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    • 2. 发明申请
    • SURFACE NANOREPLICATION USING POLYMER NANOMASKS
    • 使用聚合物纳米胶的表面纳米粒子
    • WO2014116544A1
    • 2014-07-31
    • PCT/US2014/012225
    • 2014-01-21
    • CORNING INCORPORATEDLYON, Jennifer LynnWANG, JianguoYONGSUNTHON, RuchirejZHANG, Ying
    • LYON, Jennifer LynnWANG, JianguoYONGSUNTHON, RuchirejZHANG, Ying
    • G03F7/00
    • B05D5/00B82Y10/00B82Y40/00G03F7/0002
    • Methods for replicating a nanopillared surface include applying a nanopillar-forming material to a surface of a replica substrate to form a precursor layer on the replica-substrate surface. A template surface of a nanomask may be contacted to the precursor layer. The nanomask may include a self-assembled polymer layer on a nanomask-substrate surface, the template surface being defined in the self-assembled polymer layer. The self-assembled polymer layer may have nano-sized pores with openings at the template surface. The precursor layer may be cured while the template surface remains in contact with the precursor layer. The nanomask is removed to expose a nanopillared surface having a plurality of nanopillars on the replica-substrate surface. The nanopillars on the replica-substrate surface may correspond to the pores in the template surface. Nanopillared surfaces may be replicated on one side of the replica substrate or on two opposing sides of the replica substrate.
    • 用于复制纳米颗粒表面的方法包括将纳米柱形成材料施加到复制基底的表面以在复制基底表面上形成前体层。 纳米掩模的模板表面可以与前体层接触。 纳米掩模可以在纳米掩模 - 衬底表面上包括自组装聚合物层,模板表面限定在自组装聚合物层中。 自组装聚合物层可以具有在模板表面处具有开口的纳米尺寸的孔。 当模板表面保持与前体层接触时,前体层可以被固化。 去除纳米掩模以暴露在复制衬底表面上具有多个纳米柱的纳米圆柱形表面。 复制衬底表面上的纳米柱可以对应于模板表面中的孔。 可以在复制衬底的一侧或复制衬底的两个相对的侧面上复制纳米鳞片表面。
    • 6. 发明申请
    • HIGH TEMPERATURE STABLE, LOW OUTGASSING COMPOSITION, PROTECTIVE TAPE COMPRISING SUCH COMPOSITION AND USE OF SUCH TAPE WITH THIN GLASS
    • 高温稳定,低成品组合物,包含这种组合物的保护胶带和这种带有薄玻璃的胶带的使用
    • WO2016141024A1
    • 2016-09-09
    • PCT/US2016/020381
    • 2016-03-02
    • CORNING INCORPORATED
    • LYON, Jennifer LynnSHUSTACK, Paul John
    • C09J107/00C09J115/00C09J121/00
    • C09J119/006C09J7/20C09J107/00C09J115/00C09J121/00
    • A composition includes a curable material component with a backbone of a completely or substantially completely hydrogenated hydrocarbon based rubber material which is completely or substantially free of carbon-carbon double and triple bonds, a photoinitiator component, and an inert filler. The composition, when cured, is stable at 250C and is low outgassing. A method milling a photoinitiator component and an inert filler with a curable material component to form a precurable mixture and at least partially curing the precurable mixture by ultraviolet light. An apparatus includes a spool, a pressurizer, and an ultraviolet lamp. The spool is configured for releasing a polymer film. The pressurizer is configured to release an adhesive onto the polymer film to form a pre-photo curable adhesive-backed polymer film. The ultraviolet lamp is configured to at least partially cure the pre-photo curable adhesive-backed polymer film.
    • 组合物包括具有完全或基本上完全氢化的烃基橡胶材料的主链的可固化材料组分,其完全或基本上不含碳 - 碳双键和三键,光引发剂组分和惰性填料。 组合物固化时,在25℃下稳定,脱气率低。 一种用可固化材料组分研磨光引发剂组分和惰性填料的方法,以形成可预混的混合物,并通过紫外光至少部分固化可预混合的混合物。 一种装置包括线轴,加压器和紫外线灯。 卷轴被配置为释放聚合物膜。 加压器构造成将粘合剂释放到聚合物膜上以形成预光固化的粘合剂反向聚合物膜。 紫外灯构造成至少部分地固化预光固化的粘合剂反向聚合物膜。