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Microstructure and mechanical properties of three-dimensional carbon/silicon carbide composites fabricated by chemical vapor infiltration

机译:化学气相渗透法制备三维碳/碳化硅复合材料的组织和力学性能

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摘要

Three-dimensional carbon/silicon carbide composites were fabricated by chemical vapor infiltration, and the microstructure and mechanical properties were investigated. For the composites (C/SiC) with no pyrolytic carbon interfacial layer, the mechanical properties (flexural strength, flexural elastic modulus, shear strength and fracture toughness) are increased with density of the composites. High density (rho =2.1 g cm(-3)) C/SiC composites exhibit high fracture toughness (16.5 MPa m(1/2)) but brittle fracture behavior because of strong bonding between the fiber/matrix. Low density composites show non-catastrophic failure mode with bundle pull-out. The composites (C/PyC/SiC) with pyrolytic carbon interfacial layer exhibit good mechanical properties and a typical Failure behavior involving fiber pull-out and brittle fracture of sub-bundle. Microstructural observations and theoretical analysis reveal that the tortuosity and bottleneck effect of the pores and large molar mass of reactant agent (methyltrichlorosilane) are three key issues to hinder the densification of composites. Cracks formed in the SiC matrix by thermal stress have two influences on the mechanical properties of the composites: to decrease mechanical properties and have some contribution on toughness and failure behavior by deflecting cracks. (C) 1998 Elsevier Science Ltd. All rights reserved. [References: 16]
机译:通过化学气相渗透法制备了三维碳/碳化硅复合材料,并研究了其微观结构和力学性能。对于不具有热解碳界面层的复合材料(C / SiC),机械性能(抗弯强度,挠曲弹性模量,剪切强度和断裂韧性)随复合材料的密度而增加。高密度(rho = 2.1 g cm(-3))C / SiC复合材料具有较高的断裂韧性(16.5 MPa m(1/2)),但由于纤维/基体之间的牢固结合而具有脆性断裂行为。低密度复合材料表现出非灾难性的破坏模式,并发生束拉。具有热解碳界面层的复合材料(C / PyC / SiC)表现出良好的机械性能和典型的破坏行为,包括纤维拉出和子束的脆性断裂。微观结构观察和理论分析表明,孔的曲折和瓶颈效应以及反应物(甲基三氯硅烷)的大摩尔质量是阻碍复合材料致密化的三个关键问题。通过热应力在SiC基体中形成的裂纹对复合材料的机械性能有两个影响:降低机械性能,并通过使裂纹偏转而对韧性和破坏行为有所贡献。 (C)1998 Elsevier ScienceLtd。保留所有权利。 [参考:16]

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