氮化导致的铬镍铁合金600薄壁管失效

M. Griffiths, J. Slade, A. McDonald
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摘要

一些核反应堆中使用的自供电磁通探测器是铂芯或v芯同轴电缆,以氧化镁为绝缘体,英科乃尔600为外护套材料。这些探测器被设计成在氦大气中工作;最大限度地传导热量(与伽马辐射相互作用产生)并防止腐蚀。多年来,由于组件中He盖气体的损失,发生了许多故障。这将导致在潮湿环境中对Inconel 600护套的酸腐蚀或在干燥环境中对Inconel 600护套的气体腐蚀。在后一种情况下,氮化和脆化发生在低至300至400℃的温度下(通过检查安装探测器的锆合金2载体棒的氧化情况确定)。本文分别从锆合金-2和铬镍铁合金- 600的氧化和氮化动力学的角度对最近的研究结果进行了描述和讨论。
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Failure of Inconel 600 Thin-Walled Tubes Due to Nitriding
The self-powered flux detectors used in some nuclear reactors are Pt or V-cored co-axial cables with MgO as an insulator and Inconel 600 as the outer sheath material. The detectors are designed to operate in a He atmosphere; to maximize the conduction of heat (generated from the interaction with gamma radiation) and to prevent corrosion. A number of failures have occurred over the years because of a loss of the He cover gas in the assembly. This has resulted in either acid attack on the Inconel 600 sheath in a wet environment or gaseous corrosion in a dry environment. In the latter case, nitriding and embrittlement occurred at temperatures as low as 300 to 400 deg C (determined from an examination of the oxidation of the Zircaloy-2 carrier rod on which the detectors were mounted). Recent results are described and discussed in terms of the oxidation and nitriding kinetics of Zircaloy-2 and Inconel 600, respectively.
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