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首页> 外文期刊>Nuclear Materials and Energy >Experimental investigation of high He/dpa microstructural effects in neutron irradiated B-alloyed Eurofer97 steel by means of small angle neutron scattering (SANS) and electron microscopy
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Experimental investigation of high He/dpa microstructural effects in neutron irradiated B-alloyed Eurofer97 steel by means of small angle neutron scattering (SANS) and electron microscopy

机译:小角度中子散射(SANS)和电子显微镜观察中子辐照的B合金Eurofer97钢中高He / dpa微结构效应的实验研究

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Highlights ? small angle neutron scattering (SANS) measurements have been carried out on B-alloyed Eurofer97-1 neutron irradiated HFR JRC-Petten, up 16 dpa at 400 °C/450 °C, with expected helium concentrations, produced via B activation, of 400 appm and 5600 appm. ? the results show that increasing the expected helium concentrationfrom 400 appm to 5600 appm an increase of roughly one order of magnitude in the SANS cross section is observed, together with a drastic change of the steel matrix, appearing almost non-magnetic. ? under the assumption that the observed SANS effects are mostly due to helium, the obtained helium bubble volume fractions of 0.007 and of 0.038, respectively for 400 appm and 5600 appm helium contents, are consistent with the irradiation conditions; the agreement between SANS obtained volume distributions and TEM histogram is satisfactory. Abstract High He/dpa microstructural effects have been investigated, by means of small-angle neutron scattering (SANS) and transmission electron microscopy (TEM), in B-alloyed ferritic/martensitic steel Eurofer97-1 (0.12 C, 9 Cr, 0.2 V, 1.08 W wt%, B contents variable between 10 and 1000 ppm), neutron irradiated at the High Flux Reactor of the JRC-Petten at temperatures between 250?°C and 450?°C, up do a dose level of 16 dpa. Under these irradiation parameters, B activation is expected to produce corresponding helium contents variable between 80 and 5600 appm, with helium bubble distributions relevant for the technological applications. The SANS measurements were carried out under magnetic field to separate nuclear and magnetic SANS components; a reference, un-irradiated sample was also measured to evaluate as accurately as possible the genuine effect of the irradiation on the microstructure. Increasing the estimated helium content from 400 to 5600 appm, the analysis of the SANS cross-sections yields an increase in the volume fraction, attributed to helium bubbles, of almost one order of magnitude (from 0.007 to 0.038); furthermore, the difference between nuclear and magnetic SANS components is strongly reduced. These results are discussed in correlation with TEM observations of the same samples and are tentatively attributed to the effect of drastic microstructural changes in Eurofer97-1 for high He/dpa ratio values, possibly relating to the dissolution of large B-carbides due to transmutation reactions.
机译:强调 ?已在B合金Eurofer97-1中子辐照的HFR JRC-Petten上进行了小角中子散射(SANS)测量,在400°C / 450°C时高达16 dpa,通过B活化产生的预期氦浓度为400 appm和5600 appm。 ?结果表明,将预期的氦气浓度从400 appm增加到5600 appm,可以看到SANS截面大约增加了一个数量级,并且钢基质急剧变化,几乎呈现出非磁性。 ?在假定观测到的SANS效应主要归因于氦的假设下,对于400 appm和5600 appm的氦含量,分别获得的0.007和0.038的氦气泡体积分数与辐照条件一致; SANS获得的体积分布与TEM直方图之间的一致性令人满意。摘要通过小角度中子散射(SANS)和透射电子显微镜(TEM)研究了B合金铁素体/马氏体钢Eurofer97-1(0.12 C,9 Cr,0.2 V)中的高He / dpa微结构效应。 ,1.08 W wt%,B含量在10至1000 ppm之间变化),中子在JRC-Petten的高通量反应堆中在250?C至450?C的温度下辐照,剂量水平达到16 dpa。在这些辐照参数下,预计B活化会产生80至5600 appm之间变化的相应氦含量,并且氦气泡分布与技术应用有关。 SANS测量是在磁场下进行的,以分离出核和磁的SANS组件。还测量了参考的未辐照样品,以尽可能准确地评估辐照对微结构的真实影响。将估计的氦含量从400 appm增加到5600 appm,对SANS横截面的分析导致归因于氦气气泡的体积分数增加了几乎一个数量级(从0.007到0.038);此外,大大减少了核和磁SANS组件之间的差异。这些结果与相同样品的TEM观察结果进行了讨论,并暂时归因于Eurofer97-1对高He / dpa比值的剧烈微观结构变化的影响,可能与trans变反应导致的大型B碳化物的溶解有关。

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