Abstract:
PROBLEM TO BE SOLVED: To obtain a metal coated reflector film tat has no separation of layers of color change, and is superior in reflection efficiency. SOLUTION: This is a metal coated reflector film, that contains a flexible plastic sheet which carries a reflecting metal silver layer produced through vacuum deposition. As a flexible plastics, a plastic reflecting film is used which contains a ultraviolet-ray, absorber at a concentration that is stable and effective with respect to the ultraviolet rays and is capable of suppressing separation of the coupling of silver and plastics. As an example of such a flexible plastic, polyester can be cited.
Abstract:
PROBLEM TO BE SOLVED: To provide a metallic coating reflector film without delamination and discoloration which provides excellent efficiency of the reflector. SOLUTION: This metallic coating reflector film contains a flexible plastic sheet which carries a reflecting metal silver layer wherein the reflecting metal silver layer is deposited on the flexible plastic sheet, and the flexible plastic sheet is used which contains an ultraviolet absorbent which is stable and effective to ultraviolet light and has concentration so as to prevent dissociation of the bonding of silver and plastic. Polyester is cited as the flexible plastic. COPYRIGHT: (C)2003,JPO
Abstract in simplified Chinese:本发明系关于一种用于决定对于一窗(52)之太阳光控制的太阳光控件(50;62;70;及90),其包括位于光学功能性层堆栈(60;64;76;及86)与氮化钛层(56;68;78;及88)之间的光学厚实层(58;66;及80)。该光学厚实层具有足够厚度而可延迟或防止反射光的建设性及破坏性干涉。该光学厚实层可为黏着剂,但亦可为一或多个聚合基板。该层堆栈可为法布立-柏若(Fabry-Perot)干涉滤光器。此外,在较佳具体例中,氮化钛层较层堆栈更靠近窗(例如,玻璃)。
Abstract in simplified Chinese:本发明揭示一种电活性封装,其包含活性膜及定位于该活性膜之相对侧上之一对透明导电层。该等透明导电层各包含延伸超出该活性膜之边缘之悬垂区段,其中该等悬垂区段定位于该电活性封装之周边处。本发明揭示一种汇流条,其包括一对导电层及定位于该等导电层之间的绝缘层。该汇流条沿着该电活性封装之该周边之至少部分延伸且定位于该等透明导电层之该等悬垂区段之间。本发明亦揭示电活性窗及制造其等之方法。
Abstract in simplified Chinese:一种以氮化钛为主之光学涂层,经由提供一损坏延迟基底层(16)介于氮化层(18)与基板(12)间,可提升该涂层之结构稳定性。此处该光学涂层系提供日光控制,氮化钛层主要被选用以达成预定光学特性,损坏延迟层之厚度主要被选择用以达成预定机械特性。灰金属层可减少氮化钛层裂缝的可能。此种氮化钛层之裂缝以及形成螺旋轨迹之倾向可藉下述方式进一步降低,经由将基板暴露于等离子前置辉光(88)及/或经由使用滑动剂(14)于该涂层欲形成之基板该侧上可进一步降低裂缝与形成螺旋轨迹之倾向。
Abstract in simplified Chinese:用于具有一或多个悬置聚合物薄膜之绝热玻璃组件或IGU之热处理方法包括首先在第一升高温度下使密封剂固化指定持续时间,然后在更高之第二升高温度下使该悬置薄膜收缩指定持续时间,且然后使该等IGU冷却回环境温度。可在具有不同长度之区段之隧道炉中在期望温度下实施各个加热及冷却阶段,同时将该等IGU自一个区段运送至下一区段。
Abstract in simplified Chinese:本发明系关于一种用于决定对于一窗(52)之太阳光控制的太阳光控制构件(50;62;70;及90),其包括位于灰金属层(60;64;76;及86)与氮化钛层(56;68;78;及88)之间的光学厚实层(58;66;及80)。该光学厚实层具有足够厚度而可延迟或防止反射光的建设性及破坏性干涉。该光学厚实层可为黏着剂,但亦可为一或多个聚合基板。该灰金属层较佳为镍铬,但其他灰金属材料相较于先前技艺提供优良的结果。此外,在较佳具体例中,氮化钛层较灰金属层更靠近窗(例如,玻璃)。
Abstract in simplified Chinese:将来自切割台之薄片自动地安装至绝热玻璃组件之间隔件框架上之方法以识别指定薄片于该切割台上之位置及定向及使机器人薄片十取器设备移动至对应于针对该薄片所识别位置之位置开始。以机械抽吸开始将该指定薄片之边缘抬离该台,该机械抽吸使该薄片之角进入该十取器设备之主要真空抽吸附近。特定而言,该十取器设备可具有实质上平坦之台板,该台板具有一组耦合至真空源之信道。在借由真空抽吸完全十取该薄片后,将该薄片铺放于倾斜台之顶部表面上,该倾斜台可简单地为倒置之该台板。使该台(或台板)倾斜以使该薄片之角紧靠物理栅栏。在由此得知该薄片之该位置及定向后,使该薄片对应于框架定向并附着至该框架。