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Impact Property of Low-Activation Vanadium Alloy NIFS-HEAT-2 After Electron Beam Welding and Neutron Irradiation

机译:电子束焊接和中子辐照后低活化钒合金NIFS-HEAT-2的冲击性能

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摘要

In order to investigate the effect of post-weld heat treatment (PWHT) and post-irradiation annealing (PIA), electron-beam-weld specimens of the reference low activation vanadium alloy, NIFS-HEAT-2, were neutron-irradiated to a fluence of 7.62 x 10(23) neutron m(-2) (E > 1 MeV) at 563 K in Belgian Reactor-2. In the present experiments, unexpected oxidation of the surface of the samples occurred during the neutron irradiation, and significantly degraded impact properties of the weld metal, while the degradation was not significant for the base metal. The removal of the oxidized layer by electro-polishing improved the impact properties of the weld metal. Although complete removal of the oxidized layer could not be confirmed, it is revealed that impact absorbed energy of the weld metal with post-weld heat treatment at 1073 K was comparable to that of the base metal after the postirradiation polishing. In other words, irradiation embrittlement of the weld metal was successfully suppressed by the PWHT. PIA at 773 K and above was effective to recover the irradiation hardening and irradiation embrittlement. Mechanisms of the irradiation hardening, irradiation embrittlement and its recovery were discussed.
机译:为了研究焊后热处理(PWHT)和辐照后退火(PIA)的效果,将参考低活化钒合金NIFS-HEAT-2的电子束焊样品中子辐照到比利时反应堆2中的563 K处7.62 x 10(23)中子m(-2)(E> 1 MeV)的注量。在本实验中,在中子辐照过程中发生了样品表面的意外氧化,并显着降低了焊接金属的冲击性能,而对于母材而言,降解并不明显。通过电抛光去除氧化层改善了焊接金属的冲击性能。尽管无法确认是否完全去除了氧化层,但发现在1073 K的条件下进行焊后热处理的焊接金属的冲击吸收能与辐照后抛光后的母材相当。换句话说,通过PWHT成功地抑制了焊接金属的辐照脆化。 773 K及以上的PIA可以有效地恢复辐照硬化和辐照脆化。讨论了辐照硬化,辐照脆化及其恢复机理。

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