Multi-layer glass and method for producing the same
US-2017203997-A1 · Jul 20, 2017 · US
US11952832B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11952832-B2 |
| Application number | US-201916973520-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jun 21, 2019 |
| Priority date | Jun 29, 2018 |
| Publication date | Apr 9, 2024 |
| Grant date | Apr 9, 2024 |
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The present disclosure relates to a vacuum insulated glazing unit, to the use thereof and to a method of manufacturing such a unit. The vacuum insulated glazing comprises a first glass pane, having a first interior major surface and a first exterior major surface and a second glass pane having a second interior major surface and second exterior major surface, the glass panes being arranged in parallel with said interior major surfaces facing each other. The VIG unit further comprises a low emissivity coating deposited on at least the first interior major surface, an edge region in proximity to the edge of the first glass pane, defined as where none or a reduced part of the low emissivity coating is present, and a side seal comprising a glassy seal material arranged at a minimum separation distance (d1_min) from said low emissivity coating, so that an intermediate part of said edge region between said glassy sealing material and said low emissivity coating is not bonded to said glassy sealing material, or a side seal arranged at a minimum separation distance (d1_min) of at least 1.5 mm, such as at least 2 mm, or such as at least 3 mm from said low emissivity coating.
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The invention claimed is: 1. A vacuum insulated glazing (VIG) unit comprising: a first thermally tempered glass pane, having a first interior major surface and a first exterior major surface and a second thermally tempered glass pane having a second interior major surface and second exterior major surface, the thermally tempered glass panes being arranged in parallel with said interior major surfaces facing each other; a cavity gap size in the range of 0.1 to 0.5 mm measured from the first interior major surface to the second interior major surface, a low emissivity coating deposited on at least the first interior major surface; and a side seal deposited on at least the first interior major surface, wherein the side seal is arranged at a minimum separation distance of at least 1.5 mm from said low emissivity coating and wherein the minimum separation distance is at least three times larger than the cavity gap size; wherein the side seal is made of a glassy seal material. 2. A vacuum insulated glazing unit according to claim 1 , wherein the vacuum insulated glazing unit comprises an edge region in proximity to the edge of the first thermally tempered glass pane, defined as where none or a reduced part of the low emissivity coating is present. 3. A vacuum insulated glazing unit according to claim 1 , wherein the glassy seal material is a low melting point glass material. 4. A vacuum insulated glazing (VIG) unit according to claim 1 , wherein the glassy seal material comprises at least one of: at least one metal oxide, and at least one solvent material and at least one binder material. 5. A vacuum insulated glazing unit according to claim 1 , wherein the side seal extends from a portion of said edge region of the first thermally tempered glass pane to said second major interior surface of said second thermally tempered glass pane. 6. A vacuum insulated glazing unit according to claim 1 , wherein the VIG unit further comprises a low-emissivity coating deposited on the second interior major surface of the second thermally tempered glass pane, and a second edge region in proximity to the edge of the second thermally tempered glass pane, defined as where none or a reduced part of the low emissivity coating is present, and wherein said side seal is arranged at a minimum separation distance of at least one of: at least 1 mm from both low emissivity coatings; between 1-10 mm from said low emissivity coating; and between 1.5-10 mm from said low emissivity coating. 7. A vacuum insulated glazing unit according to claim 6 , wherein said side seal extends from a portion of said edge region of said first thermally tempered glass pane to a portion of said edge region of the second thermally tempered glass pane. 8. A vacuum insulated glazing (VIG) unit according to claim 1 , wherein the minimum separation distance varies over a length of the thermally tempered glass panes, wherein the variation in minimum separation distance is at the most 2 mm. 9. A vacuum insulated glazing (VIG) unit according to claim 1 , wherein the low emissivity coating comprises at least one of: a side surface towards the edge region and wherein said side seal is arranged at said minimum distance from said side surface; a plurality of coating layers, and wherein said edge region comprises a reduced number of said coating layers and being devoid of a silver layer ( 5 _Ag); and a silver layer ( 5 _Ag) and wherein the side seal is arranged at said minimum separation distance from said silver layer.
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