RU2013131005A - Изделия, включающие противоконденсатные и/или энергосберегающие покрытия, и/или способы их изготовления - Google Patents

Изделия, включающие противоконденсатные и/или энергосберегающие покрытия, и/или способы их изготовления Download PDF

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RU2013131005A
RU2013131005A RU2013131005/03A RU2013131005A RU2013131005A RU 2013131005 A RU2013131005 A RU 2013131005A RU 2013131005/03 A RU2013131005/03 A RU 2013131005/03A RU 2013131005 A RU2013131005 A RU 2013131005A RU 2013131005 A RU2013131005 A RU 2013131005A
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glass plate
layer
refractive index
heat treatment
main surface
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Жан-Марк ЛЕММЕР
Нестор П. МЕРФИ
Дэвид Д. МАКЛИН
Ричард БЛЭКЕР
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Гардиан Индастриз Корп.
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Abstract

1. Способ изготовления изолирующего стеклопакета (IGU), причем способ включает стадии, на которых:создают первую стеклянную пластину;размещают множество слоев, непосредственно или косвенно, на первой основной поверхности первой стеклянной пластины, причем множество слоев включают в порядке, следуя от первой стеклянной пластины:первый слой, включающий оксинитрид кремния, имеющий показатель преломления 1,5-2,1,слой, включающий ITO, имеющий показатель преломления 1,7-2,1, ивторой слой, включающий оксинитрид кремния, имеющий показатель преломления 1,5-2,1;проводят термическую обработку первой стеклянной пластины с размещенным на ней множеством слоев;создают вторую стеклянную пластину, по существу, в параллельном взаимном расположении на расстоянии от первой стеклянной пластины таким образом, что первая основная поверхность первой стеклянной пластины обращена в сторону, противоположную второй стеклянной пластине; игерметизируют первую и вторую стеклянные пластины в соединении друг с другом.2. Способ по п.1, в котором первый и второй слои, включающие оксинитрид кремния, имеют показатели преломления 1,7-1,8.3. Способ по п.1, в котором слой, включающий ITO, имеет показатель преломления 1,8-1,93.4. Способ по п.2, в котором слой, включающий ITO, имеет показатель преломления 1,8-1,93.5. Способ по п.1, в котором первая пластина с множеством слоев на первой основной поверхности первой стеклянной пластины после указанной термической обработки имеет коэффициент полусферического излучения, меньший или равный около 0,23.6. Способ по п.1, в котором первая пластина с множеством слоев на первой основной поверхности первой стеклянной пластины после указанн�

Claims (21)

1. Способ изготовления изолирующего стеклопакета (IGU), причем способ включает стадии, на которых:
создают первую стеклянную пластину;
размещают множество слоев, непосредственно или косвенно, на первой основной поверхности первой стеклянной пластины, причем множество слоев включают в порядке, следуя от первой стеклянной пластины:
первый слой, включающий оксинитрид кремния, имеющий показатель преломления 1,5-2,1,
слой, включающий ITO, имеющий показатель преломления 1,7-2,1, и
второй слой, включающий оксинитрид кремния, имеющий показатель преломления 1,5-2,1;
проводят термическую обработку первой стеклянной пластины с размещенным на ней множеством слоев;
создают вторую стеклянную пластину, по существу, в параллельном взаимном расположении на расстоянии от первой стеклянной пластины таким образом, что первая основная поверхность первой стеклянной пластины обращена в сторону, противоположную второй стеклянной пластине; и
герметизируют первую и вторую стеклянные пластины в соединении друг с другом.
2. Способ по п.1, в котором первый и второй слои, включающие оксинитрид кремния, имеют показатели преломления 1,7-1,8.
3. Способ по п.1, в котором слой, включающий ITO, имеет показатель преломления 1,8-1,93.
4. Способ по п.2, в котором слой, включающий ITO, имеет показатель преломления 1,8-1,93.
5. Способ по п.1, в котором первая пластина с множеством слоев на первой основной поверхности первой стеклянной пластины после указанной термической обработки имеет коэффициент полусферического излучения, меньший или равный около 0,23.
6. Способ по п.1, в котором первая пластина с множеством слоев на первой основной поверхности первой стеклянной пластины после указанной термической обработки имеет коэффициент полусферического излучения, меньший или равный около 0,20.
7. Способ по п.1, в котором первая пластина с множеством слоев на первой основной поверхности первой стеклянной пластины после указанной термической обработки имеет поверхностное сопротивление слоя, меньшее или равное около 20 Ом/квадрат.
8. Способ по п.1, в котором указанная термическая обработка включает процесс лазерного отжига.
9. Способ по п.8, в котором для указанного процесса лазерного отжига используют матрицу лазерных диодов, действующую при мощности приблизительно 1 кВт и при длине волны излучения приблизительно 975 нм.
10. Способ по п.1, в котором при указанной термической обработке используют печь, имеющую множество зон.
11. Способ по п.10, в котором в частичной подгруппе из указанных зон происходит рекристаллизация слоя, включающего ITO.
12. Способ по п.11, в котором температура первой стеклянной пластины во время указанной термической обработки остается ниже 425°С.
13. Способ по п.1, в котором указанная термическая обработка включает обработку инфракрасным тепловым излучением.
14. Способ по п.13, в котором указанную обработку инфракрасным тепловым излучением выполняют при длине волны приблизительно 1-2 мкм.
15. Способ изготовления изолирующего стеклопакета (IGU), причем способ включает стадии, на которых:
создают первую стеклянную пластину;
размещают множество слоев, непосредственно или косвенно, на первой основной поверхности первой стеклянной пластины, причем множество слоев включают в порядке, следуя от первой стеклянной пластины:
первый слой, включающий оксинитрид кремния,
слой, включающий ITO, и
второй слой, включающий оксинитрид кремния;
проводят термическую обработку первой стеклянной пластины с размещенным на ней множеством слоев; и
создают вторую стеклянную пластину, по существу, в параллельном взаимном расположении на расстоянии от первой стеклянной пластины таким образом, что первая основная поверхность первой стеклянной пластины обращена в сторону, противоположную второй стеклянной пластине,
причем первая стеклянная пластина с множеством слоев на первой основной поверхности первой стеклянной пластины после указанной термической обработки имеет коэффициент полусферического излучения, меньший или равный около 0,20, и поверхностное сопротивление слоя, меньшее или равное около 20 Ом/квадрат.
16. Способ по п.15, в котором первый и второй слои, включающие оксинитрид кремния, имеют показатели преломления 1,7-1,8.
17. Способ по п.15, в котором слой, включающий ITO, имеет показатель преломления 1,8-1,93.
18. Способ по п.16, в котором слой, включающий ITO, имеет показатель преломления 1,8-1,93.
19. Способ по п.15, в котором указанная термическая обработка включает лазерный отжиг, воздействие NIR-SWIR-излучением и/или нагревание в печи.
20. Изолирующий стеклопакет (IGO), включающий:
первую стеклянную пластину;
множество слоев, осажденных вакуумным напылением, непосредственно или косвенно, на первую основную поверхность первой стеклянной пластины, причем множество слоев включают в порядке, следуя от первой стеклянной пластины:
первый слой, включающий оксинитрид кремния, имеющий показатель преломления 1,5-2,1,
слой, включающий ITO, имеющий показатель преломления 1,7-2,1, и
второй слой, включающий оксинитрид кремния, имеющий показатель преломления 1,5-2,1;
вторую стеклянную пластину, по существу, в параллельном взаимном расположении на расстоянии от первой стеклянной пластины, причем первая основная поверхность первой стеклянной пластины в собранном состоянии обращена в сторону, противоположную второй стеклянной пластине; и
краевое уплотнение, герметизирующее первую и вторую стеклянные пластины в соединении друг с другом,
причем первую стеклянную пластину подвергают термической обработке с размещенным на ней множеством слоев, и
первая стеклянная пластина с множеством слоев на первой основной поверхности первой стеклянной пластины после указанной термической обработки имеет коэффициент полусферического излучения, меньший или равный около 0,20 и поверхностное сопротивление слоя, меньшее или равное около 20 Ом/квадрат.
21. Покрытое изделие, включающее:
стеклянную пластину, несущую множество слоев, непосредственно или косвенно, осажденных вакуумным напылением на ее первой основной поверхности, причем множество слоев включают в порядке, следуя от стеклянной пластины:
первый слой, включающий оксинитрид кремния, имеющий показатель преломления 1,5-2,1,
слой, включающий ITO, имеющий показатель преломления 1,7-2,1, и
второй слой, включающий оксинитрид кремния, имеющий показатель преломления 1,5-2,1;
причем стеклянная пластина подвергнута термической обработке с размещенным на ней множеством слоев, и
пластина с множеством слоев на первой основной поверхности первой стеклянной пластины после указанной термической обработки имеет коэффициент полусферического излучения, меньший или равный около 0,20, и поверхностное сопротивление слоя, меньшее или равное около 20 Ом/квадрат.
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RU2017107176A3 (ru) 2020-05-20
US10358865B2 (en) 2019-07-23
US20130323443A1 (en) 2013-12-05
RU2613236C2 (ru) 2017-03-15
EP2649020B1 (en) 2018-10-17
US20110212311A1 (en) 2011-09-01
US9863182B2 (en) 2018-01-09
US10072456B2 (en) 2018-09-11
RU2739909C2 (ru) 2020-12-29
US9670092B2 (en) 2017-06-06
US20160115073A1 (en) 2016-04-28
US20150017355A1 (en) 2015-01-15
BR112013014077A2 (pt) 2016-09-20
WO2012078395A2 (en) 2012-06-14
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US8871349B2 (en) 2014-10-28
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US8524337B2 (en) 2013-09-03
RU2017107176A (ru) 2019-01-21
TR201820154T4 (tr) 2019-01-21
WO2012078395A3 (en) 2012-08-16
US20170247938A1 (en) 2017-08-31
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BR112013014077B1 (pt) 2020-11-10

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