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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Effect of the bainitic and martensitic microstructures on the hardening and embrittlement under neutron irradiation of a reactor pressure vessel steel
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Effect of the bainitic and martensitic microstructures on the hardening and embrittlement under neutron irradiation of a reactor pressure vessel steel

机译:贝氏体和马氏体组织对反应堆压力容器钢中子辐照下硬化和脆化的影响

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摘要

The hardening and the embrittlement under neutron irradiation of an A508 type RPV steel considering three different microstructures (bainite, bainite-martensite and martensite)have been investigated These microstructures were obtained by quenching after autenitization at 1100 degrees C. The irradiation induced hardening appears to depend on microstructure and is correlated to the yield stress before irradiation. The irradiation induced embrittlement shows a more complex dependence. Martensite bearing microstructures are more sensitive to non hardening embrittlement than pure bainite. This enhanced sensitivity is associated with the development of intergranular brittle facture after irradiation; the pure martensite being more affected than the bainite-martensite. It is of interest to note that this mixed microstructure appears to be more embrittled than the pure bainitic or martensitic phases in terms of temperature transition shift. This behaviour which could emerge from the synergy of the embrittlement mechanisms of the two phases needs further investigations. However, the role of microstructure on brittle intergranular fracture development appears to be qualitatively similar under neutron irradiation and thermal ageing. (C) 2015 Elsevier B.V. All rights reserved.
机译:研究了考虑三种不同组织(贝氏体,贝氏体-马氏体和马氏体)的A508型RPV钢在中子辐照下的硬化和脆化。这些组织是通过在1100℃进行奥氏体化后淬火而获得的。与微观结构有关,并且与辐照前的屈服应力相关。辐照引起的脆化显示出更复杂的依赖性。与纯贝氏体相比,含马氏体的显微组织对非硬化脆化更为敏感。这种增强的敏感性与辐射后晶间脆性断裂的发展有关。纯马氏体比贝氏体-马氏体受到的影响更大。有趣的是,就温度转变而言,这种混合的微观结构比纯贝氏体或马氏体相更易碎。从两阶段脆化机制的协同作用中可能出现的这种行为需要进一步研究。然而,在中子辐照和热老化下,微观结构对脆性晶间骨折发展的作用在质量上似乎是相似的。 (C)2015 Elsevier B.V.保留所有权利。

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