RU2010125110A - Низкоэмиссионное покрытие с низким коэффициентом солнечного теплопритока и улучшенными химическими и механическими характеристиками и способ его изготовления - Google Patents
Низкоэмиссионное покрытие с низким коэффициентом солнечного теплопритока и улучшенными химическими и механическими характеристиками и способ его изготовления Download PDFInfo
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Abstract
1. Низкоэмиссионное покрытие на подложке, включающее, в порядке от подложки наружу: ! первый диэлектрический слой, ! первый затравочный слой, ! первый слой серебра, ! первый защитный слой, ! второй диэлектрический слой, ! второй затравочный слой, ! второй слой серебра, ! второй защитный слой, ! третий диэлектрический слой, и ! при необходимости, верхний слой покрытия. ! 2. Низкоэмиссионное покрытие по п.1, в котором по меньшей мере один из первого диэлектрического слоя, второго диэлектрического слоя или третьего диэлектрического слоя имеет субстехиометрический состав. ! 3. Низкоэмиссионное покрытие по п.1, в котором по меньшей мере один из первого защитного слоя или второго защитного слоя является поглощающим защитным слоем. ! 4. Низкоэмиссионное покрытие по п.1, в котором первый защитный слой и второй защитный слой каждый по отдельности содержат материал, выбранный из группы, состоящей из металла, сплава, силицида, поглощающего оксида и нитрида. !5. Низкоэмиссионное покрытие по п.4, в котором первый защитный слой и второй защитный слой каждый по отдельности содержат материал, выбранный из группы, состоящей из Ti, TiN, Si, NiCr, NiCrOx, Cr, Zr, Mo, W и ZrSi. ! 6. Низкоэмиссионное покрытие по п.5, в котором по меньшей мере один из первого защитного слоя и второго защитного слоя содержит NiCr. ! 7. Низкоэмиссионное покрытие по п.5, в котором по меньшей мере один из первого защитного слоя и второго защитного слоя содержит NiCrOx. ! 8. Низкоэмиссионное покрытие по п.1, в котором по меньшей мере один из первого или второго защитного слоев способен уменьшить пропускание покрытия. ! 9. Низкоэмиссионное покрытие по п.1, в котором по меньшей мере один из первого ил
Claims (38)
1. Низкоэмиссионное покрытие на подложке, включающее, в порядке от подложки наружу:
первый диэлектрический слой,
первый затравочный слой,
первый слой серебра,
первый защитный слой,
второй диэлектрический слой,
второй затравочный слой,
второй слой серебра,
второй защитный слой,
третий диэлектрический слой, и
при необходимости, верхний слой покрытия.
2. Низкоэмиссионное покрытие по п.1, в котором по меньшей мере один из первого диэлектрического слоя, второго диэлектрического слоя или третьего диэлектрического слоя имеет субстехиометрический состав.
3. Низкоэмиссионное покрытие по п.1, в котором по меньшей мере один из первого защитного слоя или второго защитного слоя является поглощающим защитным слоем.
4. Низкоэмиссионное покрытие по п.1, в котором первый защитный слой и второй защитный слой каждый по отдельности содержат материал, выбранный из группы, состоящей из металла, сплава, силицида, поглощающего оксида и нитрида.
5. Низкоэмиссионное покрытие по п.4, в котором первый защитный слой и второй защитный слой каждый по отдельности содержат материал, выбранный из группы, состоящей из Ti, TiN, Si, NiCr, NiCrOx, Cr, Zr, Mo, W и ZrSi.
6. Низкоэмиссионное покрытие по п.5, в котором по меньшей мере один из первого защитного слоя и второго защитного слоя содержит NiCr.
7. Низкоэмиссионное покрытие по п.5, в котором по меньшей мере один из первого защитного слоя и второго защитного слоя содержит NiCrOx.
8. Низкоэмиссионное покрытие по п.1, в котором по меньшей мере один из первого или второго защитного слоев способен уменьшить пропускание покрытия.
9. Низкоэмиссионное покрытие по п.1, в котором по меньшей мере один из первого или второго защитного слоев способен увеличить поглощение покрытия.
10. Низкоэмиссионное покрытие по п.1, в котором второй слой серебра толще первого слоя серебра.
11. Низкоэмиссионное покрытие по п.1, в котором первый защитный слой толще второго защитного слоя.
12. Низкоэмиссионное покрытие по п.10, в котором отношение толщины первого слоя серебра к толщине второго слоя серебра составляет примерно от 0,8 до 1,2.
13. Низкоэмиссионное покрытие по п.11, в котором отношение толщины первого защитного слоя к толщине второго защитного слоя составляет примерно от 1,2 до 2,0.
14. Низкоэмиссионное покрытие по п.1, в котором первый затравочный слой толще второго затравочного слоя.
15. Низкоэмиссионное покрытие по п.14, в котором отношение толщины первого затравочного слоя к толщине второго затравочного слоя составляет примерно от 1,2 до 2,0.
16. Низкоэмиссионное покрытие по п.1, в котором коэффициент преломления третьего диэлектрического слоя ниже коэффициентов преломления как второго диэлектрического слоя, так и первого диэлектрического слоя.
17. Низкоэмиссионное покрытие по п.7, в котором каждое из упомянутых защитных слоев характеризуется отношением "кислород:кВт", равным 2:1.
18. Низкоэмиссионное покрытие по п.1, в котором каждый из первого диэлектрического слоя, второго диэлектрического слоя и третьего диэлектрического по отдельности содержит материал, выбранный из группы, включающей оксид, нитрид, оксинитрид или их комбинации.
19. Низкоэмиссионное покрытие по п.18, в котором по меньшей мере один из первого диэлектрического слоя, второго диэлектрического слоя и третьего диэлектрического слоя содержит оксид.
20. Низкоэмиссионное покрытие по п.19, в котором оксид содержит до примерно 20 мас.% элемента, выбранного из группы, состоящей из Al и В.
21. Низкоэмиссионное покрытие по п.20, в котором оксид содержит до примерно 10 мас.% элемента, выбранного из группы, состоящей из Al и В.
22. Низкоэмиссионное покрытие по п.15, в котором по меньшей мере один из первого диэлектрического слоя, второго диэлектрического слоя и третьего диэлектрического слоя содержит нитрид или оксинитрид.
23. Низкоэмиссионное покрытие по п.1, в котором по меньшей мере один из затравочных слоев содержит ZnAlOx.
24. Низкоэмиссионное покрытие по п.1, в котором подложка выполнена из стекла.
25. Автомобильное стекло, включающее низкоэмиссионное покрытие по п.1.
26. Способ изготовления низкоэмиссионной многослойной системы, имеющей низкий коэффициент солнечного теплопритока, при осуществлении которого наносят на подложку покрытие по п.1.
27. Способ по п.26, в котором используют магнетронное распыление.
28. Низкоэмиссионное покрытие на подложке, включающее, в порядке от подложки наружу:
первый диэлектрический слой, содержащий SiAlOxNy,
первый затравочный слой, содержащий ZnAlOx,
первый слой, отражающий инфракрасное излучение, содержащий Ag,
первый поглощающий защитный слой, содержащий NiCr,
второй диэлектрический слой, содержащий SiAlOxNy,
второй затравочный слой, содержащий ZnAlOx,
второй слой, отражающий инфракрасное излучение, содержащий Ag,
второй поглощающий защитный слой, содержащий NiCr,
третий диэлектрический слой, содержащий SiAlOxNy, и
при необходимости, верхний слой покрытия.
29. Низкоэмиссионное покрытие на подложке, включающее, в порядке от подложки наружу:
первый диэлектрический слой, содержащий SiAlOxNy,
первый затравочный слой, содержащий ZnAlOx,
первый слой, отражающий инфракрасное излучение, содержащий Ag,
первый поглощающий защитный слой, содержащий NiCrOx,
второй диэлектрический слой, содержащий SiAlOxNy,
второй затравочный слой, содержащий ZnAlOx,
второй слой, отражающий инфракрасное излучение, содержащий Ag,
второй поглощающий защитный слой, содержащий NiCrOx,
третий диэлектрический слой, содержащий SiAlOxNy, и
при необходимости, верхний слой покрытия.
30. Низкоэмиссионная многослойная система, включающая по меньшей мере один поглощающий защитный слой и характеризующаяся коэффициентом солнечного теплопритока менее примерно 0,31.
31. Низкоэмиссионная многослойная система по п.30, характеризующаяся коэффициентом солнечного теплопритока примерно от 0,22 до 0,25.
32. Низкоэмиссионная многослойная система по п.30, в которой пропускание света, измеренное в стеклопакете, составляет примерно от 42% до 46%.
33. Низкоэмиссионная многослойная система по п.30, в которой пропускание света, измеренное в стеклопакете, составляет примерно от 58% до 62%.
34. Низкоэмиссионная многослойная система по п.30, характеризующаяся улучшенной механической или химической стойкостью.
35. Низкоэмиссионная многослойная система по п.30, характеризующаяся устойчивостью к закалке или термическому упрочнению.
36. Низкоэмиссионная многослойная система по п.35, у которой оптические свойства не ухудшаются после закалки или термического упрочнения.
37. Низкоэмиссионная многослойная система по п.30, цветовое пропускание которой характеризуется отрицательным а* и отрицательным b*.
38. Низкоэмиссионная многослойная система по п.30, цветовое пропускание которой характеризуется отрицательным а* и положительным b*.
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|---|---|---|---|
| US11/944,564 US7901781B2 (en) | 2007-11-23 | 2007-11-23 | Low emissivity coating with low solar heat gain coefficient, enhanced chemical and mechanical properties and method of making the same |
| US11/944,564 | 2007-11-23 | ||
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| RU2010125110A true RU2010125110A (ru) | 2011-12-27 |
| RU2492150C2 RU2492150C2 (ru) | 2013-09-10 |
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| JP (2) | JP2011504450A (ru) |
| KR (1) | KR20100097175A (ru) |
| CN (1) | CN101925552B (ru) |
| AU (1) | AU2008326700B2 (ru) |
| BR (1) | BRPI0819822B1 (ru) |
| CA (1) | CA2706395C (ru) |
| MX (1) | MX2010005639A (ru) |
| MY (1) | MY169599A (ru) |
| NZ (1) | NZ586362A (ru) |
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-
2007
- 2007-11-23 US US11/944,564 patent/US7901781B2/en active Active
-
2008
- 2008-11-21 CN CN2008801253698A patent/CN101925552B/zh not_active Expired - Fee Related
- 2008-11-21 JP JP2010534975A patent/JP2011504450A/ja active Pending
- 2008-11-21 RU RU2010125110/03A patent/RU2492150C2/ru active
- 2008-11-21 WO PCT/US2008/013033 patent/WO2009067263A1/en not_active Ceased
- 2008-11-21 MY MYPI2010002363A patent/MY169599A/en unknown
- 2008-11-21 MX MX2010005639A patent/MX2010005639A/es active IP Right Grant
- 2008-11-21 KR KR1020107013844A patent/KR20100097175A/ko not_active Withdrawn
- 2008-11-21 NZ NZ58636208A patent/NZ586362A/xx not_active IP Right Cessation
- 2008-11-21 EP EP08852236.2A patent/EP2231540B1/en active Active
- 2008-11-21 CA CA2706395A patent/CA2706395C/en active Active
- 2008-11-21 BR BRPI0819822-5A patent/BRPI0819822B1/pt not_active IP Right Cessation
- 2008-11-21 AU AU2008326700A patent/AU2008326700B2/en not_active Ceased
-
2011
- 2011-02-02 US US13/019,651 patent/US9067822B2/en not_active Expired - Fee Related
-
2015
- 2015-07-13 JP JP2015139651A patent/JP2015221747A/ja active Pending
Also Published As
| Publication number | Publication date |
|---|---|
| AU2008326700A1 (en) | 2009-05-28 |
| MX2010005639A (es) | 2010-09-09 |
| NZ586362A (en) | 2012-10-26 |
| US7901781B2 (en) | 2011-03-08 |
| AU2008326700B2 (en) | 2013-05-02 |
| CA2706395A1 (en) | 2009-05-28 |
| CN101925552B (zh) | 2013-10-30 |
| EP2231540A1 (en) | 2010-09-29 |
| CN101925552A (zh) | 2010-12-22 |
| CA2706395C (en) | 2016-03-15 |
| US20110135955A1 (en) | 2011-06-09 |
| JP2011504450A (ja) | 2011-02-10 |
| JP2015221747A (ja) | 2015-12-10 |
| KR20100097175A (ko) | 2010-09-02 |
| RU2492150C2 (ru) | 2013-09-10 |
| US9067822B2 (en) | 2015-06-30 |
| US20090136765A1 (en) | 2009-05-28 |
| BRPI0819822A2 (pt) | 2015-05-26 |
| EP2231540B1 (en) | 2023-11-01 |
| MY169599A (en) | 2019-04-22 |
| BRPI0819822B1 (pt) | 2019-11-05 |
| WO2009067263A1 (en) | 2009-05-28 |
| HK1152289A1 (en) | 2012-02-24 |
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