Heat Stable SnAl and SnMg Based Dielectrics
    4.
    发明申请
    Heat Stable SnAl and SnMg Based Dielectrics 有权
    热稳定SnAl和SnMg基电介质

    公开(公告)号:US20140287254A1

    公开(公告)日:2014-09-25

    申请号:US14299341

    申请日:2014-06-09

    Abstract: A transparent dielectric composition comprising tin, oxygen and one of aluminum or magnesium with preferably higher than 15% by weight of aluminum or magnesium offers improved thermal stability over tin oxide with respect to appearance and optical properties under high temperature processes. For example, upon a heat treatment at temperatures higher than 500 C, changes in color and index of refraction of the present transparent dielectric composition are noticeably less than those of tin oxide films of comparable thickness. The transparent dielectric composition can be used in high transmittance, low emissivity coated panels, providing thermal stability so that there are no significant changes in the coating optical and structural properties, such as visible transmission, IR reflectance, microscopic morphological properties, color appearance, and haze characteristics, of the as-coated and heated treated products.

    Abstract translation: 包含锡,氧和铝或镁中的一种优选高于15重量%的铝或镁的透明电介质组合物相对于在高温过程下的外观和光学性质提供了比氧化锡更好的热稳定性。 例如,当在高于500℃的温度下进行热处理时,本发明透明电介质组合物的颜色变化和折射率显着小于具有相当厚度的氧化锡膜的变化。 透明电介质组合物可用于高透光率,低发射率涂层面板,提供热稳定性,使得涂层的光学和结构性能如可见透射率,IR反射率,微观形态特性,颜色外观和 涂层和加热处理产品的雾度特性。

    ANTI-REFLECTION GLASS MADE FROM SOL MADE BY BLENDING TRI-ALKOXYSILANE AND TETRA-ALKOXYSILANE INCLUSIVE SOLS
    5.
    发明申请
    ANTI-REFLECTION GLASS MADE FROM SOL MADE BY BLENDING TRI-ALKOXYSILANE AND TETRA-ALKOXYSILANE INCLUSIVE SOLS 有权
    通过混合三烷基硅烷和四烷基铝氧烷包含固体溶胶制成的抗反射玻璃

    公开(公告)号:US20140272126A1

    公开(公告)日:2014-09-18

    申请号:US13826288

    申请日:2013-03-14

    CPC classification number: G02B1/111 C03C17/245 C03C2217/732 C03C2218/113

    Abstract: Anti-reflection (AR) coating for a glass substrate is prepared by blending at least two different sols to form a coating sol which is used to coat a substrate such as a transparent glass substrate. In certain example embodiments, a method includes forming a first sol formulation including a colloidal solution having a tri-alkoxysilane based binder; forming a second sol formulation including a colloidal solution having a tetra-alkoxysilane based binder; blending the first and second sol formulations to form a coating sol formulation; coating at least a portion of said coating sol formulation onto the glass substrate to form a coating; and heating (e.g., for curing and/or annealing) the glass substrate and the coating thereon. Anti-reflection glasses show improved mechanical strength and higher transmittances (e.g., Tqe % gain).

    Abstract translation: 通过混合至少两种不同的溶胶来制备用于玻璃基板的抗反射(AR)涂层,以形成用于涂覆诸如透明玻璃基板的基板的涂层溶胶。 在某些示例性实施方案中,一种方法包括形成包含具有三烷氧基硅烷基粘合剂的胶体溶液的第一溶胶制剂; 形成包含具有四烷氧基硅烷基粘合剂的胶体溶液的第二溶胶制剂; 混合第一和第二溶胶制剂以形成涂料溶胶制剂; 将所述涂料溶胶制剂的至少一部分涂覆到所述玻璃基板上以形成涂层; 以及加热(例如,用于固化和/或退火)玻璃基板和其上的涂层。 抗反射眼镜显示出改进的机械强度和更高的透光率(例如,Tqe%增益)。

    ANTI-REFLECTION GLASS MADE FROM AGED SOL INCLUDING MIXTURE OF TRI-ALKOXYSILANE AND TETRA-ALKOXYSILANE
    6.
    发明申请
    ANTI-REFLECTION GLASS MADE FROM AGED SOL INCLUDING MIXTURE OF TRI-ALKOXYSILANE AND TETRA-ALKOXYSILANE 审中-公开
    抗反射玻璃由含有三羟甲基纤维素和四羧基硅烷的混合物

    公开(公告)号:US20140272125A1

    公开(公告)日:2014-09-18

    申请号:US13826011

    申请日:2013-03-14

    Abstract: A method of making a coated article including an anti-reflection coating on a glass substrate, the method comprising: mixing at least a tri-alkoxysilane based binder and a tetra-alkoxysilane based binder with at least silica based nanoparticles and a solvent in forming a coating sol formulation; aging the coating sol formulation at least about two weeks so as to provide an aged coating sol formulation; coating at least a portion of said aged coating sol formulation onto the glass substrate to form a coating; and heating said glass substrate and said coating. Anti-reflection (AR) glasses show improved mechanical strength and higher transmittances (e.g., Tqe % gain).

    Abstract translation: 一种制造包括在玻璃基板上的抗反射涂层的涂覆制品的方法,所述方法包括:至少将三烷氧基硅烷基粘合剂和四烷氧基硅烷基粘合剂与至少二氧化硅基纳米颗粒和溶剂混合形成 涂料溶胶配方; 使涂料溶胶制剂老化至少约两周,以提供老化的涂料溶胶制剂; 将所述老化涂层溶胶制剂的至少一部分涂布到玻璃基板上以形成涂层; 并加热所述玻璃基底和所述涂层。 抗反射(AR)眼镜显示出改善的机械强度和更高的透射率(例如,Tqe%增益)。

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