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    • 24. 发明申请
    • METHOD AND APPARATUS FOR SPACERS FOR INTER-PANE CAVITY OF VACUUM INSULATING GLASS UNITS AND VACUUM INSULATING GLASS UNITS INCORPORATING SAME
    • 真空绝缘玻璃单元和真空绝缘玻璃单元的间隔孔的方法和装置
    • US20150233174A1
    • 2015-08-20
    • US14622858
    • 2015-02-14
    • EVERSEALED WINDOWS, INC.
    • DAVID H. STARK
    • E06B3/677
    • E06B3/66304E06B3/6612Y02A30/25Y02B80/24Y10T29/49826Y10T428/231
    • A vacuum insulating glass unit comprises a first lite of transparent material having an inner surface and a periphery and a second lite of transparent material having an inner surface and a periphery. The second lite is spaced apart from the first lite to define a cavity between the opposing inner surfaces. An edge seal assembly hermetically joins the peripheries continuously around the cavity. A plurality of stand-offs are disposed within the cavity, each stand-off having a filament body having a rectangular cross-section including a relatively flat top surface, a relatively flat bottom surface, and relatively flat sides. The filament body has a curved shape, when viewed perpendicular to the inner surfaces. At least one adherence point on one of the top surface or bottom surface of the filament body is affixed to at least one of the inner surfaces of the adjacent first or second lites.
    • 真空绝热玻璃单元包括具有内表面和周边的透明材料的第一透明体和具有内表面和周边的第二透明材料。 第二台阶与第一个细长间隔开,以在相对的内表面之间限定一个空腔。 边缘密封组件围绕腔体连续地外围连接外围。 多个支座设置在空腔内,每个支座具有长丝主体,该灯丝主体具有矩形横截面,该矩形截面包括相对平坦的顶表面,相对平坦的底表面和相对平坦的侧面。 当垂直于内表面观察时,灯丝体具有弯曲的形状。 在灯丝主体的顶表面或底表面中的一个上的至少一个附着点固定到相邻的第一或第二石墨的至少一个内表面。
    • 25. 发明申请
    • MULTIPLE-PANE INSULATING GLAZING UNIT ASSEMBLY, GAS FILLING, AND PRESSING MACHINE
    • 多层绝缘玻璃装置组装,气体填充和压力机
    • US20150184447A1
    • 2015-07-02
    • US14145707
    • 2013-12-31
    • Cardinal IG Company
    • Curtis Lee QueckMichael John MilewskiRobert Casper Buchanan
    • E06B3/673
    • E06B3/6775E06B3/6608E06B3/66304E06B3/66309E06B3/673E06B3/67326Y10T29/49829Y10T29/534
    • A system for producing multiple-pane insulating glazing units can include a conveyor and a plurality of laterally spaced-apart processing stations that are movable transversely relative to the longitudinally extending conveyor line. Each processing station may assemble glazing panes and a glazing spacer into a partially fabricated glazing unit, deliver insulative gas to a between-pane space between the glazing panes, and press the partially fabricated glazing unit together to seal the insulative gas in the between-pane space and form the multiple-pane insulating glazing unit. In some examples, each processing station moves to an alignment position with the conveyor to load glazing panes and a glazing spacer and then performs individual fabrication steps while offset from the conveyor. During this time, a different processing station can be aligned with the conveyor to unload a fabricated multiple-pane insulating glazing units and/or load unassembled glazing panes and a glazing spacer.
    • 一种用于生产多层玻璃隔热玻璃窗单元的系统可以包括一个输送机和多个相对于纵向延伸的输送线横向间隔开的处理站。 每个处理站可以将玻璃窗和玻璃间隔件装配到部分制造的玻璃窗单元中,将绝缘气体输送到玻璃窗之间的玻璃间间隙,并将部分制造的玻璃窗单元压在一起以密封玻璃板之间的绝缘气体 空间并形成多层隔热玻璃窗单元。 在一些示例中,每个处理站移动到与输送机对准的位置以加载玻璃窗和玻璃间隔件,然后在与输送机偏移的同时执行单独的制造步骤。 在此期间,不同的加工站可以与输送机对准以卸载制造的多层玻璃绝缘玻璃窗单元和/或装载未组装的玻璃窗和玻璃间隔件。
    • 30. 发明授权
    • Vacuum-insulated glass windows with glass-bump spacers
    • 具有玻璃凸起垫片的真空隔热玻璃窗
    • US08955358B2
    • 2015-02-17
    • US14221851
    • 2014-03-21
    • Corning Incorporated
    • Richard Robert GrzybowskiDaniel Ralph HarveyStephan Lvovich LogunovDaniel Louis Gabriel RicoultAlexander Mikhailovich Streltsov
    • C03B23/24C03B23/00E06B3/663E06B3/66
    • E06B3/66304B23K26/03B23K26/032B23K26/034B23K26/53B23K26/57C03B23/0086C03B23/02C03B2215/414C03C23/0025E06B3/6612Y02A30/25Y02B80/24Y10T428/24182
    • Vacuum-insulated glass (VIG) windows (10) that employ glass-bump spacers (50) and two or more glass panes (20) are disclosed. The glass-bump spacers are formed in the surface (24) of one of the glass panes (20) and consist of the glass material from the body portion (23) of the glass pane. Thus, the glass-bump spacers are integrally formed in the glass pane, as opposed to being discrete spacer elements that need to be added and fixed to the glass pane. Methods of forming VIG windows are also disclosed. The methods include forming the glass-bump spacers by irradiating a glass pane with a focused beam (112F) from a laser (110). Heating effects in the glass cause the glass to locally expand, thereby forming a glass-bump spacer. The process is repeated at different locations in the glass pane to form an array of glass-bump spacers. A second glass pane is brought into contact with the glass-bump spacers, and the edges (28F, 28B) sealed. The resulting sealed interior region (40) is then evacuated to a vacuum pressure of less than one atmosphere.
    • 公开了采用玻璃凸块间隔件(50)和两个或更多个玻璃板(20)的真空绝热玻璃(VIG)窗(10)。 玻璃凸块间隔件形成在一个玻璃板(20)的表面(24)中并由来自玻璃板的主体部分(23)的玻璃材料组成。 因此,玻璃凸块间隔件一体地形成在玻璃板中,而不是需要添加并固定到玻璃板上的离散间隔元件。 还公开了形成VIG窗的方法。 所述方法包括通过用来自激光器(110)的聚焦光束(112F)照射玻璃板来形成玻璃凸块间隔物。 玻璃中的加热效应导致玻璃局部膨胀,从而形成玻璃凸块间隔物。 在玻璃板中的不同位置处重复该过程以形成玻璃凸起间隔物的阵列。 第二玻璃板与玻璃凸块间隔件接触,边缘(28F,28B)被密封。 然后将得到的密封内部区域(40)抽真空至小于一个大气压的真空压力。