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Toughening of carbon fiber/pitch-based carbon matrix composites by microspace control

机译:通过微空间控制增韧碳纤维/沥青基碳基复合材料

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摘要

A relation between the pore structure and the fracture resistance is examined on carbon fiber/pitch-based carbon matrix composites since pores are considered an important microspace component affecting the fracture behavior in the composites. A part of the pores may lie on a fiber surface so that the bonding force at the fiber/matrix interface is varied depending on the size and the spatial distributions of the pores. The change in the bonding force distribution brings a large-scale fiber pullout process into the composites. Therefore, the fracture resistance can be improved by controlling the microspace of the composites.
机译:在碳纤维/沥青基碳基复合材料上研究了孔结构与抗断裂性之间的关系,因为孔被认为是影响复合材料断裂行为的重要微空间成分。孔的一部分可以位于纤维表面上,使得纤维/基质界面处的结合力根据孔的大小和空间分布而变化。粘合力分布的变化将大规模的纤维拉拔过程引入了复合材料。因此,可以通过控制复合材料的微空间来提高抗断裂性。

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