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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Microstructural Evolution of the Interdiffusion Zone between U-9 Wt Pct Mo Fuel Alloy and Zr-1 Wt Pct Nb Cladding Alloy Upon Annealing
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Microstructural Evolution of the Interdiffusion Zone between U-9 Wt Pct Mo Fuel Alloy and Zr-1 Wt Pct Nb Cladding Alloy Upon Annealing

机译:退火时U-9 WT PCT MO燃料合金与ZR-1 WT PCT NB包层合金的间接区的微观结构演变

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Diffusion couple formed between U-9 wt pct Mo and Zr-1 wt pct Nb alloys, proposed as fuel and clad materials, respectively, in nuclear research reactors, was annealed to investigate the microstructural evolution of the interdiffusion zone (IZ) as a function of temperature. A layered-type IZ microstructure was observed, the mechanism of development of which was elucidated. Mo2Zr phase, present as dispersoids, in the U-rich part of the as-bonded IZ evolved into a continuous layer and into a "massive" morphology upon annealing. The discontinuous precipitation reaction in the matrix adjoining the Mo2Zr phase, instigated by Mo depletion, generated lamellae of alpha-U phase within the gamma-U(Mo,Zr) matrix. Zr-rich alpha-Zr(U) precipitates were observed in U-rich U-Mo-Zr matrix in the IZ next to the U-9Mo base material due to the clustering tendency of the matrix phase. The IZ next to Zr-1Nb base material comprised a "basket weave" microstructure of alpha-Zr laths with beta-Zr(Nb,U) interlath boundaries, wherein an omega like transformation of the latter to delta-UZr2 was also noticed. The growth rates of the IZ were orders of magnitude lower when compared with the ones reported between the compositionally similar U-10 wt pct Mo alloy and the presently used Al or Al-Si cladding alloys. (C) The Minerals, Metals & Materials Society and ASM International 2017
机译:在U-9 WT PCT Mo和Zr-1wt PCT Nb合金之间形成的扩散耦合,分别在核研究反应器中提出作为燃料和包层材料,以研究相互扩散区​​(IZ)作为功能的微观结构演变温度。观察到分层式IZ微观结构,阐明了其发展机制。作为分散体的Mo2zr相,在富含的富键合Iz的富含部分中进化成连续层并在退火时进入“大规模”形态。在邻接Mo2ZR相的基质中的不连续的沉淀反应,通过Mo耗尽来唤醒,在γ-U(Mo,Zr)基质内产生α-U相的α-U相的薄片。在IZ旁边的U形9Mo基材富含U的U形的Mo-Zr的基质中观察到由于基质相的聚类趋势富Zr的阿尔法 - 锆(U)的沉淀物。 Zr-1NB基础材料旁边的IZ包括α-Zr(Nb,U)interlath界限的“篮织织物”微观结构,其中还注意到后者的ω转化为Delta-UZR2。与在合成类似的U-10WT PCT MO合金和本发明使用的Al或Al-Si包层合金之间的报道的载体相比,IZ的生长速率降低了数量级。 (c)2017年矿物质,金属和材料协会和ASM国际

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