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FABRICATION OF SIC/SIC WITH DISPERSED CARBON NANO-FIBERS COMPOSITE FOR EXCELLENT THERMAL PROPERTIES

机译:具有优异热性能的分散碳纳米纤维复合材料制备SIC / SIC

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摘要

The SiC/SiC with dispersed carbon nano-fibers (CNFs) composites were fabricated in order to improve the thermal conductivity. The SiC/SiC with and without dispersed CNFs composites were fabricated by reaction bonding (RB) process. The effect of dispersed CNFs on the thermal properties was investigated. The volume fraction of CNFs was approximately 4 %. The CNFs were successfully dispersed in the SiC/SiC composites without reducing the volume fraction of SiC fibers. It is, therefore, considered that the strength of SiC/SiC with dispersed CNFs composites is not reduced. The thermal conductivities of the composites were measured in the temperature range from room temperature to 1000℃. The thermal conductivities of SiC/SiC with dispersed CNFs composites were twice as high as those without CNFs; the value was approximately 90 W/mK at room temperature. The thermal conductivity of SiC/SiC with dispersed CNFs composites at 800℃, which is the operation temperature range of fusion reactors, was more than 40 W/mK. The thermal conductivities of SiC/SiC with dispersed CNFs composites in this study satisfy completely the assumed design criterion for fusion reactors, which is 15-20 W/mK at the operation temperature of fusion reactors.
机译:为了提高热导率,制备了具有分散碳纳米纤维(CNFs)的SiC / SiC复合材料。通过反应结合(RB)工艺制备了具有分散CNF和不具有分散CNF的复合材料的SiC / SiC。研究了分散的CNF对热性能的影响。 CNF的体积分数约为4%。 CNF成功地分散在SiC / SiC复合材料中,而没有降低SiC纤维的体积分数。因此,认为不会降低具有分散的CNFs复合材料的SiC / SiC的强度。在室温至1000℃的温度范围内测量了复合材料的热导率。分散CNFs复合材料的SiC / SiC的热导率是没有CNFs的SiC / SiC的两倍。在室温下,该值约为90 W / mK。 SiC / SiC分散CNFs复合材料在800℃的热导率(聚变反应堆的工作温度范围)大于40 W / mK。这项研究中,具有分散CNFs复合材料的SiC / SiC的热导率完全满足聚变反应堆的设计标准,在聚变反应堆的工作温度下为15-20 W / mK。

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