CNT-INFUSED FIBER AS A SELF SHIELDING WIRE FOR ENHANCED POWER TRANSMISSION LINE
    1.
    发明申请
    CNT-INFUSED FIBER AS A SELF SHIELDING WIRE FOR ENHANCED POWER TRANSMISSION LINE 有权
    CNT输送纤维作为增强型输电线自动屏蔽线

    公开(公告)号:US20120000691A1

    公开(公告)日:2012-01-05

    申请号:US13234100

    申请日:2011-09-15

    摘要: A wire includes a plurality of carbon nanotube infused fibers in which the infused carbon nanotubes are aligned parallel to the fiber axes. An electromagnetic shield for a wire includes a plurality of carbon nanotube infused fibers, in which the infused carbon nanotubes are aligned radially about the fiber axes. The plurality of carbon nanotube infused fibers are arranged circumferentially about the wire with the fiber axes parallel to the wire. A self-shielded wire includes 1) a wire that includes a plurality of carbon nanotube infused fibers in which the infused carbon nanotubes are aligned parallel to the fiber axes; and 2) an electromagnetic shield that includes a plurality of carbon nanotube infused fibers in which the carbon nanotubes are aligned radially about the fiber axes. The axes of the carbon nanotube infused fibers of the wire and the carbon nanotube infused fibers of the electromagnetic shield share are parallel.

    摘要翻译: 导线包括多个碳纳米管输注的纤维,其中输入的碳纳米管平行于纤维轴排列。 用于电线的电磁屏蔽包括多个碳纳米管输注的纤维,其中注入的碳纳米管围绕纤维轴径向排列。 多个碳纳米管输入的纤维围绕导线周向布置,其中纤维轴线平行于线材。 自屏蔽线包括:1)包括多个碳纳米管输注纤维的导线,其中输入的碳纳米管平行于纤维轴排列; 和2)包括多个碳纳米管输注纤维的电磁屏蔽,其中碳纳米管围绕纤维轴径向排列。 碳纳米管的轴线注入线的纤维和电磁屏蔽共享的碳纳米管注入的纤维是平行的。

    FILTRATION SYSTEMS AND METHODS RELATED THERETO USING CARBON NANOTUBE-INFUSED FIBER MATERIALS OF SPOOLABLE LENGTH AS A MOVING FILTRATION MEDIUM
    4.
    发明申请
    FILTRATION SYSTEMS AND METHODS RELATED THERETO USING CARBON NANOTUBE-INFUSED FIBER MATERIALS OF SPOOLABLE LENGTH AS A MOVING FILTRATION MEDIUM 审中-公开
    过滤系统和方法使用碳纳米管输入的纤维材料作为移动过滤介质

    公开(公告)号:US20110180478A1

    公开(公告)日:2011-07-28

    申请号:US13011826

    申请日:2011-01-21

    CPC分类号: B01D39/2065 B82Y30/00

    摘要: Filtration systems containing a filtration medium and methods related thereto are described herein. The filtration system includes a plurality of fibers of spoolable length, where the fibers are a carbon nanotube-infused fiber material. The filtration systems can be operated with reel-to-reel processing or in a continuous manner in order to sorb hydrophobic materials from a liquid medium. The filtration systems also include various means to remove the hydrophobic materials from the filtration medium, including press rollers and chemical extraction baths. Illustrative liquid media that can be treated with the filtration systems include, for example, hydrophobic materials admixed in an aqueous phase, bilayers (e.g., oil-water bilayers), oil in a subterranean formation, water sources containing trace organic pollutants or trace organic compounds, and fermentation broths.

    摘要翻译: 含有过滤介质的过滤系统及其相关方法在本文中描述。 过滤系统包括多个可卷绕长度的纤维,其中纤维是碳纳米管输注的纤维材料。 过滤系统可以通过卷到盘处理或以连续方式操作,以便从液体介质中吸收疏水材料。 过滤系统还包括从过滤介质中除去疏水材料的各种方法,包括压辊和化学提取浴。 可以用过滤系统处理的说明性液体介质包括例如在水相中混合的疏水材料,双层(例如油 - 水双层),地层中的油,含有微量有机污染物或微量有机化合物的水源 和发酵液。

    CNT-BASED SIGNATURE CONTROL MATERIAL
    6.
    发明申请
    CNT-BASED SIGNATURE CONTROL MATERIAL 有权
    基于CNT的签名控制材料

    公开(公告)号:US20100271253A1

    公开(公告)日:2010-10-28

    申请号:US12766817

    申请日:2010-04-23

    摘要: A radar absorbing composite includes a (CNT)-infused fiber material disposed in at least a portion of a matrix material. The composite absorbs radar in a frequency range from about 0.10 Megahertz to about 60 Gigahertz. The CNT-infused fiber material forms a first layer that reduces radar reflectance and a second layer that dissipates the energy of the radar. A method of manufacturing this composite includes disposing a CNT-infused fiber material in a portion of a matrix material with a controlled orientation of the CNT-infused fiber material within the matrix material, and curing the matrix material. The composite can be formed into a panel which is adaptable as a structural component of a transport vessel or missile for use in stealth applications.

    摘要翻译: 雷达吸收复合材料包括设置在基体材料的至少一部分中的(CNT) - 纤维材料。 该复合材料在大约0.10兆赫兹到约60千兆赫兹的频率范围内吸收雷达。 CNT输入的纤维材料形成了降低雷达反射率的第一层和消散雷达能量的第二层。 制造该复合体的方法包括将碳纳米管注入的纤维材料设置在基质材料的一部分中,并将CNT-注入的纤维材料的取向控制在基质材料内,并固化基体材料。 复合材料可以形成为适用于作为隐形应用的运输船或导弹的结构部件的面板。