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Mechanical properties and microstructures of C_f/SiC-ZrC composites using T700SC carbon fibers as reinforcements

机译:T700SC碳纤维增强C_f / SiC-ZrC复合材料的力学性能和微观结构

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摘要

Cf/SiC-ZrC composites were fabricated through mold-pressing and polymer infiltration and pyrolysis (PIP) process using T700SC carbon fibers as reinforcements. The effects of interphases on the mechanical properties and microstructures of composites were studied. Composite showed brittle fracture behavior and low bending stress of 81 ± 24 MPa when no interphase was deposited on the fiber surface. With the deposition of a PyC/SiC interphase, composite showed typical non-brittle fracture behavior and the bending stress increased to 401 ± 64 MPa and a large amount of pulled-out fibers could be observed on the fracture surface. Meanwhile, it could also be concluded from the microstructures of the composites that the existed interphases had a great hindering effect on the infiltration of ZrC into the intra-bundle zones in the slurry infiltration process. The TEM analysis results showed that the carbon fibers were almost not eroded and the brittle fracture behavior may be mainly ascribed to the strong bonding between fibers and matrix.
机译:Cf / SiC-ZrC复合材料是通过模压,聚合物渗透和热解(PIP)工艺,使用T700SC碳纤维作为增强材料制成的。研究了相间对复合材料力学性能和微观结构的影响。当在纤维表面上没有界面沉积时,复合材料表现出脆性断裂行为和低弯曲应力,为81±24 MPa。随着PyC / SiC界面相的沉积,复合材料表现出典型的非脆性断裂行为,弯曲应力增加至401±64 MPa,并且在断裂表面上可以观察到大量拉出的纤维。同时,从复合材料的微观结构还可以得出结论,在浆液渗透过程中,存在的中间相对ZrC向束内区域的渗透具有很大的阻碍作用。 TEM分析结果表明,碳纤维几乎没有腐蚀,脆性断裂行为可能主要归因于纤维与基体之间的牢固结合。

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