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Design Development of a High-Temperature Sodium Compatibility Testing Facility

机译:高温钠相容性测试设备的设计与开发

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The use of advanced alloys within sodium-cooled fast reactors (SFRs) has been identified as a means of increasing plant efficiency and reducing construction costs. In particular, alloys such as NF-616, NF-709 and HT-UPS are promising because they exhibit greater strength than traditional structural materials such as 316-SS. However, almost nothing is known about the sodium compatibility of these new alloys. Therefore, research taking place at the University of Wisconsin-Madison is focused on studying the effects of sodium corrosion on these materials under prototypic SFR operating conditions (600 [°C], V_(Na)=10 [m/s], C_(o~1) [wppm]). This paper focuses on the design and construction of the testing facility with an emphasis on moving magnet pumps (MMPs). Corrosion data from a preliminary 500 [hr] natural convection test will also be presented.
机译:在钠冷快堆(SFR)中使用先进合金已被确定为提高工厂效率和降低建设成本的一种手段。特别地,诸如NF-616,NF-709和HT-UPS之类的合金很有前途,因为它们比诸如316-SS之类的传统结构材料具有更高的强度。但是,关于这些新合金的钠相容性几乎一无所知。因此,威斯康星大学麦迪逊分校的研究重点是研究原型SFR操作条件(600 [°C],V_(Na)= 10 [m / s],C_( o〜1)[wppm])。本文着重于测试设施的设计和建设,重点是移动式电磁泵(MMP)。还将提供初步500 [hr]自然对流测试的腐蚀数据。

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