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Effect Of Pyrocarbon Content In C/c Preforms On Microstructure And Mechanical Properties Of The C/c-sic Composites

机译:C / c预成型坯中热碳含量对C / c-sic复合材料微观结构和力学性能的影响

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摘要

Carbon fiber reinforced silicon carbide matrix (C/C-SiC) composites were prepared by liquid silicon infiltration (LSI) process, using four kinds of quasi-three-dimensional C/C preforms with the same fiber volume fraction (32%) but different pyrocarbon content (from ~20% to ~50%, in volume) filled by chemical vapor infiltration (CVI). The microstructure and mechanical properties of C/C-SiC composites have been investigated. X-ray diffractmeter (XRD) analysis results show the composites are composed of three phases of β-SiC, C and Si. With the increase of the pyrocarbon content in the C/C preforms, the content of formed silicon carbide in the C/C-SiC composites decreases but the residual pyrocarbon increases. Mechanical tests were performed to assess the role of the matrix and phase composition in the C/C-SiC composites. The results demonstrate that the flexural strength and shear strength of the composites increase gradually as the increase of the content of residual pyrocarbon. The flexural and shear strength of the C/C-SiC composite produced of the C/C preform with pyrocarbon content of ~42 vol.% reached the highest value.
机译:碳纤维增强碳化硅基体(C / C-SiC)复合材料是通过液硅渗透(LSI)工艺制备的,使用了四种准三维C / C预成型坯,纤维体积分数相同(32%)但不同通过化学气相渗透(CVI)填充的热碳含量(从约20%到约50%)。研究了C / C-SiC复合材料的微观结构和力学性能。 X射线衍射仪(XRD)分析结果表明,复合材料由β-SiC,C和Si的三相组成。随着C / C预成型坯中火炭含量的增加,C / C-SiC复合材料中形成的碳化硅含量降低,但残留的火炭增加。进行了机械测试,以评估基质和相组成在C / C-SiC复合材料中的作用。结果表明,复合材料的抗弯强度和剪切强度随着残余焦炭含量的增加而逐渐增加。由碳碳含量为〜42%(体积)的C / C预成型坯生产的C / C-SiC复合材料的弯曲强度和剪切强度达到最大值。

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