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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Proton irradiation emulation of PWR neutron damage microstructures in solution annealed 304 and cold-worked 316 stainless steels
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Proton irradiation emulation of PWR neutron damage microstructures in solution annealed 304 and cold-worked 316 stainless steels

机译:固溶退火304和冷加工316不锈钢中PWR中子损伤微观结构的质子辐照模拟

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摘要

Solution annealed (SA) 304 and cold-worked (CW) 316 austenitic stainless steels were pre-implanted with helium and were irradiated with protons in order to study the potential effects of helium, irradiation dose, and irradiation temperature on microstructural evolution, especially void swelling, with relevance to the behavior of austenitic core internals in pressurized water reactors (PWRs). These steels were irradiated with 1 MeV protons to doses between 1 and 10 dpa at 300 degreesC both with or without 15 appm helium pre-implanted at similar to100 degreesC. They were also irradiated at 340 degreesC, but only after 15 appm helium pre-implantation. Small heterogeneously distributed voids were observed in both alloys irradiated at 300 degreesC, but only after helium pre-implantation. The pre-implanted steels irradiated at 340 degreesC exhibited homogenous void formation, suggesting effects of both helium and irradiation temperature on void nucleation. Voids developed sooner in the SA304 alloy than CW316 alloy at 300 and 340 degreesC, consistent with the behavior observed at higher temperatures (>370 degreesC) for similar steels irradiated in the EBR-II fast reactor. The development of the Frank loop microstructure was similar in both alloys, and was only marginally affected by pre-implanted helium. Loop densities were insensitive to dose and irradiation temperature, and were decreased by helium; loop sizes increased with dose up to about 5.5 dpa and were not affected by the pre-implanted helium. Comparison with microstructures produced by neutron irradiation suggests that this method of helium pre-implantation and proton irradiation emulates neutron irradiation under PWR conditions. (C) 2003 Elsevier B.V. All rights reserved. [References: 50]
机译:将固溶退火(SA)304和冷加工(CW)316奥氏体不锈钢预先植入氦气并用质子辐照,以研究氦气,辐照剂量和辐照温度对显微组织演变(尤其是空隙)的潜在影响膨胀,与压水堆(PWR)中奥氏体堆芯内部的行为有关。这些钢在300℃下用1 MeV质子辐照至1 dpa至10 dpa之间的剂量,无论是否在类似于100℃的条件下预先注入15 appm的氦气。还对它们进行了340℃的辐照,但仅在预注入15 appm的氦气之后进行了辐照。在300℃下辐照过的两种合金中均观察到小的异质分布的空隙,但仅在氦气预注入之后才出现。在340℃下辐照的预植入钢表现出均匀的空隙形成,表明氦气和辐照温度对空隙成核的影响。在300和340℃下,SA304合金中的空洞比CW316合金中更快地出现,这与在EBR-II快速反应堆中辐照的类似钢在较高温度(> 370℃)下观察到的行为一致。两种合金的Frank环微观结构的发展都相似,并且仅受预植入氦气的影响很小。密度对剂量和辐照温度不敏感,并且被氦气降低;剂量增加至约5.5 dpa时,的大小会增加,并且不受植入前氦气的影响。与中子辐照产生的微观结构的比较表明,这种氦气预注入和质子辐照的方法模拟了PWR条件下的中子辐照。 (C)2003 Elsevier B.V.保留所有权利。 [参考:50]

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