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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Microstructural characteristics and embrittlement phenomena in neutron irradiated 309L stainless steel RPV clad
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Microstructural characteristics and embrittlement phenomena in neutron irradiated 309L stainless steel RPV clad

机译:中子辐照309L不锈钢RPV包覆层的显微组织特征和脆化现象

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The effects of neutron irradiation on the microstructural features and mechanical properties of 309L stainless steel RPV clad were investigated using TEM, SEM, small tensile, microhardness and small punch (SP) tests. The neutron irradiations were performed at 290 degreesC up to the fluences of 5.1 x 10(18) and 1.02 x 10(19) n/cm(2) (>1 MeV) in Japan Materials Testing Reactor (JMTR). The microstructure of the clad before and after irradiation was composed of main part of fcc austenite, a few percent of bee delta-ferrite and small amount of brittle sigma phase. After irradiation, not only the yield stress and microhardness, but SP ductile to brittle transition temperature (SP-DBTT) were increased. However, the increase in SP-DBTT is almost saturated, independent of the neutron fluence. Based on the TEM observation, the origin of irradiation hardening was accounted for by the irradiation-produced defect clusters of invisible fine size (< 1-2 nm), and the shift of SP-DBTT was primary due to the higher hardening and the preferential failure of delta-ferrite. The embrittlement of the clad was strongly affected by the initial microstructural factors, such as the amount of brittle a phase, which caused a cracking even in an early stage of deformation. (C) 2003 Elsevier B.V. All rights reserved. [References: 26]
机译:采用透射电镜,扫描电镜,小拉伸强度,显微硬度和小冲头(SP)试验研究了中子辐照对309L不锈钢RPV熔覆层组织和力学性能的影响。在日本材料试验反应堆(JMTR)中,中子辐照是在290摄氏度下进行的,辐照度的通量分别为5.1 x 10(18)和1.02 x 10(19)n / cm(2)(> 1 MeV)。辐照前后复合层的显微组织由fcc奥氏体的主要部分,百分之几的蜂δ铁素体和少量的脆性σ相组成。辐照后,不仅屈服应力和显微硬度增加,而且韧性到脆性转变温度的SP(SP-DBTT)也增加了。但是,SP-DBTT的增加几乎是饱和的,与中子注量无关。根据TEM观察,辐照硬化的起源是由辐照产生的不可见细尺寸(<1-2 nm)的缺陷簇造成的,SP-DBTT的位移是主要的原因是更高的硬化程度和优先铁素体铁素体的失败。包层的脆化受到初始微观结构因素的强烈影响,例如脆性a相的数量,即使在变形的早期,该相也导致开裂。 (C)2003 Elsevier B.V.保留所有权利。 [参考:26]

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