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Homogenization of Cr-Ni Austenitic Steel Studying: Liquation and Microhardness Heterogeneity Equalization

机译:CR-NI奥氏体钢研究的均质化:液相和微硬度异质性均等化

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Currently, a new generation of pressurized water reactor for nuclear power plants with an extended service life (up to 60 years) and a guarantee of their complete safety are being designed in Russia. Analysis of the reactor internal elements performance showed, that designed service life cannot be guaranteed if the reactor's internal parts would be made from currently used stainless steel (18-10 alloy type). Instead of the used steel, to ensure operability, new austenitic stainless steel (16-25 alloy type), with increased resistance to radiation swelling, is being developed for production of forged ring blanks for core baffle. The use of new steel requires revision of the existing metallurgical production technology stages. Therefore in this paper diffusion experiment was carried out to determine the required duration of homogenization. The results are presented in terms of different duration of the high-temperature exposure effect on the liquation heterogeneity equalization. The relation between duration of homogenization and microhardness is also shown.
机译:目前,在俄罗斯设计了延长使用寿命的核电站(最多60岁)的核电站加压水反应器,并在俄罗斯设计了完全安全的保证。反应器内部元件的分析显示,如果电抗器的内部部件是由目前使用的不锈钢(18-10合金类型)制成的,则无法保证设计的使用寿命。代替使用过的钢,以确保可操作性,新的奥氏体不锈钢(16-25合金型)正在开发用于生产用于芯挡板的锻造环形坯料的抗辐射肿胀的抗性增加。新钢铁需要修改现有的冶金生产技术阶段。因此,在本文中,进行了扩散实验以确定所需的均质化持续时间。结果以对液态异质性均等化的高温暴露作用的不同持续时间提出。还显示了均质化持续时间和微硬度之间的关系。

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