CN207879175U - A kind of energy saving hollow glass of low heat conductivity - Google Patents

A kind of energy saving hollow glass of low heat conductivity Download PDF

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Publication number
CN207879175U
CN207879175U CN201721757697.2U CN201721757697U CN207879175U CN 207879175 U CN207879175 U CN 207879175U CN 201721757697 U CN201721757697 U CN 201721757697U CN 207879175 U CN207879175 U CN 207879175U
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China
Prior art keywords
layer
base glass
glass
base
glass layer
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CN201721757697.2U
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Chinese (zh)
Inventor
张坚华
肖坚伟
吴从真
廖克生
袁建明
高春星
刘飞
王思麟
徐敏
张永霞
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WUJIANG GOLDEN GLASS TECHNOLOGY Co Ltd
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WUJIANG GOLDEN GLASS TECHNOLOGY Co Ltd
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Priority to CN201721757697.2U priority Critical patent/CN207879175U/en
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Abstract

The utility model discloses a kind of energy saving hollow glasses of low heat conductivity comprising glass body and the heat insulator along the setting of glass body edge, glass body include:First base glass layer and the second base glass layer are equipped with hollow layer between the first base glass layer and the second base glass layer, the first base glass layer is equipped with film layer, and the side adjacent with hollow layer in the first base glass layer is arranged in film layer;Second base glass layer is equipped with film plating layer, and the side adjacent with hollow layer in the second base glass layer is arranged in film plating layer.The structure of the utility model has the function of heat-insulated, reduction heat transfer, saves the energy, and edge is equipped with heat insulator, reduce heat loss in such a way that plated film and film are combined.

Description

A kind of energy saving hollow glass of low heat conductivity
Technical field
The utility model is related to energy-saving glass fields, and in particular to a kind of energy saving hollow glass of low heat conductivity.
Background technology
Vacuum glass is a kind of widely used glass product, can be applicable to building, automobile, furnishing fields, is a kind of excellent Good heat-barrier material.Common vacuum glass is to be sealed two panels plate glass surrounding, is then taken out between two sheet glass true Sky can will be preferably minimized through the above way by vacuum glass heat transfer, convection current, radiation mode dispersed heat, still, In actual application, the sealing station of this vacuum glass surrounding edge is easy heat losses, reduces vacuum glass Heat insulation, and vacuum glass deals with easy gas leakage improperly, loses vacuum heat-insulation effect.
Utility model content
The technical problem to be solved by the present invention is to provide a kind of energy saving hollow glass of low heat conductivity, the utility model energy Enough solution vacuum glass insulation effect is poor, is easy the technical issues of failing in use.
In order to solve the above-mentioned technical problem, the utility model provides a kind of energy saving hollow glass of low heat conductivity comprising Glass body and the heat insulator being arranged along the glass body edge, the glass body include:First base glass layer and the second base Glass layer is equipped with hollow layer between the first base glass layer and the second base glass layer, the first base glass layer is equipped with film layer, described The side adjacent with the hollow layer in the first base glass layer is arranged in film layer;
The second base glass layer is equipped with film plating layer, and the film plating layer is arranged in the second base glass layer and the hollow layer Adjacent side.
Preferably, the film layer is that film layer is isolated in infrared ray, and the thickness of the film layer is the first base glass layer Sixtieth~1/20th.
Preferably, the film plating layer is visible optical confinement layer, and the thickness of the film plating layer is the six of the second base glass layer 1/10th~1/20th.
Preferably, the thickness of the first base glass layer and the second base glass layer is identical, and the thickness of the hollow layer is more than described The thickness of first base glass layer half, and less than the half of the sum of the first base glass layer and the second base glass layer thickness.
Preferably, the heat insulator is equipped with the first bound edge for extending into the first base glass layer, the width of first bound edge Degree is 1-5mm.
Preferably, the surface of first bound edge is pasted to by adhesive-layer on the first base glass layer.
Preferably, the heat insulator is equipped with the second bound edge for extending into the second base glass layer, the width of second bound edge Degree is 1-5mm.
Preferably, the surface of second bound edge is pasted to by adhesive-layer on the second base glass layer.
The technique effect of the utility model:
1, the utility model includes glass body and the heat insulator along the setting of glass body edge, and glass body includes: First base glass layer and the second base glass layer, are equipped with hollow layer between the first base glass layer and the second base glass layer, the first base glass layer is equipped with The side adjacent with hollow layer in the first base glass layer is arranged in film layer, film layer;Second base glass layer is equipped with film plating layer, film plating layer The side adjacent with hollow layer in the second base glass layer is set.The structure of the utility model uses the side that plated film and film are combined Formula has the function of heat-insulated, reduction heat transfer, saves the energy, and edge is equipped with heat insulator, reduce heat loss.
2, film layer is that film layer is isolated in infrared ray, and the thickness of film layer is sixtieth~20 of the first base glass layer / mono-, the thickness of film layer can either meet the needs of infrared ray isolation, and will not be because of the blocked up increasing process costs of thickness.
3, film plating layer is visible optical confinement layer, the thickness of film plating layer be the second base glass layer sixtieth~20/ One, the thickness of film plating layer can either meet visible optically isolated isolation requirement, and will not be because of the blocked up increasing process costs of thickness.
4, the utility model heat insulator forms the warming edge in outside, avoids hollow glass hollow layer and conducts heat outward, It can ensure the vacuum degree of hollow cavity for a long time, reduce heat losses, improve the heat insulation of hollow glass.
5, the utility model has the first bound edge and the second bound edge, the first packet respectively on the first glass basis layer and the second glass basis layer Side and the second bound edge can ensure the heat preservation and insulation of the first glass basis layer and the second glass basis layer, reduce heat transfer.
Description of the drawings
Fig. 1 is the structural schematic diagram of the glass of the present embodiment;
Figure label explanation:1- the first base glass layers, 2- the second base glass layers, 3- heat insulators, 4- hollow layers, 5- film layers, 6- Film plating layer, the first bound edges of 7-, the second bound edges of 8-, 9- adhesive-layers.
Specific implementation mode
The utility model is described in further detail in the following with reference to the drawings and specific embodiments, so that those skilled in the art The utility model may be better understood and can be practiced, but illustrated embodiment is not as the restriction to the utility model.
Embodiment
One embodiment of the hollow glass of the utility model, as shown in Figure 1, its structure includes glass:Glass ontology and along described The heat insulator 3 of glass body edge setting, the glass body include:First base glass layer 1 and the second base glass layer 2, described first Hollow layer 4 is equipped between base glass layer 1 and the second base glass layer 2, the first base glass layer 1 is equipped with film layer 5, the film layer 5 It is arranged in 1 side adjacent with the hollow layer 4 of the first base glass layer;The second base glass layer 2 is equipped with film plating layer 6, institute Film plating layer 6 is stated to be arranged in 2 side adjacent with the hollow layer 4 of the second base glass layer.
Above structure has the function of heat-insulated, reduction heat transfer, saves energy in such a way that plated film and film are combined Source, and edge is equipped with heat insulator, reduces heat loss.
In the present embodiment, the film layer 5 is that infrared ray is isolated film layer, and the thickness of the film layer 5 is described the Sixtieth~1/20th of one base glass layer.The thickness of film layer 5 can either meet the needs of infrared ray isolation, and not It can be because of the blocked up increasing process costs of thickness.
The film plating layer 6 is visible optical confinement layer, the thickness of the film plating layer 6 be the second base glass layer 60/ One~1/20th.The thickness of film plating layer 6 can either meet visible optically isolated isolation requirement, and will not be blocked up because of thickness Increase process costs.
In the present embodiment, the first base glass layer 1 is identical with the thickness of the second base glass layer 2, the thickness of the hollow layer 4 More than the thickness of 1 half of the first base glass layer, and less than the one of the sum of 2 thickness of the first base glass layer 1 and the second base glass layer Half.
In order to preferably ensure that thermal and insulating performance, the heat insulator 3 are equipped with and extend into the first of the first base glass layer 1 The width of bound edge 7, first bound edge 7 is 1-5mm;The surface of first bound edge 7 is attached to first base by adhesive-layer patch 9 On glass layer.
Likewise, the heat insulator 3 is equipped with the second bound edge 8 for extending into the second base glass layer 2, second bound edge 8 Width be 1-5mm;The surface of second bound edge 8 is pasted to by adhesive-layer 9 on the second base glass layer 2.
Heat insulator 3 forms the warming edge in outside, avoids hollow glass hollow layer and conducts heat outward, can ensure for a long time The vacuum degree of hollow cavity reduces heat losses, improves the heat insulation of hollow glass.In the first glass basis layer 1 and the second glass basis layer 2 It is upper to have the first bound edge 7 and the second bound edge 8, the first bound edge 7 and the second bound edge 8 that ensure the first glass basis layer 1 and the second glass respectively The heat preservation and insulation of base 2 reduces heat transfer.
Embodiment described above is only the preferred embodiment lifted to absolutely prove the utility model, the utility model Protection domain it is without being limited thereto.Those skilled in the art on the basis of the utility model made by equivalent substitute or change It changes, both is within the protection scope of the present invention.The scope of protection of the utility model is subject to claims.

Claims (8)

1. a kind of energy saving hollow glass of low heat conductivity, which is characterized in that it includes glass body and along the glass body edge The heat insulator of setting, the glass body include:First base glass layer and the second base glass layer, the first base glass layer and the second base glass Be equipped with hollow layer between layer, the first base glass layer is equipped with film layer, film layer setting the first base glass layer with The adjacent side of the hollow layer;
The second base glass layer is equipped with film plating layer, and the film plating layer setting is adjacent with the hollow layer in the second base glass layer Side.
2. the energy saving hollow glass of low heat conductivity as described in claim 1, which is characterized in that the film layer is isolated for infrared ray Film layer, the thickness of the film layer are sixtieth~1/20th of the first base glass layer.
3. the energy saving hollow glass of low heat conductivity as described in claim 1, which is characterized in that the film plating layer is visible optically isolated Layer, the thickness of the film plating layer are sixtieth~1/20th of the second base glass layer.
4. the energy saving hollow glass of low heat conductivity as described in claim 1, which is characterized in that the first base glass layer and the second base The thickness of glass layer is identical, and the thickness of the hollow layer is more than the thickness of the first base glass layer half, and is less than first base The half of the sum of glass layer and the second base glass layer thickness.
5. the energy saving hollow glass of low heat conductivity as described in claim 1, which is characterized in that the heat insulator is equipped with and extends into institute The first bound edge of the first base glass layer is stated, the width of first bound edge is 1-5mm.
6. the energy saving hollow glass of low heat conductivity as claimed in claim 5, which is characterized in that the surface of first bound edge is by gluing Glue-line is pasted on the first base glass layer.
7. the energy saving hollow glass of low heat conductivity as described in claim 1, which is characterized in that the heat insulator is equipped with and extends into institute The second bound edge of the second base glass layer is stated, the width of second bound edge is 1-5mm.
8. the energy saving hollow glass of low heat conductivity as claimed in claim 7, which is characterized in that the surface of second bound edge is by gluing Glue-line is pasted on the second base glass layer.
CN201721757697.2U 2017-12-15 2017-12-15 A kind of energy saving hollow glass of low heat conductivity Active CN207879175U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201721757697.2U CN207879175U (en) 2017-12-15 2017-12-15 A kind of energy saving hollow glass of low heat conductivity

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201721757697.2U CN207879175U (en) 2017-12-15 2017-12-15 A kind of energy saving hollow glass of low heat conductivity

Publications (1)

Publication Number Publication Date
CN207879175U true CN207879175U (en) 2018-09-18

Family

ID=63501752

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201721757697.2U Active CN207879175U (en) 2017-12-15 2017-12-15 A kind of energy saving hollow glass of low heat conductivity

Country Status (1)

Country Link
CN (1) CN207879175U (en)

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