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The invention discloses electro-reflective vacuum glass and a preparation method thereof, and belongs to the technical field of photoelectricity and glass. Comprising an external frame sealing body, and an outer glass layer, a vacuum layer, a middle glass layer, a first transparent conductive layer, an electrolyte layer, a second transparent conductive layer and an inner glass layer which are arranged in sequence, and the outer glass layer, the vacuum layer, the middle glass layer, the first transparent conductive layer, the electrolyte layer, the second transparent conductive layer and the inner glass layer are sealed through the external frame sealing body. The novel light-dimming temperature-control window can be produced by combining the electro-reflection technology and the vacuum glass technology, the light transmittance can be regulated and controlled, the indoor temperature can be kept to be quiet, the indoor life quality is improved, meanwhile, the purposes of saving energy and reducing emission are achieved, traditional hollow glass is replaced with the electro-reflection vacuum glass, multifunctional integration of the window can be achieved, and the window has the advantages of being simple in structure and convenient to use. And the heat transfer coefficient K value of the glass is reduced from 2-3W/m < 2 >. K to 1.0 W/m < 2 >. K or below.
本发明公开了一种电致反光真空玻璃及其制备方法,属于光电与玻璃技术领域。包括:外部边框封接体以及依次设置的外层玻璃、真空层、中层玻璃、第一透明导电层、电解质层、第二透明导电层、内层玻璃,其中外层玻璃、真空层、中层玻璃、第一透明导电层、电解质层、第二透明导电层、内层玻璃通过外部边框封接体密封。通过将电致反光和真空玻璃两种技术结合,能产生一种新型的调光控温窗户,既能调控透光度,又能保持室内的温度和静谧,提升室内的生活质量,同时达到节能减排的目的,电致反光真空玻璃替代传统中空玻璃,可实现窗户的多功能集成,将玻璃的传热系数K值从2~3W/m2·k降至1.0W/m2·k以下。
The invention discloses electro-reflective vacuum glass and a preparation method thereof, and belongs to the technical field of photoelectricity and glass. Comprising an external frame sealing body, and an outer glass layer, a vacuum layer, a middle glass layer, a first transparent conductive layer, an electrolyte layer, a second transparent conductive layer and an inner glass layer which are arranged in sequence, and the outer glass layer, the vacuum layer, the middle glass layer, the first transparent conductive layer, the electrolyte layer, the second transparent conductive layer and the inner glass layer are sealed through the external frame sealing body. The novel light-dimming temperature-control window can be produced by combining the electro-reflection technology and the vacuum glass technology, the light transmittance can be regulated and controlled, the indoor temperature can be kept to be quiet, the indoor life quality is improved, meanwhile, the purposes of saving energy and reducing emission are achieved, traditional hollow glass is replaced with the electro-reflection vacuum glass, multifunctional integration of the window can be achieved, and the window has the advantages of being simple in structure and convenient to use. And the heat transfer coefficient K value of the glass is reduced from 2-3W/m < 2 >. K to 1.0 W/m < 2 >. K or below.
本发明公开了一种电致反光真空玻璃及其制备方法,属于光电与玻璃技术领域。包括:外部边框封接体以及依次设置的外层玻璃、真空层、中层玻璃、第一透明导电层、电解质层、第二透明导电层、内层玻璃,其中外层玻璃、真空层、中层玻璃、第一透明导电层、电解质层、第二透明导电层、内层玻璃通过外部边框封接体密封。通过将电致反光和真空玻璃两种技术结合,能产生一种新型的调光控温窗户,既能调控透光度,又能保持室内的温度和静谧,提升室内的生活质量,同时达到节能减排的目的,电致反光真空玻璃替代传统中空玻璃,可实现窗户的多功能集成,将玻璃的传热系数K值从2~3W/m2·k降至1.0W/m2·k以下。
Electroreflective vacuum glass and preparation method thereof
一种电致反光真空玻璃及其制备方法
19.03.2024
Patent
Elektronische Ressource
Chinesisch
IPC:
E06B
Feste oder bewegliche Abschlüsse für Öffnungen in Bauwerken, Fahrzeugen, Zäunen oder ähnlichen Einfriedungen allgemein, z.B. Türen, Fenster, Läden, Tore
,
FIXED OR MOVABLE CLOSURES FOR OPENINGS IN BUILDINGS, VEHICLES, FENCES, OR LIKE ENCLOSURES, IN GENERAL, e.g. DOORS, WINDOWS, BLINDS, GATES
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G02F
DEVICES OR ARRANGEMENTS, THE OPTICAL OPERATION OF WHICH IS MODIFIED BY CHANGING THE OPTICAL PROPERTIES OF THE MEDIUM OF THE DEVICES OR ARRANGEMENTS FOR THE CONTROL OF THE INTENSITY, COLOUR, PHASE, POLARISATION OR DIRECTION OF LIGHT, e.g. SWITCHING,...
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Vorrichtungen oder Anordnungen, deren optische Arbeitsweise durch Änderung der optischen Eigenschaften des Mediums der Vorrichtungen oder Anordnungen geändert wird zum Steuern der Intensität, Farbe, Phase, Polarisation oder der Richtung von...
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