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Considering brittleness of tungsten in failure analysis of helium-cooled divertor components with functionally graded tungsten/EUROFER97 joints

机译:在功能梯度钨/ EUROFER97接头的氦冷却偏滤器组件的失效分析中考虑钨的脆性

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摘要

Helium-cooled divertor components made of tungsten and reduced activated ferritic mar-tensitic steel are part of current research for future power plants. Two different failure analyses, a deterministic and a probabilistic, have been performed on the tungsten section of the considered thimble of the divertor component which is joined to a steel cartridge by a functionally graded tungsten/EUROFER97 layer.In the deterministic failure analysis, the extended finite element method (XFEM) is used providing insights concerning the initiation and the propagation of possible cracks, which depends on the layer thickness. Due to the brittleness of tungsten at low temperatures and its embrittlement in view of neutron irradiation a probabilistic failure analysis is necessary to assess the reliability of the divertor component. Failure probabilities for the tungsten thimble were calculated based on Weibull statistics using the STAU code. The influence of the thickness and inclination angle of functionally graded tungsten/EUROFER97 joints on the failure probabilities were studied and revealed a minimum required layer thickness of 3000 um and the necessity of an inclination. The Weibull parameters for a tungsten alloy with 1 wt.% La_2O_3 were determined in four point bending tests and used as input data for the failure analysis of the component during production.
机译:由钨和还原活性铁素体马氏体钢制成的氦冷却偏滤器组件是未来发电厂当前研究的一部分。在考虑的分流器组件的顶针的钨部分上进行了两种不同的失效分析,即确定性和概率分析,该分流器组件通过功能分级的钨/ EUROFER97层连接到钢弹壳上。有限元方法(XFEM)用于提供有关可能的裂纹的萌生和扩展的见解,这取决于层的厚度。由于钨在低温下的脆性及其在中子辐照下的脆性,因此有必要进行概率失效分析以评估偏滤器组件的可靠性。使用STAU代码根据Weibull统计数据计算出钨套管的失效概率。研究了功能梯度钨/ EUROFER97接头的厚度和倾斜角度对失效概率的影响,发现最小要求的层厚为3000 um,并且需要倾斜。在四点弯曲测试中确定了具有1 wt%La_2O_3的钨合金的Weibull参数,并将其用作生产过程中组件失效分析的输入数据。

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