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首页> 外文期刊>Bulletin of materials science >Factorial design, processing, characterization and microstructure analysis of PIP-based C/SiC composites
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Factorial design, processing, characterization and microstructure analysis of PIP-based C/SiC composites

机译:基于PIP的C / SIC复合材料的阶乘设计,处理,表征和微观结构分析

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Polymer impregnation and pyrolysis (PIP) process-based C/SiC composites are fabricated using the in-housesynthesized methyl-polycarbosilane (PCS). Two-level factorial design matrix is employed to carry out experiments to studythe effect of four factors on flexural strength of the composite.Total sixteen sets of composite samples are fabricated.Responsetable, normal probability plot, ANOVA and regression analysis are carried out to determine the statistical significant factors.Composite density ($ho$), fibre volume fraction ($V_{m f}$ ) and pyrolysis temperature ($T$) are found to be statistically significant, while softening point (SP) of the PCS and interaction of these four factors are found insignificant. Higher levels of thedensity and $V_{m f}$ have shown positive effect, while the pyrolysis temperature has negative effect on the flexural strength of the composites. Flexural strength was found to be in the range of 374–592 MPa depending on the process parameters. Themechanical behaviour of the composites at different process conditions was explained with the help of their microstructures.
机译:使用内合二氧化甲基 - 聚氨基硅烷(PC)制造聚合物浸渍和热解(PIP)基于过程的C / SiC复合材料。采用两级因子设计矩阵进行实验,研究四种因素对复合材料的弯曲强度的影响。制造了16套复合样品。进行了夸张,正常概率图,ANOVA和回归分析来确定统计显着的因素。密度密度($ rho $),纤维体积分数($ v _ { rm f} $)和热解温度($ t $)被发现在统计上显着,而PC的软化点(SP)并发现这四种因素的相互作用微不足道。更高的对照和$ V _ { rm f} $具有阳性效果,而热解温度对复合材料的弯曲强度具有负面影响。发现弯曲强度在374-592MPa的范围内,这取决于工艺参数。在微观结构的帮助下解释了不同工艺条件下复合材料的机械行为。

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