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Precipitation of Solid Transmutation Elements in Irradiated Tungsten Alloys

机译:辐照钨合金中固体Trans变元素的沉淀

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摘要

Tungsten-based model alloys were fabricated to simulate compositional changes by neutron irradiation, performed in the JOYO fast test reactor. The irradiation damage range was 0.17-1.54dpa and irradiation temperatures were 400, 500 and 750 deg C. After irradiation, microstructural observations and electrical resistivity measurements were carried out. A number of precipitates were observed after 1.54 dpa irradiation. Rhenium and osmium were precipitated by irradiation, which suppressed the formation of dislocation loops and voids. Structures induced by irradiation were not observed so much after 0.17 dpa irradiation. Electrical resistivity measurements showed that the effects of osmium on the electrical resistivity, related to impurity solution content, were larger than that of rhenium. Measurements of electrical resistivity of ternary alloys showed that the precipitation behavior was similar to that in binary alloys
机译:制作了钨基模型合金,以在JOYO快速测试反应堆中通过中子辐照来模拟组成变化。辐照损伤范围为0.17-1.54dpa,辐照温度为400、500和750℃。辐照后,进行显微组织观察和电阻率测量。在1.54 dpa辐射后观察到许多沉淀物。 irradiation和by通过辐照沉淀,从而抑制了位错环和空隙的形成。在0.17 dpa辐照后,几乎没有观察到辐照引起的结构。电阻率测量表明,on对电阻率的影响(与杂质溶液含量有关)比than要大。三元合金电阻率的测量结果表明,沉淀行为与二元合金相似。

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