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Effect of diamond content on microstructure and properties of C/SiC-diamond composites

机译:金刚石含量对C / SiC金刚石复合材料的组织和性能的影响

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Phenolic resin slurry with different concentrations of diamond was introduced into porous carbon fiber-reinforced silicon carbide (C/SiC) composites, and corresponding C/SiC-diamond composites were obtained through the reactive melt infiltration process. The effects of diamond concentration on the microstructure, mechanical properties, and thermophysical characteristics of C/SiC-diamond composites were obtained through observation and analysis. The results indicated that with the increase of diamond concentration, more diamond particles were introduced into the composites; and the density, mechanical properties, and thermophysical properties of the composites were improved. The three-point bending strength of sample D10 (diamond concentration of 10 vol% in slurry) was 309.01 MPa, the coefficient of thermal expansion at 700 degrees C reached 2.69 x 10(-6) /K, and the thermal conductivity at room temperature reached 14.68 W/(m.K), which is much higher than twice that of C/SiC composites (5-6 W/(m.K)) prepared by chemical vapor infiltration.
机译:将具有不同浓度金刚石的酚醛树脂浆料被引入多孔碳纤维增强碳化硅(C / SiC)复合材料中,并通过反应性熔体渗透过程获得相应的C / SiC金刚石复合材料。通过观察和分析获得了金刚石浓度对C / SiC-金刚石复合材料的微观结构,机械性能和热性性特性的影响。结果表明,随着金刚石浓度的增加,将更多的金刚石颗粒引入复合材料中;和复合材料的密度,机械性能和热性物理性质得到改善。样品D10的三点弯曲强度(浆料中10Vol%的金刚石浓度)为309.01MPa,700℃的热膨胀系数达到2.69×10(6)/ k,室温下的导热率达到14.68W /(MK),高于通过化学蒸汽浸润制备的C / SIC复合材料的两倍(5-6瓦/(MK))。

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