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    • 56. 发明公开
    • STRENGTHENED GLASS, GLASS-CERAMIC AND CERAMIC ARTICLES AND METHODS OF MAKING THE SAME THROUGH PRESSURIZED ION EXCHANGE
    • 强化玻璃,玻璃 - 陶瓷和陶瓷制品及通过加压离子交换制造玻璃 - 陶瓷和陶瓷制品的方法
    • EP3224217A1
    • 2017-10-04
    • EP15805700.0
    • 2015-11-24
    • Corning Incorporated
    • MARTIN, Arthur WinstonMAURO, John ChristopherTRUESDALE, Carlton Maurice
    • C03C21/00
    • C03C21/002C03C21/001
    • A method of treating a substrate is provided that includes the steps: submersing a substrate having an outer region containing a plurality of divalent exchangeable ions in a bath that comprises a polar solvent and a plurality of divalent ion-exchanging ions, the substrate comprising a glass, glass-ceramic or ceramic; pressurizing the bath to a predetermined pressure substantially above ambient pressure; and heating the bath to a predetermined temperature above ambient temperature. The method also includes a step of treating the substrate for a predetermined ion-exchange duration such that a portion of the plurality of divalent exchangeable ions is exchanged with a portion of the divalent ion-exchanging ions. In addition, the step of treating the substrate results in a greater number of divalent ion-exchanging ions entering the substrate than divalent exchangeable ions exiting the substrate.
    • 提供了处理基材的方法,其包括以下步骤:将具有包含多个二价可交换离子的外部区域的基材浸入包含极性溶剂和多个二价离子交换离子的浴中,所述基材包含玻璃 ,玻璃陶瓷或陶瓷; 将浴加压到基本高于环境压力的预定压力; 并将浴加热至高于环境温度的预定温度。 所述方法还包括处理所述基底达预定离子交换持续时间的步骤,使得所述多个二价可交换离子的一部分与所述二价离子交换离子的一部分交换。 另外,处理基材的步骤导致比离开基材的二价可交换离子更多数量的进入基材的二价离子交换离子。
    • 58. 发明公开
    • HIGH STRENGTH ANTIMICROBIAL GLASS
    • HOCHFESTES ANTIMIKROBIELLES GLAS
    • EP3110768A1
    • 2017-01-04
    • EP15708069.8
    • 2015-02-18
    • Corning Incorporated
    • MAURO, John Christopher
    • C03C3/093C03C4/00C03C21/00
    • A method of making a glass having antimicrobial properties and high compressive stress. The method includes a first ion exchange step in which potassium cations are exchanged for sodium cations in the base glass to provide a surface layer under compressive stress, followed by a second ion exchange in which silver cations are exchanged for potassium and lithium ions in the glass to produce the antimicrobial glass. In some embodiments, the antimicrobial glass has a maximum compressive stress that is at least 80% of the maximum compressive stress obtained by the potassium-for-sodium exchange in the first bath. A base glass and an ion exchanged glass antimicrobial having antimicrobial properties are also provided.
    • 制造具有抗菌性和高压缩应力的玻璃的方法。 该方法包括第一离子交换步骤,其中将钾阳离子与基础玻璃中的钠阳离子交换以提供压缩应力下的表面层,随后进行第二离子交换,其中银阳离子与玻璃中的钾离子和锂离子交换 以生产抗微生物玻璃。 在一些实施方案中,抗微生物玻璃具有最大的压缩应力,其为通过第一浴中的钠钾交换获得的最大压应力的至少80%。 还提供了基础玻璃和具有抗微生物性质的离子交换玻璃抗微生物剂。