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    • 5. 发明申请
    • REDUCING THE SUSCEPTIBILITY OF TITANIUM NITRIDE OPTICAL LAYERS TO CRACK
    • 减少钛酸钠光学层破裂的可能性
    • WO2004027465A1
    • 2004-04-01
    • PCT/US2003/004717
    • 2003-02-18
    • SOUTHWALL TECHNOLOGIES, INC.HUPER OPTIK INTERNATIONAL PTE LTD
    • WOODARD, Floyd, E.DAI, Yisheng
    • G02B5/28
    • B32B15/043B32B15/08B32B17/10018B32B17/10174B32B27/36B32B2311/18B32B2311/22B32B2367/00C03C17/42C23C14/562Y10S359/90
    • In a titanium nitride-based optical coating, the structural stability of the coating is enhanced by providing a damage-retardation base layer (16) between the titanium nitride layer (18) and a substrate (12). Where the optical coating is to provide solar control, the titanium nitride layer is selected primarily for achieving desired optical characteristics, while the thickness of the damage-retardation layer is selected primarily for achieving desired optical characteristics, while the thickness of the damage-retardation layer is selected primarily for achieving desired mechanical characteristics. The damage-retardation layer is formed of a grey metal, with nickel chromium being the preferred metal. The grey metal layer reduces the likelihood that the titanium nitride layer will crack. The tendency of such a layer to crack and form worm tracks is further reduced by exposing the substrate to a plasma preglow (88) and/or by using a slip agent (14) on the side of the substrate on which the layers are to be formed.
    • 在基于氮化钛的光学涂层中,通过在氮化钛层(18)和衬底(12)之间提供损伤延迟基底层(16)来增强涂层的结构稳定性。 在光学涂层要提供太阳能控制的地方,主要选择氮化钛层以实现期望的光学特性,同时主要选择损伤相位差层的厚度以获得期望的光学特性,而损伤相位差层的厚度 主要用于实现期望的机械特性。 损伤延迟层由灰色金属形成,镍铬是优选的金属。 灰色金属层降低了氮化钛层破裂的可能性。 通过将衬底暴露于等离子体预发泡(88)和/或通过使用其上层的衬底侧上的滑爽剂(14)将这种层破裂和形成蜗杆轨迹的趋势进一步降低 形成。