CN202767305U - Light-emitting diode (LED) efficacy high-efficiency transition hollow glass curtain wall - Google Patents

Light-emitting diode (LED) efficacy high-efficiency transition hollow glass curtain wall Download PDF

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Publication number
CN202767305U
CN202767305U CN 201220403782 CN201220403782U CN202767305U CN 202767305 U CN202767305 U CN 202767305U CN 201220403782 CN201220403782 CN 201220403782 CN 201220403782 U CN201220403782 U CN 201220403782U CN 202767305 U CN202767305 U CN 202767305U
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glass
led
layer
hollow
dot matrix
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沈荣虎
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Abstract

The utility model relates to a light-emitting diode (LED) efficacy high-efficiency transition hollow glass curtain wall. The LED efficacy high-efficiency transition hollow glass curtain wall comprises an LED glass display screen. According to the LED efficacy high-efficiency transition hollow glass curtain wall, an LED hollow glass display screen layer is formed by stacking a glass or toughened glass layer and an LED lattice glass mold band layer. An electric conduction metal lattice net composed of an LED positive electrode and an LED negative electrode is embedded in one face of the LED lattice glass mold band layer, or an electric conduction metal lattice net composed of conducting films is arranged on one face of the LED lattice glass mold band layer. An LED chip is placed on a cross point of the electric conduction metal lattice net. Back layer glass or back layer toughened glass is bonded on the back face of the LED lattice glass mold band layer through a hollow aluminum strip, and area of the back layer glass or the back layer toughened glass is smaller than area of the LED lattice glass mold band layer. Four rim portions of the LED lattice glass mold band layer are enabled to be exposed. An aluminum alloy auxiliary frame is composed of a front end groove, a hollow type cavity and a back end groove.

Description

LED usefulness is efficiently changed hollow glass curtain wall
Technical field
The utility model relates to a kind of the utility model and relates to a kind of existing hollow glass function, has LED glass display effect at hollow glass again, has again simultaneously the high light conversion of good heat radiator function and rate effect, the LED usefulness that has again utmost point low thermal coefficient of expansion and good electric insulating properties is efficiently changed hollow glass curtain wall, belongs to the LED hollow glass and makes the field.
Background technology
CN201125472Y, title " LED luminous transparent curtain wall ", comprise a transparent curtain wall brick and a transparent luminescent layer, described curtain wall brick is comprised of two clear glass deck panels, the configuration space of a hollow that forms in the middle of described two panels, described transparent luminescent layer is fixed in the described configuration space.Its weak point: the one, do not realize LED dot matrix glass molds; The 2nd, do not solve the heat radiation difficult problem of led chip, light conversion efficiency is low, and energy consumption is large; The 3rd, do not solve the large difficult problem of coefficient of thermal expansion of surface layer glass; The 4th, do not solve the docking of LED luminous transparent curtain wall and connect.
CN2563225Y, title " a kind of LED luminous curtain wall plate " embed LED lamp strip in the hollow transparent plate, this kind LED lamp strip is made of light emitting diode series connection and series resistor, again with many LED lamp strip parallel connections.Its weak point: the one, do not realize LED dot matrix glass molds; The 2nd, do not solve the heat radiation difficult problem of led chip, light conversion efficiency is low, and energy consumption is large; The 3rd, do not solve the large difficult problem of coefficient of thermal expansion of surface layer glass; The 4th, do not solve the docking of LED luminous transparent curtain wall and connect.
CN201204001Y, title " a kind of curtain wall module that can show graph text information ", comprise inner layer glass, glass outer and between inner layer glass and glass outer and along the frame bar of edge distribution, described inner layer glass, glass outer and frame bar (between formed closed interlayer, it is characterized in that, described closed interlayer has been embedded in the electronical display layer, described electronical display layer comprises at least one LED light-emitting pixels assembly, signal bus assembly and the power supply assembly that confluxes, the two ends of described LED light-emitting pixels assembly are realized mechanical connection and electric connection with signal bus assembly and the power supply assembly that confluxes respectively.Its weak point: the one, do not realize LED dot matrix glass molds; The 2nd, do not solve the heat radiation difficult problem of led chip, light conversion efficiency is low, and energy consumption is large; The 3rd, do not solve the large difficult problem of coefficient of thermal expansion of surface layer glass; The 4th, do not solve the docking of LED luminous transparent curtain wall and connect.
The utility model content
Purpose of design: avoid the weak point in the background technology, design a kind of heat radiator function that both had, have again utmost point low thermal coefficient of expansion and good electric insulating properties, and the high LED usefulness of light conversion efficiency is efficiently changed hollow glass curtain wall.
Design scheme: in order to realize above-mentioned purpose of design.1, LED dot matrix glass molds belt adopts the design of heat absorbing glass, is one of technical characterictic of the present utility model.The purpose of doing like this is: owing to heat absorbing glass is to add a certain amount ofly the colorant of heat absorption capacity is arranged or to make at one or more layers metal of surface of plate glass spraying plating or metal-oxide film in the raw material of common soda lime glass, it can absorb a large amount of infrared radiation energy, so the heat that it can produce the conducting metal dot matrix net with led chip effectively conducts fast by heat absorbing glass, make led chip be in all the time the low-temperature working state, because have directly depended on the height of its operating temperature in the luminous efficiency of led chip and application life, operating temperature is low, not only luminous efficiency is high, and long service life, energy consumption is little.2, the another side of LED dot matrix glass molds belt (heat absorbing glass mould layer) is equipped with the design of one deck heat radiator layer, is two of technical characterictic of the present utility model.The purpose of doing like this is: because the laminated heat-absorbing paint layer that scribbles of heat radiator, this heat-absorbing paint layer is painted on the back side of heat absorbing glass, it can absorb heat absorbing glass heat moment is passed to the aluminium heat dissipating layer by the heat-absorbing paint layer, because the face of aluminium heat dissipating layer is uneven matsurface, its area of dissipation is large, can fast the mode of heat by air cooling be shed, thereby make heat absorbing glass be in all the time the low-temperature working state.3, the one side of heat absorbing glass is embedded with the design of the conducting metal dot matrix net that one deck is made of LED positive pole and negative pole, is three of technical characterictic of the present utility model.The purpose of doing like this is: conducting metal dot matrix net is embedded in the heat absorbing glass, not only can effectively improve the intensity of heat absorbing glass, and be conducive to led chip by the heat radiation of conducting metal dot matrix net, make led chip always work in the low-temperature working state.4, showing the design of glass screen adopting quartz glass, is four of technical characterictic of the present utility model.The purpose of doing like this is: the one, because quartz glass has extremely low coefficient of thermal expansion, high temperature tolerance, fabulous chemical stability, good electrical insulating property, low and stable ultrasonic delay performance, best saturating ultraviolet spectra performance and saturating visible light and near infrared spectrum performance, and the mechanical performance that is higher than simple glass is arranged; The 2nd, quartz glass has very high dielectric strength and extremely low conductance, namely be under high temperature, high pressure and high frequency, still can keep very high dielectric strength and resistance, in applied frequency band, almost not have dielectric loss, so quartz glass is good high-temperature dielectric insulation materials; The 4th, quartz glass belongs to acid material, except hydrofluoric acid and hot phosphoric acid, other any acid is all shown as inertia, it is best acid resisting material, and the extent of corrosion of alkali and salt pair quartz glass also is extremely little at normal temperatures, therefore the application's adopting quartz glass is efficiently changed hollow glass curtain wall surface layer glass as LED usefulness, has realized Heat stability is good, high-temperature dielectric insulation, has not had dielectric loss, and acidproof, alkaline-resisting, salt tolerant, definition are high.5, LED usefulness is efficiently changed the design that the hollow glass curtain wall syndeton adopts the aluminium alloys sleeve pipe to combine with aluminum alloy auxiliary frame, be technical characterictic of the present utility model technical characterictic five.The purpose of doing like this is: because the aluminum alloy sleeve pipe is fixed on the Aluminum alloy column, aluminium alloys sleeve pipe front end face middle part is nuts clamping dovetail groove, the front end face both sides are aluminum alloy auxiliary frame clamping dovetail groove, aluminium alloys sleeve pipe rear end is the controller mounting groove, notch is provided with the aluminium alloys pressing plate, and aluminum alloy auxiliary frame is by front end slot, hollow molded cavity and rear end slot consist of, front end slot is that LED usefulness is efficiently changed the bonding frame of hollow glass curtain wall, rear end slot is inserted with the aluminium alloys briquetting and passes through front end slot, bolt hole in the hollow molded cavity and rear end slot are connected with the aluminium alloys sleeve pipe and nuts is positioned at the nuts clamping dovetail groove of aluminium alloys sleeve pipe front end face, thereby have realized that aluminum alloy auxiliary frame is connected with pressure between the aluminium alloys sleeve pipe; And the face that is positioned at the clamping coattail strip of aluminium alloys sleeve pipe front end face both sides clamping dovetail groove touches mutually with aluminum alloy auxiliary frame rear end groove face, has realized resilient engagement, guarantees the slow release of hollow glass rigidity; And several piece LED usefulness is efficiently changed hollow glass curtain wall and is bonded on the hollow molded cavity and rear end slot of aluminum alloy auxiliary frame by the docking of powerful adhesive pad and copper silicon structure glue.
Technical scheme: a kind of LED usefulness is efficiently changed hollow glass curtain wall, comprise that LED shows glass screen, described LED usefulness is efficiently changed hollow glass curtain wall and is consisted of LED hollow glass display screen layer by glass or tempered glass layer and the stack of LED dot matrix glass molds belt, the one side of LED dot matrix glass molds belt is embedded with one deck is anodal by LED and negative pole consists of conducting metal dot matrix net or the one side of LED dot matrix glass molds belt is equipped with the conducting metal dot matrix net that conducting film consists of, led chip is positioned on the crosspoint of conducting metal dot matrix net, backing layer glass or backing layer tempered glass are bonded in the back side of LED dot matrix glass molds belt and backing layer glass or backing layer tempered glass area less than LED dot matrix glass molds belt by hollow aluminum strip, make LED dot matrix glass molds belt surrounding section exposed; Aluminum alloy auxiliary frame is by front end slot, hollow molded cavity and rear end slot consist of, front end slot is that the LED lamp can efficiently be changed the hollow glass adhesive portion, hollow molded cavity is inserted with the aluminium alloys briquetting and passes through front end slot, bolt hole in the hollow molded cavity is connected with the aluminium alloys sleeve pipe and nuts is positioned at the nuts buckling groove of aluminium alloys sleeve pipe front end face, be inserted with the clamping coattail strip in the clamping dovetail groove of aluminium alloys sleeve pipe front end face both sides, clamping coattail strip face touches mutually with aluminum alloy auxiliary frame rear end groove face, aluminum alloy auxiliary frame rear end slot both sides are connected on the aluminum alloy sleeve tube wall, and several piece LED lamp can efficiently be changed hollow glass and be bonded on the front end slot of aluminum alloy auxiliary frame by the docking of copper silicon structure glue.
The utility model is compared with background technology, and the one, realized the making of LED dot matrix glass modules; The 2nd, solve the difficult problem of led chip heat radiation, when having improved widely the wealth of light conversion efficiency of LED, reduced energy consumption; The 3rd, solve the large difficult problem of coefficient of thermal expansion of surface layer glass, not only Heat stability is good, high-temperature dielectric insulation, do not have dielectric loss, and acidproof, alkaline-resisting, salt tolerant, definition are high; The 4th, simple in structure, cost of manufacture is low; The 5th, fundamentally solve the reliable docking between the LED luminous transparent curtain wall.
Description of drawings
Fig. 1 is the structural representation that LED usefulness is efficiently changed hollow glass curtain wall.
Fig. 2 is the side-looking structural representation of Fig. 1.
Fig. 3 be among Fig. 1 the aluminium alloys sleeve pipe be connected with Aluminum alloy column and aluminum alloy auxiliary frame and aluminium alloys sleeve pipe between the syndeton schematic diagram.
The specific embodiment
Embodiment 1: with reference to accompanying drawing 1-3.A kind of LED usefulness is efficiently changed hollow glass curtain wall, comprise that LED shows glass screen, described LED usefulness is efficiently changed hollow glass curtain wall by glass or tempered glass layer 1 and LED dot matrix glass molds belt 5 stack (bonding) formation LED hollow glass display screen layers, the one side of LED dot matrix glass molds belt (heat absorbing glass) 5 is embedded with one deck is anodal by LED and negative pole consists of conducting metal dot matrix net 3 or the one side of LED dot matrix glass molds belt 5 is equipped with the conducting metal dot matrix net (3) that conducting film consists of, led chip 4 is positioned on the crosspoint of conducting metal dot matrix net, backing layer glass or backing layer tempered glass 18 are bonded in the back side of LED dot matrix glass molds belt 5 and backing layer glass or backing layer tempered glass 18 areas less than LED dot matrix glass molds belt 5 by hollow aluminum strip 17, make LED dot matrix glass molds belt 5 surrounding sections exposed.Described LED dot matrix glass molds belt 5 is heat absorbing glass, and the another side of heat absorbing glass is equipped with one deck heat radiator layer 10.Described heat radiator layer 10 one side scribble the heat-absorbing paint layer, are uneven coarse radiation aluminium surface layer on the heat-absorbing paint layer, and heat-absorbing paint is prior art, is not described herein at this.1 on described glass or tempered glass layer are ground glass surface.The mould band back side of described LED dot matrix glass molds belt 5 is equipped with high temperature glazed colour layer 6.Label 7 in the accompanying drawing refers to controller, and label 8 refers to data wire, and its making all is prior art, is not described herein at this.Aluminium alloys sleeve pipe 12 is fixed on the Aluminum alloy column 13 and aluminium alloys sleeve pipe 12 front end faces middle part is aluminum alloy auxiliary frame clamping dovetail groove 1202 for nuts clamping dovetail groove 1201, front end face both sides, and the rear end is the controller mounting groove, and notch is provided with aluminium alloys pressing plate 9; Aluminum alloy auxiliary frame 15 is by front end slot 1503, hollow molded cavity 1501 and rear end slot 1504 consist of, front end slot 1503 can efficiently be changed the hollow glass adhesive portion for the LED lamp, hollow molded cavity 1501 is inserted with aluminium alloys briquetting 14 and passes through front end slot 1503, bolt hole 1502 in the hollow molded cavity 1501 is connected with aluminium alloys sleeve pipe 12 and nuts is positioned at the nuts buckling groove 1201 of aluminium alloys sleeve pipe 12 front end faces, be inserted with clamping coattail strip 1203 in the clamping dovetail groove 1202 of aluminium alloys sleeve pipe 12 front end face both sides, 1203 of clamping coattail strips are tactile mutually with 1504 of aluminum alloy auxiliary frame 15 rear end slots, aluminum alloy auxiliary frame 15 rear end slots 1504 both sides are connected on aluminium alloys sleeve pipe 12 walls, and several piece LED lamp can efficiently be changed hollow glass and be bonded on the front end slot 1503 of aluminum alloy auxiliary frame 15 by 16 docking of copper silicon structure glue.Nuts clamping dovetail groove 1201, Aluminum alloy column 13 and rear end slot 1504 have the spool hole and circular spool 11 is through wherein.The top and the bottom, both sides are provided with respectively convex tendon in hollow molded cavity 1501 chambeies, and the space that convex tendon and inside wall consist of is built-in with elastic cushion block 19.
Embodiment 2: on the basis of embodiment 1,1 of described quartz glass layer is ground glass surface, purpose be reduce to greatest extent reflective.
On the basis of embodiment 1, its LED usefulness is efficiently changed the preparation method of hollow glass curtain wall, By LED dot matrix glass molds belt size make have positive and negative electrode minute conducting metal dot matrix net 3, then heat absorbing glass is heated to the melting softening point after, will have positive and negative electrode minute conducting metal dot matrix net 3 be pressed on the softening heat absorbing glass face of melting; Be equipped with one deck heat radiator layer 6 at the heat absorbing glass back side; Led chip 4 is sticked on place, conducting metal dot matrix net 4 crosspoints and consists of LED dot matrix glass molds belt 5, then PVB or EVA film 2 are covered on the LED dot matrix glass molds belt 5, again quartz glass layer 1 is superimposed upon on PVB or the EVA film and sticks to one with heat absorbing glass and namely get the LED lamp and can efficiently change hollow glass; Several piece LED lamp can efficiently be changed and namely consist of LED usefulness on hollow glass is bonded in aluminum alloy auxiliary frame 15 by copper silicon structure glue 16 docking the front end slot 1503 and efficiently change hollow glass curtain wall.Described heat radiator layer 6 refers to then spray the surperficial concave-convex surface structure of one deck aluminium film and aluminium film at heat-absorbing paint at heat absorbing glass back side spraying one deck heat-absorbing paint.
On the basis of embodiment 1, its LED usefulness is efficiently changed the preparation method of hollow glass curtain wall, By LED dot matrix glass molds belt size make have positive and negative electrode minute conducting metal dot matrix net 3, then adopt serigraphy conducting film or sputter conducting film on glass surface and the conducting metal dot matrix net 3 that consists of; Be equipped with one deck heat radiator layer 10 at the heat absorbing glass back side; Led chip 4 is sticked on place, conducting metal dot matrix net 4 crosspoints and consists of LED dot matrix glass molds belt 5, then PVB or EVA film 2 are covered on the LED dot matrix glass molds belt 5, again quartz glass layer 1 is superimposed upon on PVB or the EVA film and sticks to one with heat absorbing glass and namely get the LED lamp and can efficiently change hollow glass; Several piece LED lamp can efficiently be changed and namely consist of LED usefulness on hollow glass is bonded in aluminum alloy auxiliary frame 15 by copper silicon structure glue 16 docking the front end slot 1503 and efficiently change hollow glass curtain wall.
What need to understand is: although above-described embodiment is to the mentality of designing of the present utility model detailed text description of contrasting; but these text descriptions; just the simple text of the utility model mentality of designing is described; rather than to the restriction of the utility model mentality of designing; any combination, increase or modification that does not exceed the utility model mentality of designing all falls in the protection domain of the present utility model.

Claims (6)

1. a LED usefulness is efficiently changed hollow glass curtain wall, comprise that LED shows glass screen, it is characterized in that: described LED usefulness is efficiently changed hollow glass curtain wall by glass or tempered glass layer (1) and LED dot matrix glass molds belt (5) stack formation LED hollow glass display screen layer, the one side of LED dot matrix glass molds belt (5) is embedded with conducting metal dot matrix net (3) or LED dot matrix glass molds belt (5) one side that one deck is anodal by LED and negative pole consists of and is equipped with the conducting metal dot matrix net (3) that conducting film consists of, led chip (4) is positioned on the crosspoint of conducting metal dot matrix net, backing layer glass or backing layer tempered glass (18) are bonded in the back side of LED dot matrix glass molds belt (5) and backing layer glass or backing layer tempered glass (18) area less than LED dot matrix glass molds belt (5) by hollow aluminum strip (17), make LED dot matrix glass molds belt (5) surrounding section exposed; Aluminum alloy auxiliary frame (15) is by front end slot (1503), hollow molded cavity (1501) and rear end slot (1504) consist of, front end slot (1503) can efficiently be changed the hollow glass adhesive portion for the LED lamp, hollow molded cavity (1501) is inserted with aluminium alloys briquetting (14) and passes through front end slot (1503), bolt hole (1502) in the hollow molded cavity (1501) is connected with aluminium alloys sleeve pipe (12) and nuts is positioned at the nuts buckling groove (1201) of aluminium alloys sleeve pipe (12) front end face, be inserted with clamping coattail strip (1203) in the clamping dovetail groove (1202) of aluminium alloys sleeve pipe (12) front end face both sides, clamping coattail strip (1203) face touches mutually with aluminum alloy auxiliary frame (15) rear end slot (1504) face, aluminum alloy auxiliary frame (15) rear end slot (1504) both sides are connected on aluminium alloys sleeve pipe (12) wall, and several piece LED lamp can efficiently be changed hollow glass and be bonded on the front end slot (1503) of aluminum alloy auxiliary frame (15) by copper silicon structure glue (16) docking.
2. LED usefulness according to claim 1 is efficiently changed hollow glass curtain wall, it is characterized in that: described LED dot matrix glass molds belt (5) is heat absorbing glass, and the another side of heat absorbing glass is equipped with one deck heat radiator layer (6).
3. LED usefulness according to claim 2 is efficiently changed hollow glass curtain wall, it is characterized in that: described heat radiator layer (6) one side scribbles the heat-absorbing paint layer, is uneven coarse radiation aluminium surface layer on the heat-absorbing paint layer.
4. LED usefulness according to claim 1 is efficiently changed hollow glass curtain wall, it is characterized in that: the top and the bottom, both sides are provided with respectively convex tendon in described hollow molded cavity (1501) chamber, and the space that convex tendon and inside wall consist of is built-in with elastic cushion block (19).
5. LED usefulness according to claim 1 is efficiently changed hollow glass curtain wall, it is characterized in that: described glass or tempered glass layer (1) face are ground glass surface.
6. LED usefulness according to claim 1 is efficiently changed hollow glass curtain wall, it is characterized in that: nuts clamping dovetail groove (1201), Aluminum alloy column (13) and rear end slot (1504) have the spool hole and circular spool (11) is through wherein.
CN 201220403782 2012-08-15 2012-08-15 Light-emitting diode (LED) efficacy high-efficiency transition hollow glass curtain wall Expired - Lifetime CN202767305U (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102787686A (en) * 2012-08-15 2012-11-21 沈荣虎 LED (light emitting diode) high-efficient conversion hollow glass curtain wall and manufacturing method
CN108086548A (en) * 2017-12-19 2018-05-29 浙江绿筑集成科技有限公司 A kind of transparency LED intelligence glass curtain wall mounting structure and its installation method

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102787686A (en) * 2012-08-15 2012-11-21 沈荣虎 LED (light emitting diode) high-efficient conversion hollow glass curtain wall and manufacturing method
CN102787686B (en) * 2012-08-15 2014-11-26 沈荣虎 LED (light emitting diode) high-efficient conversion hollow glass curtain wall and manufacturing method
CN108086548A (en) * 2017-12-19 2018-05-29 浙江绿筑集成科技有限公司 A kind of transparency LED intelligence glass curtain wall mounting structure and its installation method

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