Claims
- 1. In a multiple low emissivity or anti-solar glazing, the improvement comprising the incorporation of at least one transparent substrate, wherein the at least one transparent substrate comprises a stack of thin layers having at least one layer with properties in the infra-red range, which comprises on a carrier substrate in order:a) a first undercoating comprising a dielectric material; b) optionally, a primer metallic coating, the metal thereof being selected from the group consisting of Nb, Ta, Ti, and an alloy of at least two of these metals; c) at least one layer having properties in the infra-red range; and d) a second overcoating, comprising dielectric material; wherein in order to prevent modification of properties of the stack when a carrier substrate thereof is submitted to a thermal treatment of bending or tempering; i) the first underlying coating comprising dielectric material has at least a first barrier layer for the diffusion of alkaline ions and oxygen; and ii) the second overcoating comprising dielectric material has at least a second barrier layer for the diffusion of oxygen; and further wherein iii) an oxide layer is intercalated between the first underlying coating and the layer having properties in the infrared range, and an oxide layer is also intercalated between the layer having properties in the infrared range and the second overcoating; the first underlying coating and second overcoating being selected from the group consisting of silicon nitride, silicon oxide, aluminum nitride, and silicon oxynitride.
- 2. In the multiple low emissivity or anti-solar glazing of claim 1, wherein the stack of layers comprises a plurality of layers with properties in the infrared range.
- 3. In the multiple low emissivity or anti-solar glazing of claim 1, wherein the oxide layer intercalated between the first underlying coating and the layer having properties in the infrared range is a ZnO layer.
- 4. In the multiple low emissivity or anti-solar glazing of claim 1, wherein the oxide layer intercalated between the layer having properties in the infrared range and the second overcoating is a ZnO layer.
- 5. In the multiple low emissivity or anti-solar glazing of claim 1, wherein the carrier substrate is glass.
- 6. In the multiple low emissivity or anti-solar glazing of claim 1, wherein a difference in luminous transmission, TL, after bending or tempering, is at most 2%, with an emissivity difference of at most 0.01.
- 7. In a multiple low emissivity or anti-solar glazing, the improvement comprising the incorporation of at least one transparent substrate, wherein the transparent substrate comprises a stack of thin layers having at least one layer with properties in the infra-red range, which comprises on a carrier substrate in order:a) a first undercoating comprising a dielectric material; b) an optional primer metallic coating, the metal thereof being selected from the group consisting of Nb, Ta, Ti, and an alloy of at least two of these metals; c) at least one layer having properties in the infra-red range; and d) a second overcoating, comprising dielectric material; wherein in order to prevent modification of properties of the stack when a carrier substrate thereof is submitted to a thermal treatment of bending or tempering; i) the first underlying coating comprising dielectric material has at least a first barrier layer for the diffusion of alkaline ions and oxygen; and ii) the second overcoating comprising dielectric material has at least a second barrier layer for the diffusion of oxygen; wherein the first underlying coating and second overcoating are selected from the group consisting of SiOC, SiC, TiC, CrC and TaC.
- 8. In the multiple low emissivity or anti-solar glazing of claim 7, wherein said primer metallic coating b) is present.
- 9. In the multiple low emissivity or anti-solar glazing of claim 7, wherein the first underlying coating comprising dielectric material comprises a ZnO/metallic oxide layer having a thickness of between about 5 and 40 nm.
- 10. In the multiple low emissivity or anti-solar glazing of claim 9, wherein said ZnO/metallic oxide layer has a thickness of between about 15 and 30 nm.
- 11. In the multiple low emissivity or anti-solar glazing of claim 7, which comprises a plurality of layers having properties in the infra-red range.
- 12. In the multiple low emissivity or anti-solar glazing of claim 7, which exhibits a difference in luminous transmission (TL) of at most 2% or an emissivity difference of at most 0.01, or both, after a bending or tempering process for the glass substrate containing the stack of thin layers.
- 13. In a multiple low emissivity or anti-solar glazing, the improvement comprising the incorporation of at least one transparent substrate, wherein the transparent substrate comprises a stack of thin layers having at least one layer with properties in the infra-red range, which comprises on a carrier substrate in order:a) a first undercoating comprising a dielectric material; b) an optional primer metallic coating, the metal thereof being selected from the group consisting of Nb, Ta, Ti, and an alloy of at least two of these metals; c) at least one layer having properties in the infra-red range; and d) a second overcoating, comprising dielectric material; in order to prevent modification of properties of the stack when a carrier substrate thereof is submitted to a thermal treatment of bending or tempering; i) the first underlying coating comprising dielectric material has at least a first barrier layer for the diffusion of alkaline ions and oxygen; and ii) the second overcoating comprising dielectric material has at least a second barrier layer for the diffusion of oxygen; wherein the first underlying coating and second overcoating are such that one is selected from the group consisting of silicon nitride, silicon oxide, aluminum nitride and silicon oxynitride; and the other is selected from the group consisting of SiOC, SiC, TiC, CrC and TaC.
- 14. In the multiple low emissivity or anti-solar glazing of claim 13, wherein said primer metallic coating b) is present.
- 15. In the multiple low emissivity or anti-solar glazing of claim 14, wherein the first underlying coating comprising dielectric material comprises a ZnO/metallic oxide layer having a thickness of between about 5 and 40 nm.
- 16. In the multiple low emissivity or anti-solar glazing of claim 15, wherein said ZnO/metallic oxide layer has a thickness of between about 15 and 30 nm.
- 17. In the multiple low emissivity or anti-solar glazing of claim 13, which comprises a plurality of layers having properties in the infra-red range.
- 18. In the multiple low emissivity or anti-solar glazing of claim 13, which exhibits a difference in luminous transmission (TL) of at most 2% or an emissivity difference of at most 0.01, or both, after a bending or tempering process for the glass substrate containing the stack of thin layers.
Priority Claims (1)
Number |
Date |
Country |
Kind |
94 15566 |
Dec 1994 |
FR |
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Parent Case Info
This application is a Division of application Ser. No. 09/337,463 filed on Jun. 21, 1999, now U.S. Pat. No. 6,602,587 which is a Continuation of U.S. application Ser. No. 08/577,925, filed Dec. 22, 1995, now U.S. Pat. No. 5,935,702 which was published in English.
US Referenced Citations (22)
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Continuations (1)
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Number |
Date |
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Parent |
08/577925 |
Dec 1995 |
US |
Child |
09/337463 |
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US |