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Mechanical Properties of DU-xMo Alloys with x = 7 to 12 Weight Percent

机译:x = 7至12重量百分比的DU-xMo合金的机械性能

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Mechanical properties of six depleted uranium-molybdenum (U-Mo) alloys have been obtained using microhardness, quasistatic tensile tests, and scanning electron microscopy (SEM) failure analysis. U-Mo alloy foils are currently under investigation for potential conversion of high power research reactors to low enriched uranium fuel. Although mechanical properties take on a secondary effect during irradiation, an understanding of the alloy behavior during fabrication and the effects of irradiation on the integrity of the fuel is essential. In general, the microhardness, yield strength, Young’s modulus, and ultimate tensile strength improved with increasing Mo content. Microhardness measurements were very sensitive to local composition, while the failure mode was significantly controlled by the impurity concentration of the alloy, especially carbon. Values obtained from literature are also provided with reasonable agreement, even though processing conditions and applications were quite different in some instances.
机译:使用显微硬度,准静态拉伸试验和扫描电子显微镜(SEM)失效分析,已经获得了六种贫铀-钼(U-Mo)合金的机械性能。目前正在研究U-Mo合金箔,以将高功率研究反应堆潜在地转化为低浓铀燃料。尽管机械性能在辐照过程中起次要作用,但必须了解制造过程中的合金性能以及辐照对燃料完整性的影响。通常,随着Mo含量的增加,显微硬度,屈服强度,杨氏模量和极限抗拉强度都会提高。显微硬度测量对局部成分非常敏感,而失效模式则受合金中杂质浓度(尤其是碳)的控制。即使在某些情况下处理条件和应用也大不相同,但从文献中获得的值也具有合理的一致性。

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