing effect of the germ that the 3D lens surface is adhered to is fabulous, but, when adopting independent nano titanium oxide, or independent nano zine oxide, perhaps both potpourris are made into stenlizing layer 2 when covering on the surface of 3D glasses body 1, because described two kinds of materials self do not have independent sterilizing function, must to absorb in the natural light or in the ultraviolet lamp tube ultraviolet ray just have a sterilizing function, at this moment, if a little less than the ultraviolet ray in the natural light, and when not having ultraviolet lamp tube to produce ultraviolet ray again, the bactericidal effect of 2 pairs of 3D lens surface of stenlizing layer is just relatively poor.Adopt independent nano titanium oxide in order to improve; or independent nano zine oxide; perhaps 2 pairs of 3D lens surface of stenlizing layer of both potpourris making are adhered to the killing effect of germ; the present invention also provides a kind of 3D spectacle case that is used to deposit described 3D glasses; engage 3D spectacle case body 4 by box body and lid by hinge 41 hinged forming; and the design feature that contains the container cavity 3 that can hold described 3D glasses; the box wall of the container cavity 3 of described 3D spectacle case body 4 is provided with and produces ultraviolet ultraviolet launching circuit; when described 3D storage of glasses in the 3D spectacle case; after closing upper box cover; the ultraviolet ray launching circuit just can produce ultraviolet; this ultraviolet both can directly have been killed the germ attached to the 3D lens surface; ultraviolet light is provided for again stenlizing layer 2; by killing attached to the germ on the 3D lens surface behind the stenlizing layer 2 absorption ultraviolet lights; thereby the 3D spectacle case is not only played to be deposited; the purpose of protection 3D glasses; simultaneously in the process of depositing, also can carry out effective cleaning to the 3D glasses; avoided the propagation of germ to greatest extent by the 3D glasses; and then also make the consumer buy less 3D glasses to become possibility, for the consumer has saved spending.
Engage the design feature of above-mentioned 3D spectacle case, layout for the ease of ultraviolet launching circuit, the ultraviolet ray launching circuit comprises ultraviolet emissioning tube 5, battery 6 and switch 7, ultraviolet emissioning tube 5 is installed on the sidewall at strip 3D spectacle case body 4 two ends, battery 6 is installed on the sidewall of hinge 41 1 sides, and switch 7 is installed on the sidewall relative with hinge.Adopt described structure, the physical dimension of increase 3D spectacle case body 4 that neither can be a large amount of, the ultraviolet light of ultraviolet launching circuit invention can play the effect of sterilization again preferably.
In the above-mentioned embodiment, in order to improve the transmittance of 3D glasses, the transmitance that guarantees visible light is greater than 60% or higher, can guarantee simultaneously the bactericidal effect of stenlizing layer 2 again, the thickness that covers the nano-disinfection layer on glasses body 1 outside surface is not more than 550 μ m, when the nano-disinfection layer is when containing the potpourri of nano-Ag particles, the thickness of nano-Ag particles is not more than 50 μ m; And on all outer surfaces of glasses body 1, all be covered with stenlizing layer 2.
Claims (7)
1. 3D glasses comprise the 3D glasses body (1) that is made of mirror holder and 3D eyeglass, it is characterized in that: be coated with one deck visible light transmissivity greater than 60% stenlizing layer (2) on the outside surface of 3D glasses body.
2. a kind of 3D glasses according to claim 1, it is characterized in that: stenlizing layer (2) is for being sprayed on the sprayed coating that contains sodium rice sterilization material on glasses body (1) outside surface, or be the evaporation layer that contain sodium rice sterilization material of vacuum evaporation to glasses body (1) outside surface, or be plated to the sputter coating that contains sodium rice sterilization material on glasses body (1) outside surface for magnetron sputtering.
3. a kind of 3D glasses according to claim 2 is characterized in that: the nano-disinfection material is a nano-Ag particles, perhaps is nano titanium oxide, perhaps is nano zine oxide, perhaps is two or three mixtures of material in aforementioned three kinds of materials.
4. a kind of 3D glasses according to claim 3, it is characterized in that: the thickness that covers the nano-disinfection layer on glasses body (1) outside surface is not more than 550 μ m, when the nano-disinfection layer is when containing the potpourri of nano-Ag particles, the thickness of nano-Ag particles is not more than 50 μ m.
5. according to claim 1,2,3 or 4 described a kind of 3D glasses, it is characterized in that: on all outer surfaces of glasses body (1), all be covered with stenlizing layer (2).
6. be used to deposit the 3D spectacle case of the described 3D glasses of claim 1, comprise the 3D spectacle case body (4) that contains the container cavity (3) that can hold described 3D glasses, it is characterized in that: the ultraviolet launching circuit that can launch ultraviolet light in container cavity is installed on the box wall of spectacle case body, and the UV-irradiation of ultraviolet launching circuit emission is in container cavity (3).
7. 3D spectacle case according to claim 6, it is characterized in that: 3D spectacle case body (4) by box body and lid by the hinged strip structure that forms of hinge (41), the ultraviolet ray launching circuit comprises ultraviolet emissioning tube (5), battery (6) and switch (7), ultraviolet emissioning tube (5) is installed on the sidewall at strip 3D spectacle case body (4) two ends, battery (6) is installed on the sidewall of hinge (41) one sides, and switch (7) is installed on the sidewall relative with hinge.
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CN2011102205430A CN102279471A (en) | 2011-08-03 | 2011-08-03 | 3D (three dimensional) glasses and spectacle case for storing 3D glasses |
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CN2011102205430A CN102279471A (en) | 2011-08-03 | 2011-08-03 | 3D (three dimensional) glasses and spectacle case for storing 3D glasses |
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Cited By (6)
Publication number | Priority date | Publication date | Assignee | Title |
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CN105445957A (en) * | 2015-12-31 | 2016-03-30 | 奥特路(漳州)光学科技有限公司 | Antiseptic, radiation-proof and abrasion-resistant lens and preparation method thereof |
CN105467619A (en) * | 2015-12-31 | 2016-04-06 | 奥特路(漳州)光学科技有限公司 | Sterilizing, anti-hard-light and wear-resisting lens and preparing method thereof |
CN105467620A (en) * | 2015-12-31 | 2016-04-06 | 奥特路(漳州)光学科技有限公司 | Sterilizing, anti-dazzle, anti-reflection and wear-resisting lens and preparing method thereof |
CN105487255A (en) * | 2015-12-31 | 2016-04-13 | 奥特路(漳州)光学科技有限公司 | Sterilization wear-resisting lens and manufacturing method thereof |
CN107440288A (en) * | 2017-09-07 | 2017-12-08 | 长沙远达华信息科技有限公司 | A kind of 3D glasses and the 3D spectacle cases for depositing the 3D glasses |
JP2022190843A (en) * | 2021-06-15 | 2022-12-27 | 株式会社ジンズホールディングス | Ultraviolet ray irradiator for eyewear |
Citations (3)
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CN2478138Y (en) * | 2001-04-27 | 2002-02-20 | 厦门立扬光学科技有限公司 | Anti-electric antibiotic health lens |
CN2615691Y (en) * | 2003-04-23 | 2004-05-12 | 廖瑞明 | Glasses with optical catalytic function |
CN201625213U (en) * | 2010-03-03 | 2010-11-10 | 宋彤 | Glasses case capable of sterilizing glasses |
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2011
- 2011-08-03 CN CN2011102205430A patent/CN102279471A/en active Pending
Patent Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
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CN2478138Y (en) * | 2001-04-27 | 2002-02-20 | 厦门立扬光学科技有限公司 | Anti-electric antibiotic health lens |
CN2615691Y (en) * | 2003-04-23 | 2004-05-12 | 廖瑞明 | Glasses with optical catalytic function |
CN201625213U (en) * | 2010-03-03 | 2010-11-10 | 宋彤 | Glasses case capable of sterilizing glasses |
Cited By (7)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105445957A (en) * | 2015-12-31 | 2016-03-30 | 奥特路(漳州)光学科技有限公司 | Antiseptic, radiation-proof and abrasion-resistant lens and preparation method thereof |
CN105467619A (en) * | 2015-12-31 | 2016-04-06 | 奥特路(漳州)光学科技有限公司 | Sterilizing, anti-hard-light and wear-resisting lens and preparing method thereof |
CN105467620A (en) * | 2015-12-31 | 2016-04-06 | 奥特路(漳州)光学科技有限公司 | Sterilizing, anti-dazzle, anti-reflection and wear-resisting lens and preparing method thereof |
CN105487255A (en) * | 2015-12-31 | 2016-04-13 | 奥特路(漳州)光学科技有限公司 | Sterilization wear-resisting lens and manufacturing method thereof |
CN107440288A (en) * | 2017-09-07 | 2017-12-08 | 长沙远达华信息科技有限公司 | A kind of 3D glasses and the 3D spectacle cases for depositing the 3D glasses |
JP2022190843A (en) * | 2021-06-15 | 2022-12-27 | 株式会社ジンズホールディングス | Ultraviolet ray irradiator for eyewear |
JP7351536B2 (en) | 2021-06-15 | 2023-09-27 | 株式会社ジンズホールディングス | UV irradiator for eyewear |
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Application publication date: 20111214 |