首页> 外文会议>NATO advanced research workshop on material research in atomic scale by mossbauer spectroscopy >APPLICATION OF MOESSBAUER SPECTROSCOPY AND POSITRON ANNIHILATION SPECTROSCOPY FOR TESTING OF NEUTRON-IRRADIATED REACTOR STEELS
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APPLICATION OF MOESSBAUER SPECTROSCOPY AND POSITRON ANNIHILATION SPECTROSCOPY FOR TESTING OF NEUTRON-IRRADIATED REACTOR STEELS

机译:Moessbauer光谱和正电子湮没光谱法在中子辐照反应器钢测试中的应用

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The study is focused on the application of Mb'ssbauer spectroscopy (MS) and positron annihilation spectroscopy (PAS) in the evaluation of the microstructure parameters of materials used in nuclear industry. The practical applications of these methods are documented on the evaluation of degradation processes currently in practise in nuclear power plant (NPP) reactor pressure vessel (RPV) steels. The samples originating from the Russian 15Kh2MFA and Sv10KhMFT steels, commercially used at WWER-440 reactors, were irradiated near the core at NPP Bohunice (Slovakia) with neutron fluences ranging from 7.8xl0~(23) m~(-2) to 2.5xl0~(24) m~(-2). The systematic changes in the MS and PAS spectra were observed mainly during the first period (1-year stay in irradiation containers under operating conditions by "speed factor" of about 10). A possible explanation could be due to the changes caused by precipitation of elements like Cu or Cr mainly in carbides to the surface. These MS results confirm that the close environment of Fe atoms in b.c.c. lattice of RPV steels remains almost stable after initial changes and perhaps could be correlated with the ductile-brittle transition temperature curve from mechanical tests.
机译:该研究专注于在核工业中使用的材料的微观结构参数评价中的应用,专注于MB'Sbauer光谱(MS)和正电子湮没光谱(PAS)。这些方法的实际应用记录在核电厂(NPP)反应器压力容器(RPV)钢上实践中的降解过程的评估。源自俄罗斯15kh2MFA和SV10khmft钢的样品,在WWER-440反应器上商业用途,在NPP Bohunice(斯洛伐克)附近的核心附近,中子流量从7.8xl0〜(23)m〜(2)到2.5xl0 〜(24)m〜(-2)。主要在第一时期(通过“速度因子”为约10)的第一个时期(在运行条件下的辐照容器中的1年停留)中进行系统变化。可能的解释可能是由于Cu或Cr等元素沉淀的变化,主要在碳化物到表面。这些MS结果证实,B.C.C中的Fe原子的紧密环境。在初始变化后,RPV钢的晶格仍然稳定,并且可能与机械测试的韧性脆性转变温度曲线相关。

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