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    • 4. 发明申请
    • COMPOSITE MATERIALS WITH ELECTRICALLY CONDUCTIVE AND DELAMINATION RESISTANT PROPERTIES
    • 具有导电和抗分层性能的复合材料
    • WO2015130368A3
    • 2015-09-03
    • PCT/US2014/068693
    • 2014-12-05
    • CYTEC INDUSTRIES INC.
    • RESTUCCIA, Carmelo, LucaLENZI, FiorenzoFRULLONI, Emiliano
    • C08J5/24C08J5/10
    • A curable composite material that may be used in applications where both high mechanical performance and high electrical conductivity are required. The curable composite material includes two or more layers of reinforcement fibers that have been infused or impregnated with a curable matrix resin and an interlaminar region containing carbon nanomaterials, e.g. carbon nanotubes, and insoluble polymeric toughening particles. The carbon nanomaterials are significantly smaller in size as compared to the polymeric toughening particles. The polymeric toughening particles are substantially insoluble in the matrix resin upon curing of the composite material, and remain as discreet particles at the interlaminar region after curing. Methods for fabricating curable composite materials and cured composite structures are also disclosed.
    • 可用于需要高机械性能和高导电性的应用中的可固化复合材料。 可固化复合材料包括两层或更多层增强纤维,其已经浸渍或浸渍有可固化基质树脂和含有碳纳米材料的层间区域,例如, 碳纳米管和不溶性聚合物增韧颗粒。 与聚合物增韧颗粒相比,碳纳米材料的尺寸显着更小。 聚合物增韧颗粒在复合材料固化时基本上不溶于基质树脂,并且在固化之后作为离散颗粒留在层间区域。 还公开了用于制造可固化复合材料和固化复合结构的方法。