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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >MICROSTRUCTURE MECHANICAL PROPERTIES CORRELATION OF IRRADIATED CONVENTIONAL AND REDUCED-ACTIVATION MARTENSITIC STEELS
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MICROSTRUCTURE MECHANICAL PROPERTIES CORRELATION OF IRRADIATED CONVENTIONAL AND REDUCED-ACTIVATION MARTENSITIC STEELS

机译:辐照常规和还原活化马氏体钢的微观力学性能相关

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摘要

Tensile, Charpy, and transmission electron microscopy specimen of two conventional steels, modified 9Cr-1Mo (9Cr-1MoVNb) and Sandvik HT9 (12Cr-1MoVW), and two reduced-activation steels, Fe-9Cr-2W-0.25V-0.1C (9Cr-2WV) and Fe-9Cr-2W-0.25V-0.07Ta-0.1C (9Cr-2WVTa), were irradiated in the Fast Flux Test Facility. Before irradiation, M(23)C(6) was the primary precipitate in all four steels, which also contained some MC. Neutron irradiation did not substantially alter the M(23)C(6) and MC. No new phases formed during irradiation of the 9Cr-2WV and 9Cr-2WVTa, but chi-phase precipitated in the 9Cr-1MoVNb and chi-phase and alpha' precipitated in the 12Cr-1MoVW. Irradiation-produced dislocation loops formed in the 9Cr-2WV, 9Cr-2WVTa, and 12Cr-1MoVW. The microstructural changes caused the steels to harden, as measured by the change in yield stress. Hardening was correlated with a change in the Charpy impact properties of the 9Cr-1MoVNb, 12Cr-1MoVW, and 9Cr-2WV. Although irradiation caused a yield stress increase in 9Cr-2WVTa similar to that for the 9Cr-2WV and 9Cr-1MoVNb, the change in Charpy properties was considerably less for the 9Cr-2WVTa. This difference in Charpy behavior of the 9Cr-2WVTa with that of the 9Cr-2WV and 9Cr-1MoVNb was attributed to differences in the fracture stress-temperature relationship and/or the flow stress-temperature relationship between the 9Cr-2WVTa and the other two 9Cr steels. [References: 17]
机译:两种传统钢(改性的9Cr-1Mo(9Cr-1MoVNb)和Sandvik HT9(12Cr-1MoVWW))和两种减活化的钢Fe-9Cr-2W-0.25V-0.1C的拉伸,夏比和透射电子显微镜样品在快速通量测试设施中照射了(9Cr-2WV)和Fe-9Cr-2W-0.25V-0.07Ta-0.1C(9Cr-2WVTa)。在辐照之前,M(23)C(6)是所有四种钢中的主要沉淀物,其中还含有一些MC。中子辐照基本上不改变M(23)C(6)和MC。在9Cr-2WV和9Cr-2WVTa的辐照过程中没有形成新的相,但是在9Cr-1MoVNb中出现了chi-相沉淀,在12Cr-1MoVWW中沉淀了chi-相和alpha'。在9Cr-2WV,9Cr-2WVTa和12Cr-1MoVW中形成了辐射产生的位错环。微观结构变化导致钢硬化,这是通过屈服应力的变化来衡量的。硬化与9Cr-1MoVNb,12Cr-1MoVW和9Cr-2WV的夏比冲击性能的变化相关。尽管辐射使9Cr-2WVTa的屈服应力增加类似于9Cr-2WV和9Cr-1MoVNb的屈服应力增加,但9Cr-2WVTa的夏比性能变化却要小得多。 9Cr-2WVTa与9Cr-2WV和9Cr-1MoVNb的夏比行为的这种差异归因于9Cr-2WVTa与其他两个之间的断裂应力-温度关系和/或流动应力-温度关系的差异。 9Cr钢。 [参考:17]

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