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首页> 外文期刊>CERAMICS INTERNATIONAL >Effect of ZrC particle distribution on the ablation resistance of C/C-SiC-ZrC composites fabricated using precursor infiltration pyrolysis
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Effect of ZrC particle distribution on the ablation resistance of C/C-SiC-ZrC composites fabricated using precursor infiltration pyrolysis

机译:ZRC颗粒分布对使用前体渗透热解制的C / C-SiC-ZRC复合材料的消融电阻的影响

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摘要

C/C-SiC-ZrC composites with different ZrC distributions were fabricated using precursor infiltration pyrolysis combined with different drying processes. The microstructural and ablation resistance properties of the composites with different ZrC distributions were investigated. For the C/C-SiC-ZrC composites fabricated using conventional heating-drying, where ZrC particles were largely agglomerated into islands with a dimension range of 10-20 mu m, the mass and linear ablation rates under a plasma flame for 60 s were 0.558 mg/s and 16.33 mu m/s, respectively. By contrast, for the composites fabricated using freeze-drying, where isolated ZrC particles with a size range of 200-300 nm were uniformly dispersed in the matrix, the mass and linear ablation rates were only 0.078 mg/s and 14.20 mu m/s, respectively. This difference in the distribution of ZrC particles led to the difference in ablation resistances, as the uniformly distributed fine ZrC particles were easily oxidized and well dispersed in SiO2 molten glass, which increased the viscosity of the molten glass layer. The high-viscosity SiO2-ZrO2 molten layer covering the surface of the composites effectively prevented the penetration of oxygen and resisted the scour of airflow.
机译:使用前体浸润热解与不同的干燥过程结合具有不同ZRC分布的C / C-SiC-ZRC复合材料。研究了具有不同ZRC分布的复合材料的微观结构和消融性能。对于使用常规加热干燥制造的C / C-SiC-ZRC复合材料,其中ZRC颗粒在大致凝聚到岛中,尺寸范围为10-20μm,血浆火焰下的质量和线性消融率为60秒0.558 mg / s和16.33μm/ s。相比之下,对于使用冻干制造的复合材料,其中尺寸为200-300nm尺寸范围的分离的Zrc颗粒在基质中均匀分散,质量和线性消融率仅为0.078mg / s和14.20μm/ s。 , 分别。这种ZrC颗粒分布的差异导致消融电阻的差异,因为均匀分布的微Zrc颗粒容易氧化并且很好地分散在SiO 2熔融玻璃中,这增加了熔融玻璃层的粘度。覆盖复合材料表面的高粘度SiO 2-ZrO2熔融层有效地防止了氧气的渗透并抵抗气流的冲刷。

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