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首页> 外文期刊>Journal of the European Ceramic Society >Investigation of thermal expansion of 3D-stitched C-SiC composites
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Investigation of thermal expansion of 3D-stitched C-SiC composites

机译:3D缝合C-SiC复合材料的热膨胀研究

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Carbon fiber reinforced silicon carbide (C-SiC) composites are promising materials for a severe thermo-erosive environment. 3D-stitched C-SiC composites were fabricated using liquid silicon infiltration. The infiltration was carried out at 1450-1650 deg C for 10-120 min in vacuum. Coefficient of thermal expansion (CTE) of the composites was determined in in-plane and through-thickness directions in the temperature range from room temperature to 1050 deg C. The in-plane CTE varies in the range (0.5-2) X 10~(-6)/ deg C, while that in the through-thickness direction, it varies in the range (1.5-4) X 10~(-6)/ deg C. The effect of siliconization conditions is higher in the through-thickness direction than in the in-plane direction. The CTE values are lower than the values reported for chemical vapor impregnation based 3D C-SiC composites. An extensive microstructure study was also carried out to understand the thermal expansion behavior of the composites. It was found out that CTE behavior is closely related to the composition of the composite which in turn depends upon siliconization conditions. The best conditions were 1650 deg C and 120 min.
机译:碳纤维增强的碳化硅(C-SiC)复合材料是用于恶劣的热腐蚀环境的有前途的材料。 3D缝制的C-SiC复合材料是使用液态硅渗透法制造的。在真空中在1450-1650℃下进行渗透10-120分钟。在室温至1050摄氏度的温度范围内,在面内和厚度方向上确定复合材料的热膨胀系数(CTE)。面内CTE在(0.5-2)X 10〜范围内变化(-6)/摄氏度,而在厚度方向上,则在(1.5-4)X 10〜(-6)/摄氏度的范围内变化。硅化条件对厚度的影响更高方向要比面内方向好。 CTE值低于基于化学气相浸渍的3D C-SiC复合材料的报告值。还进行了广泛的微观结构研究,以了解复合材料的热膨胀行为。发现CTE行为与复合物的组成密切相关,而复合物的组成又取决于硅化条件。最佳条件是1650摄氏度和120分钟。

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