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    • 42. 发明申请
    • APPARATUSES FOR VACUUM INSULATING GLASS (VIG) UNIT TIP-OFF, AND/OR ASSOCIATED METHODS
    • 真空绝缘玻璃(VIG)单元关闭和/或相关方法的设备
    • WO2013090667A1
    • 2013-06-20
    • PCT/US2012/069642
    • 2012-12-14
    • GUARDIAN INDUSTRIES CORP.
    • DEAR, Ryan, L.
    • E06B3/66E06B3/673C03B23/24
    • C03B23/006B23K26/206C03B23/0093C03B23/057C03C23/0025E06B3/6612E06B3/67334Y02A30/25Y02B80/24
    • Certain example embodiments of this invention relate to apparatuses for sealing the tips of pump-out tubes of vacuum insulating glass (VIG) units, and/or associated methods. In certain example embodiments, a laser source used in sealing the pump-out tube is thermally insulated from the VIG unit and emits a laser beam through one or more windows in an oven towards a mirror located therein. The mirror is located so as to redirect the laser beam onto the pump-out tube to thereby seal it. For instance, a substantially horizontal laser beam emitted from a laser source located outside the oven enters into the oven through one or more windows and is reflected by a mirror towards the pump-out tube to be sealed. The repositioning of the laser source advantageously can change its effective focal length and/or the location of the laser beam, e.g., because of the fixed location of the mirror.
    • 本发明的某些示例性实施例涉及用于密封真空中空玻璃(VIG)单元的抽出管的顶端的装置和/或相关联的方法。 在某些示例性实施例中,用于密封抽出管的激光源与VIG单元热绝缘,并且通过烘箱中的一个或多个窗口朝向位于其中的镜子发射激光束。 镜子位于将激光束重定向到泵出管上,从而将其密封。 例如,从位于炉外的激光源发出的基本水平的激光束通过一个或多个窗口进入烘箱,并被反射镜朝向要被密封的抽出管反射。 激光源的重新定位有利地可以改变其有效焦距和/或激光束的位置,例如由于反射镜的固定位置。
    • 44. 发明申请
    • METHOD OF STRENGTHENING GLASS BY PLASMA INDUCED ION EXCHANGES, AND ARTICLES MADE ACCORDING TO THE SAME
    • 通过等离子体诱导离子交换加强玻璃的方法,以及根据其生成的制品
    • WO2013032734A1
    • 2013-03-07
    • PCT/US2012/051268
    • 2012-08-17
    • GUARDIAN INDUSTRIES CORP.VEERASAMY, VijayenHU, XuequnCERNY, Glenn, A.
    • VEERASAMY, VijayenHU, XuequnCERNY, Glenn, A.
    • C03C21/00C03C23/00
    • C03C21/007C03C23/006
    • Certain example embodiments relate to an improved method of strengthening glass substrates (e.g., soda lime silica glass substrates). In certain examples, a glass substrate may be chemically strengthened by creating an electric field within the glass. In certain cases, the chemical tempering may be performed by surrounding the substrate by a plasma including certain ions, such as Li+, K+, Mg2+, and/or the like. In some cases, these ions may be forced into the glass substrate due to the half-cycles of the electric field generated by the electrodes that formed the plasma. This may advantageously chemically strengthen a glass substrate on a substantially reduced time scale. In other example embodiments, an electric field may be set in a float bath such that sodium ions are driven from the molten glass ribbon into the tin bath, which may advantageously result in a stronger glass substrate with reduced sodium content.
    • 某些示例性实施例涉及加强玻璃基板(例如,钠钙石英玻璃基板)的改进方法。 在某些实例中,通过在玻璃内产生电场,玻璃基底可被化学强化。 在某些情况下,化学回火可以通过包括诸如Li +,K +,Mg 2+等的某些离子的等离子体包围衬底来进行。 在一些情况下,由于形成等离子体的电极产生的电场的半周期,这些离子可能被迫进入玻璃基板。 这可以有利地以显着降低的时间尺度化学强化玻璃基板。 在其他示例性实施例中,电场可以设置在浮法槽中,使得钠离子从熔融玻璃带驱动到锡槽中,这有利地导致具有降低的钠含量的更强的玻璃基板。