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首页> 外文期刊>Journal of the European Ceramic Society >Effect of carbon particle and carbon fiber on the microstructure and mechanical properties of short fiber reinforced reaction bonded silicon carbide composite
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Effect of carbon particle and carbon fiber on the microstructure and mechanical properties of short fiber reinforced reaction bonded silicon carbide composite

机译:碳粒子和碳纤维对短纤维增强反应结合碳化硅复合材料微观结构和力学性能的影响

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摘要

Variation of microstructure and mechanical behavior was investigated with the content increase of carbon particles and carbon fiber in the reaction bonded silicon carbide composites. The composites were prepared by slip casting and liquid silicon infiltration. The bulk density is raised with the increase of carbon black due to the formation of fine β-SiC particles. The flexural strength increases for the reduction of residual Si and the formation of SiC framework; whereas a very high carbon content reduces the flexural strength. The fracture toughness is control led by the contents of carbon particle and carbon fiber. Thus, fiber debonding, fiber pullout and crack deflection are considered as the main toughening mechanisms. Annealing treatment can effectively improve both the flexural strength and fracture toughness. An increase by 49% of fracture toughness is obtained. A series of structural models are proposed to illustrate the structure changes of carbon fiber.
机译:随着反应结合碳化硅复合材料中碳颗粒和碳纤维含量的增加,研究了微观结构和力学行为的变化。通过滑模浇铸和液态硅渗透制备复合材料。由于形成细的β-SiC颗粒,随着炭黑的增加,堆积密度增加。抗弯强度的提高是为了减少残余硅和形成碳化硅骨架。而很高的碳含量会降低抗弯强度。断裂韧性由碳颗粒和碳纤维的含量控制。因此,纤维脱粘,纤维拔出和裂纹挠曲被认为是主要的增韧机理。退火处理可以有效地提高弯曲强度和断裂韧性。断裂韧性提高了49%。提出了一系列的结构模型来说明碳纤维的结构变化。

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