NANO ALUMINA FABRIC PROTECTION PLY FOR DE-ICERS
    3.
    发明公开
    NANO ALUMINA FABRIC PROTECTION PLY FOR DE-ICERS 审中-公开
    纳米氧化铝织物保护膜适用于DE-ICERS

    公开(公告)号:EP3297394A3

    公开(公告)日:2018-03-28

    申请号:EP17192201.6

    申请日:2017-09-20

    IPC分类号: H05B3/14 B64D15/02 H05B3/34

    摘要: A nano alumina fabric protects heaters used for de-icing aircraft or other vehicles. This allows heaters to withstand mechanical foreign object damage (FOD), is environmentally safe, and is a cost-efficient alternative to other protection fabrics. A heating assembly (10A) includes a nano alumica fabric (20), a first adhesive (22), a heating element (24), wherein the nano alumina fabric (20) is attached to the heating element (24) by the first adhesive (22), a second adhesive (26), and a glass pre-preg fabric (28), wherein the glass pre-preg fabric (28) is attached to the heating element (24) by the second adhesive (26) on a side of the heating element (24) opposite the nano alumina fabric (20).

    摘要翻译: 纳米氧化铝织物可以保护用于除冰飞机或其他车辆的加热器。 这使加热器能够承受机械外物损坏(FOD),是环保的,并且是其他防护织物的经济高效替代品。 一种加热组件(10A),包括纳米氧化铝织物(20),第一粘合剂(22),加热元件(24),其中纳米氧化铝织物(20)通过第一粘合剂附着到加热元件 其特征在于,所述玻璃预浸织物(28)通过所述第二粘合剂(26)连接到所述加热元件(24)上,所述第二粘合剂(26)和所述玻璃预浸织物(28) 加热元件(24)的与纳米氧化铝织物(20)相对的一侧。

    THERMALLY CONDUCTIVE, ELECTRICALLY INSULATING PROTECTION LAYER FOR DE-ICING HEATERS
    4.
    发明公开
    THERMALLY CONDUCTIVE, ELECTRICALLY INSULATING PROTECTION LAYER FOR DE-ICING HEATERS 审中-公开
    用于除冰加热器的导热绝缘保护层

    公开(公告)号:EP3297395A2

    公开(公告)日:2018-03-21

    申请号:EP17192225.5

    申请日:2017-09-20

    IPC分类号: H05B3/14 B64D15/12 H05B3/34

    摘要: Disclosed is the use of a boron nitride nanotube (BNNT) fabric for protection of nano-carbon heaters used for de-icing aircrafts or other vehicles. This allows the heaters to be resistant to hail, bird, and other mechanical striking damages, and can be applied to parts of aircraft that require acoustic protection. The heating assembly comprises a boron nitride nanotube fabric (20); a first adhesive (22); a heating element (24), wherein the boron nitride nanotube fabric (20) is attached to the heating element (24) by the first adhesive (22); a second adhesive (26); a glass pre-preg fabric (28), wherein the glass pre-preg fabric (28) is attached to the heating element (24) by the second adhesive (26) on a side of the heating element (24) opposite the boron nitride nanotube fabric (20).

    摘要翻译: 公开了使用氮化硼纳米管(BNNT)织物来保护用于除冰飞机或其他车辆的纳米碳加热器。 这使得加热器可以抵抗冰雹,鸟类和其他机械撞击损伤,并且可以应用于需要声学保护的飞机部件。 该加热组件包括氮化硼纳米管织物(20); 第一粘合剂(22); 加热元件(24),其中所述氮化硼纳米管织物(20)通过所述第一粘合剂(22)附接到所述加热元件(24)。 第二粘合剂(26); (28),其中玻璃预浸织物(28)通过第二粘合剂(26)在加热元件(24)的与氮化硼相对的一侧上附着于加热元件(24) 纳米管织物(20)。

    RESISTIVE CARBON COMPOSITE MATERIAL
    6.
    发明公开
    RESISTIVE CARBON COMPOSITE MATERIAL 审中-公开
    电阻碳复合材料

    公开(公告)号:EP3179825A1

    公开(公告)日:2017-06-14

    申请号:EP15829105.4

    申请日:2015-08-06

    IPC分类号: H05B3/14 B82Y30/00

    摘要: The invention relates to electrical engineering and to a resistive composite carbon material in particular. It can be used for the preparation of highly conductive pastes and adhesives providing a reliable electrical contact, as well as in manufacture of industrial and household heaters. Resistive carbon composite material includes conductive phase based on high-electroconductive grades of carbon black combined with high-electroconductive colloidal grades of graphite and heat-resistant grades of polymeric binder. Along with this, carbon black which provides high conductivity has a specific surface area of at least 300÷600 m 2 /g, particle size of 10 to 50 nm; colloidal graphite preparations have graphite particles size of less than 4 microns. The technical result achieved by the invention claimed is increasing of the conductivity and decreasing of the resistance by optimizing the content of the binder and choice of effective conductive components.

    摘要翻译: 本发明涉及电气工程并且尤其涉及电阻复合碳材料。 它可以用于制备提供可靠电接触的高导电浆料和粘合剂,以及制造工业和家用加热器。 电阻碳复合材料包括基于高导电等级的炭黑和高导电胶体等级的石墨和耐热等级的聚合物粘合剂的导电相。 与此同时,提供高导电性的炭黑具有至少300÷600m 2 / g的比表面积,10至50nm的粒径; 胶体石墨制剂具有小于4微米的石墨颗粒尺寸。 所要求保护的技术结果是通过优化粘合剂的含量和选择有效的导电组分来提高导电性和降低电阻。