CN203513500U - Coated glass - Google Patents
Coated glass Download PDFInfo
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- CN203513500U CN203513500U CN201320593976.5U CN201320593976U CN203513500U CN 203513500 U CN203513500 U CN 203513500U CN 201320593976 U CN201320593976 U CN 201320593976U CN 203513500 U CN203513500 U CN 203513500U
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- coated glass
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Abstract
The utility model discloses a piece of coated glass. The coated glass is provided with a three-layer structure and comprises an intermediate layer, an inner film layer and an outer film layer, wherein the inner film layer and the outer film layer are arranged on the inner surface and the outer surface of the intermediate layer in a coating manner, and the coated glass is characterized in that the intermediate layer is a glass layer, the inner film layer is a light transmission film or a light-tight film, the outer film layer is a light transmission film, and the inner film layer is provided with patterns and/or characters which are communicated with the inner surface of the glass layer. According to the coated glass and a lampshade made of the coated glass, two surfaces of the glass layer are coated with the film, the patterns or characters are etched on the coated surface, when a light source shines the coated surface with the patterns or characters, a multilayer ghost image of the patterns or characters can be displayed on the coated glass or the lampshade from the perspective of another coated surface, and a three-dimensional display effect can be realized.
Description
Technical field
The utility model relates to glass art, the lampshade that especially a kind of coated glass of multiple imaging and application coated glass are made.
Background technology
Glass is as a kind of important materials of modern industry, very general in daily life, such as the lampshade of using for door and window, vehicle window, display device, industrial sheet material, lighting and optical lens etc., the kind of glass is various well known, and it also has a series of numerous derived prodss.
Wherein, coated glass is exactly a kind of glass derived prods, and it is at one or more layers metal of glass surface coating, alloy or metal compound film, to change the optical property of glass, meets certain particular requirement.Coated glass is pressed the different qualities of product, can be divided into following a few class: heat-reflecting glass, low emissivity glass (Low-E), electropane etc., heat-reflecting glass is generally at glass surface, to plate the film of one or more layers metals such as chromium, titanium or stainless steel or its compound composition, make product be abundant color, for visible ray, there is suitable transmissivity, infrared rays is had to higher reflectivity, ultraviolet ray is had to higher absorption rate, therefore, also referred to as solar-control glazing, be mainly used in building and glass curtain wall; Low emissivity glass is that the film being comprised of the metals such as multilayer silver, copper or tin or its compound in glass surface plating is, product has higher transmissivity to visible ray, infrared rays is had to very high reflectivity, there is good heat-proof quality, be mainly used in the vehicles such as building and automobile, boats and ships, because film strength is poor, generally all make double glazing and use; Electropane is at conductive films such as glass surface coating tin indium oxides, can be used for heating, defrosting, the demist of glass and is used as liquid crystal display etc.;
As mentioned above, current coated glass is only applied in the functions such as heat reflection, low radiation, conduction, also in conjunction with artificial light (incandescent light, electricity-saving lamp, LED lamp), aspect optical imagery, do not making outstanding design, for now, only have the most simply more on glass the outward appearance that patterns increase glass is set, be applied on light fixture and just seem very simple, anyone only need to design beautiful pattern, but the structure of coated glass does not obtain development, do not promote scientific and technical progress.Thereby, be necessary coated glass obtaining breakthrough aspect the optical imagery of artificial light, in Promote Technology, improve people's standard of living.
Utility model content
For solving the problems of the technologies described above, the technical problems to be solved in the utility model is to provide a kind of coated glass of multiple imaging and the lampshade that application coated glass is made.
The technical solution adopted in the utility model is: a kind of coated glass, there is three-decker, the theca interna and the theca externa that comprise middle layer and be plated in middle layer surfaces externally and internally, it is characterized in that: described middle layer is glass coating, described theca interna is light-transmissive film or light tight film, described theca externa is light-transmissive film, and described theca interna is carved with pattern and/or the character being communicated with glass coating internal surface.
On described theca externa, be carved with pattern and/or the character relative with pattern on theca interna and/or character, and on described theca externa, pattern and/or character are communicated with glass coating outside surface.
Described theca interna is the silver-plated metal level of water.
Described theca interna is a kind of film layer structure or multiple rete unitized construction in the alloys target by evaporation chromium plating, titanium aluminium, titanium, zirconium, nickel, tungsten, stainless steel, molybdenum, silver, graphite, niobium, zinc, zinc-aluminium, multiple atomic ratio.
Described theca externa is a kind of film layer structure or multiple rete unitized construction in the alloys target by magnetron sputtering chromium plating, titanium aluminium, titanium, zirconium, nickel, tungsten, stainless steel, molybdenum, silver, graphite, niobium, zinc, zinc-aluminium, multiple atomic ratio.
A lampshade, its lampshade body is identical with the arbitrary described coated glass hierarchical structure of claim 1-5, or is processed by the arbitrary described coated glass of claim 1-5.
The beneficial effects of the utility model:
Coated glass of the present utility model and apply the lampshade that this coated glass is made, by at glass coating two sides plated film, coated surface chiseling pattern or character, when light source is from the coated surface irradiation of chiseling pattern or character, from another coated surface, toward light source direction, look, just can on coated glass or lampshade, demonstrate the multilayer ghost image of pattern or character, present three-dimensional display effect.
Accompanying drawing explanation
Below in conjunction with accompanying drawing, embodiment of the present utility model is described further.
Fig. 1 is the sectional view of a kind of coated glass of the utility model;
Fig. 2 is the ghost image imaging optical path figure of a kind of coated glass of the utility model;
To be that the utility model is a kind of apply the lampshade schematic diagram that coated glass is made to Fig. 3.
Embodiment
Be illustrated in figure 1 a kind of coated glass of the present utility model, there is three-decker, the theca interna 2 and the theca externa 3 that comprise middle layer 1 and be plated in middle layer surfaces externally and internally, described middle layer 1 is glass coating, described theca interna 2 is light-transmissive film or light tight film, described theca externa 3 is light-transmissive film, and described theca interna 2 is carved with pattern and/or the character 4 being communicated with glass coating internal surface.
As the further improvement of the technical program, on described theca externa 3, be also carved with pattern and/or the character 4 relative with pattern on theca interna 2 and/or character 4, and on described theca externa 3, pattern and/or character 4 are communicated with glass coating outside surface.
Wherein, described theca interna 2 is the silver-plated metal level of water, or is a kind of film layer structure or multiple rete unitized construction in the alloys target by evaporation chromium plating, titanium aluminium, titanium, zirconium, nickel, tungsten, stainless steel, molybdenum, silver, graphite, niobium, zinc, zinc-aluminium, multiple atomic ratio.Described theca externa 3 is a kind of film layer structure or multiple rete unitized construction in the alloys target by magnetron sputtering chromium plating, titanium aluminium, titanium, zirconium, nickel, tungsten, stainless steel, molybdenum, silver, graphite, niobium, zinc, zinc-aluminium, multiple atomic ratio.Because different metal atom is different to the specific refractory power of light with non-metallic atom, the coatings of therefore multiple rete combination can demonstrate colored light, makes out light effect more gorgeous.
As shown in Figure 2, for the ghost image imaging optical path figure of the utility model coated glass, light source S is positioned at theca interna 2 one sides, and the incident beam P that light source S penetrates is through the theca interna 2 pattern A(originals) enter glass coating, in glass coating, reflect, be designated as first refractive light P1, when first refractive light P1 runs into the theca externa 3 of printing opacity, part light directly transmits theca externa 3(and ignores the position bias effect of light refraction to imaging in theca externa 3 at this, the utility model highlights the multilayer ghost image reflecting to form, theca externa 3 refractions afterwards in like manner), the light that just can transmit along first refractive light P1 at this human eye see the first layer as A1(due to light refraction in ignoring theca externa 3, just can suppose that A1 overlaps with A), on the other hand, first refractive light P1 reflects in addition at theca externa 3, be designated as the first reflection ray B1, B1 continues to propagate in glass coating until run into theca interna 2(light-transmissive film or light tight film all can reflect, difference is that light tight film can all reflect, ghost image is brighter, and light-transmissive film is also with transmission, ghost image is dimer) secondary reflection again, be designated as the second reflection ray B2, B2 propagates until again run into theca externa 3 in glass coating, and on theca externa 3, there is transmission and reflection, along the light reverse extending line transmiting herein, look and just can obtain the second layer as A2, and the light of reflection is that the 3rd reflection ray B3 is according to B1, the catadioptric process of B2 continues to propagate, form the 3rd layer as A3, so at middle layer 1(glass coating), unlimited catadioptric between theca interna 2 and theca externa 3, just can form unlimited ghost image (as), until last light attenuation to 0, therefore ghost image is also to die down gradually within outer, in like manner, the optical throughput of injecting pattern of light source is larger, the level of ghost image is more much brighter, on the other hand, the optical throughput that the size of dwindling pattern also can make to inject pattern is larger, reach the more much brighter effects of level of ghost image.
As shown in Figure 3, a kind of lampshade, its lampshade body is identical with coated glass hierarchical structure, or is processed by coated glass of the present utility model, just can present the effect of multiple imaging after placing light source in lampshade.Certainly, the utility model is not limited only to and lampshade, so long as other glassworks of application the utility model coated glass are all within protection domain of the present utility model.
In sum, coated glass of the present utility model and apply the lampshade that this coated glass is made, by at glass coating two sides plated film, coated surface chiseling pattern or character, when light source is from the coated surface irradiation of chiseling pattern or character, from another coated surface, toward light source direction, look, just can on coated glass or lampshade, demonstrate the multilayer ghost image of pattern or character, present three-dimensional display effect.
The foregoing is only preferential embodiment of the present utility model, the utility model is not limited to above-mentioned embodiment, as long as within the technical scheme that realizes the utility model object with basic identical means all belongs to protection domain of the present utility model.
Claims (6)
1. a coated glass, there is three-decker, the theca interna and the theca externa that comprise middle layer and be plated in middle layer surfaces externally and internally, it is characterized in that: described middle layer is glass coating, described theca interna is light-transmissive film or light tight film, described theca externa is light-transmissive film, and described theca interna is carved with pattern and/or the character being communicated with glass coating internal surface.
2. a kind of coated glass according to claim 1, is characterized in that: on described theca externa, be carved with pattern and/or the character relative with pattern on theca interna and/or character, and on described theca externa, pattern and/or character are communicated with glass coating outside surface.
3. a kind of coated glass according to claim 1, is characterized in that: described theca interna is the silver-plated metal level of water.
4. a kind of coated glass according to claim 1, is characterized in that: described theca interna is a kind of film layer structure or multiple rete unitized construction in the alloys target by evaporation chromium plating, titanium aluminium, titanium, zirconium, nickel, tungsten, stainless steel, molybdenum, silver, graphite, niobium, zinc, zinc-aluminium, multiple atomic ratio.
5. a kind of coated glass according to claim 1, is characterized in that: described theca externa is a kind of film layer structure or multiple rete unitized construction in the alloys target by magnetron sputtering chromium plating, titanium aluminium, titanium, zirconium, nickel, tungsten, stainless steel, molybdenum, silver, graphite, niobium, zinc, zinc-aluminium, multiple atomic ratio.
6. a lampshade of making according to the arbitrary described coated glass of claim 1-5, is characterized in that: its lampshade body is identical with described coated glass hierarchical structure, or is processed by described coated glass.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201320593976.5U CN203513500U (en) | 2013-09-23 | 2013-09-23 | Coated glass |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201320593976.5U CN203513500U (en) | 2013-09-23 | 2013-09-23 | Coated glass |
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CN203513500U true CN203513500U (en) | 2014-04-02 |
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CN201320593976.5U Ceased CN203513500U (en) | 2013-09-23 | 2013-09-23 | Coated glass |
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103496222A (en) * | 2013-09-23 | 2014-01-08 | 张夕奎 | Coated glass |
CN106335236A (en) * | 2016-09-29 | 2017-01-18 | 宁波长青家居用品有限公司 | Optical light transmission sheet |
CN106568067A (en) * | 2016-11-04 | 2017-04-19 | 东莞市广领光电科技有限公司 | Production technology of glass products with light transmitting three-dimensional patterns and light fixtures |
-
2013
- 2013-09-23 CN CN201320593976.5U patent/CN203513500U/en not_active Ceased
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103496222A (en) * | 2013-09-23 | 2014-01-08 | 张夕奎 | Coated glass |
CN106335236A (en) * | 2016-09-29 | 2017-01-18 | 宁波长青家居用品有限公司 | Optical light transmission sheet |
CN106568067A (en) * | 2016-11-04 | 2017-04-19 | 东莞市广领光电科技有限公司 | Production technology of glass products with light transmitting three-dimensional patterns and light fixtures |
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Legal Events
Date | Code | Title | Description |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20140402 Termination date: 20170923 |
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CF01 | Termination of patent right due to non-payment of annual fee | ||
IW01 | Full invalidation of patent right |
Decision date of declaring invalidation: 20180131 Decision number of declaring invalidation: 34754 Granted publication date: 20140402 |
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IW01 | Full invalidation of patent right |