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    • 9. 发明申请
    • Vacuum insulating glass unit including infrared meltable glass frit, and/or method of making the same
    • 包括红外线熔融玻璃料的真空中空玻璃单元和/或制造它的方法
    • US20110308279A1
    • 2011-12-22
    • US13137660
    • 2011-09-01
    • Yei-Ping (Mimi) H. Wang
    • Yei-Ping (Mimi) H. Wang
    • C03B23/203C03B29/00
    • C03C8/02C03C8/24C03C17/04C03C27/06E06B3/66304E06B3/66333E06B3/66357E06B3/677E06B2003/66338
    • Certain example embodiments of this invention relate to vacuum insulating glass (VIG) units including infrared meltable glass frits, and/or methods of making the same. More particularly, certain example embodiments relate to increasing the amount of ferrous oxide in glass frits (e.g., lead-free glass frits) used to form edge seals such that the glass frits absorb an increased amount of IR energy. The techniques of certain example embodiments make it possible to expose some or all of the VIG intermediate assembly to infrared source(s), since the glass frit will heat up faster than the substrates thereby reducing the likelihood of the first and/or second substrate melting and losing heat treatment strength. In certain example embodiments, the fries glass redox (FeO/Fe2O3) preferably is at least about 0.02 higher than either (or the higher) of the substrates' glass redox (FeO/Fe2O3), more preferably at least about 0.04 higher, and most preferably at least about 0.06 higher.
    • 本发明的某些示例性实施例涉及包括红外线可熔融玻璃料的真空绝热玻璃(VIG)单元和/或制造该玻璃料的方法。 更具体地,某些示例实施方案涉及增加用于形成边缘密封的玻璃料(例如,无铅玻璃料)中的氧化亚铁的量,使得玻璃料吸收增加的IR能量。 某些示例性实施例的技术使得可以将部分或全部VIG中间组件暴露于红外源,因为玻璃料将比衬底更快地加热,从而降低了第一和/或第二衬底熔化的可能性 并损失热处理强度。 在某些示例性实施方案中,薯条玻璃氧化还原(FeO / Fe 2 O 3)优选比衬底的玻璃氧化还原(FeO / Fe 2 O 3)中的(或更高)高至少约0.02,更优选至少约0.04高, 优选至少约0.06。
    • 10. 发明申请
    • Vacuum IG window unit with metal member in hermetic edge seal
    • 真空IG窗单元与金属构件密封边缘密封
    • US20080166570A1
    • 2008-07-10
    • US11651619
    • 2007-01-10
    • David J. Cooper
    • David J. Cooper
    • B32B17/06
    • E06B3/66333E06B3/6612E06B3/6621E06B2003/66338Y02A30/25Y02B80/24
    • A vacuum insulating glass (IG) unit and/or a method of making the same is/are provided. In certain example embodiments, the edge seal includes at least one metal member located between the opposing substrates (e.g., glass substrates). The at least one metal member may be bonded to the glass substrate(s) via a bonding material such as solder glass, frit and/or the like. The provision of the at least one metal member in the edge seal, between and/or exterior the glass substrates, is advantageous in that this provides for a more flexible edge seal permitting more give and take during window flexing in different environmental conditions. The additional flexibility of the edge seal may reduce the amount of optical distortion caused by flexing of the window, and/or the likelihood of window breakage in certain environmental conditions.
    • 提供真空中空玻璃(IG)单元和/或其制造方法。 在某些示例性实施例中,边缘密封件包括位于相对的基板(例如,玻璃基板)之间的至少一个金属部件。 所述至少一个金属构件可以通过诸如焊料玻璃,玻璃料和/或类似物的接合材料结合到玻璃基板上。 在边缘密封中,在玻璃基板之间和/或外部之间设置至少一个金属构件是有利的,因为这提供了更柔性的边缘密封,允许在不同环境条件下的窗户弯曲期间更多地给予和取出。 边缘密封件的附加灵活性可以减少由窗的弯曲引起的光学失真的量,和/或在某些环境条件下的窗口断裂的可能性。