CN206217287U - A kind of sound insulation LOW E glass - Google Patents
A kind of sound insulation LOW E glass Download PDFInfo
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- CN206217287U CN206217287U CN201621101671.8U CN201621101671U CN206217287U CN 206217287 U CN206217287 U CN 206217287U CN 201621101671 U CN201621101671 U CN 201621101671U CN 206217287 U CN206217287 U CN 206217287U
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Abstract
A kind of sound insulation LOW E glass; including glass-base and film plating layer; glass-base from top to bottom includes low e Low emissivities energy-saving glass layer, transparent adhesive tape lamella, hollow aluminum strip layer, upper glass-base, sound insulation film layers, lower glass-base successively; film plating layer is disposed with bottom protective layer, layers of copper, silver layer, top protective layer, dielectric layer from the bottom to top, and bottom protective layer is arranged at low e Low emissivities energy-saving glass layer upper surface.The beneficial effects of the utility model are:By setting sound insulation film layers between upper glass-base and lower glass-base, improve the soundproof effect of glass, and improve the adhesive property between glass-base and lower glass-base, and layers of copper is set in film plating layer, the thickness of silver coating is reduced, production cost is reduced, avoid causing outdoor reflected colour greening and jaundice because glass substrate color is partially green, low e Low emissivities energy-saving glass layer is set, makes more to be partial to neutrality through color, improve color aesthetic.
Description
Technical field
The utility model is related to glass technology field, and in particular to a kind of sound insulation LOW-E glass.
Background technology
Glass is important construction material, with the continuous improvement required decorating building, life of the glass in the present age
Produce and play key player in living, its application is very extensive, such as windowpane, glass decorative accessory, glass system vessel, car
Carry glass, glass curtain wall etc., and with the continuous expansion of glass applications scope, market demand also constantly increasing, therefore
The usage amount of glass also constantly increases, and as noise pollution is increasingly severe and the raising of people's quality of the life, to sound insulation
How each performance requirement more and more higher of glass, including soundproof effect, performance attractive in appearance etc., in sum, provide a kind of sound insulation effect
The glass of really excellent and attractive in appearance, the internal comfortable balance of sunlight projection is current those skilled in the art's urgent problem.
The content of the invention
In view of the shortcomings of the prior art, the purpose of this utility model is to provide a kind of sound insulation LOW-E glass, its structure
Simply, soundproof effect is excellent, and attractive in appearance, cost-effective and glass is partial to neutrality through color.
To reach above-mentioned purpose, the utility model is achieved through the following technical solutions.
A kind of sound insulation LOW-E glass, including glass-base and film plating layer, glass-base from top to bottom include low- successively
E Low emissivities energy-saving glass layer, transparent adhesive tape lamella, hollow aluminum strip layer, upper glass-base, sound insulation film layers, lower glass-base, plated film
Layer is disposed with bottom protective layer, layers of copper, silver layer, top protective layer, dielectric layer from the bottom to top, and bottom protective layer is arranged at low-e
Low emissivity energy-saving glass layer upper surface.
Preferably, sound insulation film layers are transparent sound proof film, the thickness of the sound insulation film layers is set to 0.30~
1.55mm。
Preferably, the thickness of hollow aluminum strip layer is set to 6-20mm.
Preferably, the thickness of low-e Low emissivities energy-saving glass layer is set to 10-20nm.
Preferably, upper glass-base and lower glass-base are set to sodium-calcium-silicate float glass, glass on this
The thickness of glass basic unit is equal with the thickness of lower glass-base, and the thickness of lower glass-base is set to 6mm.
Preferably, the thickness of bottom protective layer is set to 3.5nm~15nm, the thickness of layers of copper be set to 4nm~
7nm, the thickness of silver layer are set to 4nm~7nm, the thickness of top protective layer is set to 3.5nm~15nm, the thickness of dielectric layer sets
It is set to 30nm~70nm.
Preferably, bottom protective layer, layers of copper, silver layer, top protective layer, dielectric layer are sputtered successively using alternating current
On glass-base.
Preferably, the surrounding of glass is coated with U-shaped bound edge.
Preferably, U-shaped bound edge is set to two, and the U-shaped bound edge is to be oppositely arranged.
Preferably, U-shaped bound edge is set to thermosetting glass-reinforced plastic material and is made.
The beneficial effects of the utility model are:
Firstth, by between upper glass-base and lower glass-base set sound insulation film layers, improve glass every
Audio really, and improves the adhesive property between glass-base and lower glass-base.
Secondth, by setting layers of copper in film plating layer, the thickness of silver coating is reduced, reduces production cost, it is to avoid because
Glass substrate color is partially green to cause outdoor reflected colour greening and jaundice, and sets low-e Low emissivities energy-saving glass layer, in outdoor
In the case that face color is basically unchanged, make more to be partial to neutrality through color, improve color aesthetic.
Brief description of the drawings
The utility model is further described below with accompanying drawing, but the embodiment in accompanying drawing is not constituted to this
Any limitation of utility model.
Fig. 1 is sectional structure chart of the present utility model.
Fig. 2 is top views of the utility model Fig. 1 using U-shaped bound edge.
In figure:Glass-base 1, low-e Low emissivities energy-saving glass layer 11, transparent adhesive tape lamella 12, hollow aluminum strip layer 13, upper glass
Glass basic unit 14, sound insulation film layers 15, lower glass-base 16, film plating layer 2, bottom protective layer 21, layers of copper 22, silver layer 23, top protective layer
24th, dielectric layer 25, U-shaped bound edge 3.
Specific embodiment
The technical solution of the utility model is illustrated with embodiment below in conjunction with the accompanying drawings.
Shown in reference picture 1,
Embodiment one, a kind of sound insulation LOW-E glass, including glass-base 1 and film plating layer 2, glass-base 1 is from top to bottom
Include low-e Low emissivities energy-saving glass layer 11, transparent adhesive tape lamella 12, hollow aluminum strip layer 13, upper glass-base 14, acoustic mastic successively
Lamella 15, lower glass-base 16, film plating layer 2 are disposed with bottom protective layer 21, layers of copper 22, silver layer 23, top protection from the bottom to top
Layer 24, dielectric layer 25, bottom protective layer 21 is arranged at 11 upper surface of low-e Low emissivities energy-saving glass layer.
In said structure, sound insulation film layers 15 are set between upper glass-base 14 and lower glass-base 16, are improved
The soundproof effect of glass, and the adhesive property between glass-base 14 and lower glass-base 16 is improve, set transparent
Film layers 12 increased the viscosity of low-e Low emissivities energy-saving glass layer 11 and hollow aluminum strip layer 13, and be set in film plating layer 2
Layers of copper 22, reduces the thickness of silver coating 23, reduces production cost, it is to avoid cause outdoor reflection because glass substrate color is partially green
Color greening and jaundice, and low-e Low emissivities energy-saving glass layer 11 is set, in the case where outdoor face color is basically unchanged, make
More it is partial to neutrality through color, improves color aesthetic.Bottom block protective layer can be to low-e Low emissivity energy-conservation glass
Glass layer 11 shields, while the adhesive force of layers of copper 22 can also be improved.
In the present embodiment, sound insulation film layers 15 are transparent sound proof film, and the thickness of the sound insulation film layers 15 is set to 0.30
~1.55mm.The thickness of hollow aluminum strip layer 13 is set to 6-20mm.The thickness of low-e Low emissivities energy-saving glass layer 11 is set to
10-20nm.In order to reduce cost, upper glass-base 14 and lower glass-base 16 are set to sodium-calcium-silicate float glass, should
The thickness of upper glass-base 14 is equal with the thickness of lower glass-base 16, and the thickness of the lower glass-base 16 is set to 6mm.For
Ensure that seven layers of plated film are uniform, stably sputter on glass-base 1, the thickness of bottom protective layer 21 is set to 3.5nm~15nm,
The thickness of layers of copper 22 be set to 4nm~7nm, the thickness of silver layer 23 be set to 4nm~7nm, top protective layer 24 thickness be set to
3.5nm~15nm, the thickness of dielectric layer 25 are set to 30nm~70nm.Bottom protective layer 21, layers of copper 22, silver layer 23, top protection
Layer 24, dielectric layer 25 is sputtered on glass-base 1 successively using alternating current.
Shown in reference picture 2,
Embodiment two, the difference with embodiment one is, in the present embodiment, in order to avoid glass edge is undergoing height
Burst because of being heated uneven when warm, the surrounding of glass is coated with U-shaped bound edge 3.U-shaped bound edge 3 is set to two, the U-shaped bound edge 3
To be oppositely arranged.In order to lift the refractory ability of U-shaped bound edge 3, U-shaped bound edge 3 is set to thermosetting glass-reinforced plastic material and is made.
Above-described embodiment is only that general principle of the present utility model, principal character and advantage has been shown and described.The industry
Technical staff it should be appreciated that the utility model is not restricted to the described embodiments, described in above-described embodiment and specification
Principle of the present utility model is simply illustrated, on the premise of the utility model spirit and scope are not departed from, the utility model can also
There are various changes and modifications, these changes and improvements both fall within claimed the utility model scope.
Claims (10)
1. a kind of sound insulation LOW-E glass, including glass-base (1) and film plating layer (2), it is characterised in that:The glass-base
(1) from top to bottom successively include low-e Low emissivities energy-saving glass layer (11), transparent adhesive tape lamella (12), hollow aluminum strip layer (13), on
Glass-base (14), sound insulation film layers (15), lower glass-base (16), the film plating layer (2) are disposed with bottom from the bottom to top
Protective layer (21), layers of copper (22), silver layer (23), top protective layer (24), dielectric layer (25), the bottom protective layer (21) are arranged at
Low-e Low emissivities energy-saving glass layer (11) upper surface.
2. a kind of sound insulation LOW-E glass according to claim 1, it is characterised in that:The sound insulation film layers (15) are saturating
Bright sound insulation film, the thickness of the sound insulation film layers (15) is set to 0.30~1.55mm.
3. a kind of sound insulation LOW-E glass according to claim 1, it is characterised in that:The thickness of hollow aluminum strip layer (13)
Degree is set to 6-20mm.
4. a kind of sound insulation LOW-E glass according to claim 1, it is characterised in that:The low-e Low emissivities energy-saving glass
The thickness of layer (11) is set to 10-20nm.
5. a kind of sound insulation LOW-E glass according to claim 1, it is characterised in that:The upper glass-base (14) and
Lower glass-base (16) is set to sodium-calcium-silicate float glass, the thickness of glass-base (14) and lower glass-base (16) on this
Thickness it is equal, the thickness of the lower glass-base (16) is set to 6mm.
6. a kind of sound insulation LOW-E glass according to claim 1, it is characterised in that:The thickness of the bottom protective layer (21)
Be set to 3.5nm~15nm, the thickness of layers of copper (22) be set to 4nm~7nm, the thickness of silver layer (23) be set to 4nm~7nm,
The thickness on top protective layer (24) is set to 3.5nm~15nm, the thickness of dielectric layer (25) and is set to 30nm~70nm.
7. a kind of sound insulation LOW-E glass according to claim 1, it is characterised in that:The bottom protective layer (21), layers of copper
(22), silver layer (23), top protective layer (24), dielectric layer (25) are sputtered on glass-base (1) successively using alternating current.
8. a kind of sound insulation LOW-E glass according to claim 1, it is characterised in that:The surrounding of the glass is coated with U-shaped
Bound edge (3).
9. a kind of sound insulation LOW-E glass according to claim 8, it is characterised in that:The U-shaped bound edge (3) is set to two
Individual, the U-shaped bound edge (3) is to be oppositely arranged.
10. a kind of sound insulation LOW-E glass according to claim 8 or claim 9, it is characterised in that:The U-shaped bound edge (3) is set
By thermosetting glass-reinforced plastic material is made.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201621101671.8U CN206217287U (en) | 2016-09-30 | 2016-09-30 | A kind of sound insulation LOW E glass |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201621101671.8U CN206217287U (en) | 2016-09-30 | 2016-09-30 | A kind of sound insulation LOW E glass |
Publications (1)
Publication Number | Publication Date |
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CN206217287U true CN206217287U (en) | 2017-06-06 |
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CN201621101671.8U Active CN206217287U (en) | 2016-09-30 | 2016-09-30 | A kind of sound insulation LOW E glass |
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2016
- 2016-09-30 CN CN201621101671.8U patent/CN206217287U/en active Active
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