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Influence of Mo content on the γ-phase stability and properties of U-Mo alloy

机译:Mo含量对U-Mo合金γ相稳定性及性能的影响

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U-Mo alloys have been considered as the potential new advanced nuclear fuel, due to its favourable irradiation stability associated with the presence of the metastable γ-phase in the microstructure. Thus its γ-phase stability and performance are of great importance. In this work, three kinds of U-Mo alloys with the content of 6, 8 and 10wt.% Mo were prepared by non consumable arc melting technology, the homogenization annealing and heat treatment of isothermal decomposition. Through metallographic microscope, scanning electron microscope (SEM), X-ray diffraction, Brinell hardness tester, the microstructure and mechanical properties of U-Mo alloys were investigated. The results indicate that the stability of γ-phase in the U-Mo alloy is directly related to the content of Mo. With the increase of Mo, the stability of γ-phase is enhanced and the decomposition of γ-phase is delayed during the isothermal decomposition at 565□ . In addition, the mechanical properties of this alloy are closely associated with its phase rather than directly related to the content of Mo.
机译:由于其在微观结构中的亚稳γ相的存在相关的辐射稳定性,U-Mo合金被认为是潜在的新先进的核燃料。因此,其γ相稳定性和性能具有重要意义。在这项工作中,三种U-Mo合金的含量为6,8和10wt。通过非可消耗的电弧熔化技术制备%Mo,均质退火和等温分解的热处理。通过金相显微镜,研究了扫描电子显微镜(SEM),X射线衍射,Brinell硬度测试仪,U-Mo合金的微观结构和机械性能。结果表明,U-MO合金中γ相的稳定性与MO的含量直接相关。随着MO的增加,增强了γ相的稳定性,γ相的分解在等温分解在565□。此外,该合金的机械性能与其相位密切相关,而不是与Mo的含量直接相关。

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