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公开(公告)号:US4410586A
公开(公告)日:1983-10-18
申请号:US364458
申请日:1982-04-01
IPC分类号: C08K9/00 , B29C59/14 , B29C70/10 , C04B16/04 , C08J3/20 , C08J5/06 , C08J7/00 , C08L23/00 , C08L33/00 , C08L33/02 , C08L51/00 , C08L51/02 , C08L67/00 , C08L77/00 , C08L101/00 , D06M10/02 , B32B7/00 , B44C1/22 , C03C15/00 , D03D3/00
CPC分类号: C08J5/06 , B29C59/14 , B29C70/10 , D06M10/025 , B29K2223/00 , B29K2277/00 , B29K2707/04 , B29K2709/08 , D06M2101/18 , D06M2200/20 , D06M2200/50 , Y10T428/2933 , Y10T442/608
摘要: A method of producing a composite material in which a reinforcing material (eg as fibres) is embedded in a matrix material is characterized in that the reinforcement material comprises a polymer material having a draw ratio of at least 12:1 which is plama treated, prior to incorporation in the matrix, preferably to produce pitting in its surface whereby improved adhesion is obtained between the reinforcement material and the matrix material by mechanical interlocking of the pitted surface of the reinforcement material and the complementary surface of the matrix material. Preferably, the surface pitting is effected by a plasma discharge treatment. Preferably the average pit size is from 0.1 to 4 microns.
摘要翻译: 其中将增强材料(例如纤维)嵌入基质材料中的复合材料的制造方法的特征在于,增强材料包括具有至少12:1的拉伸比的聚合物材料 优选地在基体中引入点蚀,从而通过加强材料的凹坑表面和基体材料的互补表面的机械互锁,在增强材料和基质材料之间获得改善的粘合性。 优选地,通过等离子体放电处理实现表面点蚀。 平均坑尺寸优选为0.1至4微米。