Glass laminate construction for optimized breakage performance
US-2015132538-A1 · May 14, 2015 · US
US9919496B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9919496-B2 |
| Application number | US-201415105470-A |
| Country | US |
| Kind code | B2 |
| Filing date | Dec 16, 2014 |
| Priority date | Dec 16, 2013 |
| Publication date | Mar 20, 2018 |
| Grant date | Mar 20, 2018 |
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Official abstract text for this publication.
A laminated glazing comprising a first ply of glazing material and a second ply of glazing material joined by at least one ply of adhesive interlayer material is disclosed. The first ply of glazing material comprises a sheet of glass having a first composition and the second ply of glazing material comprises a sheet of glass having a second composition different to the first composition. The laminated glazing has (i) a peripheral region extending around the periphery of the laminated glazing, the laminated glazing having a surface compression stress in the peripheral region and (ii) an edge compression, wherein the magnitude of edge compression is greater than the magnitude of the surface compression stress in the peripheral region. A method of making such a laminated is provided. A glass sheet suitable for being incorporated in such a laminated glazing is also disclosed.
Opening claim text (preview).
The invention claimed is: 1. A laminated glazing comprising a first ply of glazing material and a second ply of glazing material joined by at least one ply of adhesive interlayer material, the first ply of glazing material comprising a sheet of glass having a first composition and the second ply of glazing material comprising a sheet of glass having a second composition different to the first composition, wherein the laminated glazing has (i) a peripheral region extending around the periphery of the laminated glazing, the laminated glazing having a surface compression stress in the peripheral region and (ii) an edge compression, wherein the magnitude of edge compression is greater than the magnitude of the surface compression stress in the peripheral region, further wherein the first ply of the laminated glazing has an edge region having a residual edge stress with a net tension and wherein the residual edge stress of the first ply in the edge region has a net tension less than 15 MPa. 2. A laminated glazing according to claim 1 , wherein the peripheral region extends in a band around the entire periphery of the laminated glazing. 3. A laminated glazing according to claim 2 , wherein the band extends a distance from the periphery of the laminated glazing wherein the distance is between 200 mm and 400 mm. 4. A laminated glazing according to claim 1 , wherein the surface compression stress in the peripheral region is between 5 MPa and 25 MPa. 5. A laminated glazing according to claim 1 , wherein the edge compression of the first ply is greater than 24 MPa. 6. A laminated glazing according to claim 1 , wherein the first ply of glazing material has a thickness between 1.5 mm and 2.5 mm. 7. A laminated glazing according to claim 1 , wherein the first composition is a soda-lime-silicate glass composition. 8. A laminated glazing according to claim 1 , wherein the second composition is an alkali aluminosilicate glass composition. 9. A laminated glazing according to claim 1 , wherein the second ply of glazing material is chemically strengthened. 10. A laminated glazing according to claim 1 , wherein the first ply of glazing material has a concave surface and an opposing convex surface, wherein the concave surface faces the ply of adhesive interlayer material. 11. A laminated glazing according to claim 1 , wherein: i) the first and/or second ply of glazing material comprises a sheet of glass having a composition comprising 66-72 mol. % SiO 2 , 1-4 mol. % Al 2 O 3 , 8-15 mol. % MgO, 1-8 mol. % CaO, 12-16 mol. % Na 2 O, wherein MgO+CaO is between 12 and 17 mol. % and CaO/(MgO+CaO) is in the range 0.1 and 0.4; ii) or wherein the first and/or second ply of glazing material comprises a glass sheet having a composition comprising (by weight) 58% to 70% SiO 2 , 5% to 15% Al 2 O 3 , 12% to 18% Na 2 O, 0.1% to 5% K 2 O, 4% to 10% MgO and 0% to 1% CaO with the provisos that the sum of the Al 2 O 3 and MgO exceeds 13%, that the sum of the amounts of Al 2 O 3 plus MgO divided by the amount of K 2 O exceeds 3 and that the sum of the Na 2 O plus K 2 O plus MgO exceeds 22%. 12. A method for making a laminated glazing, the method comprising: (i) providing a first ply of glazing material having a first composition; (ii) bending the first ply of glazing material with a first bending process such that the bent ply of glazing material has a peripheral region having a residual surface compression stress; (iii) providing a second ply of glazing material having a second composition; (iv) bending the second ply of glazing material with a second bending process; and (v) joining the first ply of glazing material to the second ply of glazing material with a ply of adhesive interlayer material, wherein after step (ii) the first ply of glazing material has an edge region having a residual edge stress with a net tension and an edge compression, wherein the residual edge stress of the first ply in the edge region has a net tension less than 15 MPa and/or wherein after step (ii) the first ply of glazing material has an edge region having a residual edge stress with a net tension and an edge compression, wherein the edge compression of the first ply is greater than 24 MPa. 13. A method according to claim 12 , wherein before the first and second plies of glazing material are joined with a ply of adhesive interlayer, the bent second ply of glazing material is chemically toughened. 14. A method according to claim 12 , wherein the first bending process is a press bending process and wherein the second bending process is a gravity sag bending process. 15. A method according to claim 12 , wherein the surface compression stress in the peripheral region of the laminated glazing is between 5 MPa and 25 MPa. 16. A method according to claim 12 , wherein the residual surface compression stress is controlled by directing cooling air around the periphery of the bent outer ply after the completion of the press bending operation and before the bent outer ply is cooled to ambient conditions.
containing vinyl acetal · CPC title
shaping the sheets, e.g. by using a mould (B32B17/10816 takes precedence) · CPC title
Compositions applicable for the manufacture of vitreous enamels or glazes · CPC title
having predetermined tint or excitation purity · CPC title
arranged at vehicle sides · CPC title
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