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Hydrothermal Corrosion of SiC Materials for Accident Tolerant Fuel Cladding with and Without Mitigation Coatings

机译:用于使用和无缓解涂层的事故耐受燃料包层的SIC材料的水热腐蚀

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As a candidate material for accident-tolerant fuel cladding for light water reactors (LWR), SiC_f-SiC composite materials possess many attractive properties. However, prior work has shown that SiC is susceptible to aqueous dissolution in LWR coolant environments. To address this issue, candidate coatings have been developed to inhibit dissolution. For this study, CVD SiC samples were prepared with Cr, CrN, TiN, ZrN, NiCr, and Ni coatings. Uncoated SiC and SiC_f-SiC samples were also prepared. The samples were exposed for 400 h in 288 °C water with 2 wppm DO in a constantly-refreshing autoclave to simulate BWR-NWC. Cr and Ni coated samples lost less mass than the uncoated SiC sample, indicating an improvement in performance. The CrN coating resisted oxidation, but some of the coating was lost due to poor adhesion. The TiN coated sample gained significant mass due to oxidation of the coating. ZrN and NiCr coatings showed significant corrosion attack. SiC_f-SiC ceramic matrix composite materials dissolved much faster than the CVD SiC sample, demonstrating the need for mitigation coatings if CMCs are to be used in LWRs. This work demonstrates the promise of Cr, Ni and CrN coatings for corrosion mitigation in LWRs, and shows that NiCr and ZrN are not promising coating materials.
机译:作为用于轻水反应器(LWR)的意外耐燃料包层的候选材料,SiC_F-SiC复合材料具有许多有吸引力的性质。然而,在LWR冷却剂环境中,先前的工作表明SiC易于含水溶解。为了解决这个问题,已经开发了候选涂层来抑制溶解。对于该研究,CVD SiC样品用Cr,CrN,TiN,ZrN,NiCr和Ni涂层制备。还制备了未涂覆的SiC和SiC_F-SiC样品。将样品在288℃的水中暴露400小时,用2Wppm在不断刷新的高压釜中进行,以模拟BWR-NWC。 Cr和Ni涂层样品比未涂层的SIC样品损失较少,表明性能提高。 CRN涂层抗氧化,但由于粘附性差,一些涂层损失。由于涂层的氧化,锡涂覆的样品获得了显着的质量。 Zrn和Nicr涂层显示出显着的腐蚀攻击。 SIC_F-SIC陶瓷基质复合材料溶解的速度比CVD SIC样品快得多,证明如果将CMC用于LWRS,则需要减缓涂层。这项工作证明了LWR中腐蚀缓解的Cr,Ni和CrN涂层的承诺,并且表明NiCr和Zrn不是有前途的涂层材料。

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