CN202056577U - Arched hollow multicolor LED photoelectric glass - Google Patents

Arched hollow multicolor LED photoelectric glass Download PDF

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Publication number
CN202056577U
CN202056577U CN2011200593390U CN201120059339U CN202056577U CN 202056577 U CN202056577 U CN 202056577U CN 2011200593390 U CN2011200593390 U CN 2011200593390U CN 201120059339 U CN201120059339 U CN 201120059339U CN 202056577 U CN202056577 U CN 202056577U
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China
Prior art keywords
glass
hollow
layer
glassy layer
led photoelectric
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Expired - Fee Related
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CN2011200593390U
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Chinese (zh)
Inventor
陈耀
瞿培正
付明新
刘进生
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SHANGHAI ZUNHUA ELECTRONIC ENGINEERING Co Ltd
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SHANGHAI ZUNHUA ELECTRONIC ENGINEERING Co Ltd
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Priority to CN2011200593390U priority Critical patent/CN202056577U/en
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Abstract

An arched hollow multicolor LED photoelectric glass relates to a glass product and comprises a first glass layer, a second glass layer and a hollow layer between the first glass layer and the second glass layer, wherein the first glass layer includes conductive glass with a conductive circuit arranged therein. The conductive circuit has embedded therein luminous point which comprises at least one LED illuminant. The first glass layer, the second glass layer and the hollow layer are arched. Lighting colors of the arched hollow multicolor LED photoelectric glass are more diversified than conventional LED photoelectric glass which is monochromatic. LED illuminant of different colors combining together can give off other colors, which makes the LED photoelectric glass more beautiful. Moreover, the shape of the LED photoelectric glass is improved, which makes the application scope of the LED photoelectric glass wider and provide better decorative effects.

Description

The multi-colored led photoelectric glass of arc hollow
Technical field
The utility model relates to a kind of glassware, particularly relates to the multi-colored led photoelectric glass of a kind of luminous arc hollow.
Background technology
In the various application occasions of commercial building and beautification of landscape, all need the illuminator light coloring variation effect of performing, for example: building curtain wall, advertisement glass curtain wall, scenery external lamp etc.These views had both had the abundant manifestation mode of form, good daylighting function, had certain energy saving and riotous with colour, gorgeous decorative effect again, had the market prospects of unlimited broadness.
Prior art adopts glass as advertising carrier, and at the circuit and the light fixture of layout tinsel on glass, light fixture is customized to the literal or the pattern of advertisement, when power supply opening, and lamp luminescence, corresponding literal or patterned display go out content.
But the expression effect of this glass is bad, and shortcoming is embodied in:
1. at glass surface cloth light fixture and circuit, influence attractive in appearance.
2. better acoustic control if desired, effect such as light-operated, heat insulation, simple glass is difficult to realize.
3. cloth comes off aging at the light fixture and the circuit on surface easily.
4. Glass breadks easily.
5. conducting function instability.
Along with the development of glass technology, being widely used of double glazing.Double glazing is a kind of good heat insulation, sound insulation, attractive in appearance, and can reduce the New Building Materials of building deadweight.It is with two (or three) glass, uses high strength high-air-tightness compound binding agent, with sheet glass and the aluminum alloy frame bonding that includes drier, the high-effect sound-insulating and heat-insulating glass of making.Sound insulation, the heat-proof quality of double glazing are superior to double glazing, have therefore obtained the approval of countries in the world.As between glass, filling, then can obtain effects such as better acoustic control, light-operated, heat insulation, sound insulation, insulation with various diffused light materials or dielectric etc.
Aspect illuminator, the LED technical development is rapid.LED is a light emitting diode, and its full name is Light Emitting Diode, is to use semi-conducting material directly to be converted into luminous energy, the signal of telecommunication is converted to the illuminator of optical signal by electric energy, is a kind of novel energy-saving illumination illuminator.But that its main feature is a caloric value is low, power consumption is little, the life-span is long, reaction speed is fast, volume is little, antidetonation is good, discharge off gas, the optional scope of color greatly and planar package, therefore be widely used in the illumination application, landscape design, traffic sign, electronics show tools of various industries.
But a LED luminous point in the present LED glass has only a LED illuminator, because the LED illuminator can only send a kind of light of color, this just makes a LED luminous point also can only send a kind of light of color.And in the prior art, luminous middle hollow LED glass all is dull and stereotyped usually, has limited the range of application of middle hollow LED glass.Such as the show window or the special place of some shapes of some arcs, dull and stereotyped middle hollow LED glass just can not be packed into and wherein be decorated.Improve so be badly in need of centering hollow LED glass now, the application of hollow LED photoelectric glass under multiple environment in satisfying, and the various colors of LED photoelectric glass are used.
The utility model content
The utility model is exactly in order to address the above problem, and overcomes the existing defective of LED photoelectric glass in the prior art, and the utility model provides the multi-colored led photoelectric glass of a kind of arc hollow to address the aforementioned drawbacks and problem.
To achieve these goals, the technical solution of the utility model is as follows:
The multi-colored led photoelectric glass of arc hollow, comprise first glassy layer, second glassy layer and hollow layer, hollow layer is arranged between first glassy layer and second glassy layer, first glassy layer comprises electro-conductive glass, be provided with the conducting wire in the electro-conductive glass, be provided with luminous point in the conducting wire, it is characterized in that, described luminous point comprises at least one LED illuminator, and described first glassy layer, second glassy layer and hollow layer are arc.
The multi-colored led photoelectric glass of above-mentioned a kind of arc hollow is characterized in that described luminous point comprises three LED illuminators.
The multi-colored led photoelectric glass of above-mentioned a kind of arc hollow is characterized in that, it is red, green and blue that the color of described three LED illuminators is respectively.
The multi-colored led photoelectric glass of above-mentioned a kind of arc hollow is characterized in that the radian of described first glassy layer, second glassy layer and hollow layer is identical.
The multi-colored led photoelectric glass of above-mentioned a kind of arc hollow, it is characterized in that, be filled with inert gas in the described hollow layer, the thickness of described hollow layer is one of following: 6 millimeters, 8 millimeters, 9 millimeters and 12 millimeters etc. (and can according to the product of operating position processing different-thickness customized).
The multi-colored led photoelectric glass of above-mentioned a kind of arc hollow is characterized in that, described inert gas is one of following: argon, krypton and sulfur hexafluoride.
The multi-colored led photoelectric glass of above-mentioned a kind of arc hollow is characterized in that, described first glassy layer comprises sodium calcium basic unit and is plated in nesa coating on this sodium calcium substrate surface.
The multi-colored led photoelectric glass of above-mentioned a kind of arc hollow is characterized in that, described first glassy layer comprises silicon boryl substrate glass and is plated in nesa coating on this silicon boryl substrate glass.
The multi-colored led photoelectric glass of above-mentioned a kind of arc hollow is characterized in that, it is one of following that described first glassy layer and second glassy layer are: white glass, look glass, frosted glass and heat reflection glass.
The multi-colored led photoelectric glass of above-mentioned a kind of arc hollow is characterized in that, also comprises power supply, and described power supply connects the conducting wire in the electro-conductive glass.
The beneficial effects of the utility model are: the luminous color that has improved the LED photoelectric glass, make the luminous point that can only send a color originally can send multiple color, and the luminance mix according to the LED illuminator of different colours can also be sent other colors together, make that the LED photoelectric glass is more attractive in appearance, also improved the shape of LED photoelectric glass simultaneously, the scope that makes the LED photoelectric glass use is more extensive, and the effect of decoration is more unique and attractive in appearance.
Description of drawings
Describe the utility model in detail below in conjunction with the drawings and specific embodiments:
Fig. 1 is a top plan view of the present utility model.
Fig. 2 is the utility model side cutaway view.
Fig. 3 is the partial enlarged drawing of luminous point.
Fig. 4 is the circuit connection diagram of the utility model conducting wire.
Fig. 5 is an embodiment of the present utility model.
Fig. 6 is another embodiment of the present utility model.
The specific embodiment
For technological means, creation characteristic that the utility model is realized, reach purpose and effect is easy to understand, below in conjunction with concrete diagram, further set forth the utility model.
Referring to Fig. 1 and Fig. 2, the multi-colored led photoelectric glass of arc hollow, comprise first glassy layer 101, second glassy layer 104 and hollow layer 105, hollow layer 105 is arranged between first glassy layer 101 and second glassy layer 105, with spacer bar 206 and fluid sealant 207 sealings, the airtight hollow space of formation is a hollow layer 105 between first glassy layer 101 and second glassy layer 104.First glassy layer 101, second glassy layer 104 and hollow layer 105 are arc, and first glassy layer 101, second glassy layer 104 are identical with the radian of hollow layer 105, make whole luminous in the hollow LED arc glass also be arc.
First glass comprises electro-conductive glass for 101 layers, is provided with conducting wire 102 in the electro-conductive glass, is provided with luminous point 103 in the conducting wire 102.
Referring to Fig. 3, luminous point 103 comprises that the color of 107, three LED illuminators 107 of three LED illuminators is respectively red, green and blue, in the time of work, one of them LED illuminator 107 of each luminous point 103 can be luminous separately, forms independent a kind of color; Three LED illuminators 107 that also can each luminous point 103 are simultaneously luminous, by regulating the brightness of three LED illuminators 107, form the color of additional mixing.
Electro-conductive glass adopts sodium calcium base or silicon boryl substrate glass, its surface attachment layer of transparent conducting film.On nesa coating, have the transparent conducting wire 102 made from the method for etching or photoetching, transparent conducting wire 102 has power interface to link to each other with external power supply, is 102 power supplies of transparent conducting wire.Implant on first glassy layer, 101 inner surfaces and solidifying the pattern of forming by many luminous points 103, play the material of solidification and can select curable conductive silver paste for use, therefore the LED illuminator 107 of luminous point 103 is connected with electrically conducting transparent circuit 102, when external power supply is connected, electrically conducting transparent circuit 102 is LED illuminator 107 power supplies of luminous point 103, make it luminous, form strong, the weak variation of literal, pattern, color and lamplight brightness of required demonstration.
Because of having adopted on first glassy layer 101 with the transparent conducting wire 102 of the fabrication techniques of etching or photoetching, so conducting wire 102 is only transparent.Changed the inaesthetic shortcoming of wire circuit that welding forms in the prior art.
First glassy layer 101 can be provided with thickness according to the needed intensity needs in installation site.
The live width of the conductive film layer that the path of conducting wire 102 is designed, line length are to calculate, being that the LED illuminator 107 of luminous point 103 provides required operating voltage, electric current exactly.
First glassy layer 101 can be white glass, look glass, frosted glass or heat reflection glass.Performance according to actual needs and deciding.
Second glassy layer 104 can be white glass, look glass, frosted glass or heat reflection glass.Performance according to actual needs and deciding.
The thickness of hollow layer 105 can be 2mm to 20mm, can be according to the product of operating position processing different-thickness customized.In preferred embodiment, hollow layer 105 thickness are 6mm, 8mm, 9mm or 12mm.
If be vacuum fully in the spacing of clearance space, atmospheric pressure can be crushed glass.Therefore, be filled with inert gas in the hollow layer 105 of the present utility model, and inert gas can be argon, krypton or sulfur hexafluoride.Light-operated performance that can be according to actual needs is different and select different inert gases.
According to test, transparency of the present utility model can reach more than or equal to 90%.In other words, the light percent of pass of luminous middle hollow LED photoelectric glass can reach more than or equal to 90%.It will be appreciated by those skilled in the art that this transparency is for advantage of the present utility model is described, rather than be used for limiting scope of the present utility model.For example, need under the low situation of transparency in effect, first glassy layer 101 of the present utility model and second glassy layer 104 also can use materials replacements such as dark-brown glass, ground glass to satisfy low transparency, all belong to protection domain of the present utility model.
Referring to Fig. 4, this product comprises a power supply 307, and the conductor wire 102 that power supply 307 connects in the electro-conductive glass is conducting wire 102 power supplies.Power supply 307 is a dc source, the mode of operation safety of direct current, reliable; Existing parallel circuit in the electrically conducting transparent circuit 102 also has series circuit, and concrete the use according to actual conditions determined.The quantity of luminous point 103 can increase or reduce by actual needs.The hollow LED photoelectric glass has adopted this supply line to realize the operate as normal of the LED illuminator 107 of luminous point 103 in luminous.Be understandable that those of ordinary skill in the art can design various circuit and provide power supply for the LED illuminator 107 of luminous point 103, both can adopt direct current supply also can adopt Alternating Current Power Supply.Present embodiment is just in order to understand the utility model, rather than is used for limiting the specific design of power supply circuits.
Referring to Fig. 5, be an embodiment of the present utility model, first glassy layer 101 is a transparent conducting glass; 402 and 403 are etching or the conductor wire that makes by lithography, and the pin face that to constitute effective conducting wire 102,406 be the LED illuminator 107 of luminous point 103 is used curable conductive silver paste, makes by the mode of silk-screen; 407 is the power interface that is connected with external power source, thinks LED illuminator 107 power supplies of luminous point 103.This power interface 407 is done into strips curing conductive face by curable conductive silver paste, welds Copper Foil again and makes.
Micron (μ m) rank can be accomplished in conductor wire 402 and 403 etchings or photoetching line footpath, and guarantee that blocking-up is good between conducting film, so luminous middle hollow LED photoelectric glass of the present utility model almost be can't see etching or photoetching line, accomplishes that really the transparence of conducting wire 405 is handled.
Referring to Fig. 6, luminous point 103 is arranged on first glassy layer 101 according to rule, the energising back shows designed pattern.This area staff should be appreciated that the quantity of luminous point 103, the pattern of arranging, color etc. are carried out different designs can obtain various display effect.For example: display pattern, literal, various colors, the chiaroscuro effect lamp of having controlled by control system.The above embodiment that is of institute is only in order to understand spirit of the present utility model, and all belong to protection domain of the present utility model to the variation of arranging, quantity and the change in color that luminous point 103 is carried out.
This product improvement the shape of middle hollow LED photoelectric glass, the scope that the hollow LED photoelectric glass is used in making is more extensive, the effect of decoration is more unique and attractive in appearance.
More than show and described basic principle of the present utility model, principal character and advantage of the present utility model.The technical staff of the industry should understand; the utility model is not restricted to the described embodiments; that describes in the foregoing description and the specification just illustrates principle of the present utility model; the utility model also has various changes and modifications under the prerequisite that does not break away from the utility model spirit and scope, and these changes and improvements all fall in claimed the utility model scope.The claimed scope of the utility model is defined by appending claims and equivalent thereof.

Claims (10)

1. the multi-colored led photoelectric glass of arc hollow, comprise first glassy layer, second glassy layer and hollow layer, hollow layer is arranged between first glassy layer and second glassy layer, first glassy layer comprises electro-conductive glass, be provided with the conducting wire in the electro-conductive glass, be provided with luminous point in the conducting wire, it is characterized in that, described luminous point comprises at least one LED illuminator, and described first glassy layer, second glassy layer and hollow layer are arc.
2. according to the multi-colored led photoelectric glass of the described a kind of arc hollow of claim 1, it is characterized in that described luminous point comprises three LED illuminators.
3. according to the multi-colored led photoelectric glass of the described a kind of arc hollow of claim 2, it is characterized in that it is red, green and blue that the color of described three LED illuminators is respectively.
4. according to the multi-colored led photoelectric glass of the described a kind of arc hollow of claim 1, it is characterized in that the radian of described first glassy layer, second glassy layer and hollow layer is identical.
5. according to the multi-colored led photoelectric glass of the described a kind of arc hollow of claim 1, it is characterized in that, be filled with inert gas in the described hollow layer, the thickness of described hollow layer is one of following: 6 millimeters, 8 millimeters, 9 millimeters and 12 millimeters.
6. according to the multi-colored led photoelectric glass of the described a kind of arc hollow of claim 5, it is characterized in that described inert gas is one of following: argon, krypton and sulfur hexafluoride.
7. according to the multi-colored led photoelectric glass of the described a kind of arc hollow of claim 1, it is characterized in that described first glassy layer comprises sodium calcium basic unit and is plated in nesa coating on this sodium calcium substrate surface.
8. according to the multi-colored led photoelectric glass of the described a kind of arc hollow of claim 1, it is characterized in that described first glassy layer comprises silicon boryl substrate glass and is plated in nesa coating on this silicon boryl substrate glass.
9. according to the multi-colored led photoelectric glass of the described a kind of arc hollow of claim 1, it is characterized in that it is one of following that described first glassy layer and second glassy layer are: white glass, look glass, frosted glass and heat reflection glass.
10. according to the multi-colored led photoelectric glass of the described a kind of arc hollow of claim 1, it is characterized in that, also comprise power supply, described power supply connects the conducting wire in the electro-conductive glass.
CN2011200593390U 2011-03-08 2011-03-08 Arched hollow multicolor LED photoelectric glass Expired - Fee Related CN202056577U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2011200593390U CN202056577U (en) 2011-03-08 2011-03-08 Arched hollow multicolor LED photoelectric glass

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2011200593390U CN202056577U (en) 2011-03-08 2011-03-08 Arched hollow multicolor LED photoelectric glass

Publications (1)

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CN202056577U true CN202056577U (en) 2011-11-30

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114659073A (en) * 2022-03-28 2022-06-24 浙江彩丞科技有限公司 Sandwich light-emitting glass device and automobile skylight

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114659073A (en) * 2022-03-28 2022-06-24 浙江彩丞科技有限公司 Sandwich light-emitting glass device and automobile skylight

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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: 20111130

Termination date: 20140308