VACUUM INSULATED GLASS (VIG) WINDOW UNIT INCLUDING HYBRID GETTER AND METHOD OF MAKING SAME
    3.
    发明申请
    VACUUM INSULATED GLASS (VIG) WINDOW UNIT INCLUDING HYBRID GETTER AND METHOD OF MAKING SAME 有权
    真空绝缘玻璃(VIG)窗户单元包括混合物及其制造方法

    公开(公告)号:US20140037870A1

    公开(公告)日:2014-02-06

    申请号:US13562423

    申请日:2012-07-31

    摘要: This relates to vacuum insulated glass (VIG) window units and methods for making VIG window units. Hybrid getter(s) are utilized. In certain example embodiments, a hybrid getter for use in a VIG window unit and/or a method making same includes both evaporable getter (EG) material and non-evaporable getter (NEG) material. In certain example embodiments, the NEG material may be covered (directly or indirectly) with EG material in the hybrid getter at least prior to getter activating/flashing.

    摘要翻译: 这涉及真空绝缘玻璃(VIG)窗户单元和用于制造VIG窗单元的方法。 使用混合吸气剂。 在某些示例性实施例中,用于VIG窗单元的混合吸气剂和/或制造其的方法包括可蒸发吸气剂(EG)材料和非蒸发吸气剂(NEG)材料。 在某些示例性实施例中,至少在吸气剂激活/闪烁之前,NEG材料可以在混合吸气剂中用EG材料(直接或间接)覆盖。

    METHOD OF MAKING VACUUM INSULATED GLASS (VIG) WINDOW UNIT INCLUDING ACTIVATING GETTER
    4.
    发明申请
    METHOD OF MAKING VACUUM INSULATED GLASS (VIG) WINDOW UNIT INCLUDING ACTIVATING GETTER 有权
    制造真空绝缘玻璃(VIG)窗户单元的方法,包括活化剂

    公开(公告)号:US20140034218A1

    公开(公告)日:2014-02-06

    申请号:US13562408

    申请日:2012-07-31

    IPC分类号: B32B37/14 B32B37/06

    摘要: Methods of making vacuum insulated glass (VIG) window units are provided, including activating getters in a process of making VIG window units. In certain example embodiments, at least one getter is activated during and/or at the end of a pump-out/evacuation process in which the cavity between the substrates is evacuated. In certain example embodiments, the getter(s) may be activated (e.g., by at least a laser beam that is directed through a pump-out tube) during and/or at the end of the evacuation process in which the cavity between the substrates is evacuated to a low pressure that is below atmospheric pressure.

    摘要翻译: 提供真空绝缘玻璃(VIG)窗单元的方法,包括在制造VIG窗单元的过程中激活吸气剂。 在某些示例性实施例中,至少一个吸气剂在抽出/排空过程期间和/或结束时被激活,在该过程中,衬底之间的空腔被排空。 在某些示例性实施例中,吸气剂可以在排空过程中和/或结束时被激活(例如,通过至少一个被引导通过抽出管的激光束),其中衬底 被抽空到低于大气压的低压。

    Ion beam process for deposition of highly abrasion-resistant coatings
    5.
    再颁专利
    Ion beam process for deposition of highly abrasion-resistant coatings 失效
    用于沉积高耐磨涂层的离子束工艺

    公开(公告)号:USRE37294E1

    公开(公告)日:2001-07-24

    申请号:US09048016

    申请日:1998-03-25

    IPC分类号: B05D314

    摘要: An ion beam deposition method is provided for manufacturing a coated substrate with improved abrasion resistance, and improved lifetime. According to the method, the substrate is first chemically cleaned to remove contaminants. In the second step, the substrate is inserted into a vacuum chamber, and the air in said chamber is evacuated. In the third step, the substrate surface is bombarded with energetic ions to assist in the removal of residual hydrocarbons and surface oxides, and to activate the surface. Alter After the substrate surface has been sputter-etched, a protective, abrasion-resistant coating is deposited by ion beam deposition. The ion beam-deposited coating may contain one or more layers. Once the chosen thickness of the coating has been achieved, the deposition process on the substrates is terminated, the vacuum chamber pressure is increased to atmospheric pressure, and the coated substrate products having improved abrasion-resistance are removed from the vacuum chamber. The coated products of this invention have utility as plastic sunglass lenses, ophthalmic lenses, bar codes scanner windows, and industrial wear parts that must be protected from scratches and abrasion.

    摘要翻译: 提供了一种离子束沉积方法,用于制造具有改善的耐磨性和改善寿命的涂覆基材。 根据该方法,首先对基材进行化学清洗以除去污染物。 在第二步骤中,将基板插入真空室中,并将所述室中的空气抽真空。 在第三步骤中,用能量离子轰击衬底表面,以帮助去除残留的烃和表面氧化物,并激活表面。 更改 之后,已经对衬底表面进行了溅射蚀刻,通过离子束沉积沉积了保护性的耐磨涂层。 离子束沉积涂层可以包含一层或多层。 一旦实现了所选择的涂层厚度,就终止在基板上的沉积过程,真空室压力增加到大气压,并且从真空室中除去具有改善的耐磨性的涂覆的基材产品。 本发明的涂覆产品具有塑料太阳眼镜,眼镜,条形码扫描仪窗口以及必须防止划痕和磨损的工业耐磨件的用途。

    Highly abrasion-resistant, flexible coatings for soft substrates
    7.
    发明授权
    Highly abrasion-resistant, flexible coatings for soft substrates 失效
    高耐磨,柔性基材的柔性涂层

    公开(公告)号:US5618619A

    公开(公告)日:1997-04-08

    申请号:US205954

    申请日:1994-03-03

    摘要: An abrasion wear resistant coated substrate product is described comprising a substrate and an abrasion wear resistant coating material comprising carbon, hydrogen, silicon, and oxygen. The abrasion wear resistant coating material has the properties of Nanoindentation hardness in the range of about 2 to about 5 GPa and a strain to microcracking greater than about 1% and a transparency greater than 85% in the visible spectrum. The coated products of the present invention are suitable for use in optical applications such as ophthalmic lenses or laser bar code scanner windows. In the method for making the products, the substrate is first chemically cleaned to remove contaminants. In the second step, the substrate is inserted into a vacuum chamber, and the air in said chamber is evacuated. In the third step, the substrate surface is bombarded with energetic ions and/or reactive species to assist in the removal of residual hydrocarbons and surface oxides, and to activate the surface. After the substrate surface has been etched, a protective, abrasion-resistant coating is deposited by plasma or ion beam deposition. Once the chosen thickness of the coating has been achieved, the deposition process on the substrates is terminated, the vacuum chamber pressure is increased to atmospheric pressure, and the coated substrate products having improved abrasion-resistance are removed from the vacuum chamber.

    摘要翻译: 描述了一种耐磨损涂层基材产品,其包括基材和包含碳,氢,硅和氧的耐磨损涂层材料。 耐磨损涂层材料具有在约2至约5GPa的范围内的纳米压痕硬度和在可见光谱中大于约1%的微裂纹应变和透明度大于85%的性质。 本发明的涂覆产品适用于诸如眼科镜片或激光条码扫描仪窗口的光学应用中。 在制造产品的方法中,首先对基材进行化学清洗以除去污染物。 在第二步骤中,将基板插入真空室中,并将所述室中的空气抽真空。 在第三步骤中,用能量离子和/或反应物质轰击衬底表面,以帮助去除残留的烃和表面氧化物,并激活表面。 在蚀刻基材表面之后,通过等离子体或离子束沉积沉积保护性的耐磨涂层。 一旦实现了所选择的涂层厚度,就终止在基板上的沉积过程,真空室压力增加到大气压,并且从真空室中除去具有改善的耐磨性的涂覆的基材产品。

    Vacuum insulated glass (VIG) window unit including hybrid getter and making same
    8.
    发明授权
    Vacuum insulated glass (VIG) window unit including hybrid getter and making same 有权
    真空绝缘玻璃(VIG)窗单元包括混合吸气剂并制成

    公开(公告)号:US09416581B2

    公开(公告)日:2016-08-16

    申请号:US13562423

    申请日:2012-07-31

    IPC分类号: E06B3/66 E06B3/677

    摘要: This relates to vacuum insulated glass (VIG) window units and methods for making VIG window units. Hybrid getter(s) are utilized. In certain example embodiments, a hybrid getter for use in a VIG window unit and/or a method making same includes both evaporable getter (EG) material and non-evaporable getter (NEG) material. In certain example embodiments, the NEG material may be covered (directly or indirectly) with EG material in the hybrid getter at least prior to getter activating/flashing.

    摘要翻译: 这涉及真空绝缘玻璃(VIG)窗户单元和用于制造VIG窗单元的方法。 使用混合吸气剂。 在某些示例性实施例中,用于VIG窗单元的混合吸气剂和/或制造其的方法包括可蒸发吸气剂(EG)材料和非蒸发吸气剂(NEG)材料。 在某些示例性实施例中,至少在吸气剂激活/闪烁之前,NEG材料可以在混合吸气剂中用EG材料(直接或间接)覆盖。

    Method of making vacuum insulated glass (VIG) window unit including activating getter
    9.
    发明授权
    Method of making vacuum insulated glass (VIG) window unit including activating getter 有权
    制造真空绝缘玻璃(VIG)窗单元的方法包括活化吸气剂

    公开(公告)号:US09290984B2

    公开(公告)日:2016-03-22

    申请号:US13562408

    申请日:2012-07-31

    IPC分类号: B32B37/14 E06B3/66 E06B3/677

    摘要: Methods of making vacuum insulated glass (VIG) window units are provided, including activating getters in a process of making VIG window units. In certain example embodiments, at least one getter is activated during and/or at the end of a pump-out/evacuation process in which the cavity between the substrates is evacuated. In certain example embodiments, the getter(s) may be activated (e.g., by at least a laser beam that is directed through a pump-out tube) during and/or at the end of the evacuation process in which the cavity between the substrates is evacuated to a low pressure that is below atmospheric pressure.

    摘要翻译: 提供真空绝缘玻璃(VIG)窗单元的方法,包括在制造VIG窗单元的过程中激活吸气剂。 在某些示例性实施例中,至少一个吸气剂在抽出/排空过程期间和/或结束时被激活,在该过程中,衬底之间的空腔被排空。 在某些示例性实施例中,吸气剂可以在排空过程中和/或结束时被激活(例如,通过至少一个被引导通过抽出管的激光束),其中衬底 被抽空到低于大气压的低压。