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    • 1. 发明公开
    • 에너지절약형 창 및 복층유리
    • 节能窗和配对玻璃
    • KR1020120118303A
    • 2012-10-26
    • KR1020110035789
    • 2011-04-18
    • 코닝정밀소재 주식회사
    • 문동건심면기최용원김현빈정영수김두환정영진김아라
    • E06B3/67E06B5/20
    • C03C17/23C03C17/3417C03C17/366C03C17/3681C03C2217/218C03C2217/70G02F1/0147Y10T428/24942
    • PURPOSE: An energy-saving type double window and double window are provided to coat a high refractive thing film on a thermochromic thin film controlling a transmission rate of sunlight depending on an external environment, thereby reducing a cooling-and-heating load of a building by improving transmission efficiency and blocking efficiency of solar energy. CONSTITUTION: An energy-saving type double window comprises a board(100), a thermochromic thin film(110), and a high refractive thin film(120). The thermochromic thin film is coated on the board. The thermochromic thin film is formed with one among discretization vanadium(VO2), titanium oxide(TI2O3), oxidation NB(NbO2), and nickel sulfate(NiS). The high refractive thin film is coated on the thermochromic thin film. The high refractive thin film moves frequencies in which a transmission rate difference before and after the phase transition of the thermochromic thin film becomes a negative value in an infrared ray domain to short frequencies. The high refractive thin film is formed with one or more among zinc oxide(ZnO), titanium oxide(IV)(TiO2), zirconia(ZrO2), hfO2(HFO2), and antimony trioxide(Sb2O3).
    • 目的:提供节能型双窗和双窗以在热变色薄膜上涂覆高折射物膜,根据外部环境控制阳光透射率,从而降低建筑物的制冷和加热负载 通过提高太阳能的传输效率和阻塞效率。 构成:节能型双窗包括板(100),热变色薄膜(110)和高折射薄膜(120)。 热变色薄膜涂在板上。 热变色薄膜由离子化钒(VO2),氧化钛(TI2O3),氧化NB(NbO2)和硫酸镍(NiS)之一形成。 高折射薄膜被涂覆在热致变色薄膜上。 高折射薄膜移动在热致变色薄膜的相变之前和之后的传输速率差在红外线域变为负值的频率到短频。 高折射薄膜由氧化锌(ZnO),氧化钛(IV)(TiO 2),氧化锆(ZrO 2),hfO 2(HFO 2)和三氧化锑(Sb 2 O 3)之中的一种或多种形成。
    • 2. 发明公开
    • 써모크로믹 유리 및 그 제조방법
    • 热变色玻璃及其制造方法
    • KR1020120127042A
    • 2012-11-21
    • KR1020110045265
    • 2011-05-13
    • 코닝정밀소재 주식회사
    • 최용원김두환문동건정영진
    • C03C17/34C03C17/245
    • C03C17/23C03C17/3417C03C17/366C03C2218/154
    • PURPOSE: A thermochromic glass and a manufacturing method are provided to exclude crystallization of thermocromic thin film and to enhance crystallization of the thermochromic thin film. CONSTITUTION: A thermochromic glass comprises a glass substrate(100), a seed layer(200), and a thermochromic thin film(300). The seed layer is placed on the surface of the glass substrate. The thermochromic thin film is placed on the surface of the seed layer. The seed layer increases the XRD peak value of the thermochromic thin film. The seed layer and thermochromic thin film are formed by a sputtering method. The thermochromic thin film is composed of vanadium dioxide, and the seed layer is compose of alumina(Al2O3). A manufacturing method of the thermochromic glass comprises the following steps: preparing the glass substrate; forming the seed layer on the glass substrate; and forming the thermochromic thin film at the upper part of the seed layer. [Reference numerals] (100) Glass substrate; (200) Seed layer; (300) Thermochromic thin film
    • 目的:提供热致变色玻璃和制造方法以排除热致变薄膜的结晶并增强热致变色薄膜的结晶。 构成:热致变色玻璃包括玻璃基底(100),种子层(200)和热变色薄膜(300)。 种子层放置在玻璃基板的表面上。 将热变色薄膜放置在种子层的表面上。 晶种层增加了热致变色薄膜的XRD峰值。 种子层和热致变色薄膜通过溅射法形成。 热变色薄膜由二氧化钒组成,种子层由氧化铝(Al2O3)组成。 热变色玻璃的制造方法包括以下步骤:制备玻璃基板; 在玻璃基板上形成晶种层; 并在种子层的上部形成热致变色薄膜。 (附图标记)(100)玻璃基板; (200)种子层; (300)热变色薄膜
    • 3. 发明公开
    • 에너지절약형 창
    • 节能玻璃
    • KR1020120127043A
    • 2012-11-21
    • KR1020110045266
    • 2011-05-13
    • 코닝정밀소재 주식회사
    • 문동건유상련김두환최용원
    • E06B5/00E04B1/74G02F1/01B32B17/10
    • E06B5/00B32B17/10G02F1/0147
    • PURPOSE: An energy-saving type window is provided to improve the energy efficiency by increasing the reflectance ratio of a mid infrared area and adjusting the penetration ratio of near-infrared and visible ray areas. CONSTITUTION: An energy-saving type window comprises a substrate(100), a thermochromic thin film(200), and a transparent conductive layer(300). The thermochromic thin film is formed on the substrate. The penetration ratio of the thermochromic thin film is adjusted according to the temperature. The transparent conductive layer is formed on the lower surface of the substrate or the upper and lower surfaces of the thermochromic thin film. The transparent conductive layer increase the reflectance ratio of a mid infrared area. The transparent conductive layer comprises one of the ITO(Indium Tin Oxide), SnO2, IZO(Indium Zinc Oxide), FTO(Fluorine Tin Oxide), IGZO(Indium Gallium Zinc Oxide) and the grapheme.
    • 目的:提供节能型窗口,通过增加中红外区域的反射率和调整近红外和可见光区域的穿透率来提高能源效率。 构成:节能型窗包括基板(100),热致变色薄膜(200)和透明导电层(300)。 热致变色薄膜形成在基板上。 根据温度调节热变色薄膜的穿透率。 透明导电层形成在基板的下表面或热致变色薄膜的上表面和下表面上。 透明导电层增加中红外区域的反射率。 透明导电层包括ITO(氧化铟锡),SnO 2,IZO(氧化铟锌),FTO(氟化锡氧化物),IGZO(铟镓锌氧化物)和图形中的一种。
    • 4. 发明公开
    • 에너지절약형 복층창
    • 能量保存对玻璃
    • KR1020120118302A
    • 2012-10-26
    • KR1020110035788
    • 2011-04-18
    • 코닝정밀소재 주식회사
    • 문동건심면기최용원김현빈정영수유상련김두환정영진김아라
    • E06B3/67E06B5/20C03C17/42
    • E06B3/67C03C17/42E06B5/20
    • PURPOSE: An energy-saving type double layer window is provided to coat a thermochromic thin film on a board, thereby enhancing the cooling-and-heating efficiency of a building by controlling transmission rates of a visible ray and rear infrared ray domains according to outdoor temperature. CONSTITUTION: An energy-saving type double layer window comprises a first board(100), a second board(200), a spacer(300), a thermochromic thin film(400), and a transparent conductive layer(500). The second board is installed by being spaced from the first board. The spacer is installed in between the first and second boards, thereby maintaining a spaced interval between the boards. The thermochromic thin film is formed on the top of the second board. The thermochromic thin film controls transmission rates of a visible ray and rear infrared ray domains according to temperature. The transparent conductive layer is formed on one or more surfaces between the top and bottom.
    • 目的:提供一种节能型双层窗,用于涂覆板上的热变色薄膜,从而通过根据室外控制可见光线和后红外线域的透射率来提高建筑物的冷却和加热效率 温度。 构成:节能型双层窗包括第一板(100),第二板(200),间隔件(300),热变色薄膜(400)和透明导电层(500)。 第二板通过与第一板间隔开来安装。 间隔件安装在第一和第二板之间,从而在板之间保持间隔的间隔。 热致变色薄膜形成在第二板的顶部。 热变色薄膜根据温度控制可见光和后红外线域的透射率。 透明导电层形成在顶部和底部之间的一个或多个表面上。