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VOID SWELLING IN BINARY FE-CR ALLOYS AT 200 DPA

机译:200 DPA的二元FE-CR合金中的空泡膨胀

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摘要

Microstructural examinations have been performed on a series of binary Fe-Cr alloys irradiated in the FFTF/MOTA at 425 degrees C to 200 dpa. The data represent the highest swelling levels reported to date in neutron-irradiated ferritic alloys. The alloy compositions ranged from 3 to 18% Cr in 3% Cr increments and the irradiation temperature corresponded to the peak swelling condition for this alloy class. Density measurements showed swelling levels as high as 7.4%, with the highest swelling found in the Fe-9Cr and -6Cr alloys. Microstructural examinations revealed that the highest swelling conditions contained well-developed voids, often as large as 100 nm, and a dislocation network comprised of both a/2[111] and a[100] Burgers vectors. Swelling was lower in the other alloys, and the swelling reduction could be correlated with increased precipitation. These results are considered in light of the current theories for low swelling in ferritic alloys, but no theory is found to completely explain the results. [References: 18]
机译:对在425°C至200 dpa的FFTF / MOTA中辐照的一系列二元Fe-Cr合金进行了微结构检查。数据代表迄今为止报道的中子辐照铁素体合金的最高溶胀水平。合金成分以3%Cr的增量从3%到18%Cr不等,并且辐照温度对应于该合金类别的峰值溶胀条件。密度测量显示,溶胀度高达7.4%,在Fe-9Cr和-6Cr合金中溶胀率最高。微观结构检查显示,最高溶胀条件包含发达的空洞,通常高达100 nm,并且由a / 2 [111]和a [100] Burgers载体组成的位错网络。其他合金中的溶胀较低,溶胀的减少可能与沉淀的增加有关。根据目前铁素体合金低溶胀的理论来考虑这些结果,但是没有发现理论可以完全解释该结果。 [参考:18]

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