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    • 2. 发明申请
    • VACUUM INSULATED GLASS UNIT AND PUMPING SYSTEM AND METHODOLOGY FOR EVACUATING THE SAME
    • 真空绝缘玻璃单元和泵送系统以及用于将其除去的方法
    • WO2017075181A1
    • 2017-05-04
    • PCT/US2016/059062
    • 2016-10-27
    • CORNING INCORPORATED
    • ORSLEY, Timothy James
    • C03C27/06E06B3/66E06B3/677
    • C03C27/06E06B3/6612E06B3/66304E06B3/6715E06B3/6775
    • A vacuum insulated glass unit including a first glass pane, a second glass pane, a vacuum chamber plug, and a plug bonding layer. The first and second glass panes each include a vacuum chamber side opposite an outer side. The first glass pane is coupled to the second glass pane and a vacuum chamber is disposed therebetween. The first glass pane includes an evacuation hole having a blind wall, a shoulder surface, and a through wall. The vacuum chamber plug includes a seating portion having a seating surface. The plug bonding layer is positioned between the shoulder surface of the evacuation hole and the seating surface of the vacuum chamber plug when the vacuum chamber plug is positioned within the evacuation hole. Further, the plug bonding layer is compositionally configured to fuse upon absorption of laser radiation to bond the vacuum chamber plug and the evacuation hole.
    • 包括第一玻璃板,第二玻璃板,真空室插塞和插塞结合层的真空绝缘玻璃单元。 第一玻璃板和第二玻璃板各自包括与外侧相对的真空室侧。 第一玻璃板连接到第二玻璃板,并在其间设置真空室。 第一玻璃板包括具有盲壁,肩部表面和贯穿壁的疏散孔。 真空室塞包括具有座表面的座位部分。 当真空室塞位于抽空孔内时,塞粘结层位于抽空孔的肩部表面和真空室塞的安置表面之间。 此外,插塞接合层在组成上被配置成在吸收激光辐射时熔合以接合真空室插塞和抽空孔。
    • 7. 发明申请
    • VACUUM INSULATING GLASS (VIG) UNIT WITH METALLIC PERIPHERAL EDGE SEAL AND/OR METHODS OF MAKING THE SAME
    • 具有金属外围边缘的真空绝缘玻璃(VIG)单元和/或其制造方法
    • WO2015102993A1
    • 2015-07-09
    • PCT/US2014/071875
    • 2014-12-22
    • GUARDIAN INDUSTRIES CORP.
    • VEERASAMY, Vijayen, S.BRACAMONTE, Martin, D.
    • E06B3/66E06B3/663E06B3/673E06B3/677
    • E06B3/6612E06B3/66304E06B3/66357E06B3/67326E06B3/67334E06B3/6775Y02A30/25Y02B80/24
    • Certain example embodiments relate to vacuum insulating glass units having edge seals based on solder alloys that, when reactively reflowed, wet metallic coatings pre-coated on the glass substrates' perimeters, and/or associated methods. The alloys may be based on materials that form a seal at temperatures that will not de-temper glass and/or decompose a laminate, and/or remain hermetic and lack porous structures in their bulks. Example alloys may be based on inter-metallics of Sn and one or more additional materials selected from post-transition metals or metalloids; Zintl anions (e.g., In, Bi, etc.) from Group 13, 14, 15 or 16; and transition metals (e.g., Cu, Ag, Ni, etc.); and excludes Pb. Thin film coatings in certain example embodiments work with the solder material to form robust and durable hermetic interfaces. Because low temperatures are used, certain example embodiments can use compliant and visco-elastic spacer technology based on lamellar structures and/or the like.
    • 某些示例性实施例涉及具有基于焊料合金的边缘密封的真空中空玻璃单元,当焊接合金在反应回流时,预涂在玻璃基板周边上的湿金属涂层和/或相关联的方法。 合金可以基于在不会使玻璃退火和/或分解层压体的温度下形成密封的材料和/或保持密封并且在其体积中缺乏多孔结构。 示例性合金可以基于Sn和选自过渡后金属或准金属的一种或多种另外的材料的金属间化合物; 来自第13,14,15或16组的Zintl阴离子(例如In,Bi等) 和过渡金属(例如Cu,Ag,Ni等); 并排除Pb。 某些示例性实施例中的薄膜涂层与焊料材料一起工作以形成坚固耐用的密封界面。 由于使用低温,某些示例性实施方案可以使用基于层状结构和/或类似物的顺应性和粘弹性间隔物技术。