Method of making coated article with high visible transmission and low emissivity
    4.
    发明授权
    Method of making coated article with high visible transmission and low emissivity 有权
    制造具有高可见透射率和低发射率的涂层制品的方法

    公开(公告)号:US06916408B2

    公开(公告)日:2005-07-12

    申请号:US10921884

    申请日:2004-08-20

    IPC分类号: C03C17/36 C23C14/08

    摘要: A coated article that can be used in applications such as insulating glass (IG) units, so that resulting IG units can achieve high visible transmission of at least 70% (e.g., when using clear glass substrates from 1.0 to 3.5 mm thick), combined with at least one of: (a) SHGC no greater than about 0.45, more preferably no greater than about 0.40; (b) SC no greater than about 0.49, more preferably no greater than about 0.46; (c) chemical and/or mechanical durability; (d) neutral transmissive color such that transmissive a* is from −5.0 to 0 (more preferably from −3.5 to −1.5), and transmissive b* is from −2.0 to 4.0 (more preferably from 1.0 to 3.0); and (e) neutral reflective color from the exterior of the IG unit (i.e., Rg/Rout) such that reflective a* is from −3.0 to 2.0 (more preferably from −2.0 to 0.5), and reflective b* is from −5.0 to 1.0 (more preferably from −4.0 to −1.0). In certain example non-limiting embodiments, coated articles herein comprise:substrate/TiOx/ZnOx/Ag/NiCrOx/SnOx/ZnOx/Ag/NiCrOx/SnOx/SixNy.

    摘要翻译: 可以用于绝缘玻璃(IG)单元等应用中的涂层制品,使得所得到的IG单元可实现至少70%的高可见透射率(例如,当使用1.0至3.5mm厚的透明玻璃基板时),组合 其中至少一个:(a)SHGC不大于约0.45,更优选不大于约0.40; (b)SC不大于约0.49,更优选不大于约0.46; (c)化学和/或机械耐久性; (d)中性透射色,使透射性a *为-5.0〜0(更优选为-3.5〜-1.5),透射性b *为-2.0〜4.0(更优选为1.0〜3.0)。 和(e)来自IG单元外部的中性反射颜色(即Rg / R )使得反射性a *为-3.0至2.0(更优选为-2.0至0.5), 反射率b *为-5.0〜1.0(更优选为-4.0〜-1.0)。 在某些实施例中,非限制性实施方案中,本文的涂覆制品包括:基底/ TiO x / ZnO x / Ag / NiCrO x / SnO ZnO / ZnO x / Ag / NiCrO x / SnO x / Si x N < SUB> y

    Coated article with high visible transmission and low emissivity

    公开(公告)号:US07998320B2

    公开(公告)日:2011-08-16

    申请号:US11086327

    申请日:2005-03-23

    IPC分类号: C23C14/34

    摘要: A coated article that can be used in applications such as insulating glass (IG) units, so that resulting IG units can achieve high visible transmission of at least 70% (e.g., when using clear glass substrates from 1.0 to 3.5 mm thick), combined with at least one of: (a) SHGC no greater than about 0.45, more preferably no greater than about 0.40; (b) SC no greater than about 0.49, more preferably no greater than about 0.46; (c) chemical and/or mechanical durability; (d) neutral transmissive color such that transmissive a* is from −5.0 to 0 (more preferably from −3.5 to −1.5), and transmissive b* is from −2.0 to 4.0 (more preferably from 1.0 to 3.0); and (e) neutral reflective color from the exterior of the IG unit (i.e., Rg/Rout) such that reflective a* is from −3.0 to 2.0 (more preferably from −2.0 to 0.5), and reflective b* is from −5.0 to 1.0 (more preferably from −4.0 to −1.0). In certain example non-limiting embodiments, coated articles herein comprise: substrate/TiOx/ZnOx/Ag/NiCrOx/SnOx/ZnOx/Ag/NiCrOx/SnOx/SixNy.

    Low-emissivity glass coatings having a layer of nitrided nichrome and methods of making same
    10.
    发明授权
    Low-emissivity glass coatings having a layer of nitrided nichrome and methods of making same 无效
    具有一层氮化镍铬合金的低辐射玻璃涂层及其制造方法

    公开(公告)号:US06623846B2

    公开(公告)日:2003-09-23

    申请号:US09797903

    申请日:2001-03-05

    申请人: Ronald E. Laird

    发明人: Ronald E. Laird

    IPC分类号: B32B1706

    摘要: Low-E glass coated glass articles are comprised of a glass substrate and a multiple layer coating on a surface of the glass substrate. Relatively high light transmissivity of greater than about 72% and satisfactory color characteristics are achieved. The coating includes a layer of a transparent dielectric material adjacent the surface of the glass substrate, and respective layers of nitrided nichrome and silver each of which are formed by sputter-coating onto the glass substrate in a nitrogen-containing atmosphere. Most preferably, the coating also includes a layer of silicon oxynitride interposed between the layer of dielectric material and the layer of nitrided nichrome. The silicon oxynitride layer may include an oxygen gradient layer wherein the concentration of oxygen decreases from one location in the silicon oxynitride layer to another location at a different depth in that same layer. If present, the oxygen gradient is most preferably such that the greater amount of oxygen concentration is nearer the bottom of the layer (i.e., towards the glass substrate) with the lesser amount of oxygen concentration being nearer the top of the layer (i.e., away from the glass layer).

    摘要翻译: Low-E玻璃涂层玻璃制品由玻璃基板和玻璃基板表面上的多层涂层构成。 实现了大于约72%的高透光率和令人满意的颜色特性。 该涂层包括邻近玻璃基板表面的透明电介质材料层,以及各自的氮化镍铬合金层和银层,其各自通过在含氮气氛中溅射涂覆在玻璃基板上形成。 最优选地,涂层还包括置于介电材料层和氮化镍铬合金层之间的氮氧化硅层。 氧氮化硅层可以包括氧气梯度层,其中氧浓度从氧氮化硅层中的一个位置降低到同一层中不同深度的另一个位置。 如果存在氧气梯度,则最优选地,氧浓度越大,层的底部越接近玻璃基底(即朝向玻璃基底),氧浓度越接近层的顶部(即,离开 从玻璃层)。