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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Development, preparation and characterization of uranium molybdenum alloys for dispersion fuel application
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Development, preparation and characterization of uranium molybdenum alloys for dispersion fuel application

机译:分散燃料应用铀钼合金的开发,制备和表征

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Most of the research and test reactors worldwide have undergone core conversion from high enriched uranium base fuel to low enriched uranium base fuel under the Reduced Enrichment for Research and Test Reactor (RERTR) program, which was launched in the late 1970s to reduce the risk of nuclear proliferation. To realize this goal, high density uranium compounds and 7-stabilized uranium alloy powder were identified. In Metallic Fuels Division of BARC, R&D efforts are on to develop these high density uranium base alloys. This paper describes the preparation flow sheet for different compositions of Uranium and molybdenum alloys by an innovative powder processing route with uranium and molybdenum metal powders as starting materials. The same composition of U-Mo alloys were also fabricated by conventional method i.e. ingot metallurgy route. The U-Mo alloys prepared by both the methods were then characterized by XRD for phase analysis. The photomicrographs of alloys with different compositions prepared by powder metallurgy and ingot metallurgy routes are also included in the paper. The paper also covers the comparison of properties of the alloys prepared by powder metallurgy and ingot metallurgy routes.
机译:根据1970年代后期启动的降低研究和试验堆浓缩度(RERTR)计划,全球大多数研究和试验堆已经历了从高浓铀基础燃料到低浓铀基础燃料的核心转化。核扩散。为了实现这一目标,鉴定了高密度铀化合物和7稳定铀合金粉末。在BARC的金属燃料部门,研发部门正在致力于开发这些高密度铀基合金。本文以铀和钼金属粉末为起始原料,通过创新的粉末加工路线,介绍了铀和钼合金不同成分的制备流程图。相同组成的U-Mo合金也可通过常规方法,即铸锭冶金法制造。然后用XRD对两种方法制得的U-Mo合金进行表征,以进行相分析。通过粉末冶金和铸锭冶金方法制备的具有不同组成的合金的显微照片也包括在本文中。本文还涵盖了通过粉末冶金和锭冶金方法制备的合金的性能比较。

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