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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Growth kinetics and microstructural evolution during hot isostatic pressing of U-10 wt.% Mo monolithic fuel plate in AA6061 cladding with Zr diffusion barrier
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Growth kinetics and microstructural evolution during hot isostatic pressing of U-10 wt.% Mo monolithic fuel plate in AA6061 cladding with Zr diffusion barrier

机译:含Zr扩散阻挡层的A6066-1熔覆U-10 wt。%Mo整体燃料板的热等静压过程中的生长动力学和微观结构演变

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Phase constituents and microstructure changes in RERTR fuel plate assemblies as functions of temperature and duration of hot-isostatic pressing (HIP) during fabrication were examined. The HIP process was carried out as functions of temperature (520, 540, 560 and 580℃ for 90 min) and time (45–345 min at 560℃) to bond 6061 Al-alloy to the Zr diffusion barrier that had been co-rolled with U-10 wt.% Mo(U10Mo) fuel monolith prior to the HIP process. Scanning and transmission electron microscopies were employed to examine the phase constituents, microstructure and layer thickness of interaction products from interdiffusion. At the interface between the U10Mo and Zr, following the co-rolling, the UZr_2 phase was observed to develop adjacent to Zr, and the α-U phase was found between the UZr_2 and U_(10)Mo, while the Mo_2Zr was found as precipitates mostly within the α-U phase. The phase constituents and thickness of the interaction layer at the U_(10)Mo-Zr interface remained unchanged regardless of HIP processing variation. Observable growth due to HIP was only observed for the (Al,Si)_3Zr phase found at the Zr/AA6061 interface, however, with a large activation energy of 457 ± 28 kJ/mole. Thus, HIP can be carried to improve the adhesion quality of fuel plate without concern for the excessive growth of the interaction layer, particularly at the U10Mo-Zr interface with the α-U, Mo_2Zr, and UZr_2 phases.
机译:研究了RERTR燃料板组件的相组成和微观结构随温度和制造过程中热等静压(HIP)持续时间的函数。 HIP工艺是根据温度(520、540、560和580℃持续90分钟)和时间(560℃下45-345分钟)的功能进行的,以将6061铝合金与Zr扩散阻挡层结合在HIP工艺之前,用U-10 wt。%Mo(U10Mo)燃料整体进行轧制。使用扫描电子显微镜和透射电子显微镜检查互扩散的相互作用产物的相组成,微观结构和层厚度。在U10Mo和Zr之间的界面处,随着共同滚动,观察到UZr_2相在Zr附近发展,并且在UZr_2和U_(10)Mo之间发现了α-U相,而Mo_2Zr被发现为大部分在α-U相内析出。不管HIP工艺如何变化,U_(10)Mo-Zr界面处的相互作用层的相组成和厚度均保持不变。仅在Zr / AA6061界面处的(Al,Si)_3Zr相中观察到由于HIP引起的可观察到的生长,但是具有457±28 kJ / mol的大活化能。因此,可以携带HIP来改善燃料板的粘附质量,而无需担心相互作用层的过度生长,特别是在与α-U,Mo_2Zr和UZr_2相的U10Mo-Zr界面处。

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