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Fabrication of two-layer SiC nanowire cladding tube with high thermal conductivity

机译:具有高导热率的两层SiC纳米线包层的制造

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摘要

Among the various concepts of SiC-based accident-tolerant fuel cladding, duplex SiC cladding, consisting of an inner composite layer and an outer monolithic SiC layer, is considered an optimal design due to its low load failure probability. In this study, SiC nanowires (SiCnw) were introduced on the substrate graphite rod to decrease the diameter of architectural valley-regions of SiC fiber (SiCf) tubular preform. By avoiding the architectural valley-voids, a dense two-layer SiCnw tube consisting of an inner SiC fiber-reinforced SiC matrix (SiCf/SiC) composite layer deposited by chemical vapor infiltration with a smooth inner surface was obtained. The microstructure and thermal properties of as-obtained two-layer SiCnw tubes were studied. Results showed that the thermal conductivity of the whole tube was highly sensitive to variations in thermal conductivity of the inner composite layer. By improving the thermal conductivity of the inner composite layer, the two-layer SiCnw tube exhibited a thermal conductivity of 23.8 W m(-1) K-1 at room temperature, which had an improvement of 71 % compared to the two-layer SiC tube (13.9 W m(-1) K-1). Moreover, the thermal transport properties of the two-layer SiCnw tube were significantly improved by a reduction in roughness of the inner surface.
机译:在基于SiC的事故耐燃料包层的各种概念中,由内复合层和外单片层组成的双相SiC包层被认为是由于其低负载故障概率而被认为是最佳设计。在该研究中,在衬底石墨棒上引入SiC纳米线(SiCNW)以降低SiC纤维(SICF)管状预制件的建筑谷区域的直径。通过避免建筑谷 - 空隙,获得由沉积的内部SiC纤维增强SiC基质(SiCF / SiC)复合层组成的致密的双层SiCnW管,通过化学蒸汽渗透与平滑的内表面。研究了如获得的两层SiCNW管的微观结构和热性质。结果表明,整管的导热率对内复合层的导热率的变化非常敏感。通过提高内复合层的导热率,两层SiCnW管在室温下表现出23.8Wm(-1)k-1的导热率,与双层SiC相比,改善了71%管(13.9W m(-1)k-1)。此外,通过内表面的粗糙度的降低,两层SiCnW管的热传输性能显着提高。

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