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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Phase Transformations and Microstructural Development in the U-10 WtPct Mo Alloy with Varying Zr Contents After Heat Treatments Relevant to the Monolithic Fuel Plate Fabrication Process
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Phase Transformations and Microstructural Development in the U-10 WtPct Mo Alloy with Varying Zr Contents After Heat Treatments Relevant to the Monolithic Fuel Plate Fabrication Process

机译:U-10 WTPCT Mo合金中的相变性和微观结构发育,其热处理与单片燃料板制造工艺相关ZR含量

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摘要

Decomposition of metastable, isotropic, body-centered cubic -phase in the U-10wtpct Mo alloys with varying Zr contents was investigated as function of heat treatment parameters (i.e., temperature and time) relevant to the fabrication of monolithic fuel plate in development for research and test reactors. Phase constituents and microstructural characterization was performed using X-ray diffraction via Rietveld refinement, scanning electron microscopy with quantitative image analysis, and analytical transmission electron microscopy. Results were compared with the amount of equilibrium phases calculated using the lever rule from the available ternary phase diagrams. After sequential three-step heat treatment (900 degrees C for 168hours, 650 degrees C for 3 hours, and 560 degrees C for 1.5hours) decomposition of -phase was observed in alloys containing 2wtpct or higher Zr. Decomposition of -phase occurred by the depletion of Mo in -phase due to the formation of Mo2Zr. Formation of Mo2Zr at 900 degrees C and 650 degrees C produced -phase with low-Mo content which in turn promoted a faster onset of eutectoid decomposition at 560 degrees C. The U-10Mo-4Zr and U-10Mo-10Zr alloys had the highest amount of Mo2Zr, and exhibited the largest amount of -phase decomposition after the heat treatment at 560 degrees C. Cooling rate from the heat treatment at 560 degrees C did not influence the phase constituents of the U-10Mo-xZr alloys, but the slower cooling promoted the better-defined lamellae microstructure associated with eutectoid decomposition. Trace amount of -phase was also observed in the microstructure after the heat treatment at 560 degrees C, presumably due to local inhomogeneity in alloy compositions.
机译:在U-10WTPCT MO合金中分解亚稳态,各向同性,身体中心的立方体 - 相对于具有不同ZR含量的含量(即温度和时间)的功能,与研究中的整体燃料板的制造相关的热处理参数(即温度和时间)的功能和测试反应器。通过RIETVELD细化的X射线衍射,扫描电子显微镜,具有定量图像分析和分析透射电子显微镜,进行相成分和微观结构表征。将结果与使用来自可用三元相图的杠杆规则计算的平衡相的量进行了比较。在含有2WTPCT或更高Zr的合金中观察到序列三步热处理(900℃,650℃,350℃,350℃,560℃)分解 - 相的相结合。由于MO2ZR的形成,MO in-相的耗尽发生的分解。在900摄氏度和650℃下形成Mo2Zr,产生低Mo含量的π含量,其又促进了560℃的eutectoid分解的速度更快。U-10MO-4ZR和U-10MO-10ZR合金最高MO2ZR的量,并在560摄氏度下热处理后表现出最大的相位分解。来自560℃的热处理的冷却速率没有影响U-10MO-XZR合金的相成分,但较慢冷却促进与共析荚分解相关的更好限定的薄片微观结构。在560℃的热处理后,还观察到痕量的相 - 相当于560℃的微观结构中,可能是由于合金组合物中的局部不均匀性。

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    Univ Cent Florida Dept Mat Sci &

    Engn Adv Mat Proc &

    Anal Ctr 12760 Pegasus Dr Orlando FL 32816 USA;

    Univ Cent Florida Dept Mat Sci &

    Engn Adv Mat Proc &

    Anal Ctr 12760 Pegasus Dr Orlando FL 32816 USA;

    Univ Cent Florida Dept Mat Sci &

    Engn Adv Mat Proc &

    Anal Ctr 12760 Pegasus Dr Orlando FL 32816 USA;

    Univ Cent Florida Dept Mat Sci &

    Engn Adv Mat Proc &

    Anal Ctr 12760 Pegasus Dr Orlando FL 32816 USA;

    Univ Cent Florida Dept Mat Sci &

    Engn Adv Mat Proc &

    Anal Ctr 12760 Pegasus Dr Orlando FL 32816 USA;

    Univ Cent Florida Dept Mat Sci &

    Engn Adv Mat Proc &

    Anal Ctr 12760 Pegasus Dr Orlando FL 32816 USA;

    Univ Cent Florida Dept Mat Sci &

    Engn Adv Mat Proc &

    Anal Ctr 12760 Pegasus Dr Orlando FL 32816 USA;

    Univ Cent Florida Dept Mat Sci &

    Engn Adv Mat Proc &

    Anal Ctr 12760 Pegasus Dr Orlando FL 32816 USA;

    Idaho Natl Lab POB 1625 Idaho Falls ID 83401 USA;

    Univ Cent Florida Dept Mat Sci &

    Engn Adv Mat Proc &

    Anal Ctr 12760 Pegasus Dr Orlando FL 32816 USA;

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