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SiC (SCS-6) Fiber Reinforced-Reaction Formed SiC Matrix Composites: Microstructure and Interfacial Properties

机译:SiC(SCS-6)纤维增强反应成型SiC基复合材料:微观结构和界面特性

摘要

Microstructural and interfacial characterization of unidirectional SiC (SCS-6) fiber reinforced-reaction formed SiC (RFSC) composites has been carried out. Silicon-1.7 at.% molybdenum alloy was used as the melt infiltrant, instead of pure silicon, to reduce the activity of silicon in the melt as well as to reduce the amount of free silicon in the matrix. Electron microprobe analysis was used to evaluate the microstructure and phase distribution in these composites. The matrix is SiC with a bi-modal grain-size distribution and small amounts of MoSi2, silicon, and carbon. Fiber push-outs tests on these composites showed that a desirably low interfacial shear strength was achieved. The average debond shear stress at room temperature varied with specimen thickness from 29 to 64 MPa, with higher values observed for thinner specimens. Initial frictional sliding stresses showed little thickness dependence with values generally close to 30 MPa. Push-out test results showed very little change when the test temperature was increased to 800 C from room temperature, indicating an absence of significant residual stresses in the composite.
机译:进行了单向SiC(SCS-6)纤维增强反应成型SiC(RFSC)复合材料的微观结构和界面表征。用1.7%(原子)的硅钼合金作为熔体渗透剂,而不是纯硅,以降低熔体中硅的活性以及减少基体中游离硅的量。电子探针分析用于评估这些复合材料的微观结构和相分布。基体是具有双峰粒度分布的SiC和少量的MoSi2,硅和碳。在这些复合材料上的纤维推出试验表明,达到了理想的低界面剪切强度。室温下的平均去骨剪应力随样品厚度从29到64 MPa变化,对于更薄的样品观察到更高的值。初始摩擦滑动应力几乎没有厚度依赖性,其值通常接近30 MPa。当测试温度从室温升高到800℃时,推出测试结果显示几乎没有变化,表明复合材料中没有明显的残余应力。

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