首页> 外文会议>Advancements in Nuclear Instrumentation Measurement Methods and their Applications (ANIMMA), 2011 2nd International Conference on >Long term out-of-pile thermocouple tests in conditions representative for nuclear gas-cooled high temperature reactors
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Long term out-of-pile thermocouple tests in conditions representative for nuclear gas-cooled high temperature reactors

机译:在代表核气冷却高温反应堆的条件下进行的长期堆外热电偶测试

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During irradiation tests at high temperature, failure of commercial Inconel 600 sheathed thermocouples is commonly encountered. To understand and remediate this problem, out-of-pile tests were performed with thermocouples in carburizing atmospheres which can be assumed to be at least locally representative for High Temperature Reactors. The objective was to screen those thermocouples which would consecutively be used under irradiation. Two such screening tests have been performed with a set of thermocouples embedded in graphite (mainly conventional Type N thermocouples and thermocouples with innovative sheaths) in a dedicated furnace with helium flushing. Performance indicators such as thermal drift, insulation and loop resistance were monitored and compared to those from conventional Type N thermocouples. Several parameters were investigated: niobium sleeves, bending, thickness, sheath composition, temperature as well as the chemical environment. After the tests, Scanning Electron Microscopy (SEM) examinations were performed to analyze possible local damage in wires and in the sheath. The present paper describes the two experiments, summarizes results and outlines further work, in particular to further analyze the findings and to select suitable thermocouples for qualification under irradiation.
机译:在高温下进行辐射测试期间,通常会遇到商用Inconel 600护套热电偶的故障。为了理解和解决这个问题,在渗碳气氛中使用热电偶进行了桩外试验,可以认为该热电偶至少局部代表了高温反应堆。目的是筛选在辐照下可连续使用的热电偶。在一组专用的氦气冲洗炉中,用嵌入石墨中的一组热电偶(主要是常规的N型热电偶和带有创新护套的热电偶)进行了两次这样的筛选测试。监测了诸如热漂移,绝缘和回路电阻等性能指标,并将其与常规N型热电偶的性能指标进行了比较。研究了几个参数:铌套筒,弯曲,厚度,护套组成,温度以及化学环境。测试后,进行扫描电子显微镜(SEM)检查以分析导线和护套中可能的局部损坏。本文介绍了这两个实验,总结了结果并概述了进一步的工作,特别是为了进一步分析发现并选择合适的热电偶进行辐照鉴定。

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