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Composite damage tolerance and through thickness conductivity by interleaving carbon fiber veil nanocomposites

机译:通过交织碳纤维面纱纳米复合材料的复合材料破坏耐受性和厚度传导性

摘要

A polymer matrix composite includes layers that alternate between a thin carbon fiber veil layer and a thicker base carbon fiber reinforcement layer. Each veil is coated with conductive carbon nanotubes (CNTs) prior to being added as a laminate layer. Epoxy resin fixes CNTs extended into adjacent reinforcement layers, which results in a composite improved in interlaminar strength, fracture toughness, and impact resistance. Thermal and electrical conductivity are also improved due to the conductive CNTs bridging the resin-insulating interlayer region. As the fuzzy fiber veil is not relied on to provide strength or stiffness to the composite structure, any damage to the veil will not affect composite integrity. Also, as the CNT growth is not on a replacement section of reinforcement layer, the composite avoids pitfalls of strength degradation, reinforcing phase continuity disruption, and residual stress introduction.
机译:聚合物基质复合材料包括在薄碳纤维面纱层和较厚的基础碳纤维增强层之间交替的层。在将每个面纱作为叠层添加之前,先用导电碳纳米管(CNT)覆盖。环氧树脂将延伸到相邻增强层的CNT固定,这导致复合材料的层间强度,断裂韧性和抗冲击性得到了改善。由于导电CNT桥接树脂绝缘的中间层区域,因此还提高了导热性和导电性。由于不依靠模糊纤维面纱为复合结构提供强度或刚度,因此对面纱的任何损坏都不会影响复合材料的完整性。而且,由于CNT的生长不在增强层的替换部分上,因此该复合材料避免了强度下降,增强相连续性破坏和残余应力引入的陷阱。

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