首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Enhanced thermal conductivity of uranium dioxide-silicon carbide composite fuel pellets prepared by Spark Plasma Sintering (SPS)
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Enhanced thermal conductivity of uranium dioxide-silicon carbide composite fuel pellets prepared by Spark Plasma Sintering (SPS)

机译:通过火花等离子体烧结(SPS)制备的二氧化铀-碳化硅复合燃料颗粒的导热性增强

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摘要

Uranium dioxide (UO_2)-10 vol% silicon carbide (SiC) composite fuel pellets were produced by oxidative sintering and Spark Plasma Sintering (SPS) at a range of temperatures from 1400 to 1600 °C. Both SiC whiskers and SiC powder particles were utilized. Oxidative sintering was employed over 4 h and the SPS sintering was employed only for 5 min at the highest hold temperature. It was noted that composite pellets sintered by SPS process revealed smaller grain size, reduced formation of chemical products, higher density, and enhanced interfacial contact compared to the pellets made by oxidative sintering. For given volume of SiC, the pellets with powder particles yielded a smaller grain size than pellets with SiC whiskers. Finally thermal conductivity measurements at 100°C, 500°C, and 900°C revealed that SPS sintered UO_2-SiC composites exhibited an increase of up to 62% in thermal conductivity compared to UO_2 pellets, while the oxidative sintered composite pellets revealed significantly inferior thermal conductivity values. The current study points to the improved processing capabilities of SPS compared to oxidative sintering of UO_2-SiC composites.
机译:通过氧化烧结和火花等离子体烧结(SPS)在1400至1600°C的温度范围内生产二氧化铀(UO_2)-10体积%的碳化硅(SiC)复合燃料颗粒。 SiC晶须和SiC粉末颗粒均被使用。在最高保持温度下,氧化烧结历时4小时,SPS烧结仅历时5分钟。值得注意的是,与通过氧化烧结制得的颗粒相比,通过SPS工艺烧结的复合颗粒具有较小的晶粒尺寸,减少的化学产物形成,更高的密度以及增强的界面接触。对于给定的SiC体积,具有粉末颗粒的颗粒比具有SiC晶须的颗粒具有更小的粒度。最后,在100°C,500°C和900°C下的热导率测量结果表明,与UO_2颗粒相比,SPS烧结的UO_2-SiC复合材料的热导率提高了62%,而氧化烧结的复合材料颗粒的热导率却明显低于导热系数值。当前的研究指出,与氧化烧结UO_2-SiC复合材料相比,SPS的加工能力有所提高。

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