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研究了"离位"增韧的双马来酰亚胺复合材料层压板的Ⅰ型和Ⅱ型层间断裂韧性、层间微结构及其形貌变化、冲击分层损伤和冲击后压缩强度,以及典型面内、面外的基本力学性能.结果表明,通过热反应失稳分相、相反转和颗粒粗化等一系列过程,"离位"增韧在复合材料的层间形成了热塑性树脂/热固性树脂双连续的3-3相结构,这种结构大大提高了复合材料层压板的层间韧性、冲击损伤阻抗和损伤容限等性能.

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